bioGenous小鼠器官 Mouse Airway Organoid Kit(K2203-MA)

小鼠器官 Mouse Airway Organoid Kit

规格:100ml

500ml

品牌:bioGenous

产品介绍

Product Description:

bioGenousTM Mouse Airway Organoid Kit is a chemically defined cell culture medium for the establishment and maintenance of mouse airway organoids derived from mouse airway stem cells. Self-renewal of the airway epithelium is driven by the proliferation of basal stem cells. Mouse Airway organoids contain basal cells, ciliated cells, secretory cells, and a few number of neuroendocrine cells, thus the organoids display all hallmarks of the airway epithelium in terms of architecture, cell type composition and self-renewal dynamics, therefore hold great promise for the studies of airway development and disease.


技术参数

Product Information:

Component

Component Cat#

Volume

Storage & Stability

bioGenousTM Mouse Airway Organoid Basal Medium

K2203-MA-A100/A500

100mL/500mL

4℃,12 months

bioGenousTM Mouse Airway Organoid Supplement B (50x)

K2203-MA-B100/B500

2mL/10mL

-20,avoid repeated freeze-thaw cycles, 12 months

bioGenousTM Mouse Airway Organoid Supplement C (250x)

K2203-MA-C100/C500

0.4mL/2mL

-20, avoid repeated freeze-thaw cycles, 12 months

Preparation of Mouse Airway Organoid Complete Medium

Use a sterile technique to prepare the mouse airway organoid complete medium. The following example is for preparing 10mL complete medium. If preparing other volumes, adjust accordingly.

1.      Thaw Mouse Airway Organoid Supplement B(50x) and Mouse Airway Organoid Supplement C(250x) on ice. Mix thoroughly.

NOTE: Once thawed, use immediately or aliquot and store at -20°C for not more than 10 months. After thawing the aliquots, use immediately. Do not re-freeze.

2.      Add 200μL Mouse Airway Organoid Supplement B(50x) and 40μL Mouse Airway Organoid Supplement C(250x) to 9.76mL Mouse Airway Organoid Basal Medium. Mix thoroughly.

NOTE: If not used immediately, store the complete medium at 2-8°C for not more than 2 weeks. The Mouse Airway Organoid Supplement B contains fungicide and antibiotics (50x).

Protocol for Establishment of Mouse Airway Organoids

Establishment of Organoids from Primary Tissue

1.      Collect primary mouse airway tissue pieces in ice-cold DPBS containing antibiotics.

2.      Rinse the tissue with DPBS twice.

3.      Mince the tissue into small fragments of 1-3 mm3 in a cell culture dish using surgical scissors or scalpels.

4.      Digest the tissue fragments with 10mL of Tissue Digestion Solution (K601008) in a 15mL conical tube at 37°C, with variable incubation times ranging from 30 min to 1h. Carefully monitor the digestion process, mixing the content of the tube every 5-10 min by shaking vigorously or pipetting the mixture up and down. The digestion process could be finished when most of tissue fragments are able to pass through the 1mL pipette tips.

5.      Add FBS to the tissue digestion mixture to a final concentration of 2%, and filter using a 100 μm cell strainer.

6.      Collect and centrifuge the filtered cells at 250g for 3 min at 4 °C. In case of a visible red pellet, aspirate the supernatant, and resuspend the pellet using 2mL of Red Blood Cell Lysis Solution (E238010) to lyse the erythrocytes at room temperature for 1 min and centrifuge at 250g for 3 min at 4°C.

7.      Aspirate the supernatant and resuspend the pellet in Epithelial Organoid Basal Medium (B213151), centrifuge at 250g for 3 min at 4°C, repeat this step once more time.

8.      Aspirate the supernatant and resuspend the pellet in Matrigel. The Matrigel should be kept on ice to prevent it from solidifying. Perform the process as quickly as possible. The amount of Matrigel used depends on the size of the pellet. Approximately 10,000 cells should be plated in 25 μL of Matrigel.

CRITICALDo not dilute Matrigel too much (Matrigel should be >70% (Matrigel vol/Total vol)) to ensure formation of solid droplets.

9.      Plate the Matrigel containing organoids at the bottom of 24-well cell culture plates in droplets of ~30 μL each around the center of the well..

CRITICAL:Once the organoids are resuspended in Matrigel, proceed with plating as quickly as possible, as the Matrigel may solidify in the tube or pipette tip. Do not let the Matrigel touch the wall of wells.

10.   Place the culture plate into a humidified incubator at 37 °C and 5% (vol/vol) CO2 for 15-25 min to let the Matrigel solidify.

11.   Prepare the required amount of mouse airway organoid complete medium.

12.   Once the Matrigel droplets have solidified (15-25 min), open the plate and carefully add 500 μL of organoid complete medium to each well.

CRITICAL: Do not add the medium directly on top of the Matrigel droplets, as this might disrupt the droplets.

13.   Place the culture plate in a humidified incubator at 37 °C and 5% (vol/vol) CO2.

14.   Change the medium every 3-4 d by carefully aspirating the medium from the wells and replacing it with a fresh, pre-warmed organoid complete medium.

15.   Closely monitor the organoid formation. Ideally, mouse airway organoids should be passaged for the first time between 7 and 10 d after the initial plating.

Splitting and Passaging of Organoids

16.   Pipette up and down to disrupt the Matrigel and transfer the organoid suspension to a 1.5 mL conical tube.

17.   Pipette the organoid suspension up and down to mix thoroughly by pipetting against the bottom of the tube to create pressure, which will aid the removal of Matrigel.

18.   Centrifuge organoids at 250g for 3 min at room temperature.

19.   Aspirate the supernatant and split organoids using either Organoid Dissociation Solution (E238001) or by mechanical disruption. For Organoid Dissociation Solution-based cell dissociation, resuspend the pellet in 0.2 mL of Organoid Dissociation Solution, pipette up and down and incubate at 37 °C until organoids fall apart. Pipette up and down with a filter tip for ≥8 times every 2 min to aid in the disruption of the organoids. Closely monitor the digestion to keep the incubation time in the Organoid Dissociation Solution to a minimum. In case of mechanical disruption, resuspend the pellet in 1.5 mL of Epithelial Organoid Basal Medium. Carefully pipette the organoid suspension up and down 30 times by pipetting against the bottom of the tube to create pressure, which will aid organoid disruption.

CRITICAL: Do not dissociate in Organoid Dissociation Solution for >6 min, as this may result in poor organoid outgrowth or even loss of the culture. As a rule of thumb, digestion is complete if a mixture of small lumps of cells (consisting of 10–50 cells) can be observed.

20.   After shearing is complete, wash once by topping up with 1 mL ofEpithelial Organoid Basal Medium, and centrifuge at 250g for 3 min at room temperature.

21.   Aspirate the supernatant and resuspend the organoid pellet in 70% (vol/vol) Matrigel, and plate organoids in droplets at the bottom of a culture plate as described in Steps 10. After plating is complete, transfer the plate into a humidified incubator at 37 °C and 5% (vol/vol) CO2 for 15–25 min.

22.   Pre-warm mouse airway organoid complete medium at 37 °C.

23.   After the Matrigel droplets have solidified (15–25 min), carefully pipette pre-warmed medium into the wells.

24.   Place culture plates in a humidified incubator at 37 °C and 5% (vol/vol) CO2 until the organoids are needed for further experiments.

HA mouse monoclonal antibody, clone CB051;HA小鼠单克隆抗体,克隆CB051

 Product Data
Product Name HA mouse monoclonal antibody, clone CB051
Clone Name CB051
Applications WB
Target HA tag
Host Mouse
Clonality Monoclonal
Immunogen Monoclonal antibody is produced by immunizing mice with a synthetic peptide from influenza hemaglutinin coupled to KLH
Isotype IgG1
Formulation PBS (PH 7.3) containing 1% BSA, 50% glycerol and 0.02% sodium azide.
Concentration 1 mg/ml
Conjugation Unconjugated
Storage Condition Store at -20°C.

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
VRK2 is involved in the innate antiviral response by promoting mitostress-induced mtDNA release ,He, WR;Cao, LB;Yang, YL;Hua, D;Hu, MM;Shu, HB;, Cellular & molecular immunology 2021 ,PubMed ID 33785841 [HA]
WFDC2 suppresses prostate cancer metastasis by modulating EGFR signaling inactivation ,Xiong, Y;Yuan, L;Chen, S;Xu, H;Peng, T;Ju, L;Wang, G;Xiao, Y;Wang, X;, Cell Death Dis 2020 ,PubMed ID 32678075 [HA]
Phosphorylation of cGAS by CDK1 impairs self-DNA sensing in mitosis ,Zhong, L;Hu, MM;Bian, LJ;Liu, Y;Chen, Q;Shu, HB;, Cell Discov 2020 ,PubMed ID 32351706 [HA]
Endoglin Protein Interactome Profiling Identifies TRIM21 and Galectin-3 as New Binding Partners ,Gallardo-Vara, E;Ruiz-Llorente, L;Casado-Vela, J;Ruiz-Rodríguez, MJ;López-Andrés, N;Pattnaik, AK;Quintanilla, M;Bernabeu, C;, Cells 2019 ,PubMed ID 31540324 [HA]
Virus-induced accumulation of intracellular bile acids activates the TGR5-β-arrestin-SRC axis to enable innate antiviral immunity ,Hu, MM;He, WR;Gao, P;Yang, Q;He, K;Cao, LB;Li, S;Feng, YQ;Shu, HB;, Cell Res. 2019 ,PubMed ID 30651583 [HA]
The NLRP6 Inflammasome Recognizes Lipoteichoic Acid and Regulates Gram-Positive Pathogen Infection ,Hara, H;Seregin, SS;Yang, D;Fukase, K;Chamaillard, M;, Cell 2018 ,PubMed ID 30392956 [HA]
Human Cytomegalovirus Protein UL31 Inhibits DNA Sensing of cGAS to Mediate Immune Evasion ,Huang, ZF;Zou, HM;Liao, BW;Zhang, HY;Yang, Y;Fu, YZ;Wang, SY;Luo, MH;Wang, YY;, Cell Host Microbe 2018 ,PubMed ID 29937271 [HA]
CDK5 Inhibition Resolves PKA/cAMP-Independent Activation of CREB1 Signaling in Glioma Stem Cells ,Mukherjee, S;Tucker-Burden, C;Kaissi, E;Newsam, A;Duggireddy, H;Chau, M;Zhang, C;Diwedi, B;Rupji, M;Seby, S;Kowalski, J;Kong, J;Read, R;Brat, DJ;, Cell Rep 2018 ,PubMed ID 29742423 [HA]
Poly(ADP-ribose) Polymerase 1, PARP1, modifies EZH2 and inhibits EZH2 histone methyltransferase activity after DNA damage ,Caruso, LB;Martin, KA;Lauretti, E;Hulse, M;Siciliano, M;Lupey-Green, LN;Abraham, A;Skorski, T;Tempera, I;, Oncotarget 2018 ,PubMed ID 29535829 [HA]
Chk1 Inhibition of the Replication Factor Drf1 Guarantees Cell-Cycle Elongation at the Xenopus laevis Mid-blastula Transition ,Collart, C;Smith, JC;Zegerman, P;, Dev. Cell 2017 ,PubMed ID 28697335 [HA]
Variants in TRIM22 That Affect NOD2 Signaling Are Associated With Very-Early-Onset Inflammatory Bowel Disease ,Li, Q;Lee, CH;Peters, LA;Mastropaolo, LA;Thoeni, C;Elkadri, A;Schwerd, T;Zhu, J;Zhang, B;Zhao, Y;Hao, K;Dinarzo, A;Hoffman, G;Kidd, BA;Murchie, R;Al Adham, Z;Guo, C;Kotlarz, D;Cutz, E;Walters, TD;Shouval, DS;Curran, M;Dobrin, R;Brodmerkel, C;Snapper, SB;Klein, C;Brumell, JH;Hu, M;Nanan, R;Snanter-Nanan, B;Wong, M;Le Deist, F;Haddad, E;Roifman, CM;Deslandres, C;Griffiths, AM;Gaskin, KJ;Uhlig, HH;Schadt, EE;Muise, AM;, Gastroenterology 2016 ,PubMed ID 26836588 [HA]
EZH1/SUZ12 complex positively regulates the transcription of NF-?B target genes via interaction with UXT ,Su, SK;Li, CY;Lei, PJ;Wang, X;Zhao, QY;Cai, Y;Wang, Z;Li, L;Wu, M;, J. Cell. Sci. Apr 2016 ,PubMed ID 27127229 [HA]
The Key Regulator for Language and Speech Development, FOXP2, is a Novel Substrate for SUMOylation ,Meredith, LJ;Wang, CM;Nascimento, L;Liu, R;Wang, L;Yang, WH;, J. Cell. Biochem. Jul 2015 ,PubMed ID 26212494 [HA]
Recombinant Murine Gamma Herpesvirus 68 Carrying KSHV G Protein-Coupled Receptor Induces Angiogenic Lesions in Mice ,Zhang, J;Zhu, L;Lu, X;Feldman, ER;Keyes, LR;Wang, Y;Fan, H;Feng, H;Xia, Z;Sun, J;Jiang, T;Gao, SJ;Tibbetts, SA;Feng, P;, PLoS Pathog. Jun 2015 ,PubMed ID 26107716 [HA]
TRIM4 modulates type I interferon induction and cellular antiviral response by targeting RIG-I for K63-linked ubiquitination ,Yan, J;Li, Q;Mao, AP;Hu, MM;Shu, HB;, J Mol Cell Biol 154-63 6 2. April 2014 ,PubMed ID 24755855 [anti-HA]

beta IV Tubulin (TUBB4A) Mouse Monoclonal Antibody [Clone ID: OTI5C1]βIV 微管蛋白 (TUBB4A) 小鼠单克隆抗体 [克隆 ID: OTI5C1]

Product Data
Clone Name OTI5C1
Applications FC, IF, IHC, WB
Recommend Dilution WB 1:500-2000, IHC 1:150, IF 1:100, FC 1:100
Reactivity Human, Monkey, Mouse, Rat, Dog
Host Mouse
Clonality Monoclonal
Immunogen Full length human recombinant protein of human TUBB4 (NP_006078) produced in HEK293T cell.
Isotype IgG2b
Formulation PBS (PH 7.3) containing 1% BSA, 50% glycerol and 0.02% sodium azide.
Concentration 1 mg/ml
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Condition Store at -20°C as received.
Predicted Protein Size 49.4 kDa
Gene Name tubulin beta 4A class IVa
 Reference Data
Protein Families Druggable Genome
Protein Pathways Gap junctionPathogenic Escherichia coli infection

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
Attenuation of diabetic cardiomyopathy by relying on kirenol to suppress inflammation in a diabetic rat model ,Wu, B;Huang, XY;Li, L;Fan, XH;Li, PC;Huang, CQ;Xiao, J;Gui, R;Wang, S;, J. Cell. Mol. Med. 2019 ,PubMed ID 31565849 [TUBB4]
SNX8 modulates the innate immune response to RNA viruses by regulating the aggregation of VISA ,Guo, W;Wei, J;Zhong, X;Zang, R;Lian, H;Hu, MM;Li, S;Shu, HB;Yang, Q;, Cell. Mol. Immunol. 2019 ,PubMed ID 31511639 [TUBB4]
Resveratrol Suppresses Epithelial-Mesenchymal Transition in GBM by Regulating Smad-Dependent Signaling ,Song, Y;Chen, Y;Li, Y;Lyu, X;Cui, J;Cheng, Y;Zheng, T;Zhao, L;Zhao, G;, BioMed Research International 2019 ,PubMed ID 31119150 [TUBB4]
A novel splice variant of supervillin, SV5, promotes carcinoma cell proliferation and cell migration ,Chen, X;Yang, H;Zhang, S;Wang, Z;Ye, F;Liang, C;Wang, H;Fang, Z;, Biochem. Biophys. Res. Commun. 2016 ,PubMed ID 27825967 [TUBB4]
Preparation and Affinity-Purification of Supervillin Isoform 4 (SV4) Specific Polyclonal Antibodies ,Chen, X;Li, H;Wang, H;Yang, H;Ye, F;Liang, C;Fang, Z;, Protein J. Apr 2016 ,PubMed ID 27015936 [TUBB4]
The use of this Antibodies has been cited in the following citations:
Attenuation of diabetic cardiomyopathy by relying on kirenol to suppress inflammation in a diabetic rat model ,Wu, B;Huang, XY;Li, L;Fan, XH;Li, PC;Huang, CQ;Xiao, J;Gui, R;Wang, S;, J. Cell. Mol. Med. 2019 ,PubMed ID 31565849 [TUBB4]
SNX8 modulates the innate immune response to RNA viruses by regulating the aggregation of VISA ,Guo, W;Wei, J;Zhong, X;Zang, R;Lian, H;Hu, MM;Li, S;Shu, HB;Yang, Q;, Cell. Mol. Immunol. 2019 ,PubMed ID 31511639 [TUBB4]
Resveratrol Suppresses Epithelial-Mesenchymal Transition in GBM by Regulating Smad-Dependent Signaling ,Song, Y;Chen, Y;Li, Y;Lyu, X;Cui, J;Cheng, Y;Zheng, T;Zhao, L;Zhao, G;, BioMed Research International 2019 ,PubMed ID 31119150 [TUBB4]
A novel splice variant of supervillin, SV5, promotes carcinoma cell proliferation and cell migration ,Chen, X;Yang, H;Zhang, S;Wang, Z;Ye, F;Liang, C;Wang, H;Fang, Z;, Biochem. Biophys. Res. Commun. 2016 ,PubMed ID 27825967 [TUBB4]
Preparation and Affinity-Purification of Supervillin Isoform 4 (SV4) Specific Polyclonal Antibodies ,Chen, X;Li, H;Wang, H;Yang, H;Ye, F;Liang, C;Fang, Z;, Protein J. Apr 2016 ,PubMed ID 27015936 [TUBB4]

PCNA Mouse Monoclonal Antibody [Clone ID: OTI2G7]PCNA小鼠单克隆抗体[克隆ID:OTI2G7]

Product Data
Clone Name OTI2G7
Applications IF, WB
Recommend Dilution WB 1:2000, IF 1:50
Reactivity Human, Monkey, Mouse, Rat, Dog
Host Mouse
Clonality Monoclonal
Immunogen Full length human recombinant protein of human PCNA (NP_002583) produced in E.coli.
Isotype IgG2b
Formulation PBS (PH 7.3) containing 1% BSA, 50% glycerol and 0.02% sodium azide.
Concentration 1 mg/ml
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Condition Store at -20°C as received.
Predicted Protein Size 28.6 kDa
Gene Name proliferating cell nuclear antigen
Background The protein encoded by this gene is found in the nucleus and is a cofactor of DNA polymerase delta. The encoded protein acts as a homotrimer and helps increase the processivity of leading strand synthesis during DNA replication. In response to DNA damage, this protein is ubiquitinated and is involved in the RAD6-dependent DNA repair pathway. Two transcript variants encoding the same protein have been found for this gene. Pseudogenes of this gene have been described on chromosome 4 and on the X chromosome. [provided by RefSeq, Jul 2008]
 Reference Data
Protein Families Druggable GenomeStem cell – Pluripotency
Protein Pathways Base excision repairCell cycleDNA replicationMismatch repairNucleotide excision repair

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
Attenuation of doxorubicin-induced cardiotoxicity by cryptotanshinone detected through association analysis of transcriptomic profiling and KEGG pathway ,Li, L;Wu, B;Zhao, Q;Li, J;Han, Y;Fan, X;Dong, J;Li, P;, Aging (Albany NY) 2020 ,PubMed ID 32457254 [PCNA]
Attenuation of diabetic cardiomyopathy by relying on kirenol to suppress inflammation in a diabetic rat model ,Wu, B;Huang, XY;Li, L;Fan, XH;Li, PC;Huang, CQ;Xiao, J;Gui, R;Wang, S;, J. Cell. Mol. Med. 2019 ,PubMed ID 31565849 [PCNA]
Rescue of collapsed replication forks is dependent on NSMCE2 to prevent mitotic DNA damage ,Pond, KW;de Renty, C;Yagle, MK;Ellis, NA;, PLoS Genet. 2019 ,PubMed ID 30735491 [PCNA]
Vascular niche IL-6 induces alternative macrophage activation in glioblastoma through HIF-2α ,Wang, Q;He, Z;Huang, M;Liu, T;Wang, Y;Xu, H;Duan, H;Ma, P;Zhang, L;Zamvil, SS;Hidalgo, J;Zhang, Z;O'Rourke, DM;Dahmane, N;Brem, S;Mou, Y;Gong, Y;Fan, Y;, Nat Commun 2018 ,PubMed ID 29422647 [PCNA]
Modulation of liver regeneration via myeloid PTEN deficiency ,Ma, WT;Jia, YJ;Liu, QZ;Yang, YQ;Yang, JB;Zhao, ZB;Yang, ZY;Shi, QH;Ma, HD;Gershwin, ME;Lian, ZX;, Cell Death Dis 2017 ,PubMed ID 28542148 [PCNA]
Recurrent Amplification at 13q34 Targets at CUL4A, IRS2, and TFDP1 As an Independent Adverse Prognosticator in Intrahepatic Cholangiocarcinoma ,Liu, TT;You, HL;Weng, SW;Wei, YC;Eng, HL;Huang, WT;, PLoS ONE Dec 2015 ,PubMed ID 26684807 [PCNA]

HSP90AB1 Mouse Monoclonal Antibody [Clone ID: OTI4C10]HSP90AB1 小鼠单克隆抗体 [克隆 ID: OTI4C10]

 Product Data
Clone Name OTI4C10
Applications WB
Recommend Dilution WB 1:2000
Reactivity Human, Monkey, Mouse, Rat, Dog
Host Mouse
Clonality Monoclonal
Immunogen Full-length protein expressed in 293T cell transfected with human HSP90AB1 expression vector
Isotype IgG2b
Formulation PBS (pH 7.3) containing 1% BSA, 50% glycerol and 0.02% sodium azide.
Concentration 1 mg/ml
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Condition Store at -20°C as received.
Predicted Protein Size 83.3 kDa
Gene Name heat shock protein 90 alpha family class B member 1
Background HSP90 proteins are highly conserved molecular chaperones that have key roles in signal transduction, protein folding, protein degradation, and morphologic evolution. HSP90 proteins normally associate with other cochaperones and play important roles in folding newly synthesized proteins or stabilizing and refolding denatured proteins after stress. There are 2 major cytosolic HSP90 proteins, HSP90AA1 (MIM 140571), an inducible form, and HSP90AB1, a constitutive form. Other HSP90 proteins are found in endoplasmic reticulum (HSP90B1; MIM 191175) and mitochondria (TRAP1; MIM 606219)
 Reference Data
Protein Families Druggable GenomeStem cell – Pluripotency
Protein Pathways Antigen processing and presentationNOD-like receptor signaling pathwayPathways in cancerProgesterone-mediated oocyte maturationProstate cancer

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
An Exploratory Analysis of Extracellular Vesicle-Associated and Soluble Cytokines in Cancer-Related Fatigue in Men with Prostate Cancer. ,Sass, D;Fitzgerald, W;Barb, J;Kupzyk, K;Margolis, L;Saligan, L;, Brain, Behavior, & Immunity – Health 2020 [HSP90AB1]
Heat Shock Proteins Accelerate the Maturation of Brain Endothelial Cell Glucocorticoid Receptor in Focal Human Drug-Resistant Epilepsy ,Hossain, M;Williams, S;Ferguson, L;Bingaman, W;Ghosh, A;Najm, IM;Ghosh, C;, Mol. Neurobiol. 2020 ,PubMed ID 32748370 [HSP90AB1]
LRTM1 promotes the differentiation of myoblast cells by negatively regulating the FGFR1 signaling pathway ,Li, HK;Zhou, Y;Ding, J;Xiong, L;Shi, YX;He, YJ;Yang, D;Deng, ZL;Nie, M;Fei Gao, Y;, Exp. Cell Res. 2020 ,PubMed ID 32841643 [HSP90AB1]
Pax7 as molecular switch regulating early and advanced stages of myogenic mouse ESC differentiation in teratomas ,Florkowska, A;Meszka, I;Zawada, M;Legutko, D;Proszynski, TJ;Janczyk-Ilach, K;Streminska, W;Ciemerych, MA;Grabowska, I;, Stem Cell Res Ther 2020 ,PubMed ID 32552916 [HSP90AB1]
In-Vitro-Generated Hypertrophic-Like Adipocytes Displaying PPARG Isoforms Unbalance Recapitulate Adipocyte Dysfunctions In Vivo ,Aprile, M;Cataldi, S;Perfetto, C;Ambrosio, MR;Italiani, P;Tatè, R;Blüher, M;Ciccodicola, A;Costa, V;, Cells 2020 ,PubMed ID 32455814 [HSP90AB1]
Superoxide Dismutases SOD1 and SOD2 Rescue the Toxic Effect of Dopamine-Derived Products in Human SH-SY5Y Neuroblastoma Cells ,Biosa, A;De Lazzari, F;Masato, A;Filograna, R;Plotegher, N;Beltramini, M;Bubacco, L;Bisaglia, M;, Neurotox Res 2019 ,PubMed ID 31228093 [HSP90AB1]
Rescue of collapsed replication forks is dependent on NSMCE2 to prevent mitotic DNA damage ,Pond, KW;de Renty, C;Yagle, MK;Ellis, NA;, PLoS Genet. 2019 ,PubMed ID 30735491 [HSP90AB1]
Segmented poly(A) tails significantly reduce recombination of plasmid DNA without affecting mRNA translation efficiency or half-life ,Trepotec, Z;Geiger, J;Plank, C;Aneja, MK;Rudolph, C;, RNA 2019 ,PubMed ID 30647100 [HSP90AB1]
Tamoxifen therapy in a murine model of myotubular myopathy ,Maani, N;Sabha, N;Rezai, K;Ramani, A;Groom, L;Eltayeb, N;Mavandadnejad, F;Pang, A;Russo, G;Brudno, M;Haucke, V;Dirksen, RT;Dowling, JJ;, Nat Commun 2018 ,PubMed ID 30451841 [HSP90]
Chromatin regulates IL-33 release and extracellular cytokine activity ,Travers, J;Rochman, M;Miracle, CE;Habel, JE;Brusilovsky, M;Caldwell, JM;Rymer, JK;Rothenberg, ME;, Nat Commun 2018 ,PubMed ID 30108214 [HSP90AB1]
MicroRNA-644a promotes apoptosis of hepatocellular carcinoma cells by downregulating the expression of heat shock factor 1 ,Liang, W;Liao, Y;Li, Z;Wang, Y;Zheng, S;Xu, X;Ran, F;Tang, B;Wang, Z;, Cell Commun. Signal 2018 ,PubMed ID 29898735 [HSP90AB1]
Hsp90 chaperones hemoglobin maturation in erythroid and nonerythroid cells ,Ghosh, A;Garee, G;Sweeny, EA;Nakamura, Y;Stuehr, DJ;, Proc. Natl. Acad. Sci. U.S.A. 2018 ,PubMed ID 29358373 [HSP90AB1]
IL-33 is induced in undifferentiated, non-dividing esophageal epithelial cells in eosinophilic esophagitis ,Travers, J;Rochman, M;Caldwell, JM;Besse, JA;Miracle, CE;Rothenberg, ME;, Sci Rep 2017 ,PubMed ID 29242581 [HSP90AB1]
Myogenic potential of mouse embryonic stem cells lacking functional Pax7 tested in vitro by 5-azacitidine treatment and in vivo in regenerating skeletal muscle ,Helinska, A;Krupa, M;Archacka, K;Czerwinska, AM;Streminska, W;Janczyk-Ilach, K;Ciemerych, MA;Grabowska, I;, Eur. J. Cell Biol 2016 ,PubMed ID 28017376 [HSP90AB1]
Cell cycle regulation of embryonic stem cells and mouse embryonic fibroblasts lacking functional Pax7 ,Czerwinska, AM;Nowacka, J;Aszer, M;Gawrzak, S;Archacka, K;Fogtman, A;Iwanicka-Nowicka, R;Janczyk-Ilach, K;Koblowska, M;Ciemerych, MA;Grabowska, I;, Cell Cycle 2016 ,PubMed ID 27610933 [Hsp90]

GAPDH Mouse Monoclonal Antibody [Clone ID: OTI2D9]GAPDH小鼠单克隆抗体[克隆ID:OTI2D9]

Product Data
Clone Name OTI2D9
Applications WB
Recommend Dilution WB 1:2000
Reactivity Human, Monkey, Mouse, Rat, Dog
Host Mouse
Clonality Monoclonal
Immunogen Full length human recombinant protein of human GAPDH (NP_002037) produced in HEK293T cell.
Isotype IgG1
Formulation PBS (PH 7.3) containing 1% BSA, 50% glycerol and 0.02% sodium azide.
Concentration 1 mg/ml
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Condition Store at -20°C as received.
Predicted Protein Size 35.9 kDa
Gene Name glyceraldehyde-3-phosphate dehydrogenase
Background The product of this gene catalyzes an important energy-yielding step in carbohydrate metabolism, the reversible oxidative phosphorylation of glyceraldehyde-3-phosphate in the presence of inorganic phosphate and nicotinamide adenine dinucleotide (NAD). The enzyme exists as a tetramer of identical chains. Many pseudogenes similar to this locus are present in the human genome. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Feb 2012]
 Reference Data
Protein Families ES Cell Differentiation/IPS
Protein Pathways Alzheimer's diseaseGlycolysis / GluconeogenesisMetabolic pathways

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
Progressive Characterization of Visual Phenotype in Bardet-Biedl Syndrome Mutant Mice ,Kretschmer, V;Patnaik, SR;Kretschmer, F;Chawda, MM;Hernandez-Hernandez, V;May-Simera, HL;, Invest. Ophthalmol. Vis. Sci. 2019 ,PubMed ID 30901771 [GAPDH]
Znhit1 controls intestinal stem cell maintenance by regulating H2A.Z incorporation ,Zhao, B;Chen, Y;Jiang, N;Yang, L;Sun, S;Zhang, Y;Wen, Z;Ray, L;Liu, H;Hou, G;Lin, X;, Nat Commun 2019 ,PubMed ID 30842416 [GAPDH]
SIRT1 participates in the response to methylglyoxal-dependent glycative stress in mouse oocytes and ovary ,Di Emidio, G;Santini, SJ;D'Alessandro, AM;Vetuschi, A;Sferra, R;Artini, PG;Carta, G;Falone, S;Amicarelli, F;Tatone, C;, Biochim Biophys Acta Mol Basis Dis 2019 ,PubMed ID 30771486 [GAPDH]
MicroRNA-Based Prophylaxis in a Mouse Model of Cirrhosis and Liver Cancer ,Callegari, E;Domenicali, M;Shankaraiah, RC;D'Abundo, L;Guerriero, P;Giannone, F;Baldassarre, M;Bassi, C;Elamin, BK;Zagatti, B;Ferracin, M;Fornari, F;Altavilla, G;Blandamura, S;Silini, EM;Gramantieri, L;Sabbioni, S;Negrini, M;, Mol Ther Nucleic Acids 2018 ,PubMed ID 30641476 [GAPDH]
Selective CB2 inverse agonist JTE907 drives T cell differentiation towards a Treg cell phenotype and ameliorates inflammation in a mouse model of inflammatory bowel disease ,Gentili, M;Ronchetti, S;Ricci, E;Di Paola, R;Gugliandolo, E;Cuzzocrea, S;Bereshchenko, O;Migliorati, G;Riccardi, C;, Pharmacol. Res. 2018 ,PubMed ID 30552973 [GAPDH]
Muscle activity prevents the uncoupling of mitochondria from Ca2+ release units induced by ageing and disuse ,Pietrangelo, L;Michelucci, A;Ambrogini, P;Sartini, S;Guarnier, FA;Fusella, A;Zamparo, I;Mammucari, C;Protasi, F;Boncompagni, S;, Arch. Biochem. Biophys. 2018 ,PubMed ID 30578752 [GAPDH]
Incomplete Suppression of HIV-1 by SAMHD1 Permits Efficient Macrophage Infection ,Plitnik, T;Sharkey, M;Mahboubi, B;Kim, B;Stevenson, M;, PAI 2018 [GAPDH]
An AAV dual vector strategy ameliorates the Stargardt phenotype in adult Abca4-/- mice ,McClements, ME;Barnard, AR;Singh, MS;Charbel Issa, P;Jiang, Z;Radu, RA;MacLaren, RE;, Hum. Gene Ther. 2018 ,PubMed ID 30381971 [GAPDH]
Aortic constriction induces hypertension and cardiac hypertrophy via (pro)renin receptor activation and the PLC‑β3 signaling pathway ,Wu, J;Zhang, C;Liu, C;Zhang, A;Li, A;Zhang, J;Zhang, Y;, Mol Med Rep 2018 ,PubMed ID 30431106 [GAPDH]
Leucine-rich repeat kinase 2 controls protein kinase A activation state through phosphodiesterase 4 ,Russo, I;Di Benedetto, G;Kaganovich, A;Ding, J;Mercatelli, D;Morari, M;Cookson, MR;Bubacco, L;Greggio, E;, J Neuroinflammation 2018 ,PubMed ID 30368241 [GAPDH]
Trehalose Activates CRE-Dependent Transcriptional Signaling in HT22 Mouse Hippocampal Neuronal Cells: A Central Role for PKA Without cAMP Elevation ,Maronde, E;, Front Mol Neurosci 2018 ,PubMed ID 30405349 [GAPDH]
The Elevated ASK1 Expression Inhibits Proliferation and Invasion in Gastric Cancer HGC-27 Cells ,Wan, X;Shi, L;Ma, X;Tang, H;Wu, G;, Anat Rec (Hoboken) 2018 ,PubMed ID 30324658 [GAPDH]
Efflux excretion of bisdemethoxycurcumin-O-glucuronide in UGT1A1-overexpressing HeLa cells: Identification of breast cancer resistance protein (BCRP) and multidrug resistance-associated proteins 1 (MRP1) as the glucuronide transporters ,Yang, J;Zhang, B;Qin, Z;Li, S;Xu, J;Yao, Z;Zhang, X;Gonzalez, FJ;Yao, X;, Biofactors 2018 ,PubMed ID 30334318 [GAPDH]
Sucrosomial® Iron Supplementation in Mice: Effects on Blood Parameters, Hepcidin, and Inflammation ,Asperti, M;Gryzik, M;Brilli, E;Castagna, A;Corbella, M;Gottardo, R;Girelli, D;Tarantino, G;Arosio, P;Poli, M;, Nutrients 2018 ,PubMed ID 30241424 [GAPDH]
Cysteine thiol oxidation on SIRT2 regulates inflammation in obese mice with sepsis ,Wang, X;Buechler, NL;Long, DL;Furdui, CM;Yoza, BK;McCall, CE;Vachharajani, V;, Inflammation 2018 ,PubMed ID 30203196 [GAPDH]
The roles of breast cancer resistance protein (BCRP/ABCG2) and multidrug resistance-associated proteins (MRPs/ABCCs) in the excretion of cycloicaritin-3-O-glucoronide in UGT1A1-overexpressing HeLa cells ,Li, S;Xu, J;Yao, Z;Hu, L;Qin, Z;Gao, H;Krausz, KW;Gonzalez, FJ;Yao, X;, Chem. Biol. Interact. 2018 ,PubMed ID 30237061 [GAPDH]
Downregulation of FOXK2 is associated with poor prognosis in patients with gastric cancer ,Liu, X;Wei, X;Niu, W;Wang, D;Wang, B;Zhuang, H;, Mol Med Rep 2018 ,PubMed ID 30221666 [GAPDH]
Regulation of the oncogenic phenotype by the nuclear body protein ZC3H8 ,Schmidt, JA;Danielson, KG;Duffner, ER;Radecki, SG;Walker, GT;Shelton, A;Wang, T;Knepper, JE;, BMC Cancer 2018 ,PubMed ID 30041613 [GAPDH]
The RNA-binding protein YBX1 regulates epidermal progenitors at a posttranscriptional level ,Kwon, E;Todorova, K;Wang, J;Horos, R;Lee, KK;Neel, VA;Negri, GL;Sorensen, PH;Lee, SW;Hentze, MW;Mandinova, A;, Nat Commun 2018 ,PubMed ID 29712925 [GAPDH]
Aniseed ( Pimpinella anisum L.) essential oil reduces pro-inflammatory cytokines and stimulates mucus secretion in primary airway bronchial and tracheal epithelial cell lines ,Iannarelli, R;Marinelli, O;Morelli, M;Santoni, G;Amantini, C;Nabissi, M;Maggi, F;, Industrial Crops and Products 2018 [GAPDH]
SKLB-23bb, A HDAC6-Selective Inhibitor, Exhibits Superior and Broad-Spectrum Antitumor Activity via Additionally Targeting Microtubules ,Wang, F;Zheng, L;Yi, Y;Yang, Z;Qiu, Q;Wang, X;Yan, W;Bai, P;Yang, J;Li, D;Pei, H;Niu, T;Ye, H;Nie, C;Hu, Y;Yang, S;Wei, Y;Chen, L;, Mol. Cancer Ther. 2018 ,PubMed ID 29610282 [GAPDH]
Identification of Miro as a mitochondrial receptor for myosin XIX ,Bähler, M;Oeding, S;Majstrowicz, K;Hu, X;Schwarz, V;Freitag, A;Honnert, U;Nikolaus, P;, bioRxiv 2018 [GAPDH]
NOD2-RIP2 contributes to the inflammatory responses of mice in vivo to Streptococcus pneumoniae ,Zheng, Y;Shang, F;An, L;Zhao, H;Liu, X;, Neurosci. Lett. 2018 ,PubMed ID 29408491 [GAPDH]
SMAD4 feedback regulates the canonical TGF-β signaling pathway to control granulosa cell apoptosis ,Du, X;Pan, Z;Li, Q;Liu, H;Li, Q;, Cell Death Dis 2018 ,PubMed ID 29396446 [GAPDH]
Structural properties and gene-silencing activity of chemically modified DNA-RNA hybrids with parallel orientation ,Habibian, M;Yahyaee-Anzahaee, M;Lucic, M;Moroz, E;Martín-Pintado, N;Di Giovanni, LD;Leroux, JC;Hall, J;González, C;Damha, MJ;, Nucleic Acids Res. 2018 ,PubMed ID 29373740 [GAPDH]
Enhancing mitochondrial proteostasis reduces amyloid-β proteotoxicity ,Sorrentino, V;Romani, M;Mouchiroud, L;Beck, JS;Zhang, H;D'Amico, D;Moullan, N;Potenza, F;Schmid, AW;Rietsch, S;Counts, SE;Auwerx, J;, Nature 2017 ,PubMed ID 29211722 [GAPDH]
Effect of miR-204&211 and RUNX2 control on the fate of human mesenchymal stromal cells ,Sacchetti, B;Fatica, A;Sorci, M;Sorrentino, A;Signore, M;Cerio, A;Felicetti, F;Feo, A;Pelosi, E;Caré, A;Pescarmona, E;Gordeladze, JO;Valtieri, M;, Regen Med Res 2017 ,PubMed ID 29206625 [GAPDH]
Shear stress induces noncanonical autophagy in intestinal epithelial monolayers ,Kim, SW;Ehrman, J;Ahn, MR;Kondo, J;Lopez, AAM;Oh, YS;Kim, XH;Crawley, SW;Goldenring, JR;Tyska, MJ;Rericha, EC;Lau, KS;, Mol. Biol. Cell 2017 ,PubMed ID 28855375 [GAPDH]
FMNL2 destabilises COMMD10 to activate NF-κB pathway in invasion and metastasis of colorectal cancer ,Yang, SS;Li, XM;Yang, M;Ren, XL;Hu, JL;Zhu, XH;Wang, FF;Zeng, ZC;Li, JY;Cheng, ZQ;Liao, WT;Ding, YQ;Guan, J;Liang, L;, Br. J. Cancer 2017 ,PubMed ID 28817833 [GAPDH]
Antioxidant Treatment Reduces Formation of Structural Cores and Improves Muscle Function in RYR1(Y522S/WT) Mice ,Michelucci, A;De Marco, A;Guarnier, FA;Protasi, F;Boncompagni, S;, Oxid Med Cell Longev 2017 ,PubMed ID 29062463 [GAPDH]
Anti-Inflammatory Pyranochalcone Derivative Attenuates LPS-Induced Acute Kidney Injury via Inhibiting TLR4/NF-κB Pathway ,Shi, M;Zeng, X;Guo, F;Huang, R;Feng, Y;Ma, L;Zhou, L;Fu, P;, Molecules 2017 ,PubMed ID 28994737 [GAPDH]
Codon-Optimized RPGR Improves Stability and Efficacy of AAV8 Gene Therapy in Two Mouse Models of X-Linked Retinitis Pigmentosa ,Fischer, MD;McClements, ME;Martinez-Fernandez de la Camara, C;Bellingrath, JS;Dauletbekov, D;Ramsden, SC;Hickey, DG;Barnard, AR;MacLaren, RE;, Mol. Ther. 2017 ,PubMed ID 28549772 [GAPDH]
Strenuous exercise triggers a life-threatening response in mice susceptible to malignant hyperthermia ,Michelucci, A;Paolini, C;Boncompagni, S;Canato, M;Reggiani, C;Protasi, F;, FASEB J. 2017 ,PubMed ID 28465322 [GAPDH]
miR-146a suppresses STAT3/VEGF pathways and reduces apoptosis through IL-6 signaling in primary human retinal microvascular endothelial cells in high glucose conditions ,Ye, EA;Steinle, JJ;, Vision Res. 2017 ,PubMed ID 28433754 [GAPDH]
Hepatitis C virus infection inhibits a Src-kinase regulatory phosphatase and reduces T cell activation in vivo ,Bhattarai, N;McLinden, JH;Xiang, J;Mathahs, MM;Schmidt, WN;Kaufman, TM;Stapleton, JT;, PLoS Pathog 2017 ,PubMed ID 28235043 [GAPDH]
Axitinib induces senescence-associated cell death and necrosis in glioma cell lines: The proteasome inhibitor, bortezomib, potentiates axitinib-induced cytotoxicity in a p21(Waf/Cip1) dependent manner ,Morelli, MB;Amantini, C;Nabissi, M;Cardinali, C;Santoni, M;Bernardini, G;Santoni, A;Santoni, G;, Oncotarget 2017 ,PubMed ID 27926485 [GAPDH]
Heparanase Overexpression Reduces Hepcidin Expression, Affects Iron Homeostasis and Alters the Response to Inflammation ,Asperti, M;Stuemler, T;Poli, M;Gryzik, M;Lifshitz, L;Meyron-Holtz, EG;Vlodavsky, I;Arosio, P;, PLoS ONE 2016 ,PubMed ID 27711215 [GAPDH]
Alcohol Dehydrogenases and Acetaldehyde Dehydrogenases are Beneficial for Decidual Stromal Cells to Resist the Damage from Alcohol ,Li, Z;Li, M;Li, S;Fu, Y;Yang, Z;, Alcohol and Alcoholism 2016 ,PubMed ID 28182209 [GAPDH]
Renal Protective Effects of 17ß-Estradiol on Mice with Acute Aristolochic Acid Nephropathy ,Shi, M;Ma, L;Zhou, L;Fu, P;, Molecules 2016 ,PubMed ID 27763560 [GAPDH]
Data on the inhibition of RNase inhibitor activity by a monoclonal antibody as assessed by microfluidics-based RNA electrophoresis ,Wang, X;Teferedegne, B;Shatzkes, K;Tu, W;Murata, H;, Data Brief 2016 ,PubMed ID 27699193 [GAPDH]
Grainyhead-like 2 inhibits the coactivator p300, suppressing tubulogenesis and the epithelial-mesenchymal transition ,Pifer, PM;Farris, JC;Thomas, AL;Stoilov, P;Denvir, J;Smith, DM;Frisch, SM;, Mol. Biol. Cell 2016 ,PubMed ID 27251061 [APDH]
Cytosolic localization of Fox proteins in motor neurons of G93A SOD1 mice ,Ma, X;Turnbull, PC;Crapper, EP;Wang, H;Drannik, A;Jiang, F;Xia, S;Turnbull, J;, Histochem. Cell Biol. Jan 2016 ,PubMed ID 26724814 [GAPDH]
TRAF3IP3, a novel autophagy-upregulated gene, is involved in MZ B lymphocyte development and survival ,Peng, S;Wang, K;Gu, Y;Chen, Y;Nan, X;Xing, J;Cui, Q;Chen, Y;Ge, Q;Zhao, H;, Clin. Exp. Immunol. May 2015 ,PubMed ID 26011558 [GAPDH]
Aberrant over-expression of TRPM7 ion channels in pancreatic cancer: required for cancer cell invasion and implicated in tumor growth and metastasis ,Yee, NS;Kazi, AA;Li, Q;Yang, Z;Berg, A;Yee, RK;, Biol Open Mar 2015 ,PubMed ID 25770184 [GAPDH]
Metabolic Reprogramming of Cancer-Associated Fibroblasts by IDH3a Downregulation ,Zhang, D;Wang, Y;Shi, Z;Liu, J;Sun, P;Hou, X;Zhang, J;Zhao, S;Zhou, BP;Mi, J;, Cell Rep Mar 2015 ,PubMed ID 25732824 [GAPDH]
Toxicity of aflatoxin B1 towards the vitamin D receptor (VDR) ,Costanzo, P;Santini, A;Fattore, L;Novellino, E;Ritieni, A;, Food Chem. Toxicol. Dec 2014 ,PubMed ID 25483621 [GAPDH]
Novel APP K724M mutation causes Chinese EOFAD and increases amyloid-ß42/40 ratio ,Peng, XL;Hou, L;Xu, SH;Hua, Y;Zhou, SJ;Zhang, Y;, Neurobiology of Aging Jun 2014 ,PubMed ID 25018108 [GAPDH]
A novel protein is lower expressed in renal cell carcinoma ,Guan, R;Xu, Y;Lei, H;Gao, Z;Xin, Z;Guo, Y;, Int J Mol Sci May 2014 ,PubMed ID 24786097 [GAPDH]
Aberrantly Over-Expressed TRPM8 Channels in Pancreatic Adenocarcinoma: Correlation with Tumor Size/Stage and Requirement for Cancer Cells Invasion ,Yee, NS;Li, Q;Kazi, AA;Yang, Z;Berg, A;Yee, RK;, Cells May 2014 ,PubMed ID 24861976 [GAPDH]
Biochemical and functional interaction between ZNF224 and ZNF255, two members of the Krüppel-like zinc-finger protein family and WT1 protein isoforms ,Francesca Florio, Elena Cesaro, Giorgia Montano, Paola Izzo, Colin Miles, and Paola Costanzo, Hum. Mol. Genet., Sep 2010; 19: 3544 – 3556 ,PubMed ID 20591825 [GAPDH]

Goat Anti-Mouse IgG Secondary Antibody山羊抗小鼠IgG二抗

 Product Data
Product Name Goat Anti-Mouse IgG Secondary Antibody
Applications ELISA, ICC/IF, IHC, WB
Recommend Dilution WB, IHC, IF/ICC, ELISA
Reactivity Mouse IgG
Host Goat
Immunogen Mouse IgG, whole molecule
Isotype IgG
Formulation Lyophilized with 1% sodium acetate
Purification This antibody was purified from antiserum by immunoaffinity chromatography which removes essentially all goat serum proteins, except the specific antibody for mouse IgG.
Conjugation Unconjugated
Storage Condition Store at -20°C as received.

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
Epigallocatechin‑3‑gallate inhibits self‑renewal ability of lung cancer stem‑like cells through inhibition of CLOCK ,Jiang, P;Xu, C;Zhang, P;Ren, J;Mageed, F;Wu, X;Chen, L;Zeb, F;Feng, Q;Li, S;, Int J Mol Med 2020 ,PubMed ID 33125096 [NULL]
TLR9 induces colitis-associated colorectal carcinogenesis by regulating NF-κB expression levels ,Luo, Q;Zeng, L;Tang, C;Zhang, Z;Chen, Y;Zeng, C;, Oncol Lett 2020 ,PubMed ID 32863923 [Secondary Antibody]
Cathepsin L interacts with CDK2-AP1 as a potential predictor of prognosis in patients with breast cancer ,Wang, Z;Xiang, Z;Zhu, T;Chen, J;Zhong, M;Huang, J;Wang, K;Li, L;Sun, L;Zhou, W;, Oncol Lett 2019 ,PubMed ID 31897127 [Secondary Antibody]
PD‑L1/PD‑1 axis serves an important role in natural killer cell‑induced cytotoxicity in osteosarcoma ,Zhang, ML;Chen, L;Li, YJ;Kong, DL;, Oncology Reports 2019 ,PubMed ID 31485666 [Secondary Antibody]
Aspergillus fumigatus enhances human NK cell activity by regulating M1 macrophage polarization ,Zhang, X;He, D;Gao, S;Wei, Y;Wang, L;, Mol Med Rep 2019 ,PubMed ID 31173233 [Secondary Antibody]
Bufadienolides induce apoptosis and autophagy by inhibiting the AKT signaling pathway in melanoma A‑375 cells ,Li, H;Cao, X;Chen, X;Yi, X;Xia, J;Chen, J;Yang, L;, Mol Med Rep 2019 ,PubMed ID 31322190 [Secondary Antibody]
CRKII overexpression promotes the in vitro proliferation, migration and invasion potential of murine hepatocarcinoma Hca-P cells ,Zhou, Z;Sun, X;Guo, C;Sun, MZ;Liu, S;, Oncol Lett 2019 ,PubMed ID 31186732 [Secondary Antibody]
Combination of phospholipase Cε knockdown with GANT61 sensitizes castration‑resistant prostate cancer cells to enzalutamide by suppressing the androgen receptor signaling pathway ,Sun, W;Li, L;Du, Z;Quan, Z;Yuan, M;Cheng, H;Gao, Y;Luo, C;Wu, X;, Oncol. Rep. 2019 ,PubMed ID 30864728 [Secondary Antibody]
Diagnosis of hepatocellular carcinoma using a novel anti-glycocholic acid monoclonal antibody-based method ,Wu, M;Zhai, S;Gao, J;Wei, D;Xue, J;Zhou, Y;Li, N;Hu, L;, Oncol Lett 2019 ,PubMed ID 30867740 [Secondary Antibody]
Rotundic acid induces Cas3-MCF-7 cell apoptosis through the p53 pathway ,Nan, ML;Wang, X;Li, HJ;Yu, DH;Sun, WY;Xu, HM;He, YF;Zhao, QC;, Oncol Lett 2019 ,PubMed ID 30655810 [Secondary Antibody]
DNMTs inhibitor SGI-1027 induces apoptosis in Huh7 human hepatocellular carcinoma cells ,Sun, N;Zhang, J;Zhang, C;Zhao, B;Jiao, A;, Oncol Lett 2018 ,PubMed ID 30344731 [Secondary Antibody]
iTRAQ‑coupled 2D LC/MS‑MS analysis of CXCR7‑transfected papillary thyroid carcinoma cells: A new insight into CXCR7 regulation of papillary thyroid carcinoma progression and identification of potential biomarkers ,Zhang, H;Yang, L;Liu, Z;Liu, C;Teng, X;Zhang, L;Yin, B;Liu, Z;, Oncology Letters 2017 [Secondary Antibody]

LGR5 Mouse Monoclonal Antibody [Clone ID: OTI2A2]LGR5小鼠单克隆抗体[克隆ID:OTI2A2]

Product Data
Clone Name OTI2A2
Applications FC, IF, IHC, IP, WB
Recommend Dilution WB 1:2000, IHC 1:150, IF 1:100, FLOW 1:100, IP 2ug/500ul
Reactivity Human, Mouse, Rat
Host Mouse
Clonality Monoclonal
Immunogen Human recombinant protein fragment corresponding to amino acids 250-550 of human LGR5 (NP_003658) produced in HEK293T Cell.
Isotype IgG1
Formulation PBS (PH 7.3) containing 1% BSA, 50% glycerol and 0.02% sodium azide.
Concentration 1 mg/ml
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Condition Store at -20°C as received.
Predicted Protein Size 99.8 kDa
 Reference Data
Protein Families Druggable GenomeGPCRTransmembrane

*Delivery time may vary from web posted schedule. Occasional delays may occur due to unforeseen complexities in the preparation of your product. International customers may expect an additional 1-2 weeks in shipping.

The use of this Antibodies has been cited in the following citations:
Engineering a Bioartificial Human Colon Model Through Decellularization and Recellularization ,Chen, HJ;Shuler, ML;, Methods Mol. Biol. 2019 ,PubMed ID 30542993 [LGR5]
Selection of a Malignant Subpopulation from a Colorectal Cancer Cell Line ,Lai, PL;Chen, TC;Feng, CY;Lin, H;Wu, N;Chen, Y;, bioRxiv 2019 [LGR5]
Acute exposure to deoxynivalenol inhibits porcine enteroid activity via suppression of the Wnt/β-catenin pathway ,Li, XG;Zhu, M;Chen, MX;Fan, HB;Fu, HL;Zhou, JY;, Toxicology Letters 2019 ,PubMed ID 30690062 [LGR5]
Resveratrol reduces senescence-associated secretory phenotype by SIRT1/NF-κB pathway in gut of the annual fish Nothobranchius guentheri ,Liu, S;Zheng, Z;Ji, S;Liu, T;Hou, Y;Li, S;Li, G;, Fish Shellfish Immunol. 2018 ,PubMed ID 29908321 [LGR5]
NANOGP8 is the key regulator of stemness, EMT, Wnt pathway, chemoresistance, and other malignant phenotypes in gastric cancer cells ,Ma, X;Wang, B;Wang, X;Luo, Y;Fan, W;, PLoS ONE 2018 ,PubMed ID 29689047 [LGR5]
Liver damage, proliferation, and progenitor cell markers in experimental necrotizing enterocolitis ,Miyake, H;Li, B;Lee, C;Koike, Y;Chen, Y;Seo, S;Pierro, A;, J. Pediatr. Surg. 2018 ,PubMed ID 29502797 [LGR5]
Identification of PMN-released Mutagenic Factors in a Co-culture Model for Colitis-associated Cancer ,Granofszky, N;Lang, M;Khare, V;Schmid, G;Scharl, T;Ferk, F;Jimenez, K;Knasmüller, S;Campregher, C;Gasche, C;, Carcinogenesis 2017 ,PubMed ID 29106440 [LGR5]
Immuno-proteomic discovery of tumor tissue autoantigens identifies olfactomedin 4, CD11b, and integrin alpha-2 as markers of colorectal cancer with liver metastases ,Yang, Q;Bavi, P;Wang, JY;Roehrl, MH;, J Proteomics 2017 ,PubMed ID 28669815 [LGR5]
LGR5 Is a Gastric Cancer Stem Cell Marker Associated with Stemness and the EMT Signature Genes NANOG, NANOGP8, PRRX1, TWIST1, and BMI1 ,Wang, B;Chen, Q;Cao, Y;Ma, X;Yin, C;Jia, Y;Zang, A;Fan, W;, PLoS ONE 2016 ,PubMed ID 28033430 [LGR5]
Heparan sulfate hexasaccharide selectively inhibits cancer stem cells self-renewal by activating p38 MAP kinase ,Patel, NJ;Sharon, C;Baranwal, S;Boothello, RS;Desai, UR;Patel, BB;, Oncotarget 2016 ,PubMed ID 27705927 [LGR5]
A recellularized human colon model identifies cancer driver genes ,Chen, HJ;Wei, Z;Sun, J;Bhattacharya, A;Savage, DJ;Serda, R;Mackeyev, Y;Curley, SA;Bu, P;Wang, L;Chen, S;Cohen-Gould, L;Huang, E;Shen, X;Lipkin, SM;Copeland, NG;Jenkins, NA;Shuler, ML;, Nat. Biotechnol. 2016 ,PubMed ID 27398792 [LGR5]
Full-length LGR5-positive cells have chemoresistant characteristics in colorectal cancer ,Osawa, H;Takahashi, H;Nishimura, J;Ohta, K;Haraguchi, N;Hata, T;Yamamoto, H;Mizushima, T;Takemasa, I;Doki, Y;Mori, M;, Br. J. Cancer May 2016 ,PubMed ID 27140312 [LGR5]
LGR5 activates non-canonical Wnt-signaling and inhibits aldosterone production in the human adrenal ,Shaikh, LH;Zhou, J;Teo, AE;Garg, S;Neogi, SG;Figg, N;Yeo, GS;Yu, H;Maguire, JJ;Zhao, W;Bennett, MR;Azizan, EA;Davenport, AP;McKenzie, G;Brown, MJ;, J. Clin. Endocrinol. Metab. Apr 2015 ,PubMed ID 25915569 [LGR5]
CBB1003, a lysine-specific demethylase 1 inhibitor, suppresses colorectal cancer cells growth through down-regulation of leucine-rich repeat-containing G-protein-coupled receptor 5 expression ,Hsu, HC;Liu, YS;Tseng, KC;Yang, TS;Yeh, CY;You, JF;Hung, HY;Chen, SJ;Chen, HC;, J. Cancer Res. Clin. Oncol. July 2014 ,PubMed ID 25060070 [LGR5]
LGR5 regulates survival through mitochondria-mediated apoptosis and by targeting the Wnt/ß-catenin signaling pathway in colorectal cancer cells ,Hsu, HC;Liu, YS;Tseng, KC;Tan, BC;Chen, SJ;Chen, HC;, Cell. Signal. July 2014 ,PubMed ID 25025569 [LGR5]
Identification of a distinct small cell population from human bone marrow reveals its multipotency in vivo and in vitro ,Wang, J;Guo, X;Lui, M;Chu, PJ;Yoo, J;Chang, M;Yen, Y;, PLoS ONE, Jan 2014. ,PubMed ID 24465489 [LGR5]
Postnatal epithelium and mesenchyme stem/progenitor cells in bioengineered amelogenesis and dentinogenesis ,Jiang, N;Zhou, J;Chen, M;Schiff, MD;Lee, CH;Kong, K;Embree, MC;Zhou, Y;Mao, JJ;, Biomaterials Dec 2013. ,PubMed ID 24345734 [Lgr5]
Lgr5 expression as stem cell marker in human gastric gland and its relatedness with other putative cancer stem cell markers ,Chen Wu, Yuanyuan Xie, Feng Gao, Yanan Wang, Yawei Guo, Huanna Tian, Yanshuang Li, Wufang Fan, Gene. 2013 Aug 1;525(1):18-25 ,PubMed ID 23664892 [LGR5]
PKH26 staining defines distinct subsets of normal human colon epithelial cells at different maturation stages ,Pastò A, Marchesi M, Diamantini A, Frasson C, Curtarello M, Lago C, Pilotto G, Parenti AR, Esposito G, Agostini M, Nitti D, Amadori A, PLoS One. 2012;7(8):e43379 ,PubMed ID 22927961 [LGR5]