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Y-27632 . dihydrochloride

更新時間:2022-01-28

簡要描述:

Y-27632 is a highly potent, cell permeable, selective and ATP competitive inhibitor of ROCK1 and ROCK2 (IC50=800nM). It acts as a potent inhibitor of agonist-induced Ca2+sensitization of myosin ……

型號:廠商性質(zhì):代理商瀏覽量:708
  • High potency inhibitor of smooth muscle contractions

  • Applications in nephrology, stem cell studies, cardiovascular, cancer, and neurology

  • Highly cited

Y-27632 is a highly potent, cell permeable, selective and ATP competitive inhibitor of ROCK1 and ROCK2 (IC50=800nM). It acts as a potent inhibitor of agonist-induced Ca2+sensitization of myosin phosphorylation and smooth muscle contractions, blocking cell spreading and suppresses RhoA-induced formation of stress fibers in hepatic stellate cells. Y-27632 significantly reduces the increase of inflammatory cytokines after reperfusion, preventing the development of acute renal failure. There are numerous application for this compound including: cardioprotective effects, suppression of tumor cell invasion, inhibition of superoxide production, mimicking effect of β-agonists on human cells, and an antinociceptive effect.
 
There has been a growing interest in Y-27632 for use in stem cell self-renewal and reprogramming. It is known to increase the survival rate of human embryonic stem cells undergoing cryopreservation.


Product Details

Alternative Name:(R)-(+)-trans-N-(4-Pyridyl)-4-(1-aminoethyl)-cyclohexanecarboxamide . 2HCl

Formula:C14H21N3O . 2HCl

MW:247.3 . 73.0

CAS:129830-38-2

Purity:≥98% (HPLC (UV))

Purity Detail:Enantiomeric excess ≥96%

Identity:Determined by MS and NMR.

Appearance:White to pale yellow powder.

Solubility:Soluble in DMSO (25mg/ml), methanol (25mg/ml), acetonitrile (<1mg/ml), dioxan (<1mg/ml), water (very soluble).

Shipping:Ambient

Long Term Storage:-20°C

Use/Stability:Stock solutions are stable for up to 1 month when stored at -20°C.

Handling:Protect from light. Packaged under inert gas. After reconstitution, prepare aliquots and store at -20°C.

Regulatory Status:RUO - Research Use Only

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Product Literature References

Biomechanical Strain Promotes the Differentiation of Murine Oogonial Stem Cells: J.A. MacDonald, et al.; Stem Cells Dev. (2021), Abstract;
Deciphering cell signaling networks with massively multiplexed biosensor barcoding: J-M. Yang, et al.; Cell 184, 6193 (2021), Abstract;
Deciphering cell signaling networks with massively multiplexed biosensor barcoding: J-M. Yang, et al.; Cell 184, 6193 (2021), Abstract;
Epigenetic modulation of immune synaptic-cytoskeletal networks potentiates γδ T cell-mediated cytotoxicity in lung cancer: R.R. Weng, et al.; Nat. Commun. 12, 2163 (2021), Abstract; Full Text
Epithelial miR-141 regulates IL-13-induced airway mucus production: S. Siddiqui, et al.; JCI Insight 5, 139019 (2021), Abstract;
Establishment of porcine and monkey colonic organoids for drug toxicity study: H. Li, et al.; Cell Regen. 10, 32 (2021), Abstract;
Identification and characterization of a novel Epstein-Barr Virus-encoded circular RNA from LMP-2 Gene: K. E. Tan, et al.; Sci. Rep. 11, 14392 (2021), Abstract;
LFA-1 and Kindlin-3 enable the collaborative transport of SLP-76 microclusters by myosin and dynein motors: K.P. Eidell, et al.; J. Cell Sci. 36, 258602 (2021), Abstract;
Long-Term Maintenance of Viable Adult Rat Sertoli Cells Able to Establish Testis Barrier Components and Function in Response to Androgens: H. Kabbesh, et al.; Cells 10, 2495 (2021), Abstract;
Mouse papillomavirus type 1 (MmuPV1) DNA is frequently integrated in benign tumors by microhomology-mediated end-joining: L. Yu, et al.; PLoS Pathog. 17, e1009812 (2021), Abstract;
Probing TGF-β1-induced cytoskeletal rearrangement by fluorescent-labeled silica nanoparticle uptake assay: H.R. Shin, et al.; Biochem. Biophys. Rep. 28, 101137 (2021), Abstract;
Proteomic Analysis of Exosomes during Cardiogenic Differentiation of Human Pluripotent Stem Cells: P. Ashok & E.S. Tzanakakis; Cells 10, 2622 (2021), Abstract;
Proteomic Analysis of Exosomes during Cardiogenic Differentiation of Human Pluripotent Stem Cells: P. Ashok & E.S. Tzanakakis; Cells 10, 2622 (2021), Abstract;


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