10 Results for "

Akt1-IN-3

" in MedChemExpress (MCE) Product Catalog:
Products (10)

10 Results for "Akt1-IN-3" in MCE Product Catalog:

Cat. No.: HY-161438
CAS No.: 3033576-50-7
Target:  

Akt

Research Areas:  

Cancer

Akt1-IN-3 (Compd 7) is an inhibitor of AKT1. Akt1-IN-3 inhibits AKT1- E17K with IC50 < 15 nM .
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334
334 Publications Verification
Cat. No.: HY-18749
CAS No.: 305834-79-1
Target:  

Akt

SC79, a unique specific and BBB permeable Akt activator, activates Akt in the cytosol and inhibits Akt membrane translocation. SC79 specifically binds to the PH domain of Akt .
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66
66 Cited Publications
Cat. No.: HY-15186
CAS No.: 1001264-89-6
Purity:  99.79%
Synonyms: GDC-0068; RG7440
Target:  

Organoid Akt Apoptosis

Research Areas:  

Cancer

Ipatasertib (GDC-0068) is an orally active, highly selective and ATP-competitive pan-Akt inhibitor with IC50 values of 5, 18, 8 nM for Akt1/2/3, respectively. Ipatasertib synchronously activates FoxO3a and NF-κB through inhibition of Akt leading to p53-independent activation of PUMA. Ipatasertib also induces apoptosis in cancer cells and inhibits tumor growth in xenograft mouse models .
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2
2 Cited Publications
Cat. No.: HY-16071
CAS No.: 1056901-62-2
Research Areas:  

Cancer

AT13148 is an orally active and ATP-competitive, multi-AGC kinase inhibitor with IC50s of 38 nM/402 nM/50 nM, 8 nM, 3 nM, and 6 nM/4 nM for Akt1/2/3, p70S6K, PKA, and ROCKI/II, respectively.
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Cat. No.: HY-P5910
CAS No.: 897026-25-4
Target:  

MDM-2/p53 Apoptosis

Research Areas:  

Cancer

Azurin p28 peptide is a tumor-penetrated antitumor peptide. Azurin p28 peptide redues proteasomal degradation of p53 through formation of a p28: p53 complex. Azurin p28 peptide induces apoptosis or cell cycle arrest. Azurin p28 peptide inhibits p53-positive tumor growths. Azurin p28 peptide shows antiangiogenic effect by inhibiting phosphorylation of VEGFR-2, FAK and Akt .
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Cat. No.: HY-134903
CAS No.: 2382768-55-8
Purity:  95.41%
Target:  

mTOR

Research Areas:  

Cancer

(32-Carbonyl)-RMC-5552 is a potent mTOR inhibitor. (32-Carbonyl)-RMC-5552 inhibits mTORC1 and mTORC2 substrate (p-P70S6K-(T389), p-4E-BP1-(T37/36), AND p-AKT1/2/3-(S473)) phosphorylation with pIC50s of > 9, >9 and between 8 and 9, respectively (patent WO2019212990A1, example 2) .
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Cat. No.: HY-P5910A
Target:  

MDM-2/p53 Apoptosis

Research Areas:  

Cancer

Azurin p28 peptide TFA is a tumor-penetrated antitumor peptide. Azurin p28 peptide TFA redues proteasomal degradation of p53 through formation of a p28: p53 complex. Azurin p28 peptide TFA induces apoptosis or cell cycle arrest. Azurin p28 peptide TFA inhibits p53-positive tumor growths. Azurin p28 peptide TFA shows antiangiogenic effect by inhibiting phosphorylation of VEGFR-2, FAK and Akt .
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Cat. No.: HY-15186C
CAS No.: 1491138-24-9
Synonyms: GDC-0068 tosylate; RG7440 tosylate
Target:  

Organoid Akt Apoptosis

Research Areas:  

Cancer

Ipatasertib (GDC-0068) tosylate is an orally active, highly selective and ATP-competitive pan-Akt inhibitor with IC50 values of 5, 18, 8 nM for Akt1/2/3, respectively. Ipatasertib tosylate synchronously activates FoxO3a and NF-κB through inhibition of Akt leading to p53-independent activation of PUMA. Ipatasertib tosylate also induces apoptosis in cancer cells and inhibits tumor growth in xenograft mouse models .
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Cat. No.: HY-178142
Multi-kinase-IN-7 is a multikinase inhibitor with IC50s of 2.19, 2.95, 3.59 and 9.31 μM against EGFR, VEGFR2, TrKA and CDK2, respectively. Multi-kinase-IN-7 shows moderate and weaker activity against FAK, AKT1, GSK3β and CDK5 with IC50 values of 6.3, 9.2, 11.7 and 23.4 μM, respectively. Multi-kinase-IN-7 displays broad spectrum anti­proliferative potential against NCI cancer cell lines. Multi-kinase-IN-7 induces cell cycle arrest, apoptosis and necrosis. Multi-kinase-IN-7 Inhibitor can be used for the study of breast cancer .
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Cat. No.: HY-N21965
CAS No.: 488-02-8
Thesinine is a saturated pyrrolizidine alkaloid isolated from the seeds and flowers of *Borago officinalis*; it is the primary alkaloid in borage seeds and the only alkaloid present in borage flowers. In silico predictions indicate that Thesinine binds to the AKT1, MAPK3, MMP9, and MAPK14 proteins. Thesinine is applicable to research related to skin aging
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