6 Results for "

poor metabolic stability

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "poor metabolic stability" in MCE Product Catalog:

Cat. No.: HY-178794
CAS No.: 3038861-75-2
Target:  

PGE synthase

Research Areas:  

Inflammation/Immunology

AGU661 is a Microsomal prostaglandin E2 synthase 1 (mPGES-1) inhibitor with an IC50 of 0.22  nM. AGU661 lowers PGE2 formation in human pro-inflammatory M1 macrophages and activated monocytes without affecting other lipid mediator pathways. AGU661 has unfavorable physicochemical properties with poor metabolic stability and strong plasma protein binding tendencies. AGU661 into PLGA-based NPs significantly enhances its bioactivity. AGU661 can be used for inflammatory disorders research .
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Cat. No.: HY-150719
CAS No.: 848256-17-7
Purity:  ≥98.0%
Research Areas:  

Cancer

AIMP2-DX2-IN-1 (Compound 35) is a potent AIMP2-DX2 inhibitor with an IC50 of 0.1063 μM .
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Cat. No.: HY-174402
Target:  

SARS-CoV

Research Areas:  

Infection

PLpro-IN-9 (Compound 14e) is a SARS-CoV-2 PLpro inhibitor with an IC50 of 12.0 μM and a KD of 1.86 μM. PLpro-IN-9 has low cytotoxicity but poor metabolic stability. PLpro-IN-9 can be used in the research of SARS-CoV-2 .
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Cat. No.: HY-174800
CAS No.: 2230854-98-3
Target:  

Topoisomerase

Research Areas:  

Cancer

ARN21929 is a Topoisomerase II inhibitor with an IC50 of 4.5 μM. ARN21929 exhibits excellent kinetic and thermodynamic solubility as well as metabolic stability. However, ARN21929 shows poor antiproliferative activity against A549, DU145, MCF7, HeLa, and A375 cells. ARN21929 can be used in the study of cancer .
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Cat. No.: HY-111103A
CAS No.: 2231440-94-9
Target:  

PAK

Research Areas:  

Cancer

CZh226 hydrochloride is a potent and selective PAK4 inhibitor with an IC50 of 18 nM, and its selectivity for PAK1 is 346 times. The oral bioavailability of CZh226 hydrochloride is poor, and it requires the use of the prodrug PAK4-IN-1 (HY-130628) to improve absorption and metabolic stability. CZh226 hydrochloride can be used for research on colorectal cancer and melanoma .
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Cat. No.: HY-L949
1279 compounds

Spirocyclic compounds, with rigid 3D structures, high Fsp³ and strong conformational restriction, are highly privileged scaffolds in small-molecule drug screening. They overcome drawbacks of planar aromatic compounds such as poor solubility, high off-target risks and weak druggability. Their orthogonal bicyclic geometry fits well into protein pockets, improving target affinity, subtype selectivity, metabolic stability and membrane permeability, making them ideal for hit identification against kinases, GPCRs, PPIs and other targets.

Spirocyclic scaffolds have been widely applied in oncology, antivirals, hypertension and CNS diseases, leading to many approved drugs and clinical candidates. SAR studies show that spiro-atom chirality, ring size and heteroatom substitution dominate bioactivity and selectivity, with the scaffold mainly serving as a conformational anchor. Azaspirocycles, spirooxindoles and spirosteranes target GPCRs, kinases, MDM2-p53 and PPIs. Approved drugs including irbesartan, spironolactone and rolapitant confirm their druggability, while revumenib and SAR405838 show promise against undruggable targets.

The MCE Spirocyclic Druglike Library contains over 1,000 diverse, stereospecific molecules selected by Lipinski’s rules. It covers privileged cores such as azaspirocycles, oxaspirocycles and spirooxindoles. These molecules bear rich chiral centers and distinct 3D orientations, reducing non-specific binding and enhancing screening efficiency. Featuring novel scaffolds, the library offers a highly innovative starting point for drug discovery.