9 Results for "

Bioisostere

" in MedChemExpress (MCE) Product Catalog:
Products (9)

9 Results for "Bioisostere" in MCE Product Catalog:

15
15 Cited Publications
Cat. No.: HY-13991
CAS No.: 285986-88-1
Purity:  99.88%
Target:  

Ras Apoptosis

Research Areas:  

Cancer

CCG-1423 is an inhibitor of Rho/MRTF/SRF pathway. CCG-1423 shows activities in several cancer cells. CCG-1423 is a promising lead compound for the development of novel pharmacologic tools, and it can be used for the research of cancer and diabetes .
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Cat. No.: HY-179377
Target:  

HSP Tau Protein

Research Areas:  

Neurological Disease

Aha1/Hsp90-IN-2 is a selective inhibitor of the Hsp90/Aha1 interaction, with its IC50 being 1.46 μM. Aha1/Hsp90-IN-2 inhibits the activation of Hsp90 ATPase activity mediated by Aha1 by specifically blocking the binding of Hsp90 to Aha1, thereby reducing tau protein aggregation. Aha1/Hsp90-IN-2 can be used for the study of neurodegenerative diseases, such as Alzheimer's disease .
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Cat. No.: HY-158695
Dual AChE-MAO B-IN-4 (compound 7) is a dual AChE/MAO-B inhibitor, with IC50 values ​​of 261 nM and 15 nM, respectively. Dual AChE-MAO B-IN-4 protects against oxidative damage induced by H2O2 and 6-OHDA in SH-SY5Y cells. Dual AChE-MAO B-IN-4 can penetrate the central nervous system in a cell model that mimics the blood-brain barrier. Dual AChE-MAO B-IN-4 can be used in the study of neurological diseases such as Alzheimer's disease (AD) .
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Cat. No.: HY-158696
BChE/MAO-B-IN-1 (compound 7) is a dual BChE/MAO-B inhibitor with IC50 values ​​of 375 nM and 20 nM, respectively. BChE/MAO-B-IN-1 protects against oxidative damage induced by H2O2 and 6-OHDA in SH-SY5Y cells. BChE/MAO-B-IN-1 can penetrate the central nervous system in a cell model that mimics the blood-brain barrier. BChE/MAO-B-IN-1 can be used in the study of neurological diseases such as Alzheimer's disease (AD) .
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Cat. No.: HY-13991R
CAS No.: 285986-88-1
Target:  

Ras Apoptosis

Research Areas:  

Cancer

CCG-1423 (Standard) is the analytical standard of CCG-1423. This product is intended for research and analytical applications. CCG-1423 is an inhibitor of Rho/MRTF/SRF pathway. CCG-1423 shows activities in several cancer cells. CCG-1423 is a promising lead compound for the development of novel pharmacologic tools, and it can be used for the research of cancer and diabetes .
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Cat. No.: HY-162125
CAS No.: 3027141-86-9
Target:  

Angiotensin Receptor

Research Areas:  

Cardiovascular Disease

AT2 receptor ligand-1(compound 14) is a potent angiotensin AT2 receptor ligand with the Ki 4.9 nM. AT2 receptor ligand-1 shows high stability in microsomes of the sulfonamide ligands .
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Cat. No.: HY-179448
CAS No.: 3120348-70-8
Target:  

P2Y Receptor

Research Areas:  

Cancer

P2Y2R antagonist 1 is a selective P2Y2R antagonist (pIC50 = 7.78). P2Y2R antagonist 1 can be used for the study of Glioma .
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Cat. No.: HY-L950
2792 compounds

Seven-membered rings are privileged medium-sized scaffolds with distinct twist-chair conformations and greater 3D diversity than five- and six-membered rings. Their flexible conformations allow induced-fit protein binding and precise pharmacophore positioning. They also modulate Fsp³, pKa and logP to enhance solubility and permeability. Azepanes, oxepanes and benzodiazepines serve as bioisosteres for hit discovery against GPCRs, ion channels and kinases.

Widely found in plant and microbial alkaloids, seven-membered heterocycles show excellent biocompatibility and target affinity. They underpin many approved drugs for CNS, cancer and infectious diseases, including diazepam, imipramine and carbamazepine. Clinical candidates further highlight their unique value. However, high transannular strain and synthetic difficulty limit their availability, leaving them rare in standard screening libraries.

MCE 7 Membered Scaffold Library contains 2,792 structurally diverse, lead-like molecules covering azepanes, oxepanes, benzodiazepines and dibenzazepines. With varied substitutions, chiral centers and synthetic accessibility, it fills the shortage of medium-ring scaffolds. Ideal for HTS, virtual screening and SAR studies, these novel, patent-clear compounds offer a distinctive starting point for drug discovery in CNS disorders, oncology, antivirals and challenging targets such as PPIs.

Cat. No.: HY-L924
1,488 compounds

Boronic acid and boronic ester represent a relatively novel and promising chemical structure in drug design. Boronic acid exists in an sp²-hybridized state, possessing an empty p-orbital that can act as a Lewis acid to accept lone pairs from heteroatoms (O, N, or S). This Lewis acidity enables it to form reversible covalent bonds with amino acid residues such as lysine, serine, threonine, and histidine. Currently, five FDA-approved drugs containing boronic acid or boronic ester predominantly involve such covalent binding mechanisms in their interactions with target proteins. Furthermore, boronic acid can serve as a bioisostere for carboxylic acids, phosphates, and phenolic groups, utilized to improve pharmacokinetic properties and enhance drug efficacy.

To date, five boron-containing drugs have been approved by the FDA. The unique properties of boronic acids and boronic esters confer significant potential in drug design, with applications spanning cancer therapy (e.g., multiple myeloma), anti-infectives (e.g., fungal infections, tuberculosis), anti-inflammatory treatments (e.g., atopic dermatitis), antibacterial agents (e.g., carbapenem-resistant bacterial infections), and Reactive Oxygen Species (ROS)-responsive prodrugs, among others. The MCE Boronic Acid/Boronic Ester Fragment Library, which contains 1,488 compounds, serves as a valuable tool for the development of boron-containing drugs.