10 Results for "

heterocyclic scaffold

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

10 Results for "heterocyclic scaffold" in MCE Product Catalog:

Cat. No.: HY-N6856
CAS No.: 1076-38-6
4-Hydroxycoumarin is an orally active coumarin derivative, one of the most versatile heterocyclic scaffolds, often used in the synthesis of various organic compounds. 4-Hydroxycoumarin possesses both electrophilic and nucleophilic properties. 4-Hydroxycoumarin is an HIV protease inhibitor and tyrosine kinase inhibitor. 4-Hydroxycoumarin has anti-inflammatory, antibacterial and anti-tumor effects .
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Cat. No.: HY-77817
CAS No.: 1003-29-8
Synonyms: 2-Formylpyrrole
Pyrrole-2-carboxaldehyde (2-Formylpyrrole) is a heterocyclic organic compound that serves as a scaffold for the synthesis of various bioactive compounds .
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Cat. No.: HY-Y0519
CAS No.: 289-95-2
Pyrimidine is a nitrogen-containing heterocyclic compound that serves as a scaffold for numerous natural and synthetic derivatives. As a pharmacophore, pyrimidine interacts with the synthesis and function of nucleic acids. Pyrimidine derivatives are used in research related to pancreatic cancer, triple-negative breast cancer, colon cancer, and leukemia .
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Cat. No.: HY-N6856R
CAS No.: 1076-38-6
4-Hydroxycoumarin (Standard) is the analytical standard of 4-Hydroxycoumarin. This product is intended for research and analytical applications. 4-Hydroxycoumarin is an orally active coumarin derivative, one of the most versatile heterocyclic scaffolds, often used in the synthesis of various organic compounds. 4-Hydroxycoumarin possesses both electrophilic and nucleophilic properties. 4-Hydroxycoumarin is an HIV protease inhibitor and tyrosine kinase inhibitor. 4-Hydroxycoumarin has anti-inflammatory, antibacterial and anti-tumor effects .
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Cat. No.: HY-Y0519R
CAS No.: 289-95-2
Pyrimidine (Standard) is the analytical standard of Pyrimidine (HY-Y0519). This product is intended for research and analytical applications. Pyrimidine is a nitrogen-containing heterocyclic compound that serves as a scaffold for numerous natural and synthetic derivatives. As a pharmacophore, pyrimidine interacts with the synthesis and function of nucleic acids. Pyrimidine derivatives are used in research related to pancreatic cancer, triple-negative breast cancer, colon cancer, and leukemia .
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Cat. No.: HY-N7482
CAS No.: 518-20-7
Target:  

Drug Derivative

Research Areas:  

Others

Pyranocoumarin (Compound 13) is a heterocyclic scaffold (coumarin + pyran ring fusion). Pyranocoumarin inhibits the S-warfarin hydroxylation catalyzed by CYP2C9 .
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Cat. No.: HY-77817R
CAS No.: 1003-29-8
Synonyms: 2-Formylpyrrole (Standard)
Pyrrole-2-carboxaldehyde (2-Formylpyrrole) Standard is the analytical standard of Pyrrole-2-carboxaldehyde (HY-77817). This product is intended for research and analytical applications. Pyrrole-2-carboxaldehyde is a heterocyclic organic compound that serves as a scaffold for the synthesis of various bioactive compounds .
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Cat. No.: HY-N3373R
CAS No.: 29748-10-5
4-Hydroxycoumarin (Standard) is the analytical standard of 4-Hydroxycoumarin. This product is intended for research and analytical applications. 4-Hydroxycoumarin is an orally active coumarin derivative, one of the most versatile heterocyclic scaffolds, often used in the synthesis of various organic compounds. 4-Hydroxycoumarin possesses both electrophilic and nucleophilic properties. 4-Hydroxycoumarin is an HIV protease inhibitor and tyrosine kinase inhibitor. 4-Hydroxycoumarin has anti-inflammatory, antibacterial and anti-tumor effects .
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Cat. No.: HY-L947
1,859 compounds

Built on druggable heterocyclic backbones with tunable electrophilic warheads (halogens, cyano groups), our electrophilic heterocyclic fragment library targets non-conserved cysteine/lysine residues and screens covalent ligands through an electrophile-first workflow. It generates high-quality dual-functional fragments for KRAS, BTK and other popular targets, supporting MS and DEL high-throughput screening to accelerate covalent drug lead discovery.

MCE Electrophilic Heterocyclic Fragment Library Built on druggable heterocyclic backbones with tunable electrophilic warheads (halogens, cyano groups), our electrophilic heterocyclic fragment library targets non-conserved cysteine/lysine residues and screens covalent ligands through an electrophile-first workflow. It generates high-quality dual-functional fragments for KRAS, BTK and other popular targets, supporting MS and DEL high-throughput screening to accelerate covalent drug lead discovery.

Cat. No.: HY-LD002
100 billion compounds

The discovery of hit molecule is a cornerstone of drug development. Among the diverse tools available, DNA-encoded libraries have emerged a revolutionary platform for high-throughput screening. Compared with traditional HTS, DEL features shorter screening processes, lower costs, simpler assays, and larger library capacities.

DEL Construction utilizes split-and-pool synthesis, a combinatorial chemistry approach that involves iterative splitting, reaction, and pooling. This strategy enables rapid, exponential assembly of fragments in minimal steps without the need for individual compound synthesis andassoicicated isolation or purification steps, thus greatly reducing overall costs. The technology enables simultaneous affinity screeningof massive compound collections to target proteins in a single step. By coupling chemical structures with unique DNA barcodes, each compound is tagged with a distinct DNA sequence for convenient tracking and decoding.DELs readily enable the construction and efficient screening of libraries containing millions to billions of compounds. As a result, DEL screening combines the dual advantages of high efficiency and low cost, making DEL a transformative technology in modern drug discovery.

The DEL kit consists of 50 independent libraries with a total scale of 100 billion compounds. It is constructed through stepwise combinatorial chemistry strategies involving 2-, 3-, and 4-round synthesis. By employing diverse scaffolds and flexible linking strategies, it encompasses various ring systems, linear frameworks, and heterocyclic structures. Screening can be achieved solely through affinity, independent of target-specific activity detection methods. This library is suitable for DEL screening against a wide range of targets.