10 Results for "

Fragment-based screening

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

10 Results for "Fragment-based screening" in MCE Product Catalog:

Referencia número: HY-176734
Áreas de investigación:  

Cancer

CZL-S092 is a PLK4 inhibitor with an IC50 value of 0.9 nM and excellent selectivity over other PLK4 family members (PLK1, PLK2, and PLK3). CZL-S092 exhibits anti-neuroblastoma activity in vitro (IMR-32 cells, IC50 = 1.143 μM). CZL-S092 inhibits cell migration and halts the cell cycle and induces apoptosis. CZL-S092 can be used in studies of various cancers including neuroblastoma cancer .
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Referencia número: HY-168181
Target:  

Aminopeptidase

Áreas de investigación:  

Others

ERAP1-IN-2 (compound 3f) is an inhibitor of ERAP1 (endoplasmic reticulum aminopeptidase 1). ERAP1-IN-2 has an IC50 value of 1.72 μM against hERAP1 .
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Referencia número: HY-L904
1,383 compounds

The MCE 1K Drug Fragment Library consists of 1,383 drug fragments. These drug fragments are derived from 2,946 FDA-approved drug molecules, and fragments from one drug can appear in other drugs, so these fragments are somewhat correlated with good PK/PD properties. Fragment-based screening can reserve enough chemical space for subsequent structural optimization. This compound library is an essential tool for drug screening based on FBDD (Fragment-Based Drug Discovery).

Referencia número: HY-179651
No. CAS: 106664-01-1
Áreas de investigación:  

Cancer

NSD2-PWWP1-IN-6 (Compound 16) is an effective NSD2-PWWP1 inhibitor with a Kd value of 30 nM. NSD2-PWWP1-IN-6 competitively blocks the recognition of H3K36me2 and DNA by NSD2-PWWP1, thereby weakening its binding ability to nucleosomes. NSD2-PWWP1-IN-6 can be used for cancer research .
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Referencia número: HY-179650
No. CAS: 217798-45-3
Áreas de investigación:  

Cancer

NSD2-PWWP1-IN-5 (Compound 13) is an effective NSD2-PWWP1 inhibitor with a Kd value of 78 nM. NSD2-PWWP1-IN-5 competitively blocks the recognition of H3K36me2 and DNA by NSD2-PWWP1, thereby weakening its binding ability to nucleosomes. NSD2-PWWP1-IN-5 inhibits the proliferation of U2OS osteosarcoma cells and induces cell cycle arrest and apoptosis. NSD2-PWWP1-IN-5 can be used for the study of osteosarcoma .
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Referencia número: HY-L909
8,568 compounds

Covalent inhibitors are small molecules that can bind specifically to target proteins through covalent bonds and inhibit their biological functions. Although for a long time, covalent targeting has been playing a subordinate role in drug discovery, with an increasing number of reports on successful clinical applications of such drugs, the potential of these agents is now being acknowledged.

Covalent ligands rely on reactive groups (“warheads”), and new warheads are key to expanding the scope of covalent modalities. Through careful selection, we constructed a structural filter containing over 110 electrophilic groups. By analyzing the electrophilic fragments selected by the structural filter, we removed any molecules with trivial or undesirable structural features. Ultimately, we obtained 8,900 fragment molecules with covalent modification potential, which can target various reactive amino acid residues and can be used for fragment-based covalent drug discovery.

Referencia número: HY-L032V
41,703 compounds
A unique collection of 4,0000+ fragment compounds for high-throughput screening (HTS).
Referencia número: HY-L916
4,866 compounds

Different functional groups confer unique chemical properties and reactivity characteristics to compounds. The presence of these functional groups not only affects the physical properties of the compounds, such as solubility and boiling point, but also determines their chemical reactivity and potential applications in chemical synthesis.

Covalent ligands rely on reactive groups (“warheads”), and new warheads are key to expanding the scope of covalent modalities. Through careful selection, we constructed a structural filter containing over 110 electrophilic groups. By analyzing the electrophilic fragments selected by the structural filter, we removed any molecules with trivial or undesirable structural features. Ultimately, we obtained 4,900 multifunctional covalent fragments.

Referencia número: HY-L152
5,160 compounds

19F-NMR has proved to be a detection mode in fragment-based drug discovery (FBDD) for studies of protein structure and interactions. 19F shows high sensitivity for NMR detection, and the exquisite sensitivity of 19F chemical shifts and linewidths to ligand binding all make it a valuable approach in FBDD.F (Fluorine) -Fragments can be used for 19F-NMR detection after binding to target proteins, and can be used as an effective 19F-NMR tool for FBDD.

MCE designs a unique collection of 5,160 F-fragments, all of which obey a heuristic rule called the “Rule of Three (RO3)”, in which molecular weight ≤300 Da, the number of hydrogen bond donors (H-donors) ≤3, the number of hydrogen bond acceptors (H-acceptors) is ≤3 and cLogP is ≤3. This F-fragments library is an important source of lead-like drugs.

Referencia número: HY-L032
41,368 compounds

Fragment-based drug discovery (FBDD) is well suited for discovering both drug leads and chemical probes of protein function; it can cover broad swaths of chemical space and allows the use of creative chemistry. Fragment-based drug discovery is well-established in industry and has resulted in a variety of drugs entering clinical trials, with two, vemurafenib and venetoclax, already approved. FBDD also has key attractions for academia. Notably, it is able to tackle difficult or novel targets for which no chemical matter may be found in existing HTS collections.

MCE designs a unique collection of 41,368 fragment compounds, all of which obey a heuristic rule called the “Rule of Three (RO3) ”, in which molecular weight ≤300 Da, the number of hydrogen bond donors (H-donors) ≤3, the number of hydrogen bond acceptors (H-acceptors) is ≤3 and cLogP is ≤3. This library is an important source of lead-like drugs.