16 Results for "

compound+K

" in MedChemExpress (MCE) Product Catalog:
Products (16)

16 Results for "compound+K" in MCE Product Catalog:

5
5 Cited Publications
Cat. No.: HY-N0904
CAS No.: 39262-14-1
Synonyms: Ginsenoside compound K; Ginsenoside K
Ginsenoside C-K, a bacterial metabolite of G-Rb1, exhibits anti-inflammatory effects by reducing iNOS and COX-2. Ginsenoside C-K exhibits an inhibition against the activity of CYP2C9 and CYP2A6 in human liver microsomes with IC50s of 32.0±3.6 μM and 63.6±4.2 μM, respectively.
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Cat. No.: HY-N0904R
CAS No.: 39262-14-1
Synonyms: Ginsenoside compound K(Standard); Ginsenoside K (Standard)
Ginsenoside C-K (Standard) is the analytical standard of Ginsenoside C-K. This product is intended for research and analytical applications. Ginsenoside C-K, a bacterial metabolite of G-Rb1, exhibits anti-inflammatory effects by reducing iNOS and COX-2. Ginsenoside C-K exhibits an inhibition against the activity of CYP2C9 and CYP2A6 in human liver microsomes with IC50s of 32.0±3.6 μM and 63.6±4.2 μM, respectively.
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Cat. No.: HY-122668
CAS No.: 2141978-86-9
Research Areas:  

Infection

K22 is an anti-Coronaviral compound. K22 reduces double-stranded RNA. K22 displays antiviral activity beyond the Coronavirinae subfamily, namely against nidoviruses of the Torovirinae subfamily (EToV and WBV) and members of the Arteriviridae family (PRRSV, EAV). K22 displays antiviral activity against HCoV-229E .
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Cat. No.: HY-185104
CAS No.: 2861254-89-7
Target:  

LXR

Research Areas:  

Cardiovascular Disease

Ginsenoside C-K hexapropionate ester (Structure 2) is a selective agonist of LXRα, with no significant activation effect on LXRβ. Ginsenoside C-K hexapropionate ester upregulates the expression of downstream genes such as ABCA1 by activating LXRα, promoting reverse cholesterol transport, and reducing lipid deposition in macrophage-derived foam cells. It can be used in the research of atherosclerosis. Ginsenoside C-K hexapropionate ester is a derivative synthesized from ginsenoside Compound K, an active metabolite of Panax notoginseng saponins, by modification with propionic anhydride .
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Cat. No.: HY-179017
CAS No.: 1379458-40-8
Target:  

Factor Xa

Research Areas:  

Cardiovascular Disease

FXa-IN-2 (Compound K3) is a reversible FXainhibitor, with an IC50 value of 45.08 μM. FXa-IN-2 can be used in the research of thromboembolic diseases .
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Cat. No.: HY-161817
Research Areas:  

Others

TGR5 agonist 5 (compound K91) is a potent agonist of TGR5, with EC50s of 19 μM and 30 μM in CRE-Luciferase assay anf cAMP accumulation assay, respectively .
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Cat. No.: HY-163517
Target:  

Bacterial

Research Areas:  

Infection

Antibacterial agent 211 (compound k15) has bactericidal activity against clinically isolated MRSA and VRE (MICs = 0.25–1.00 μg/mL). Antibacterial agent 211 avoids resistance by damaging biofilm and targeting cell membranes .
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Cat. No.: HY-155652
CAS No.: 2559759-40-7
Target:  

BCRP

Research Areas:  

Cancer

ABCG2-IN-1 (compound K2), a Ko143 analog, is an orally active ABCG2 inhibitor with an IC50 of 0.13 μM. ABCG2-IN-1 has favorable oral pharmacokinetic profiles in mice .
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Cat. No.: HY-162126
CAS No.: 3027015-30-8
Target:  

Microtubule/Tubulin YAP

Research Areas:  

Cancer

Tubulin polymerization-IN-58 (Compound K18) is a tubulin polymerization inhibitor with an IC50 of 0.446 μM. Tubulin polymerization-IN-58 also induces the degradation of oncogenic protein YAP via the UPS pathway, thus can be used for cancer research .
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Cat. No.: HY-174386
CAS No.: 2761657-21-8
Target:  

STAT

Research Areas:  

Cancer

STAT3-IN-43 (Compound K2) is a covalent inhibitor targeting the allosteric site at the junction of the STAT3 coiled-coil domain and DNA-binding domain, with an IC50 of 40.7 μM. STAT3-IN-43 can be used in cancer research .
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Cat. No.: HY-173207
CAS No.: 1623073-71-1
Target:  

Thrombin

Research Areas:  

Cardiovascular Disease

Antiplatelet agent 3 (Compound K-10) is a compound with anti-platelet aggregation activity. The IC50 values for platelet aggregation induced by ADP, AA and COL are 2.55, 3.22 and 2.09 mg/mL, respectively. Antiplatelet agent 3 is expected to be used in the research of cardiovascular diseases .
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Cat. No.: HY-170396
CAS No.: 2559759-63-4
Target:  

BCRP

Research Areas:  

Inflammation/Immunology

ABCG2-IN-4 (Compound K31) is an orally active inhibitor for ABCG2, which reduces the release of Protoporphyrin IX (PPIX) (HY-B1247) from erythrocytes into plasma, and prevents the reduces phototoxicity. ABCG2-IN-4 exhibits anti-inflammatory and antioxidant activity in mouse models .
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Cat. No.: HY-174211
CAS No.: 1007786-48-2
Target:  

JNK

Research Areas:  

Cancer

JNK-IN-23 (Compound K12) is an inhibitor of JNK. JNK-IN-23 inhibits the proliferation of MDA-MB-231 (GIC50: 30 nM). JNK-IN-23 blocks TNBC metastatic growth in vivo. JNK-IN-23 inhibits the growth of lung metastases by dual targeting of glutaminase-1 (GLS) and pyruvate dehydrogenase complex (PDHC) .
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Cat. No.: HY-170550
Target:  

Ras ERK

Research Areas:  

Cancer

KRAS G12C inhibitor 69 (Compound K09) is the inhibitor for mutant RAS protein KRASG12C with an IC50 of 4.36 nM. KRAS G12C inhibitor 69 inhibits the ERK phosphorylation in NCI-H358 and MIA-PACA-2 with an IC50 of 12 nM and 7 nM. KRAS G12C inhibitor 69 inhibits the proliferation of cancer cell NCI-H358 and MIA-PACA-2 with IC50 of 3.15 nM and 2.33 nM .
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Cat. No.: HY-159580
Target:  

STAT

Research Areas:  

Cancer

STAT3-IN-31 (compound K2071) is a STATtic-derived STAT3 and mitotic inhibitor. STAT3-IN-31 blocks mitotic progression and affects the formation of mitotic spindles. STAT3-IN-31 also affects glioblastoma cell migration and inhibits cell proliferation in tumor spheroids. STAT3-IN-31 is also able to induce glioblastoma senescence, inhibit the growth of Temozolomide (HY-17364)-resistant cells and the secretion of the pro-inflammatory cytokine monocyte chemoattractant protein MCP-1 .
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Cat. No.: HY-168921
Research Areas:  

Cancer

ABCB1-IN-3 (Compound K27) is an orally active inhibitor of ABCB1, and induces apoptosis. ABCB1-IN-3 directly binds to ABCB1 to inhibit efflux function, ensuring stable intracellular concentration of Paclitaxel (PTX) (HY-B0015) without affecting ABCB1 normal expression. ABCB1-IN-3 significantly increases the sensitivity of ABCB1-mediated multidrug resistance (MDR) to Paclitaxel in vitro, enhances cell cycle arrest, and inhibits proliferation. BCB1-IN-3 combined with Paclitaxel exhibits potent tumor suppression in vivo without generating toxicity .
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