21 Results for "

B16F10 mouse melanoma

" in MedChemExpress (MCE) Product Catalog:
Products (21)

21 Results for "B16F10 mouse melanoma" in MCE Product Catalog:

20
20 Cited Publications
Cat. No.: HY-13594
CAS No.: 19660-77-6
Purity:  98.31%
Synonyms: Ce6
Chlorin e6 is a photosensitizer and has strong absorption peaks at wavelength of 402 and 662 nm, as well as exhibiting intense fluorescence at 668 nm. Chlorin e6 has antimicrobial efficacy and anticancer activity. Chlorin e6 induces cell apoptosis via caspase-3 activation and can be used for the research of cancer .
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2
2 Cited Publications
Cat. No.: HY-156483
CAS No.: 1164471-33-3
Purity:  99.76%
TT-012 is a MITF inhibitor with a human MITF IC50 of 13.1 nM and a human MITF Kd value of 15.5 nM. TT-012 reduces mRNA levels of MITF downstream genes linked to melanosome biogenesis, cell survival, and proliferation, and upregulates cell cycle-inhibiting genes. TT-012 can be used for the research of melanoma[1][2][3].
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Cat. No.: HY-N0538
CAS No.: 87-99-0
Synonyms: Xylite
Xylitol can be classified as a polyol and sugar alcohol, exhibiting inhibitory activity on cancer cell proliferation. It induces autophagy (Autophagy) and cell death in A549 cells by activating the autophagy signaling pathway, as evidenced by the increased expression of LC3-II and Atg5-Atg12 upon Xylitol treatment. Additionally, Xylitol inhibits acetaldehyde production by Candida species, thereby reducing their carcinogenic potential. In vivo, Xylitol induces alterations in the gut microbiota of mice, which may enhance cholesterol accumulation and upregulate hepatic ChREBP, while also slowing tumor growth in the B16F10 melanoma C57BL/6 mouse model .
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Cat. No.: HY-162275
CAS No.: 861224-48-8
Research Areas:  

Cancer

JMJD1C-IN-1 is an orally active and selective inhibitor of JMJD1C (IC50 = 0.59 μM, Kd = 1.96 μM). JMJD1C-IN-1 inhibits the binding of JMJD1C to H3K9me2 peptide substrate in the HTRF assay (IC50 = 1.47 μM). JMJD1C-IN-1 disrupts intratumoral regulatory T (Treg) cell fitness by dual mechanisms: promoting H3K9me2 accumulation to downregulate PD1 expression and reducing STAT3 demethylation to enhance STAT3 activation. JMJD1C-IN-1 demonstrates dose-dependent antitumor efficacy in multiple mouse tumor models (MCA205 fibrosarcoma, B16-F10 melanoma, LLC lung cancer, Hepa1-6 hepatocellular carcinoma, CT26 colorectal cancer). JMJD1C-IN-1 can be used for the study of tumor immunotherapy by selectively targeting intratumoral Treg cells .
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Cat. No.: HY-149760
CAS No.: 3032975-48-4
Research Areas:  

Cancer

PVD-06 is a selective PROTAC PTPN2 degrader with a DC50 of 217 nM (selectivity index >60-fold over PTP1B). PVD-06 induces PTPN2 degradation via a VHL-, ubiquitin, and proteasome-dependent pathway. PVD-06 can promote T cell activation and amplify IFN-γ-mediated anticancer activity. PVD-06 can be used to further investigate PTPN2 in diseases such as leukemia and melanoma .
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Cat. No.: HY-174830
CAS No.: 3099808-68-8
Target:  

PD-1/PD-L1

Research Areas:  

Cancer

GJ19 is a PD-L1 inhibitor with an IC50 of 32.06 nM. GJ19 can effectively bind to human/murine PD-L1 protein with Kd values of 171 and 290 nM, respectively. GJ19 concentration-dependently promotes HepG2 cell mortality in a co-culture model of HepG2/hPD-L1 and Jurkat T/hPD-1 cells. GJ19 effectively suppresses tumor growth in a B16-F10 melanoma mouse model. GJ19 can be used for the study of tumor immunotherapy .
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Cat. No.: HY-N1098
CAS No.: 25739-41-7
Velutin is a flavonoid. Velutin can be extracted from mistletoe. Velutin inhibits mushroom Tyrosinase activity with an IC50 of 910.1 μM. Velutin inhibits p38 phosphorylation, the NF-κB pathway and the MAPK pathway. Velutin prevents articular cartilage degeneration and subchondral bone loss. Velutin slows down the progression of intervertebral disc degeneration. Velutin exhibits inhibitory effects on melanogenesis, skin whitening, anti-inflammatory, anti-allergic, anti-oxidant and antibacterial activities. Velutin can be used in studies related to pigmented diseases, osteoarthritis and intervertebral disc degeneration .
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Cat. No.: HY-162133
CAS No.: 3028778-96-0
Research Areas:  

Cancer

MSA-2-Pt, platinum salt-modified MSA-2 (HY-136927), is a STING agonist. MSA-2-Pt inducing cell
death by platinum and activating the STING pathway by MSA-2. MSA-2-Pt direct activates STING pathway, induces phosphorylation of TBK1, IRF3, and NF-κB p65. MSA-2-Pt enhances tumor infiltration of CD4 + and CD8 + T cells, and induces tumor cell death and apoptosis in mouse colon carcinoma and melanoma models .
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Cat. No.: HY-175369
PI3Kδ-IN-25 is an orally active selective PI3Kδ inhibitor (IC50 = 2.1 nM). PI3Kδ-IN-25 has IC50s of 272, 285, and 1171 nM for PI3Kα, PI3Kγ, and PI3Kβ, respectively. PI3Kδ-IN-25 inhibits AKT Ser473 phosphorylation, suppresses Treg cell proliferation, and downregulates PD-L1 expression in B16F10 cells. PI3Kδ-IN-25 exhibits anticancer effects in B16F10 melanoma and Lewis lung cancer mouse models by reducing tumor-infiltrating Treg cells and enhancing immune responses. PI3Kδ-IN-25 is potentially useful in the study of melanoma, lung cancer, and other cancers .
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Cat. No.: HY-172671
CAS No.: 2882097-31-4
Target:  

STING

Research Areas:  

Cancer

STING agonist-43 (Compound 67) is a selective STING agonist (EC50: 20.53 μM). STING agonist-43 selectively amplifies cGAMP-dependent STING pathway activation by modulating STING oligomerization. B16.F10 has antitumor activity in a mouse melanoma model. STING agonist-43 can be used for the study of cancer immunity .
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Cat. No.: HY-179717
WZS0347 is a MITF PROTAC degrader. WZS0347 effectively reduces MITF protein levels in various melanoma cell lines. WZS0347 induces MITF degradation via the cereblon-dependent ubiquitin-proteasome pathway, downregulates the expression of downstream target genes of MITF, and inhibits the colony formation and migration abilities of cancer cells. WZS0347 can be used in melanoma-related research .
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Cat. No.: HY-16676
CAS No.: 153381-68-1
Synonyms: 4-epi-Docetaxel; 7-Epidocetaxel; 7-Epitaxotere
Research Areas:  

Cancer

7-Epi-docetaxel (4-epi-Docetaxel; 7-Epidocetaxel; 7-Epitaxotere) is the major C7 epimeric impurity/in vivo metabolite of Docetaxel (HY-B0011). 7-Epi-docetaxel acts as a potent allosteric activator of rhCYP1B1. 7-Epi-docetaxel exhibits certain cell line-specific anti-migratory activity . 7-Epi-docetaxel can be used in research related to melanoma and lung adenocarcinoma .
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Cat. No.: HY-149950
CAS No.: 3009090-13-2
Target:  

Apoptosis

Research Areas:  

Cancer

Anticancer agent 106 (compound 10ic) is an anticancer agent that induces apoptosis in B16-F10 melanoma cells. Anticancer agent 106 also potently inhibits metastatic nodules in a mouse model of lung metastatic melanoma. Anticancer agent 106 can be used in the study of cancer, especially lung metastatic melanoma .
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Cat. No.: HY-160021
CAS No.: 2241769-59-3
Target:  

ROR

Research Areas:  

Inflammation/Immunology

RORγt agonist 4 (compound 14) is a potent and selective agonist of RORγt. RORγt agonist 4 significantly enhances metabolic stability. RORγt agonist 4 improves the situation of tumor models of mouse B16F10 melanoma and LLC lung adenocarcinoma .
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Cat. No.: HY-W768347
Synonyms: Xylite-13C5
Xylitol- 13C5 (Xylite- 13C5) is the 13C-labeled Xylitol (HY-N0538). Xylitol can be classified as a polyol and sugar alcohol, exhibiting inhibitory activity on cancer cell proliferation. It induces autophagy (Autophagy) and cell death in A549 cells by activating the autophagy signaling pathway, as evidenced by the increased expression of LC3-II and Atg5-Atg12 upon Xylitol treatment. Additionally, Xylitol inhibits acetaldehyde production by Candida species, thereby reducing their carcinogenic potential. In vivo, Xylitol induces alterations in the gut microbiota of mice, which may enhance cholesterol accumulation and upregulate hepatic ChREBP, while also slowing tumor growth in the B16F10 melanoma C57BL/6 mouse model .
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Cat. No.: HY-180159
Research Areas:  

Cancer

Tubulin-IN-63 is a potent tubulin polymerization inhibitor targeting the colchicine-binding site, with an IC50 of 6.03 µM. Tubulin-IN-63 disrupts microtubule dynamics, induces G2/M arrest and apoptosis, thereby suppressing cancer cell proliferation. Tubulin-IN-63 disrupts capillary network formation in human umbilical vein endothelial cells (HUVECs) and exhibits in vivo antitumor efficacy in a B16-F10 mouse model. Tubulin-IN-63 can be used for the research of cancers, such as melanoma, lung cancer, and liver cancer .
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Cat. No.: HY-123647
CAS No.: 53126-64-0
Satratoxin H is a toxic metabolite of Stachybotrys atra. Satratoxin H induces caspase-3 and PARP cleavage via p38 MAPK and JNK pathways, stimulates JNK, ERK, and p38 MAPK phosphorylation, and activates JNK and p38 MAPK in a glutathione-sensitive manner. Satratoxin H induces DNA double-stranded breaks, apoptotic body formation, intracellular reactive oxygen species generation, and endoplasmic reticulum stress via ATF6, PERK, and IRE1 pathways. Satratoxin H can be used for the research of central nervous system disorders and melanoma .
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Cat. No.: HY-DY1092
CAS No.: 19660-77-6
Synonyms: Ce6 (solution)
Chlorin e6 (solution) (Ce6 (solution)) is a photosensitizer and has strong absorption peaks at wavelength of 402 and 662 nm, as well as exhibiting intense fluorescence at 668 nm. Chlorin e6 has antimicrobial efficacy and anticancer activity. Chlorin e6 induces cell apoptosis via caspase-3 activation and can be used for the research of cancer .
Solvent and concentration: DMSO: 10 mM
The 1 mL volume is defined as the base specification. All larger sizes correspond to incremental volumes of this base.
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Cat. No.: HY-184507
CAS No.: 2975257-92-0
Target:  

Ligands for E3 Ligase

Research Areas:  

Cancer

(R,R,R)-AHPC is an E3 ubiquitin ligase ligand and serves as one of the E3 ligands for R4VPL3-1 (HY-184506). R4VPL3-1 is a molecular glue targeting RNF4 and VHL, which binds to and modifies GPX4 to inhibit its anti-ferroptosis function. R4VPL3-1 induces iron-dependent lipid peroxidation and ferroptosis-mediated rapid cell death in cancer cells. R4VPL3-1 can be used for cancer-related research .
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Cat. No.: HY-E71367
Bromelain USP is an orally active proteolytic agent. Bromelain USP converts plasminogen to plasmin to support fibrinolysis, cleaves CD44 adhesion molecules from cell surfaces, and diminishes uPAR expression and uPA activity. Bromelain USP can inhibit the activity of a variety of fungi and bacteria. Bromelain USP can be used for the research of angina pectoris, atherosclerotic disease, fungal infections, bacterial infections, chronic inflammatory bowel disease, and cancer .
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