29 Results for "

4T1 tumor model

" in MedChemExpress (MCE) Product Catalog:
Products (29)

29 Results for "4T1 tumor model" in MCE Product Catalog:

4
4 Cited Publications
Cat. No.: HY-N0841
CAS No.: 25514-31-2
Synonyms: Dihydrobrusatol; NSC310616
Bruceine A (Dihydrobrusatol) is a natural quassinoid. Bruceine A is an inhibitor of parasites, NF-κB, and PFKFB4 (Kd: 44 nM). Bruceine A is an activator of P38α MAPK. Bruceine A has antiparasitic activity. Bruceine A has antitumor activity and inhibits cancer cell migration. Bruceine A blocks the cell cycle and induces apoptosis. Bruceine A can be used in parasites, pancreatic cancer, and breast cancer research .
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2
2 Cited Publications
Cat. No.: HY-144088
CAS No.: 2380300-79-6
Purity:  98.86%
Synonyms: HPK1-IN-22
Target:  

MAP4K

Research Areas:  

Inflammation/Immunology Cancer

ZYF0033 is an orally active inhibitor of the hematopoietic progenitor cell kinase HPK1 with an IC50 of less than 10 nM based on the phosphorylation inhibition of MBP protein. ZYF0033 promotes anti-cancer immune responses and reduces phosphorylation of SLP76 (serine 376). ZYF0033 inhibits tumor growth in the 4T-1 syngeneic mouse model and leads to increased intratumoral infiltration of DCs, NK cells, and CD107a +CD8 + T cells, but not T cells, PD-1 +CD8 + T cells, TIM-3 +CD8 + Infiltration of T cells and LAG3 +CD8 + T cells was reduced .
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Cat. No.: HY-162312
CAS No.: 2758090-62-7
Research Areas:  

Cancer

LLK203 is a potent USP2/USP8 dual-target inhibitor with IC50s of 0.89 μM and 0.52 μM, respectively. LLK203 leads a degradation of ERα and induces apoptosis of breast cancer MCF-7 cells. LLK203 demonstrates antitumor activities against the 4T1 tumor mice model .
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Cat. No.: HY-156096
CAS No.: 3033039-28-7
HDAC3-IN-2 (compound 4i) is a pyrazinyl hydrazide-based HDAC3 inhibitor (IC50: 14 nM) that efficiently targets triple-negative breast cancer cells. HDAC3-IN-2 is cytotoxic with an IC50 of 0.55 μM against 4T1 and an IC50 of 0.74 μM against MDA-MB-231. HDAC3-IN-2 has anti-tumor efficacy in vivo in tumor-bearing mouse models, selectively increasing the acetylation levels of H3K9, H3K27 and H4K12, increasing the contents of apoptosis-related caspase-3, caspase-7 and cytochrome c, and reducing Proliferation-related Bcl-2, CD44, EGFR, and Ki-67 levels .
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Cat. No.: HY-175714
CAS No.: 3033532-05-4
Target:  

STING

Research Areas:  

Inflammation/Immunology Cancer

STING agonist-46 is an orally active STING agonist. STING agonist-46 activates the STING signaling pathway, promoting phosphorylation of TBK1 and IRF3, and secretion of IFN-β and IP-10. STING agonist-46 directly binds to STING and increases its thermal stability. STING agonist-46 demonstrates potent anti-tumor efficacy in B16F10, CT26, and 4T1 mouse models. STING agonist-46 can be used for cancer immunotherapy studies .
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Cat. No.: HY-146231
CAS No.: 2636072-62-1
Target:  

PROTACs MAP4K

Research Areas:  

Inflammation/Immunology Cancer

SS47 is a hematopoietic progenitor kinase HPK1 PROTAC-class degrader and immune activator. SS47 promotes the proliferation of CD4+ and CD8+ T cells as well as IFN-γ secretion, and enhances the anti-tumor cytotoxicity and in vivo efficacy of BCMA CAR-T cells. SS47 also inhibits tumor growth in mouse models, and when combined with anti-PD-1 therapy, it improves the immune response of 4T1 tumor-bearing mice. SS47 can be used in breast cancer-related research .
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Cat. No.: HY-155052
CAS No.: 2642327-52-2
Research Areas:  

Cancer

PAD4-IN-2 is a highly tumor-targeted and irreversible PAD4 inhibitor with an IC50 of 1.94 μM. It selectively recognizes sialic acid on tumor surfaces and accumulates in tumor tissues, with distribution in the cytoplasm of tumor cells and nuclei of neutrophils. PAD4-IN-2 inhibits the PAD4-H3cit-NETs (Neutrophil Extracellular Traps) pathway, reduces senescent tumor-associated neutrophils, and promotes M1 macrophage polarization. The compound exhibits potent anti-tumor and anti-metastatic activities and is suitable for breast cancer research .
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Cat. No.: HY-174811
PROTAC BRD4 Degrader-33 is an enzyme activated clickable BRD4 PROTAC degrader with favorable tumor microenvironment-response. PROTAC BRD4 Degrader-33 has superior tumor tissue penetration capabilities and efficiently inhibits PD-L1 protein expression. PROTAC BRD4 Degrader-33 shows potent anti-tumoral immunomodulation activity in 4T1 tumor-bearing mice model .
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Cat. No.: HY-155052A
Purity:  95.64%
Research Areas:  

Cancer

PAD4-IN-2 TFA is a highly tumor-targeted and irreversible PAD4 inhibitor with an IC50 of 1.94 μM. PAD4-IN-2 TFA selectively recognizes sialic acid on tumor surfaces and accumulates in tumor tissues, with distribution in the cytoplasm of tumor cells and nuclei of neutrophils. PAD4-IN-2 TFA inhibits the PAD4-H3cit-NETs (Neutrophil Extracellular Traps) pathway, reduces senescent tumor-associated neutrophils, and promotes M1 macrophage polarization. The compound exhibits potent anti-tumor and anti-metastatic activities and is suitable for breast cancer research .
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Cat. No.: HY-175846
CAS No.: 2822560-46-1
Research Areas:  

Cancer

TQFL13 is derivative of Thymoquinone (TQ) (HY-D0803) with potent anti-breast cancer activity. TQFL13 exhibits higher cytotoxicity against breast cancer cells (BT549, MDA-MB-231, 4T1). TQFL13 increases apoptosis and blocks the cell cycle at S and G2/G1 phases in breast cancer cells. TQFL13 shows dose-dependent anti-tumor efficacy in mouse breast cancer allograft model. TQFL13 can be used for the study of breast cancer .
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Cat. No.: HY-175857
Target:  

HDAC Apoptosis

Research Areas:  

Cancer

HDAC-IN-92 is a pan-HDAC inhibitor with an IC50 of 12.58 µM in A2780 cells. HDAC-IN-92 demonstrates broad-spectrum, notable cytotoxic activity against a range of human cancer cell lines, including ovarian, liver, and breast carcinomas. HDAC-IN-92 causes apoptosis and demonstrates a notable decrease in tumor cell colony formation. HDAC-IN-92 inhibits the formation of blood vessels in the chick chorioallantoic membrane (CAM). HDAC-IN-92 exhibits anti-tumor effect in a 4T1 tumor-bearing mouse model. HDAC-IN-92 can be used for research targeting solid tumor .
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Cat. No.: HY-170453
Research Areas:  

Cancer

iHAC is an inhibitor HSP90-anchoring chimera, that covalently binds BRD4 ligand (+)-JQ-1 to HSP90, and inhibits the proliferation of cancer cells. iHAC activates the anti-tumor immune response, inhibits the recurrence and metastasis of 4T1 breast cancer in mouse models .
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Cat. No.: HY-159771
CAS No.: 3095069-75-0
Target:  

FAP

Research Areas:  

Cancer

FAP6-19 is a fibroblast activation protein (FAP) targeting radioligand with a Kd of 18.2 nM. FAP6-19 selectively delivers therapeutic radioactive nuclides (such as 177Lu) to the tumor site by targeting the overexpressed FAP protein in the tumor microenvironment, achieving precise killing of cancer cells while minimizing radiation damage to healthy tissues. FAP6-19 exhibits extremely high total cellular uptake and good intracellular retention ability in HT1080 cells. After being labeled with 111In, FAP6-19 produced extremely high tumor/kidney and tumor/liver dose ratios in the mouse model with 4T1 tumors. FAP6-19 can be used in the research of solid tumors expressing FAP.
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Cat. No.: HY-156296
CAS No.: 2995336-58-6
Target:  

CDK Apoptosis

Research Areas:  

Cancer

CDK9-Cyclin T1 PPI-IN-1 (Compound B19) is a selective CDK9-Cyclin T1 protein-protein interaction (PPI) inhibitor. CDK9-Cyclin T1 PPI-IN-1 inhibits cell proliferation in TNBC MDA-MB-231 cells (IC50: 0.044 μM), and induces apoptosis. CDK9-Cyclin T1 PPI-IN-1 inhibits CDK9 transcription activity, reduces the phosphorylation of RNA Pol II CTD ser2. CDK9-Cyclin T1 PPI-IN-1 inhibits tumor growth in a TNBC 4T1 mouse model .
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Cat. No.: HY-174403
Research Areas:  

Cancer

c-MYC/BCL2 ligand 1 iodide is a dual-targeting c-MYC/Bcl-2 G4 ligand with Kd values of 0.90 μM (c-MYC G4) and 0.56 μM (Bcl-2 G4). c-MYC/BCL2 ligand 1 iodide inhibits c-MYC and Bcl-2 gene transcription by binding to G4-forming sequences and downregulates their protein expression. c-MYC/BCL2 ligand 1 iodide inhibits suppresses migration, induces caspase-dependent apoptosis, and triggers cell cycle G1 arrest in MCF-7 cells. c-MYC/BCL2 ligand 1 iodide significantly suppresses tumor growth in a 4T1 syngeneic model with no observable toxicity. c-MYC/BCL2 ligand 1 iodide can be used for the research of breast cancer.
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Cat. No.: HY-175201
CAS No.: 3064707-13-4
Target:  

LPL Receptor STAT

Research Areas:  

Cancer

pro-FTY, a FTY720 (HY-12005) anticancer prodrug, is a sphingosine-1-phosphate (S1P) (HY-108496) inhibitor. pro-FTY specifically inhibits S1P signaling in cancer cells using a drug delivery system (DDS) that reacts with acrolein. pro-FTY significantly inhibits the survival of breast cancer cells, including multidrug-resistant cells and its organoids resistant to Paclitaxel (HY-B0015) or Doxorubicin (HY-15142A). pro-FTY potently suppresses tumor growth in 4T1 cells or organoids xenograft tumors mice model while avoiding lymphocytopenia .
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Cat. No.: HY-147834
CAS No.: 2653337-73-4
Target:  

STING

Research Areas:  

Cancer

STING agonist-9 (Compound 45) is a potent STING agonist with an EC50 of 1.2 nM and 32.82 μM against h-STING and m-STING, respectively. STING agonist-9 shows antitumor activity .
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Cat. No.: HY-156109
CAS No.: 3032446-61-7
Research Areas:  

Cancer

PDK-IN-2 (Compound 1F) is a PDK inhibitor (IC50: 68 nM). PDK-IN-2 inhibits the cellular expression of PDK1 and PDK4. PDK-IN-2 enhances mitochondrial bioenergetics, attenuates glycolytic phenotypes, and induces cell apoptosis in the mitochondrial pathway. PDK-IN-2 inhibits tumor growth in 4T1 syngeneic mice model .
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Cat. No.: HY-173433
CAS No.: 2841716-61-6
Research Areas:  

Cancer

JV8 is a BRD4 PROTAC degrader. JV8 promotes the ubiquitination and degradation of BRD4 and induces apoptosis. JV8 has antitumor activity in a mouse 4T1 orthotopic tumor model. (Pink: BRD4 ligand (HY-78695); Blue: E3 ligase VHL ligand (HY-173435); Black: Linker (HY-33366); E3 ligase VHL ligand-linker conjugate (HY-173436)) .
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Cat. No.: HY-177483
Synonyms: Oxaliplatin-artesunate
OART (Oxaliplatin-artesunate) is a ferroptosis inducer. OART significantly inhibits tumor cell proliferation. OART induces cytoplasmic and mitochondrial LPO to promote tumor ferroptosis, via destroying glutathione-mediated ferroptosis defense system and enhancing iron-dependent Fenton reaction. OART enhances tumor immunogenicity, transforming tumor environment from immunosuppressive to immunosensitive. OART has strong tumor regression in tumor-bearing mouse models. OART can be used for cancer immunotherapy research .
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