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Results for "

4T1 cells

" in MedChemExpress (MCE) Product Catalog:

97

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5

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1

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5

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Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-116705
    2-Deoxy-2-fluoro-L-fucose
    1 Publications Verification

    Glycosyltransferase Cancer
    2-Deoxy-2-fluoro-L-fucose, an L-fucose analog, is a fucosylation inhibitor. 2-Deoxy-2-fluoro-L-fucose inhibits de novo synthesis of GDP-fucose in mammalian cells. Fucosylation is a relatively well-defined biomarker for progression in many human cancers; for example, pancreatic and hepatocellular carcinoma .
    2-Deoxy-2-fluoro-L-fucose
  • HY-W075517

    2-Methylimidazole zinc salt

    MOFs Caspase Pyroptosis Cancer
    ZIF-8 (2-Methylimidazole zinc salt) is a pyroptosis inducer that activates the caspase-1/gasdermin D-dependent pyroptosis pathway. ZIF-8 induces pyroptotic cell death accompanied by necrosis and immunogenic cell death. ZIF-8 initiates in situ immunity, activates anti-tumor immunity, and reprograms the immunosuppressive tumor microenvironment to inhibit tumor growth. ZIF-8 acts as a pH-responsive and stimulus-responsive drug release inducer. ZIF-8 is applicable to cancer-related research .
    ZIF-8
  • HY-W591424

    mPEG2000-SC; mPEG2000-Succinimidyl ester

    Biochemical Assay Reagents MMP Cancer
    m-PEG2000-NHS ester (mPEG2000-SC) is a reagent with both cell adhesion inhibition and peptide conjugation functions. The NHS ester group of m-PEG2000-NHS ester forms stable amide bonds with primary amine-containing molecules (e.g., the N-terminus of MMP-2-cleavable octapeptide) to generate mPEG-peptide intermediates for liposome surface modification. When m-PEG2000-NHS ester is immobilized on a cystamine-modified gold surface, it can construct an in vitro model for cell adhesion kinetic studies, and higher PEG density and thicker layers correlate with lower cell adhesion rates. m-PEG2000-NHS ester can synthesize MMP-2-responsive PEGylated lipid conjugates to achieve MMP-triggered dePEGylation in the tumor microenvironment. m-PEG2000-NHS ester can be used in studies related to colon cancer and other conditions .
    m-PEG2000-NHS ester
  • HY-163757

    PROTACs PD-1/PD-L1 Inflammation/Immunology Cancer
    PROTAC PD-L1 degrader-1 is a CRBN-based PD-L1-PROTAC degrader with a notable PD-L1 protein degradation capability. PROTAC PD-L1 degrader-1 shows potent PD-L1 degradation in 4T1 cells with a DC50 of 0.609 μM. PROTAC PD-L1 degrader-1 can be used for the study of breast cancer. (Blue: CRBN ligand (HY-150839), Black: linker; Pink: PD-L inhibitor (HY-19745)) .
    PROTAC PD-L1 degrader-1
  • HY-18976
    UF010
    2 Publications Verification

    JAK HDAC NF-κB Toll-like Receptor (TLR) MyD88 Interleukin Related Neurological Disease Inflammation/Immunology Cancer
    UF010 is a selective inhibitor of class I HDAC. UF010 has cytotoxicity to cancer cells and reduces neuroinflammation in the hippocampus. UF010 can be used for the research of neurological diseases .
    UF010
  • HY-157913

    Pyruvate Kinase Apoptosis Cancer
    PKM2-IN-6 (compound 7d) is a potent and orally active PKM2 inhibitor with an IC50 value of 23 nM. PKM2-IN-6 induces apoptosis and cell cycle arrest at G2 phase. PKM2-IN-6 reduces the level of PKM1 and PKM2 at the mRNA level. PKM2-IN-6 shows anticancer activity and has the potential for the research of triple-negative breast cancer .
    PKM2-IN-6
  • HY-162312

    Deubiquitinase Apoptosis 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 .
    LLK203
  • HY-114169
    WRG-28
    2 Publications Verification

    Discoidin Domain Receptor Inflammation/Immunology Cancer
    WRG-28 is a selective, extracellularly acting DDR2 allosteric inhibitor, with an IC50 of 230 nM. WRG-28 inhibits tumor invasion, migration and tumor-supporting effects of cancer-associated fibroblasts (CAFs). WRG-28 inhibits metastatic breast tumor cell colonization in the lungs. WRG-28 also shows good activity of relieving rheumatoid arthritis in CAIA model of mice .
    WRG-28
  • HY-N0757
    8-​O-​Acetylharpagide
    1 Publications Verification

    Akt Bcl-2 Family Apoptosis Adrenergic Receptor Cardiovascular Disease Inflammation/Immunology Cancer
    8-O-Acetylharpagide is an orally active iridoid glycoside compound. 8-O-Acetylharpagide exhibits anti-aging activity at low doses and anticancer activity at high doses. 8-O-Acetylharpagide induces late-stage apoptosis and necrosis-like death in cancer cells, and downregulates anti-apoptotic proteins such as Akt, p-Akt and Bcl-2. 8-O-Acetylharpagide is mainly metabolized in rats via demethylation, hydrolysis and glucuronidation, and its active metabolites downregulate the AKT/NF-κB/MMP9 signaling axis. 8-O-Acetylharpagide exerts vasoconstrictive effects by activating vascular α-adrenoceptor .
    8-​O-​Acetylharpagide
  • HY-115997

    PROTACs HSP Cancer
    PROTAC HSP90 degrader BP3 is a potent and selective degradation of HSP90 in a CRBN-dependent fashion. PROTAC HSP90 degrader BP3 has a certain degradation effect on HSP90 protein in MCF-7 cells (DC50=0.99 μM). PROTAC HSP90 degrader BP3 inhibits the growth of breast cancer cell . PROTAC HSP90 degrader BP3 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    PROTAC HSP90 degrader BP3
  • HY-175035

    Hexokinase Inflammation/Immunology Cancer
    HK-2-IN-1 is a Hexokinase 2 (HK-2) inhibitor. HK-2-IN-1 exhibits a non-activating effect on human recombinant HK-2 enzyme. HK-2-IN-1 has anti-tumor activity, affecting immune cells in the tumor microenvironment. HK-2-IN-1 has immunomodulatory effects and is potentially useful in the study of cancers such as colon cancer, liver cancer, and breast cancer .
    HK-2-IN-1
  • HY-N2374
    Eupatorin
    2 Publications Verification

    Apoptosis NF-κB MMP Adrenergic Receptor Inflammation/Immunology Cancer
    Eupatorin is an orally active flavonoid with antiproliferative and vasodilatory properties. Eupatorin downregulates the expression levels of NF-κB, MMP9, IL-1β and TNF-α. Eupatorin induces apoptosis, G2/M phase cell cycle arrest, and reactive oxygen species (ROS) production. Eupatorin modulates the activities of muscarinic receptors and β-adrenergic receptors; inhibits sarcoplasmic reticulum calcium release and calcium channels; and activates the NO/sGC/cGMP pathway, indomethacin-sensitive pathway, and potassium channel pathway. Eupatorin exerts cytotoxic effects on cancer cell lines, and is metabolized by CYP1A1 and CYP1 family enzymes to form metabolites with antiproliferative activity. Eupatorin can be used in research related to breast cancer, hypertension, and leukemia .
    Eupatorin
  • HY-144088
    ZYF0033
    2 Publications Verification

    HPK1-IN-22

    MAP4K 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 .
    ZYF0033
  • HY-158045

    PROTACs PARP Cancer
    PROTAC PARP1 degrader-1 is a PARP1 PROTAC degrader with a DC50 value of 252.5 nM. PROTAC PARP1 degrader-1, combined with Daunorubicin (HY-13062A), induces the accumulation of cytoplasmic DNA fragments, activates the cGAS/STING innate immune pathway, and remodels the tumor microenvironment. PROTAC PARP1 degrader-1 can be used in research related to breast cancer .
    PROTAC PARP1 degrader-1
  • HY-156096

    HDAC Histone Methyltransferase Caspase Apoptosis DNA/RNA Synthesis Cancer
    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 .
    HDAC3-IN-2
  • HY-N7700

    G2013

    MMP COX VEGFR Toll-like Receptor (TLR) NF-κB NO Synthase Inflammation/Immunology Cancer
    Guluronic acid (G2013) is an orally active oxidative stress regulator and anti-inflammatory agent that exerts pharmacological effects by down-regulating various pro-inflammatory and oxidative stress-related genes (such as TLR4, NF-κB, iNOS, etc.) and inhibiting the activities of COX-2, MMPs and VEGF. Low-dose Guluronic acid up-regulates the expression of immunoregulatory genes SHIP1 and SOCS1, thereby effectively inhibiting cancer-related inflammation, tumor angiogenesis, cell adhesion and metastasis, while reducing the accumulation of immunosuppressive cells. Guluronic acid significantly prolongs the survival time of tumor-bearing hosts within a concentration range without direct cytotoxicity, demonstrating favorable safety. Guluronic acid has involved in the research of multiple sclerosis, ankylosing spondylitis, breast cancer and other inflammatory diseases .
    Guluronic acid
  • HY-P990299

    Phosphatase Inflammation/Immunology Cancer
    Anti-Mouse B220 Antibody (RA3.3A1/6.1) is a rat-derived IgM type antibody inhibitor, targeting to mouse B220. Anti-Mouse B220 Antibody (RA3.3A1/6.1) can deplete B cells. Anti-Mouse B220 Antibody (RA3.3A1/6.1) can be used for the researches of cancer and immunology, such as 4T1 and B16 tumor .
    Anti-Mouse B220 Antibody (RA3.3A1/6.1)
  • HY-158189

    Photosensitizer Reactive Oxygen Species (ROS) Apoptosis Neurological Disease Cancer
    TPP-Ce6 is a mitochondria-targeted photosensitizer formed by the ester bond conjugation of chlorophyll e6 (Ce6) with triphenylphosphine (TPP). Under light irradiation or ultrasound exposure, TPP-Ce6 generates reactive oxygen species, induces cell apoptosis, and triggers immunogenic cell death. TPP-Ce6 can serve as a component of carrier-free co-delivery systems, undergo enzyme-induced self-assembly within tumors, and modulate tumor hypoxia. TPP-Ce6 is applicable to research on breast cancer and glioblastoma .
    TPP-Ce6
  • HY-W016582

    Biochemical Assay Reagents Cancer
    Methyl 2-(bromomethyl)acrylate is a biochemical Assay Reagents .Methyl 2-(bromomethyl)acrylate inhibits cell proliferation in breast cancer and pancreatic cancer cells. Methyl 2-(bromomethyl)acrylate can be used for the research of breast cancer and pancreatic cancer .
    Methyl 2-(bromomethyl)acrylate
  • HY-15266

    PRI 2202; Impurity D of Calcipotriol

    Drug Derivative VD/VDR Cancer
    24R-Calcipotriol (PRI 2202; Impurity D of Calcipotriol), an isomer of Calcipotriol (HY-10001), is a synthetic vitamin D analog. 24R-Calcipotriol exhibits synergistic antiproliferative effects with low-dose cytostatics in in vitro. 24R-Calcipotriol produces tumor growth inhibition when combined with Cyclophosphamide (HY-17420) and Cisplatin (HY-17394) in mice models. 24R-Calcipotriol can increase serum calcium levels and reduce blood leukocyte counts . 24R-Calcipotriol can be used for the research of mammary cancer and Lewis lung cancer .
    24R-Calcipotriol
  • HY-178914

    Cuproptosis Reactive Oxygen Species (ROS) Mitochondrial Metabolism Cancer
    Copper ionophore I is an efficient copper ion carrier. Copper ionophore I can regulate various intracellular copper levels to induce cuproptosis, such as 4T1 (IC50 = 0.45 μM) and MDA-MB-231(IC50 = 1.21 μM) cells. Copper ionophore I can induce an increase in ROS and cause mitochondrial dysfunction. Copper ionophore I can reduce the expression of FDX1, DLAT, and LIAS proteins. Copper ionophore I can activate immune related pathways and promote T cell infiltration. Copper ionophore I can be used for cancer research .
    Copper ionophore I
  • HY-175478

    Phosphodiesterase (PDE) STING Inflammation/Immunology Cancer
    Enpp-1-IN-27 is a selective ENPP1 inhibitor with an IC50 of 14.68 nM, exhibiting approximately 410-fold selectivity against ENPP2 and 10-fold selectivity against ENPP3. Enpp-1-IN-27 stabilizes cGAMP levels and activates the STING pathway, promoting cytokine release and enhancing innate immune responses. Enpp-1-IN-27 induces ISRE activation and amplified cGAMP-mediated immune responses and shows the desired antitumor efficacy in the 4T1 and CT26 syngeneic mouse models. Enpp-1-IN-27 can used for the studies of breast cancer and colon cancer .
    Enpp-1-IN-27
  • HY-174458

    PROTACs MDM-2/p53 IKZF Family Casein Kinase Cancer
    MD-4251 is an orally active MDM2 PROTAC degrader. MD-4251 potently degrades MDM2 in RS4;11 cells (DC50: 0.2 nM) and actives p53. MD-4251 shows strong antiproliferative activity against acute leukemia cells (wild-type p53) with minimal efficacy in mutant type. MD-4251 induces complete tumor regression in RS4;11 xenograft mice model . Pink: MDM2 ligand (HY-130684); Blue: CRBN ligase ligand (HY-W883326); Black: linker
    MD-4251
  • HY-175846

    Drug Derivative Apoptosis 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 .
    TQFL13
  • HY-175874

    Microtubule/Tubulin PI3K Akt Apoptosis Cancer
    Tubulin-IN-55 is a tubulin inhibitor. Tubulin-IN-55 disrupts the PI3K/Akt signaling pathway in cancer cells. Tubulin-IN-55 exerts broad-spectrum anti-proliferative activity against multiple tumor cells (HeLa, HCT116, 4T1, A549, H1299, MDA-MB231). Tubulin-IN-55 induces G2/M phase arrest and apoptosis, and inhibits tumor cell migration/invasion in cancer cells. Tubulin-IN-55 demonstrates potent antitumor efficacy in orthotopic autologous transplantation mice. Tubulin-IN-55 can be used for the study of cancer .
    Tubulin-IN-55
  • HY-163709

    PROTACs FAK Cancer
    PROTAC FAK degrader 2 (Compound F2) is a PROTAC degrader for focal adhesion kinase (FAK), with DC50 of 27.72 and 60.1 nM, for total FAK and phosphorylated p-FAK. PROTAC FAK degrader 2 inhibits cell viability of cancer cells 4T1, MDA-MB-231, MDA-MB-468 and MDA-MB-435, with IC50s of 0.73-5.84 μM. PROTAC FAK degrader 2 reverses the multidrug resistance (MDR) through inhibition of AKT and ERK signaling pathway. PROTAC FAK degrader 2 exhibits antitumor efficacy in HCT/8 xenograft mouse model. (Pink: ligand for target protein Ifebemtinib (HY-122844); Black: linker (HY-Y0681); Blue: ligand for E3 ligase Thalidomide (HY-14658))
    PROTAC FAK degrader 2
  • HY-169392

    PD-1/PD-L1 Cancer
    D5B is a potent and selective PD-L1 inhibitor. D5B has been modified by DBCO. The EC50 of D5B degrading PD-L1 in 4T1 and B16-F10 tumor cells are 5.4 μM and 6.2 μM, respectively. D5B can block PD-L1/PD-1 interaction and has anti-tumor activity .
    D5B
  • HY-170453

    Epigenetic Reader Domain 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 .
    iHAC
  • HY-174811

    PROTACs Epigenetic Reader Domain PD-1/PD-L1 Inflammation/Immunology Cancer
    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 . Pink: BRD4 ligand (HY-174812); Blue: CRBN ligase ligand (HY-10984); Black: linker
    PROTAC BRD4 Degrader-33
  • HY-124439

    Antibiotic Bacterial SARS-CoV Infection Cancer
    Setomimycin is a potent antibiotic. Setomimycin inhibits the SARS-CoV-2 Mpro enzyme with an IC50 value of 12.02 µM. Setomimycin shows anti-inflammatory and antioxidant properties. Setomimycin shows antiproliferative and antitumor activity .
    Setomimycin
  • HY-174403

    Bcl-2 Family c-Myc Apoptosis Caspase 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.
    c-MYC/BCL2 ligand 1 iodide
  • HY-175857

    HDAC Apoptosis 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 .
    HDAC-IN-92
  • HY-175227

    STAT NF-κB Apoptosis Caspase Bcl-2 Family Cancer
    STAT3/NF-κB-IN-1 is a potentSTAT3 and NF-κB inhibitor with IC50s of 5.86 (STAT3) and 4.22 μM (NF-κB) in 4T1 cells. STAT3/NF-κB-IN-1 is able to induce apoptosis via its upregulation on key apoptotic regulators; caspases-3/9, Bax and downregulation of Bcl-2. STAT3/NF-κB-IN-1 exerts considerable anticancer activity against breast cancer cell lines and reduces tumor volume in vivo. STAT3/NF-κB-IN-1 can be used for the study of breast cancer .
    STAT3/NF-κB-IN-1
  • HY-159771

    FAP 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.
    FAP6-19
  • HY-156296

    CDK Apoptosis 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 .
    CDK9-Cyclin T1 PPI-IN-1
  • HY-172934

    Toll-like Receptor (TLR) NO Synthase PROTACs Inflammation/Immunology Cancer
    FGT-4 is a folate receptor β (FR-β) targeting chimeric molecule. FGT-4 is a TLR7 agonist. FGT-4 facilitates the secretion of iNOS and proinflammatory cytokine IL-6 associated with M1 macrophages and enhances the proliferation of cytotoxic CD8 + T cells. FGT-4 has anti-tumor activity in the 4T1 breast cancer mouse model. FGT-4 can be used for the study of cancer immunity. (Pink: target protein TLR7/8 agonist 1 ligand (HY-103698); black: linker (HY-172936); blue: FR-β ligand (HY-172935)) .
    FGT-4
  • HY-172892

    PI3K Reactive Oxygen Species (ROS) Cancer
    PI3K-IN-59 (Compound 3d) is a PI3K inhibitor (IC50: 17.44 μM). PI3K-IN-59 has significant antiproliferative activity and exhibits potent inhibitory effects on breast cancer 4T1 cells (IC50: 3.70 μM) and colon cancer CT26 cells (IC50: 1.98 μM) as well as human breast cancer cells (IC50: 19.72 μM). PI3K-IN-59 exerts a dual anti-tumor mechanism by inhibiting PI3Kα enzymatic activity and triggering the Fenton reaction to generate hydroxyl radicals (•OH). PI3K-IN-59 shows promising anti-4T1 tumor effects and is suitable for synergistic targeting studies in breast and colon cancers .
    PI3K-IN-59
  • HY-175981

    Drug Derivative Cancer
    Paclitaxel-bromothiophene is a semisynthetic taxane analogue of Paclitaxel (HY-B0015). Paclitaxel-bromothiophene exhibits potent antiproliferative activity against 4-T1 breast cancer cells, with an IC50 value of 15.18 nM. Paclitaxel-bromothiophene shows high binding affinity to C5aR1 (Kd = 19.4 μM). Paclitaxel-bromothiophene demonstrates excellent anti-tumor efficacy in 4-T1 breast cancer-bearing mice. Paclitaxel-bromothiophene can be used for the study of breast cancer .
    Paclitaxel-bromothiophene
  • HY-155745

    Apoptosis Cancer
    Antitumor agent-115 (SS-12) is an effective anti-tumor compound with an IC50 value of 0.34 μM-24.14 μM for cell line 4T1. Antitumor agent-115 can block the cell cycle of mouse breast cancer cell line 4T1, reduce the mitochondrial membrane potential, and induce apoptosis, and the IC50 value is 8-25 μmol/L for cell viability. Antitumor agent-115 can be used for breast cancer research .
    Antitumor agent-115
  • HY-175820

    VEGFR ERK Apoptosis EGFR Cancer
    AGW-11 is a potent dual inhibitor of EGFR (IC50 = 556 nM) and VEGFR2 (IC50 = 289.7 nM). AGW-11 induces apoptosis and suppresses phosphorylation of EGFR, VEGFR2, and ERK1/2 in HUVECs. AGW-11 effectively inhibits cancer cell growth, reduces HUVEC proliferation, tube formation, and invasion, thereby blocking angiogenesis. AGW-11 significantly suppresses tumor growth and decreases lung metastasis in a 4T1 xenograft mouse model. AGW-11 can be used for the study of breast cancer .
    AGW-11
  • HY-162766

    Apoptosis Cancer
    Antitumor agent-184 (compound 12aa) induces cell apoptosis, with the IC50s of 2.35 μM, 7.32 μM and 10.31 μM in B16-F10 cells, 4T1 cells and CT26 cells, respectively .
    Antitumor agent-184
  • HY-173584

    Drug Derivative Cancer
    GSK484-Ph (compound 15d) is an analog of GSK484 (HY-100514) with potent anticancer effects. GSK484-Ph potently inhibits 4T1 cells and can be used for the study of breast cancer .
    GSK484-Ph
  • HY-173060

    ERK Apoptosis Autophagy Cancer
    ERK1/2 inhibitor 13 (Compound 21y) is the orally active inhibitor for ERK that inhibits ERK1 and ERK2 with IC50 of 91.71 nM and 97.87 nM. ERK1/2 inhibitor 13 inhibits the proliferation of MCF-7, 4T1, MDA-MB-468, and HCC1970 (IC50 of 0.67, 2.76, 2.15 and 1.68 μM), inhibits the cancer cell migration, induces apoptosis and autophagy in MCF-7. ERK1/2 inhibitor 13 exhibits antitumor and anti-metastatic effect in 4T1 xenograft mouse model .
    ERK1/2 inhibitor 13
  • HY-162958

    Apoptosis TrxR Cancer
    Photosensitizer-6 (Compound 4) is a gold (I) complex and exhibits inhibitory activity against TrxR. Photosensitizer-6 induces apoptosis in 4T1 cell, targets and eradicates tumors through chemo-phototherapy and immunogenic cell death under light exposure. Photosensitizer-6 can be used for tumor imaging .
    Photosensitizer-6
  • HY-170989

    HyT Epigenetic Reader Domain Autophagy Cancer
    BRD4 degrader-5 (Compound 23) is a hydrophobic tag (HyTag)-based protein degrader for BRD4 (DC50 = 24.7 μM) through ER stress and autophagy-lysosome pathway. BRD4 degrader-5 inhibits the proliferation of cancer cell 4T1 with an IC50 of 20.6 μM .
    BRD4 degrader-5
  • HY-D2620

    Photosensitizer Reactive Oxygen Species (ROS) Ferroptosis Cancer
    CAR-2 is a BODIPY-based photosensitizer that induces ferroptosis in photodynamic therapy (PDT) by targeting the endoplasmic reticulum (ER) and lipid droplets (LDs). CAR-2 exhibits phototoxicity in breast cancer cells with IC50 of 0.01-0.02 μM. CAR-2 exhibits antitumor efficacy in 4T1 xenograft mouse models .
    CAR-2
  • HY-161338

    Microtubule/Tubulin Apoptosis Cancer
    Tubulin polymerization-IN-61 (Compound 9a) is a tubulin polymerization inhibitor. Tubulin polymerization-IN-61 destroys the microtubule skeleton, blocks the cell cycle in G2/M phase, induces Apoptosis, and inhibits cancer cell migration and colony formation. Tubulin polymerization-IN-61 shows antitumor activity in vivo against 4T1 xenograft model .
    Tubulin polymerization-IN-61
  • HY-175201

    LPL Receptor STAT 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 .
    pro-FTY
  • HY-175815

    Apoptosis Bcl-2 Family Caspase MMP Cadherin Cancer
    Apoptosis inducer 44 is an apoptosis inducer. Apoptosis inducer 44 triggers apoptosis in MDA-MB-231 cells by increasing the levels of Bax and Cyt C, reducing Bcl-2, and initiating caspase-3 cleavage. Apoptosis inducer 44 suppresses the invasion and migration of MDA-MB-231 cells by down-regulating MMP-2 and MMP-9 expression and up-regulating E-cadherin protein levels. Apoptosis inducer 44 can be used for the study of breast cancer .
    Apoptosis inducer 44
  • HY-156109

    PDHK Mitochondrial Metabolism 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 .
    PDK-IN-2

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