- Research Areas
- Cancer
- Cancer Targeted Therapy
Cancer Targeted Therapy
Cancer targeted therapy is the foundation of precision medicine; it uses drugs or other substances to target specific genes and proteins that control cancer cells’ growth, division and spreading. Compared to traditional chemotherapy drugs, targeted-drugs can specifically act on cancer cells with high efficacy without damaging normal cells. Drugs used in cancer targeted therapy mainly includes small molecules and macromolecules (e.g., monoclonal antibodies), which can target cancer cells and constituents in the tumor microenvironment to activate the immune system. Anti-angiogenesis drugs, such as those targeting vascular endothelial growth factor (VEGF), epidermal growth factor receptor (EGFR), transforming growth factor (TGF)-α, TGF-β, Tumor necrosis factor (TNF)-α, and platelet-derived endothelial growth factor (PDGFR) inhibit the proliferation and metastasis of cancer cells. In recent years, the proportion of antibody drugs in cancer treatment has gradually become prominent. Antibody-drug conjugates (ADCs) are a new type of targeted drugs that are composed of monoclonal antibody, cytotoxic drug and linker. ADCs can deliver drugs to tumor cells and minimize the toxicity to normal tissues. Proteolysis-targeting chimera (PROTAC) is a useful technology for targeted protein degradation. PROTAC exploits the ubiquitin-proteasome system and forms a ternary complex with a hijacked E3 ubiquitin ligase and target protein, leading to polyubiquitination and degradation of the target protein.
Targeted therapy is a useful strategy in treatment of cancer either alone or in combination with standard chemotherapy. At present, targeted therapy has proved significant clinical success in the treatment of many types of cancer, including breast cancer, colorectal cancer, leukemia, ovarian cancer and lung cancer.
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Cancer Related Products (45723)
Related Products (45723)
- DNP-PEG12-NHS ester
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hsa-miR-3139 inhibitor
0 ImagesCat. No.: HY-RI00579hsa-miR-3139 inhibitors are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA inhibitors have full-length nucleotide 2'-methoxy modification. The miRNA inhibitors strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning.
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hsa-miR-4651 inhibitor
0 ImagesCat. No.: HY-RI01200hsa-miR-4651 inhibitors are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA inhibitors have full-length nucleotide 2'-methoxy modification. The miRNA inhibitors strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning.
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CBR1-IN-7
0 ImagesCat. No.: HY-157451CAS No.: 1119826-35-5 -
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hsa-miR-589-5p antagomir
0 ImagesCat. No.: HY-RI01820Ahsa-miR-589-5p antagomirs are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA antagomirs have 2 phosphorothioates at the 5' end, 4 phosphorothioates at the 3' end, 1 cholesterol group at the 3' end, and full-length nucleotide 2'-methoxy modification. The miRNA antagomirs strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning. Stability of miRNA antagomirs appears to be significantly higher than miRNA inhibitors, they exhibits enhanced cellular uptake, stability and regulatory activity in vivo.
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M4K2306
0 ImagesCat. No.: HY-161377CAS No.: 3034840-25-7M4K2306 is a selective inhibitor for activin receptor-like kinase-2 (ALK2) with an IC50 of 7 nM. M4K2306 is blood brain permeable with a brain to plasma ratio of 75.6.
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Topo I-IN-1
0 ImagesCat. No.: HY-145859CAS No.: 2763655-68-9 -
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Hispidulin (Standard)
0 ImagesHispidulin (Standard) is the analytical standard of Hispidulin. This product is intended for research and analytical applications. Hispidulin is a natural flavone with a broad spectrum of biological activities. Hispidulin is a Pim-1 inhibitor with an IC50 of 2.71 μM.
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Gly-Gly-DTyr-Gly-Gly
0 ImagesCat. No.: HY-P11805Gly-Gly-DTyr-Gly-Gly is a cleavable linker used in the synthesis of antibody-drug conjugates (ADCs).
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mmu-miR-222-5p inhibitor
0 ImagesCat. No.: HY-RI02847mmu-miR-222-5p inhibitors are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA inhibitors have full-length nucleotide 2'-methoxy modification. The miRNA inhibitors strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning.
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mmu-miR-669i inhibitor
0 ImagesCat. No.: HY-RI03472mmu-miR-669i inhibitors are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA inhibitors have full-length nucleotide 2'-methoxy modification. The miRNA inhibitors strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning.
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mmu-miR-7671-5p inhibitor
0 ImagesCat. No.: HY-RI04093mmu-miR-7671-5p inhibitors are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA inhibitors have full-length nucleotide 2'-methoxy modification. The miRNA inhibitors strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning.
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Emiltatug ledadotin
0 ImagesCat. No.: HY-177542CAS No.: 2855974-40-0Synonyms: Emi-Le; XMT-1660Emiltatug ledadotin (Emi-Le; XMT-1660) is a B7-H4-targeted antibody-drug conjugate (ADC). Emiltatug ledadotin consists of the tumor-specific anti-B7-H4 monoclonal antibody Emiltatug (HY-P990918) and the linker-payload system Ledadotin (HY-177541), with site-specific conjugation achieved via GlycoConnect click chemistry. Emiltatug ledadotin inhibits the growth of B7-H4-positive cancer cells. Emiltatug ledadotin can be used to study advanced solid tumors with B7-H4 overexpression, particularly breast cancer, ovarian cancer, and endometrial cancer.
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SBP-5147
0 ImagesCat. No.: HY-181815CAS No.: 1884222-37-0SBP-5147 is an orally active ULK1/ULK2 inhibitor, with an IC50 of 2 nM against ULK1 and an IC50 of 53 nM against ULK2. SBP-5147 inhibits the phosphorylation of Beclin-1 and Vps34, reduces autophagy flux, downregulates the expression of ATG13 and ATG101, upregulates the expression of MHC-I, induces caspase-dependent apoptosis, and decreases the viability of non-small cell lung cancer cells. SBP-5147 is applicable to research related to non-small cell lung cancer[1].
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KAT2A degrader-2
0 ImagesCat. No.: HY-187169KAT2A degrader-2 is a selective molecular glue degrader targeting KAT2A, with a DC50 of 22 nM in Kelly cells. KAT2A degrader-2 acts as a molecular glue to recruit KAT2A to CRBN, forming a ternary complex that drives the polyubiquitination and proteasome-dependent degradation of KAT2A. KAT2A degrader-2 reduces the acetylation level of histone H3 lysine 9 via the ubiquitin-like and proteasome-dependent pathway. KAT2A degrader-2 can be used for the research of acute myeloid leukemia.
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mmu-miR-1264-5p antagomir
0 ImagesCat. No.: HY-RI02649Ammu-miR-1264-5p antagomirs are chemically-modified oligonucleotides that hybridize with mature miRNAs. The miRNA antagomirs have 2 phosphorothioates at the 5' end, 4 phosphorothioates at the 3' end, 1 cholesterol group at the 3' end, and full-length nucleotide 2'-methoxy modification. The miRNA antagomirs strongly compete with mature miRNAs to prevent the complementary pairing of miRNAs and their target genes, thereby inhibiting miRNAs from functioning. Stability of miRNA antagomirs appears to be significantly higher than miRNA inhibitors, they exhibits enhanced cellular uptake, stability and regulatory activity in vivo.
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FLT3-IN-32 hydrochloride
0 ImagesCat. No.: HY-174437BCAS No.: 3047195-66-1FLT3-IN-32 hydrochloride is a potent and orally active FLT3 inhibitor with an IC50s of 0.29 nM, 0.77 nM and 2.07 nM against FLT3-ITD, FLT3-D835Y and FLT-N676K. FLT3-IN-32 hydrochloride reduces the phosphorylation of FLT3 and its downstream signaling molecules (STAT5, MAPK, AKT) to induce FLT3-mutated Ba/F3 cells apoptosis. FLT3-IN-32 hydrochloride shows significant anti-tumor efficacy in n the MV4-11 xenograft model. FLT3-IN-32 hydrochloride can be used for the study of acute myeloid leukemia (AML).
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BRM/BRG1 ATP-IN-7
0 ImagesCat. No.: HY-178488CAS No.: 2468048-19-1BRM/BRG1 ATP-IN-7 (Compound Cpd69) is a selective dual BRM (SMARCA2) and BRG1 (SMARCA4) inhibitor with IC50 values of 12 nM and 8 nM, respectively. BRM/BRG1 ATP-IN-7 is promising for research of BRM/BRG1-dependent cancers (e.g., non-small cell lung cancer, Ewing sarcoma) and virus-associated diseases (e.g., HPV infection).
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KR30031
0 ImagesCat. No.: HY-123384CAS No.: 205535-74-6KR30031, a Verapamil (HY-14275) analog, is an orally active P-glycoprotein (P-gp) inhibitor. KR30031 enhances the cytotoxicity of anticancer agents by inhibiting P-gp with fewer cardiovascular adverse effects. KR30031 can be used to study multidrug resistance (MDR) reversal in cancer.
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Hydroxy-PEG24-Boc
0 ImagesCat. No.: HY-130834CAS No.: 2490419-62-8 -
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