- 연구분야
- 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 관련 제품 (45723)
관련 제품 (45723)
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PRMT5-IN-48
0 ImagesCat. No.: HY-170792CAS No.: 2640287-77-8PRMT5-IN-48 (compound D3) is an orally effective PRMT5 inhibitor (IC50=20.7 nM) with anticancer activity. PRMT5-IN-48 can inhibit the growth of various cancer cells, induce apoptosis (apoptosis), and arrest the cell cycle at the G0/G1 phase. PRMT5-IN-48 can be used for non-Hodgkin lymphoma (NHL) research.
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mmu-let-7k inhibitor
0 ImagesCat. No.: HY-RI02561mmu-let-7k 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-466j inhibitor
0 ImagesCat. No.: HY-RI03183mmu-miR-466j 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-7034-5p inhibitor
0 ImagesCat. No.: HY-RI03808mmu-miR-7034-5p 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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rno-miR-3589 inhibitor
0 ImagesCat. No.: HY-RI04429rno-miR-3589 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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N-(Biotin-PEG4)-N-bis(PEG4-Boc)
0 ImagesCat. No.: HY-141288CAS No.: 2112730-79-5 -
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Microtubule inhibitor 2
0 ImagesCat. No.: HY-145828CAS No.: 3031328-45-4Microtubule inhibitor 2 is a potent and selective, orally active microtubule inhibitor. Microtubule inhibitor 2 triggers cell death through ferroptosis . Microtubule inhibitor 2 shows antitumor activity.
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NNMT-IN-6
0 ImagesCat. No.: HY-138993CAS No.: 2368247-39-4NNMT-IN-6 is a selective nicotinamide N-methyltransferase (NNMT) inhibitor with an IC50 of 1.41 μM and a Kd of 5.55 μM. NNMT-IN-6 hydrochloride exhibits selectivity over PRMT1 and NSD2. NNMT-IN-6 inhibits cancer cell proliferation and reduces cellular N-methylnicotinamide (MNA) production. NNMT-IN-6 can be used for the research of oral cancer.
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hsa-miR-6765-3p inhibitor
0 ImagesCat. No.: HY-RI02089hsa-miR-6765-3p 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-186-3p inhibitor
0 ImagesCat. No.: HY-RI02710mmu-miR-186-3p 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-598-3p antagomir
0 ImagesCat. No.: HY-RI03331Ammu-miR-598-3p 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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mmu-miR-7210-3p inhibitor
0 ImagesCat. No.: HY-RI03957mmu-miR-7210-3p 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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rno-miR-764-5p antagomir
0 ImagesCat. No.: HY-RI04577Arno-miR-764-5p 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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O-Desmethyl Midostaurin-d5
0 ImagesCat. No.: HY-129491SCAS No.: 2699608-28-9Synonyms: CGP62221-d5; O-Desmethyl PKC412-d5O-Desmethyl Midostaurin-d5 is a deuterium labeled O-Desmethyl PKC412. O-Desmethyl Midostaurin (CGP62221; O-Desmethyl PKC412) is the active metabolite of Midostaurin (HY-10230) via cytochrome P450 liver enzyme metabolism.
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KWWCRW
0 ImagesCat. No.: HY-P4161CAS No.: 292148-25-5KWWCRW is a Holliday linker inhibitory peptide with anticancer activity. KWWCRW inhibits homologous recombination repair (HDR) during DNA repair by binding to the reactive Holliday linker intermediate and preventing its degradation, and inhibits site-specific recombination by bacteriophage in vitro.
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Cetuximab sarotalocan
0 ImagesCat. No.: HY-P99500CAS No.: 2166339-33-7Synonyms: RM-1929; Cetuximab-IRDye-700DXCetuximab sarotalocan (RM-1929) is an IRdye700DX (near-infrared photosensitizing dye) conjugate of Cetuximab (anti-EGFR monoclonal antibody). Cetuximab sarotalocan can be used for head and neck cancers research.
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hsa-miR-23c inhibitor
0 ImagesCat. No.: HY-RI00483hsa-miR-23c 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-4495 inhibitor
0 ImagesCat. No.: HY-RI01104hsa-miR-4495 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-623 antagomir
0 ImagesCat. No.: HY-RI01892Ahsa-miR-623 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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- LUF8100
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