1331 Results for "

malignancy

" in MedChemExpress (MCE) Product Catalog:
Products (1331)

1331 Results for "malignancy" in MCE Product Catalog:

Cat. No.: HY-178241
CAS No.: 2487415-28-9
Research Areas:  

Cancer

3tBu-Crown TFA is a chelator. 3tBu-Crown TFA chelates radiometals and couples to biological targeting moieties to facilitate targeted delivery of chelated radiometals.3tBu-Crown TFA can be used for the research of cancer .
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Cat. No.: HY-187360
CAS No.: 3087291-81-1
Research Areas:  

Others

MC-Val-Ala-PAB-NH-Ph-CO-piperidin-4-ol-C4-NH-cyanoguanidine is a cathepsin B-cleavable linker-payload, with Nampt-IN-22 (HY-187336) as its toxin moiety. MC-Val-Ala-PAB-NH-Ph-CO-piperidin-4-ol-C4-NH-cyanoguanidine can be used for the synthesis of ADC .
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Cat. No.: HY-114243
CAS No.: 1382469-39-7
Purity:  98.28%
DpC is a selective, orally active iron chelator with anticancer activity. DpC acts on signaling pathway-related targets such as JNK, NF-κB, and its activity is competitively inhibited by another iron chelator Dp44mT (HY-18973). By chelating intracellular iron and copper ions in tumor cells to form redox-active complexes, DpC induces oxidative stress, activates the JNK, NF-κB pathways and downregulates IκBα, upregulates the expressions of neuroglobin and cytoglobin, activates caspase 3/9 to induce tumor cell apoptosis. It also overcomes P-glycoprotein-mediated multidrug resistance through a lysosome-targeting mechanism, and exhibits broad-spectrum synergistic effects when combined with various chemotherapeutic agents. DpC inhibits tumor metastasis and increases TNF-α levels in the tumor microenvironment to enhance endogenous immune responses. DpC is applicable to the research of various malignancies including neuroblastoma, pancreatic cancer, prostate cancer, lung cancer, and breast cancer .
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Cat. No.: HY-114243A
CAS No.: 1382469-40-0
DpC hydrochloride is a selective, orally active iron chelator with anticancer activity. DpC hydrochloride acts on signaling pathway-related targets such as JNK, NF-κB, and its activity is competitively inhibited by another iron chelator Dp44mT (HY-18973). By chelating intracellular iron and copper ions in tumor cells to form redox-active complexes, DpC hydrochloride induces oxidative stress, activates the JNK, NF-κB pathways and downregulates IκBα, upregulates the expressions of neuroglobin and cytoglobin, activates caspase 3/9 to induce tumor cell apoptosis. It also overcomes P-glycoprotein-mediated multidrug resistance through a lysosome-targeting mechanism, and exhibits broad-spectrum synergistic effects when combined with various chemotherapeutic agents. DpC hydrochloride inhibits tumor metastasis and increases TNF-α levels in the tumor microenvironment to enhance endogenous immune responses. DpC hydrochloride is applicable to the research of various malignancies including neuroblastoma, pancreatic cancer, prostate cancer, lung cancer, and breast cancer .
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Cat. No.: HY-155232
CAS No.: 2766437-35-6
Purity:  99.02%
Target:  

PI3K Apoptosis

Research Areas:  

Cancer

PI3Kδ-IN-16 is a potent and selective PI3Kδ inhibitor with an IC50 value of 0.9 nM. PI3Kδ-IN-16 has a strong anti-proliferative effect on SU-DHL-6 cells, causing cell cycle arrest and inducing apoptosis. PI3Kδ-IN-16 tightly bins to PI3Kδ protein with a planar-shaped conformation. The kinase activity of PI3Kδ-IN-16 which is ~378-fold over PI3Kα, 412-fold over PI3Kβ, and 10-fold over PI3Kγ. PI3Kδ-IN-16 can be used for the study of hematologic malignancies .
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Cat. No.: HY-P990954
CAS No.: 2850355-94-9
Synonyms: IMM-0306
Target:  

CD47 CD20

Research Areas:  

Cancer

Amulirafusp alfa (IMM-0306) is a fusion protein of CD20 monoclonal antibody (mAb) with the CD47 binding domain of SIRPα, with human CD20 Kd 2.45 nM and human CD47 Kd 4.91 nM. Amulirafusp alfa binds to CD20 and CD47 on B cells, engages FcɣR, blocks CD47-SIRPα interaction, activates macrophages, NK cells, and complement cascade, mediates phagocytosis and cytotoxicity, inhibits apoptosis of Jurkat-CSR cells, reverses IL-16 tumor-promoting effects, and binds human/cynomolgus CD47 but not mouse/rat CD47. Amulirafusp alfa can be used for the research of hematological malignancies, relapsed or refractory CD20-positive B-cell non-Hodgkin’s lymphoma, relapsed or refractory B-cell non-Hodgkin lymphoma, and activated B-cell-like diffuse large B-cell lymphoma .
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Cat. No.: HY-P99911
CAS No.: 1635395-27-5
Synonyms: MEDI-6383
Efizonerimod alfa (MEDI-6383) is a recombinant human OX40L IgG4P Fc fusion protein that assembles into a hexameric structure and exerts potent agonist activity upon binding to OX40. The activity of Efizonerimod alfa is enhanced by Fcγ receptor-mediated aggregation. Efizonerimod alfa binds to OX40 on the surface of activated T cells, induces NF-κB promoter activity in OX40-expressing T cells, and triggers the production of Th1-type cytokines, T cell proliferation, and resistance to regulatory T cell (Treg)-mediated suppression. Efizonerimod alfa enhances the cytolytic activity of tumor-reactive T cells and slows tumor growth in immunodeficient mice. Efizonerimod alfa induces the proliferation of CD4, CD8, and B cells in the peripheral blood of healthy non-human primates. Efizonerimod alfa can be used in the research of advanced solid malignancies and melanoma .
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Cat. No.: HY-W018324S
Synonyms: 5hmC-13C,d2
5-Hydroxymethylcytosine- 13C,d2 is the 13C and deuterium labeled 5-Hydroxymethylcytosine (HY-W018324). 5-Hydroxymethylcytosine (5hmC) is an oxidized forms of 5-methylcytosine (5mC) in mammalian DNA. 5-Hydroxymethylcytosine is produced from 5mC in an enzymatic pathway involving three 5mC oxidases, Ten-eleven translocation (TET)1, TET2, and TET3. The conversion of 5mC into 5hmC can be the first step in a pathway leading towards DNA demethylation. 5-Hydroxymethylcytosine is associated with gene transcription and frequently used as a mark to investigate dynamic DNA methylation conversion during mammalian development. 5-Hydroxymethylcytosine can be used for the study of non-small cell lung cancer (NSCLC), neurodegenerative diseases (Alzheimer’s, Parkinson’s) and hematological malignancies (acute myeloid leukemia, myelodysplastic syndromes) .
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Cat. No.: HY-D3320
APC-AF700 is a tandem fluorochrome conjugate for flow cytometry. APC-AF700 can be incorporated into 10-color and 12-color flow cytometry antibody panels (Ex/Em = 633/715 nm) .
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Cat. No.: HY-123911
CAS No.: 1957234-83-1
Purity:  95.83%
Research Areas:  

Cancer

dBET23 is a highly potent and selective BRD4 PROTAC degrader, with a DC50/5h of approximately 50 nM against the BRD4BD1 protein. dBET23 induces the formation of a ternary complex consisting of CRBN, itself, and BRD4BD1, thereby mediating the degradation of BRD4BD1. dBET23 causes downregulation of BRD4 expression in cancer cells. dBET23 can be used for research on malignant tumors .
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Cat. No.: HY-181420
CAS No.: 3029184-80-0
Research Areas:  

Cancer

(S,R,S)-BBO-11818 is an orally active, highly selective (relative to NRAS and HRAS), non-covalent pan-KRAS inhibitor (IC50=28-120 nM). (S,R,S)-BBO-11818 specifically binds to the Switch-II/Helix 3 pocket, disrupts the KRAS:RAF1 interaction by inducing conformational changes, and blocks the MAPK signaling pathway. (S,R,S)-BBO-11818 exhibits significant anti-tumor activity, which not only inhibits cell proliferation and induces apoptosis, but also drives tumor regression in xenograft models. (S,R,S)-BBO-11818 produces synergistic effects when combined with Cetuximab (HY-P9905), anti-PD-1 antibody or PI3Kα inhibitor. (S,R,S)-BBO-11818 is used in the research of KRAS mutation-related malignancies such as pancreatic cancer, non-small cell lung cancer and colorectal cancer .
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Cat. No.: HY-10087R
CAS No.: 923564-51-6
Synonyms: ABT-263 (Standard)
Navitoclax (Standard) (ABT-263 (Standard)) is the analytical standard of Navitoclax (HY-10087). This product is intended for research and analytical applications. Navitoclax (ABT-263 ) is an orally active BH3 mimetic and an inhibitor of Bcl-2, Bcl-xL, and Bcl-w, with a Ki value of <1 nM for each target. Navitoclax triggers endogenous Apoptosis and downregulates the expression of Survivin and TGFβ2. Navitoclax alleviates fibrosis and induces thrombocytopenia. Navitoclax exhibits anticancer activity against a variety of tumors and enhances the efficacy of chemotherapy and radiotherapy. Navitoclax can be used in the research of acute lymphoblastic leukemia, ovarian cancer, and fibrotic diseases .
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Cat. No.: HY-183354
Research Areas:  

Cancer

HLC40 is a MLL1 histone methyltransferase inhibitor with an IC50 of 0.82 μM by binding to WDR5. HLC40 inhibits proliferation of cancer cells, induces apoptosis and upregulates cleaved caspase-3 levels. HLC40 exhibits antitumor efficacy in a murine AML xenograft model .
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Cat. No.: HY-103019R
CAS No.: 1610408-97-3
Synonyms: (+)-BAY-1251152 (Standard); (+)-VIP152 (Standard); (S)-Enitociclib (Standard)
Enitociclib (Standard) is the analytical standard of Enitociclib (HY-103019). This product is intended for research and analytical applications. Enitociclib ((+)-BAY-1251152; (+)-VIP152) is a selective CDK9 inhibitor (IC50=3 nM) that inhibits transcriptional elongation by blocking Ser2/Ser5 phosphorylation of RNA polymerase II. Enitociclib specifically depletes key short-lived proteins such as c-MYC, MCL-1 and induces tumor cell apoptosis. Enitociclib also interferes with the production of enhancer RNAs (eRNA) and enhancer-promoter interactions, and downregulates oncogene expression at the epigenetic level. Enitociclib exerts synergistic effects with agents including Bortezomib (HY-10227), Lenalidomide (HY-A0003), Pomalidomide (HY-10984), Venetoclax (HY-15531) and Paclitaxel (HY-B0015), and even reverses paclitaxel resistance. Enitociclib serves as a vital research tool for various malignancies such as double-hit diffuse large B-cell lymphoma, multiple myeloma and pancreatic ductal adenocarcinoma .
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Cat. No.: HY-L101
3,003 compounds

Liver cancer is one of the leading malignancies which occupies the second position in cancer deaths worldwide, becoming serious threat to human health. Hepatocellular carcinoma (HCC), also known as hepatoma is the most common type accounting for approximately 90% of all liver cancers.

Current evidence indicates that during hepatocarcinogenesis, two main pathogenic mechanisms prevail: (1) cirrhosis associated with hepatic regeneration after tissue damage caused by hepatitis infection, toxins or metabolic influences, and (2) mutations occurring in single or multiple oncogenes or tumor suppressor genes. Both mechanisms have been linked with alterations in several important cellular signaling pathways. These include the RAF/MEK/ERK pathway, PI3K/AKT/mTOR pathway, WNT/b-catenin pathway, insulin-like growth factor pathway, c-MET/HGFR pathway , etc.

MCE offers a unique collection of 3,003 compounds with identified and potential anti-liver cancer activity. MCE anti-liver cancer compound library is a useful tool for anti-liver cancer drugs screening and other related research.

Cat. No.: HY-125585
CAS No.: 1345458-66-3
Target:  

Syk

Research Areas:  

Others

Syk-IN-2 (Page 78; 35) is a spleen tyrosine kinase (Syk) inhibitor .
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Cat. No.: HY-18719H
CAS No.: 1032008-71-1
Endoxifen Z-isomer methanesulfonate is an orally active selective PKCβ1 inhibitor with an IC50 of 360 nM against human PKCβ1. It also acts as an estrogen receptor modulator and antiestrogen. Endoxifen Z-isomer methanesulfonate binds to and blocks ERα, ERβ and PKCβ1, inhibits estrogen and PI3K/AKT/mTORC1 signaling pathways, suppresses the expression of genes associated with cell cycle, cell proliferation and extracellular matrix remodeling, and induces apoptosis, reactive oxygen species (ROS) production and hypoxic features. Endoxifen Z-isomer methanesulfonate inhibits tumor growth in breast tumor and glioblastoma models, reduces bone turnover and blood lipid levels, and does not require metabolism via CYP2D6. It can be used in research related to ER + breast cancer, invasive breast cancer, glioblastoma multiforme, type I bipolar disorder, desmoid tumor, gynecological malignancies, melanoma and hormone receptor-positive solid tumors .
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Cat. No.: HY-L034M
381 compounds

Research has shown that drugs targeting aging pathways demonstrate promising potential in models of age-related diseases such as Alzheimer's disease, cardiovascular diseases, metabolic syndrome, osteoarthritis, and various malignancies. This suggests that intervening in the biological processes of aging may enable synergistic prevention and treatment of multiple chronic diseases. Against the backdrop of the gradual elucidation of core aging mechanisms-including cellular senescence, telomere attrition, epigenetic dysregulation, and chronic inflammation anti-aging research has shifted from traditional phenotypic interventions toward targeting key pathways that regulate biological age.

The MCE Anti-Aging Compound Library Mini is precisely built upon this cutting-edge concept. It focuses on aging-related targets validated through genetic or functional studies, comprising 381 compounds designed to provide systematic research tools for aging biology and intervention strategy development. The library covers core mechanisms such as mTOR, SIRT, energy metabolism, clearance of senescent cells, optimization of mitochondrial function, and telomere maintenance. For each target, 1-5 compounds with clear activity and strong representativeness have been carefully selected, spanning the entire translational spectrum from preclinical tool molecules to clinically investigational drugs.

Cat. No.: HY-L204
582 compounds

Lactic acid metabolism is one of the key metabolic pathways within living organisms. It plays a crucial role not only in cellular energy conversion but is also closely related to a variety of physiological and pathological processes. The production and clearance of lactic acid are important indicators of cellular metabolic balance, and its abnormal regulation may lead to conditions such as lactic acidosis, muscle fatigue, and hereditary metabolic diseases. Moreover, lactic acid is closely related to the malignancy of tumors and is considered a biomarker for malignant tumors and poor prognosis. Lactic acid can serve as a metabolic substrate to support the metabolic needs of tumor cells under hypoxic conditions, and it can also cause acidification of the tumor microenvironment, suppress immune cell function to promote immune evasion, and induce drug resistance in tumor cells. Currently, targeting lactic acid-lactylation and its related metabolic pathways has become a new research avenue for cancer treatment. In-depth exploration of the molecular mechanisms of lactic acid metabolism can help in screening lead compounds that regulate the lactic acid metabolism.

MCE contains 582 small molecule compounds targeting enzymes involved in lactic acid metabolism. This library is of significant value for researching the role of lactate metabolism in the mechanisms of diseases.

Cat. No.: HY-P991180

Target:  

TNF Receptor

Research Areas:  

Cancer

TRX-518 is a humanized agylcosyl IgG1 anti-GITR mAb, , and is a GITR agonist. TRX-518 binds to the extracellular domain of human GITR, abrogates Treg-mediated suppression. TRX-518 increases effector T cell activation and pro-inflammatory cytokine production, reduces circulating and intratumor Treg frequencies. TRX-518 destabilizes Treg phenotype via Foxp3 downregulation and T-bet upregulation. TRX-518 can be used for the research of solid tumors[1][2][3].
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