337 Results for "

ABL

" in MedChemExpress (MCE) Product Catalog:
Products (337)

337 Results for "ABL" in MCE Product Catalog:

Cat. No.: HY-12292G
CAS No.: 1129669-05-1
IM-12 GMP is IM-12 (HY-12292) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. IM-12 is an orally active anti-inflammatory agent that targets and inhibits the NF-κB and STAT3 signaling pathways. IM-12 activates the Wnt signaling pathway and promotes the nuclear translocation of β-catenin by inhibiting GSK3β, while also blocking the tyrosine kinase activity of p210BCR/ABL. IM-12 reduces the levels of IL-6, IL-17, NO, prostaglandin E2, iNOS and COX-2, and induces ER stress, Ca 2+ release, autophagy and apoptosis. IM-12 is heat-sensitive and does not induce autophagy in IM-resistant p210BCR/ABL T315I mutant cells. IM-12 is also a component of the 5iLA medium used for naive pluripotent stem cell research. IM-12 has been applied in studies related to carrageenan (HY-125474)-induced hind paw edema, TNBS-induced colitis, and acute and chronic myeloid leukemia .
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Cat. No.: HY-118084
CAS No.: 368836-72-0
Synonyms: Tyrene CR-4
LS-104 (Tyrene CR-4) is a non-ATP-competitive kinase inhibitor against JAK2, Bcr-Abl and FLT3. LS-104 potently induces apoptosis in JAK2V617F-positive cells and inhibits JAK2 autophosphorylation and downstream signal transduction. LS-104 also inhibits proliferation and induces potent cytotoxic effects in FLT3 expressing leukemic cells. LS-104 is a hydroxystyryl-acrylonitrile compound, which is promising for research of myeloproliferative disorders and refractory/relapsed hematologic malignancies .
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Cat. No.: HY-155112
CAS No.: 2713553-88-7
Research Areas:  

Cancer

Antiproliferative agent-30 (Compound 8g) inhibits tubulin assembly and inhibits FLT3 and Abl1. Antiproliferative agent-30 has vascular-disrupting activity. Antiproliferative agent-30 has broad antiproliferative activities against cancer cell lines (IC50s: 0.054 nM, 0.008 nM, 0.144 nM for HCT-116, K562, MV-4-11 cells respectively). Antiproliferative agent-30 also has anticancer effect against AML with FLT3-ITD-TKD mutation .
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Cat. No.: HY-185227
CAS No.: 1394837-94-5
Research Areas:  

Cancer

EphB4-IN-1 is a selective EphB4 tyrosine kinase inhibitor with IC50 values of 0.16-0.30 μM. EphB4-IN-1 binds to the ATP binding site of EphB4 in a DFG-in conformation, forming four stable intermolecular hydrogen bonds. EphB4-IN-1 also inhibits Src, Abl1, Lck, and EGFR kinases. EphB4-IN-1 inhibits EphB4 autophosphorylation. EphB4-IN-1 can be used for the research of cancer, such as non small cell lung cancer .
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Cat. No.: HY-10943R
CAS No.: 839706-07-9
Research Areas:  

Cancer

GNF-7 (Standard) is the analytical standard of GNF-7 (HY-10943). This product is intended for research and analytical applications. GNF-7 is a multiKinase inhibitor. GNF-7 is a Bcr-Abl inhibitor, with IC50s of 133 nM and 61 nM for Bcr-AblWT and Bcr-AblT315I, respectively. GNF-7 also possesses inhibitory activity against both ACK1 (activated CDC42 Kinase 1) and GCK (germinal center Kinase) with IC50s of 25 nM and 8 nM, respectively. GNF-7 can be used for the research of hematologic malignancies .
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Cat. No.: HY-176194
Target:  

Collagen c-Fms PDGFR Src

Research Areas:  

Inflammation/Immunology

Antifibrotic agent 1 is an orally active anti-idiopathic pulmonary fibrosis (IPF) agent. Antifibrotic agent 1 effectively attenuates IPF-related processes, including TGF-β induced EMT and FMT processes, as well as pro-fibrotic M2 polarization. Antifibrotic agent 1 selectively inhibits CSF-1R, PDGFR-α and Src family kinases (SFKs), while sparing VEGFRs, FGFRs and Abl to minimize off-target toxicity. Antifibrotic agent 1 has potent anti-fibrotic activity in Bleomycin (BLM) (HY-108345)-induced pulmonary fibrosis mice model .
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Cat. No.: HY-P706247
Purity:  ≥ 90%, as determined by reducing SDS-PAGE.
Synonyms: Envelope glycoprotein gp160; Env polyprotein; Surface protein gp120; SU; Glycoprotein 120; gp120; Transmembrane protein gp41; TM; Glycoprotein 41; gp41 ; env; HIV-1/Clade C (16055)
Species:  
Virus
Source:  
HEK293
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Cat. No.: HY-10212A
CAS No.: 1225041-97-3
Synonyms: CNF2024 mesylate
Research Areas:  

Cancer

BIIB021 (CNF2024) mesylate is the mesylate of BIIB021 (HY-10212). BIIB021 is an orally active Hsp90 inhibitor. BIIB021 inhibits the proliferation of chronic myeloid leukemia (CML) cells, with IC50 values of K562, K562/G, 32Dp210, and 32Dp210-T315I cells are 513.99, 603.53, 110.08, and 148.07 nM, respectively. BIIB021 degrades BCR-ABL protein and inhibits the β-catenin/c-Myc pathway. BIIB021 can also induce autophagy in CML cells. BIIB021 can be used for the research of CML .
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Cat. No.: HY-108486
CAS No.: 70563-58-5
Purity:  99%
Herbimycin A is an antibiotic and protein tyrosine kinase inhibitor. Herbimycin A directly inhibits the autophosphorylation of p210 BCR-ABL with an IC50 of approximately 5 μM, and reduces Src kinase activity. Herbimycin A also induces the degradation of receptor tyrosine kinases such as insulin-like growth factor 1 receptor (IGF-1R), insulin receptor (IR) and epidermal growth factor receptor (EGFR) via the ubiquitin-20S proteasome pathway. Herbimycin A directly modifies NF-κB p50, with the main target site involving Cys62, thereby blocking the DNA binding of p50 and NF-κB-driven gene expression. Herbimycin A can be used in studies related to tyrosine kinase signaling, chronic myeloid leukemia, NF-κB signaling, osteoclast function, apoptosis and cellular stress .
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Cat. No.: HY-150109
CAS No.: 2650188-32-0
Purity:  99.45%
Synonyms: Purinostat mesylate
Puzerinostat mesylate (Purinostat mesylate) is a highly selective class I/IIb histone deacetylase (HDAC) inhibitor, with IC50 values of 0.81 nM, 1.4 nM, 1.7 nM, 3.8 nM, 11.5 nM, and 1.1 nM against HDAC1, HDAC2, HDAC3, HDAC8, HDAC6, and HDAC10, respectively. Puzerinostat mesylate enhances glutamine metabolism by upregulating GLS1. Puzerinostat mesylate induces cell Apoptosis and downregulates the expression of BCR-ABL and c-MYC. Puzerinostat mesylate delays the progression of Ph + B-cell acute lymphoblastic leukemia and prolongs the survival of relevant mouse models. Puzerinostat mesylate regulates the immune microenvironment. Puzerinostat mesylate can be used in research related to chronic myeloid leukemia, Philadelphia chromosome-positive B-cell acute lymphoblastic leukemia, relapsed/refractory multiple myeloma, relapsed/refractory lymphoma, diffuse large B-cell lymphoma, and double-expression lymphoma .
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Cat. No.: HY-150109A
CAS No.: 1929583-17-4
Synonyms: Purinostat
Puzerinostat (Purinostat) is a highly selective class I/IIb histone deacetylase (HDAC) inhibitor, with IC50 values of 0.81 nM, 1.4 nM, 1.7 nM, 3.8 nM, 11.5 nM, and 1.1 nM against HDAC1, HDAC2, HDAC3, HDAC8, HDAC6, and HDAC10, respectively. Puzerinostat enhances glutamine metabolism by upregulating GLS1. Puzerinostat induces cell Apoptosis and downregulates the expression of BCR-ABL and c-MYC. Puzerinostat delays the progression of Ph + B-cell acute lymphoblastic leukemia and prolongs the survival of relevant mouse models. Puzerinostat regulates the immune microenvironment. Puzerinostat can be used in research related to chronic myeloid leukemia, Philadelphia chromosome-positive B-cell acute lymphoblastic leukemia, relapsed/refractory multiple myeloma, relapsed/refractory lymphoma, diffuse large B-cell lymphoma, and double-expression lymphoma .
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Cat. No.: HY-P703123
Purity:  ≥ 95%, as determined by reducing SDS-PAGE.
Synonyms: ETV6; ETS Variant 6; ETS Variant Transcription Factor 6; TEL1 Oncogene; TEL; TEL Oncogene; Transcription Factor ETV6; ETV6 Protein; ETS-Related Protein Tel1; TEL/ABL; Ets Variant Gene 6 (TEL Oncogene); THC5; ETS Translocation Variant 6; TEL1; ETV6-RUNX1 F
Species:  
Human
Source:  
E. coli
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Cat. No.: HY-L080
106 compounds

Targeted cancer therapies are drugs or other substances that block the growth and spread of cancer by interfering with specific molecular targets that are involved in the growth, progression, and spread of cancer.

There are several different types of targeted therapy. The most common types are small-molecule drugs and monoclonal antibodies. Small-molecule drugs are small enough to enter cells easily, so they are used for targets that are inside cells, while monoclonal antibodies are usually used for targets that are located outside the cells. Because of high specificity, low side effect and potent anticancer activity, targeted therapy has become the mainstream of new anti-tumor drugs. Various targeted therapies have been approved by FDA and used in the treatment of diseases.

MCE carefully collects a unique of 106 targeted therapy drugs used in cancer treatment. MCE Targeted therapy drug library is a useful tool for the research of targeted therapy.

Cat. No.: HY-170846
Research Areas:  

Inflammation/Immunology

FGFRs-IN-1 (Compound A16) is the orally active inhibitor for FGFR, that inhibits FGFR1/2/3/4 with IC50s of 2.3, 7, 11, and 163 nM, respectively. FGFRs-IN-1 also inhibits VEGFR1/2/3, Abl, and Flt3 with IC50s of 61, 176, 112, 26, and 353 nM, respectively. FGFRs-IN-1 exhibits weak inhibitory efficacy against CYP enzymes. FGFRs-IN-1 reduces the expression of α-SMA and collagen I, and inhibits epithelial-mesenchymal transition (EMT) in TGF-β1 stimulated A549 cell. FGFRs-IN-1 exhibits anti-inflammatory activity in Bleomycin (HY-17565)-induced mouse pulmonary fibrosis model and CCl4 (HY-Y0298)-induced mouse liver fibrosis model .
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Cat. No.: HY-L016
1,695 compounds

Protein tyrosine kinases (PTKs) are key signaling molecules and important drug targets. Two classes of PTKs are present in cells: the transmembrane receptor PTKs (RTKs) and the nonreceptor PTKs. The RTK family includes the receptors for insulin and for many growth factors, such as EGFR, FGFR, PDGFR, VEGFR, and NGFR. RTKs are transmembrane glycoproteins that are activated by the binding of their ligands, and they transduce the extracellular signal to the cytoplasm by phosphorylating tyrosine residues on the receptors themselves (autophosphorylation) and on downstream signaling proteins. Their principal functions of PTKs involve the regulation of multicellular aspects of the organism. Cell to cell signals concerning growth, differentiation, adhesion, motility, and death are frequently transmitted through tyrosine kinases. In humans, tyrosine kinases have been demonstrated to play significant roles in the development of many disease states, including diabetes and cancers.

MCE designs a unique collection of 1,695 compounds that act as a useful tool for PTKs-related drug screening and disease research.

Cat. No.: HY-L060
2,313 compounds

The cytoskeleton is responsible for contraction, cell motility, movement of organelles and vesicles through the cytoplasm, cytokinesis, intracellular signal transduction, and many other functions that are essential for cellular homeostasis and survival. It accomplishes these tasks through three basic structures: F-actin, microtubules, and intermediate filaments (IFs). The cytoskeleton is a dynamic structure where the three major filaments and tubules are under the influence of proteins that regulate their length, state of polymerization, and level of cross-linking. Since cytoskeleton is involved in virtually all cellular processes, cytoskeletal protein aberrations are the underlying reason for many pathological phenotypes, including several cardiovascular disease syndromes, neurodegeneration, cancer, liver cirrhosis, pulmonary fibrosis, and blistering skin diseases.

MCE designs a unique collection of 2,313 cytoskeleton-related compounds mainly focusing on the key targets in the cytoskeleton signal pathway and can be used in the research of cytoskeleton signal pathway and related diseases.

Cat. No.: HY-L079
4,333 compounds

Blood cancers, also called hematologic cancers, occur when abnormal blood cells start growing out of control, interrupting the function of normal blood cells, which fight off infection and produce new blood cells. Most blood cancers start in the bone marrow, which is where blood is produced. There are three main types of blood cancers: leukemia, lymphoma and myeloma, which afflict millions of children and adults every year, and are often deadly.

Some common blood cancer treatments include stem cell transplantation, chemotherapy, radiation therapy, targeted therapy, immunotherapy or a combination thereof. As we begin to understand the key signaling pathways and molecular drivers of malignant transformation in haematological disorders, new treatment strategies will continue to be developed.

MCE offers a unique collection of 4,333 compounds with identified and potential anti-blood cancer activity. These compounds target blood cancer’s major targets and signaling pathways. MCE anti-blood cancer compound library is a useful tool for anti-blood cancer drugs screening and other related research.