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Results for "

α/β I

" in MedChemExpress (MCE) Product Catalog:

50

Inhibitors & Agonists

4

Peptides

9

Natural
Products

7

Recombinant Proteins

2

Isotope-Labeled Compounds

5

Antibodies

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-119016
    SK1-I
    1 Publications Verification

    BML-258

    SphK Cancer
    SK1-I (BML-258), an analog of sphingosine, is an isozyme-specific competitive SPHK1 inhibitor with a Ki value of 10 µM . SK1-I shows no activity at SPHK1 PKCα, PKCδ, PKA, AKT1, ERK1, EGFR, CDK2, IKKβ or CamK2β. SK1-I enhances autophagy and has antitumor activity .
    SK1-I
  • HY-119016A
    SK1-​I hydrochloride
    1 Publications Verification

    BML-258 hydrochloride

    SphK Cancer
    SK1-I hydrochloride (BML-258 hydrochloride), an analog of sphingosine, is an isozyme-specific competitive SPHK1 inhibitor with a Ki value of 10 µM . SK1-I hydrochloride shows no activity at SPHK1 PKCα, PKCδ, PKA, AKT1, ERK1, EGFR, CDK2, IKKβ or CamK2β. SK1-I hydrochloride enhances autophagy and has antitumor activity .
    SK1-​I hydrochloride
  • HY-139833

    NF-κB IKK Inflammation/Immunology
    Anti-inflammatory agent 6 blocks the phosphorylation of I kappa b kinase α/β (IKKα/β), IκBα, and nuclear factor kB p65 (NF-κB p65) which is a key controller of inflammation, thereby showing anti-inflammatory potential.
    Anti-inflammatory agent 6
  • HY-156297

    Proteasome Inflammation/Immunology
    β5i-IN-1 is a potent and selective inhibitor of β5i with a IC50 of 8.463 nM. β5i-IN-1 releases TNF-α and IL-6 and influences the transcriptional activity of NF-κB. β5i-IN-1 can be used in study idiopathic pulmonary fibrosis .
    β5i-IN-1
  • HY-141488

    Galβ1-3GlcNAc

    Endogenous Metabolite Endocrinology
    Lacto-N-biose I (Galβ1-3GlcNAc), as an endogenous metabolite, is an acceptor for the α1,2-fucosyltransferase enzyme from Helicobacter pylori .
    Lacto-N-biose I
  • HY-N5112B
    β,β-Dimethylacrylshikonin
    1 Publications Verification

    Isoarnebin I

    HIF/HIF Prolyl-Hydroxylase Cancer
    β,β-Dimethylacrylshikonin (Isoarnebin I) is a naphthoquinone derivative isolated from Lithospermum erythrorhizon Sieb. et Zucc. , promotes angiogenesis by inducing eNOS, VEGF and HIF-1α expression through the PI3K-dependent pathway.β,β-Dimethylacrylshikonin has anti-tumor activity .
    β,β-Dimethylacrylshikonin
  • HY-N10111

    IKK Inflammation/Immunology
    Siegesbeckialide I most potently inhibits LPS-induced NO production in RAW264.7 murine macrophages by directly binding to IKKα/β.
    Siegesbeckialide I
  • HY-107588

    Integrin Cardiovascular Disease
    TC-I 15 (TC-I-15) is an allosteric, collagen-binding integrin α2β1 inhibitor with IC50 values of 26.8 μM and 0.4 μM for GFOGER and GLOGEN, respectively. TC-I 15 inhibits platelet adhesion to collagen and thrombus deposition .
    TC-I 15
  • HY-100777

    DACA inhibits two essential nuclear enzymes in vitro, DNA topoisomerase I and DNA topoisomerase (topo) II. DACA stabilises topo I, topo II alpha, and topo II beta cleavable complexes in human leukaemia CCRF-CEM cells .
    DACA
  • HY-P3653

    mAChR nAChR Neurological Disease
    α-Conotoxin M I is a potent and selective inhibitor of mAChR and α1β1γδ nAChR, but has no effect on nicotine-stimulated dopamine release. α-Conotoxins are small, disulfide-rich peptides that competitively inhibit muscle and neuronal nicotinic AChRs .
    α-Conotoxin M I
  • HY-13453
    BAY 11-7082
    Maximum Cited Publications
    267 Publications Verification

    BAY 11-7821

    IKK Deubiquitinase Autophagy Apoptosis NF-κB Inflammation/Immunology Cancer
    BAY 11-7082 is an IκBα phosphorylation and NF-κB inhibitor. BAY 11-7082 selectively and irreversibly inhibits the TNF-α-induced phosphorylation of IκB-α, and decreases NF-κB and expression of adhesion molecules. BAY 11-7082 inhibits ubiquitin-specific protease USP7 and USP21 (IC50=0.19, 0.96 μM, respectively). BAY 11-7082 inhibits gasdermin D (GSDMD) pore formation in liposomes and inflammasome-mediated pyroptosis and IL-1β secretion in human and mouse cells .
    BAY 11-7082
  • HY-P1542

    Catostomus urotensin I

    CRFR Cardiovascular Disease Endocrinology
    Urotensin I (Catostomus urotensin I), a CRF-like neuropeptide, acts as an agonist of CRF receptor with pEC50s of 11.46, 9.36 and 9.85 for human CRF1, human CRF2 and rat CRF receptors in CHO cells, and Kis of 0.4, 1.8, and 5.7 nM for hCRF1, rCRF and mCRF receptors, respectively .
    Urotensin I
  • HY-N0847
    Micheliolide
    3 Publications Verification

    NF-κB Others
    Micheliolide could effectively attenuate the high glucose-stimulated activation of NF-κB, the degradation of IκBα, and the expression of MCP-1, TGF-β1 and FN in rat mesangial cells (MCs).
    Micheliolide
  • HY-139202

    Integrin Inflammation/Immunology
    XVA143, an α/β I-like allosteric antagonist, inhibits LFA-1 dependent firm adhesion, while at the same time it enhances adhesion in shear flow and rolling both in vitro and in vivo .
    XVA143
  • HY-162092

    NF-κB IKK Cancer
    Multi-target Pt (IV), an antitumor agent, suppresses the IKKβ phosphorylation, IκBα phosphorylation and NF-κB p65 phosphorylation and nuclear translocation, leading to blocked the NF-kB signal pathway .
    Multi-target Pt
  • HY-P1542B

    Catostomus urotensin I TFA

    CRFR Cardiovascular Disease Endocrinology
    Urotensin I (Catostomus urotensin I) TFA, a CRF-like neuropeptide, acts as an agonist of CRF receptor with pEC50s of 11.46, 9.36 and 9.85 for human CRF1, human CRF2 and rat CRF receptors in CHO cells, and Kis of 0.4, 1.8, and 5.7 nM for hCRF1, rCRF and mCRF receptors, respectively .
    Urotensin I TFA
  • HY-122958

    α-synuclein Neurological Disease
    Peucedanocoumarin III is an inhibitor of α-synuclein and Huntington protein aggregates that enhances the clearance of nuclear and cytoplasmic β23 aggregates and prevents cytotoxicity induced by disease-associated proteins (i.e., mutant Huntington proteins and α-synuclein). Peucedanocoumarin III may be used in Parkinson's disease research .
    Peucedanocoumarin III
  • HY-149665

    DGK Cancer
    BMS-684 is a selective DGKα inhibitor with an IC50 of 15 nM. BMS-684 inhibits DGKα kinase activity with >100-fold selectivity over the related DGK type I family members DGKβ and DGKγ. BMS-684 does not inhibit any of the other seven DGK isozymes .
    BMS-684
  • HY-122537A

    Adrenergic Receptor 5-HT Receptor Cardiovascular Disease
    Arotinolol is a nonselective α/β-adrenergic receptor blocker and a vasodilating β-blocker . Arotinolol also shows potency for inhibiting the binding of the radioligand 125I-ICYP to 5HT1B-serotonergic receptor sites . Arotinolol is an antihypertensive agent for the treatment of a variety of cardiovascular pathologies as well as non-cardiovascular diseases .
    Arotinolol
  • HY-70063
    Buparlisib
    55+ Cited Publications

    BKM120; NVP-BKM120

    PI3K Apoptosis Cancer
    Buparlisib (BKM120; NVP-BKM120) is a pan-class I PI3K inhibitor, with IC50s of 52, 166, 116 and 262 nM for p110α, p110β, p110δ and p110γ, respectively.
    Buparlisib
  • HY-101489

    PDGFR Bcr-Abl Apoptosis Cancer
    GZD856 formic is a potent and orally active PDGFRα/β inhibitor, with IC50s of 68.6 and 136.6 nM, respectively. GZD856 formic is also a Bcr-Abl T315I inhibitor, with IC50s of 19.9 and 15.4 nM for native Bcr-Abl and the T315I mutant. GZD856 formic has antitumor activity .
    GZD856
  • HY-110112

    Integrin Apoptosis Cardiovascular Disease Inflammation/Immunology Cancer
    BTT-3033 is an orally active conformation-selective inhibitor of α2β1 (EC50: 130 nM) by binding to the α2I domain. BTT-3033 inhibits platelet binding to collagen Ⅰ and cell proliferation, and induces cell apoptosis. BTT-3033 can be used in the research of prostate cancer, inflammation and cardiovascular disease .
    BTT-3033
  • HY-114730

    IKK Inflammation/Immunology
    CGA-JK3 is CGA-JK3 is an ATP-competitive inhibitor of IKKβ-catalyzed kinase activity. CGA-JK3 inhibits IκBα phosphorylation in LPS (HY-D1056) - induced RAW 264.7 cells .
    CGA-JK3
  • HY-162316

    NF-κB Inflammation/Immunology
    NF-κB-IN-15 (compound 14r) is a potent NF-κB inhibitor. NF-κB-IN-15 decreases the NO levels and inhibits the release of IL-6, TNF-α, and IL-1β in LPS (HY-D1056) -induced cells. NF-κB-IN-15 inhibits LPS-induced phosphorylation of p65 and degradation of IκBα. NF-κB-IN-15 shows anti-inflammatory activity has the potential for the research of acute lung injury (ALI) .
    NF-κB-IN-15
  • HY-101392
    Harmane
    1 Publications Verification

    Harmane, a β-Carboline alkaloid (BCA), is a potent neurotoxin that causes severe action tremors and psychiatric manifestations. Harmane shows 1000-fold selectivity for I1-Imidazoline receptor (IC50=30 nM) over α2-adrenoceptor (IC50=18 μM). Harmane is also a potent and selective inhibitor of monoamine oxidase (MAO) (IC50s=0.5 and 5 μM for human MAO A/B, respectively). Harmane exhibits comutagenic effect .
    Harmane
  • HY-151233

    TGF-β Receptor Cancer
    ALK5-IN-10 (Compound 5d) is a TGF-β type I receptor kinase ALK5 inhibitor, with IC50s of 0.007 and 1.98 μM for ALK5 and p38α, respectively. ALK5-IN-10 can be used for the research of cancer .
    ALK5-IN-10
  • HY-101392S

    Imidazoline Receptor Monoamine Oxidase Adrenergic Receptor Neurological Disease Cancer
    Harmane-d is the deuterium labeled Harmane. Harmane, a β-Carboline alkaloid (BCA), is a potent neurotoxin that causes severe action tremors and psychiatric manifestations. Harmane shows 1000-fold selectivity for I1-Imidazoline receptor (IC50=30 nM) over α2-adrenoceptor (IC50=18 μM). Harmane is also a potent and selective inhibitor of monoamine oxidase (MAO) (IC50s=0.5 and 5 μM for human MAO A/B, respectively)[1][2][3][4].
    Harmane-d1
  • HY-101392S1

    Isotope-Labeled Compounds Imidazoline Receptor Monoamine Oxidase Adrenergic Receptor Neurological Disease Cancer
    Harmane-d2 is the deuterium labeled Harmane. Harmane, a β-Carboline alkaloid (BCA), is a potent neurotoxin that causes severe action tremors and psychiatric manifestations. Harmane shows 1000-fold selectivity for I1-Imidazoline receptor (IC50=30 nM) over α2-adrenoceptor (IC50=18 μM). Harmane is also a potent and selective inhibitor of monoamine oxidase (MAO) (IC50s=0.5 and 5 μM for human MAO A/B, respectively)[1][2][3][4].
    Harmane-d2
  • HY-10456
    TAK-715
    10+ Cited Publications

    p38 MAPK Casein Kinase Inflammation/Immunology
    TAK-715 is an orally active and potent p38 MAPK inhibitor with IC50s of 7.1 nM, 200 nM for p38α and p38β, respectively. TAK-715 inhibits casein kinase I (CK1δ/ε) to regulate activation of Wnt/β-catenin signaling. TAK-715 shows good significant efficacy in a rat arthritis model .
    TAK-715
  • HY-15180
    Buparlisib Hydrochloride
    55+ Cited Publications

    BKM120 Hydrochloride; NVP-BKM120 Hydrochloride

    PI3K Apoptosis Cancer
    Buparlisib Hydrochloride (BKM120 Hydrochloride) is a pan-class I PI3K inhibitor, with IC50 of 52 nM/166 nM/116 nM/262 nM for p110α/p110β/p110δ/p110γ, respectively.
    Buparlisib Hydrochloride
  • HY-16526
    Pilaralisib
    3 Publications Verification

    XL-147; SAR245408

    PI3K Cancer
    Pilaralisib (XL147; SAR245408) is a potent and highly selective class I PI3Ks inhibitor with IC50s of 39 nM, 383 nM, 23 nM and 36 nM for PI3Kα, PI3Kβ, PI3Kγ, and PI3Kδ.
    Pilaralisib
  • HY-N10768

    IKK NF-κB Inflammation/Immunology
    1-Dehydro-[10]-gingerdione directly inhibits IKKβ activity by targeting the activation loop of IKKβ, thus disrupting IKKβ-catalysed IκBα phosphorylation in macrophages stimulated with agonists. 1-Dehydro-[10]-gingerdione inhibits LPS (HY-D1056)-induced NF-κB transcriptional activity. 1-Dehydro-[10]-gingerdione has the potential for NF-κB-associated inflammation and autoimmune disorders research .
    1-Dehydro-[10]-gingerdione
  • HY-13522
    Fimepinostat
    5+ Cited Publications

    CUDC-907

    PI3K HDAC Apoptosis Cancer
    Fimepinostat (CUDC-907) potently inhibits class I PI3Ks as well as classes I and II HDAC enzymes with an IC50 of 19/54/39 nM and 1.7/5.0/1.8/2.8 nM for PI3Kα/PI3Kβ/PI3Kδ and HDAC1/HDAC2/HDAC3/HDAC10 , respectively.
    Fimepinostat
  • HY-101392R

    Imidazoline Receptor Monoamine Oxidase Adrenergic Receptor Neurological Disease Cancer
    Harmane (Standard) is the analytical standard of Harmane. This product is intended for research and analytical applications. Harmane, a β-Carboline alkaloid (BCA), is a potent neurotoxin that causes severe action tremors and psychiatric manifestations. Harmane shows 1000-fold selectivity for I1-Imidazoline receptor (IC50=30 nM) over α2-adrenoceptor (IC50=18 μM). Harmane is also a potent and selective inhibitor of monoamine oxidase (MAO) (IC50s=0.5 and 5 μM for human MAO A/B, respectively). Harmane exhibits comutagenic effect .
    Harmane (Standard)
  • HY-50673
    Dactolisib
    45+ Cited Publications

    BEZ235; NVP-BEZ235

    PI3K mTOR Autophagy Cancer
    Dactolisib (BEZ235) is an orally active and dual pan-class I PI3K and mTOR kinase inhibitor with IC50s of 4 nM/5 nM/7 nM/75 nM, and 20.7 nM for p110α/p110γ/p110δ/p110β and mTOR, respectively. Dactolisib (BEZ235) inhibits both mTORC1 and mTORC2.
    Dactolisib
  • HY-121197

    Ophiocordin; Azepinostatin

    PKA PKC Others
    Balanol (Ophiocordin; Azepinostatin) is a potent and ATP competitive PKC/PKA inhibitor against human PKC isozymes α, β-I, β-II, γ, δ, ε, η (IC50s=4-9 nM) and ζ (IC50=150 nM). Balanol also blocks the phosphorylation of cyclic AMP response element-binding protein (CREB) and myristoylated alanine-rich C kinase substrate (MARCKS). Balanol can be isolated from the fungus Verticillium balanoides .
    Balanol
  • HY-163001

    Autophagy p62 Atg8/LC3 Cancer
    Microcolin H is a marine lipopeptide and phosphatidylinositol transfer protein ligand that targets PITPα/β. Microcolin H increases the conversion of LC3I to LC3II and reduces p62 levels in cancer cells, leading to autophagy cell death (Autophagy). Microcolin H effectively inhibits tumor development and has anti-proliferative activity in nude mouse subcutaneous tumor models .
    Microcolin H
  • HY-101489A

    PDGFR Bcr-Abl Apoptosis Cancer
    GZD856 formic is a potent and orally active PDGFRα/β inhibitor, with IC50s of 68.6 and 136.6 nM, respectively. GZD856 formic is also a Bcr-Abl T315I inhibitor, with IC50s of 19.9 and 15.4 nM for native Bcr-Abl and the T315I mutant. GZD856 formic has antitumor activity . GZD856 (formic) is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    GZD856 formic
  • HY-13440
    AMG 511
    2 Publications Verification

    PI3K Cancer
    AMG 511 is a potent and orally available pan inhibitor of class I PI3Ks, with Kis of 4 nM, 6 nM, 2 nM and 1 nM for PI3Kα, β, δ and γ, respectively. AMG 511 significantly suppresses PI3K signaling that is indicated by p-Akt (Ser473) decrease. AMG 511 exhibits anti-tumor activity in mouse glioblastoma xenograft model .
    AMG 511
  • HY-12868
    Bimiralisib
    3 Publications Verification

    PQR309

    PI3K mTOR Cancer
    Bimiralisib (PQR309) is a potent, brain-penetrant, orally bioavailable, pan-class I PI3K/mTOR inhibitor with IC50s of 33 nM, 451 nM, 661 nM, 708 nM and 89 nM for PI3Kα, PI3Kδ, PI3Kβ, PI3Kγ and mTOR, respectively. Bimiralisib is an mTORC1 and mTORC2 inhibitor.
    Bimiralisib
  • HY-123849

    PI3K mTOR Cancer
    SN32976 is a potent and selective class I PI3K and mTOR inhibitor with IC50s of 15.1 nM, 461 nM, 110 nM, 134 nM and 194 nM for PI3Kα, PI3Kβ, PI3Kγ, PI3Kδ and mTOR, respectively. SN32976 shows high selectivity among other 442 kinases. SN32976 shows anticancer effects .
    SN32976
  • HY-107592

    IKK STAT Apoptosis Inflammation/Immunology Cancer
    ACHP (compound 4j) is a selective and orally active IκB kinase inhibitor with IC50 values of 8.5 nM and 250 nM for IKKβ and IKKα, respectively. ACHP can effectively inhibit the STAT3 signaling pathway and induce cancer cell cycle arrest and apoptosis. ACHP shows anti-inflammatory activity in a mouse ear edema model. ACHP can be used in anti-inflammatory and anti-cancer (such as multiple myeloma and leukemia) studies .
    ACHP
  • HY-18758

    IN-1130 is a highly selective transforming growth factor-β type I receptor kinase (ALK5) inhibitor with an IC50 of 5.3 nM for ALK5-mediated Smad3 phosphorylation. IN-1130 inhibits ALK5 phosphorylation of casein (IC50=36 nM) and p38α mitogen-activated protein kinase (IC50=4.3 μM). IN-1130 suppresses renal fibrosis in obstructive nephropathy and blocks breast cancer lung metastasis .
    IN-1130
  • HY-13246
    Apitolisib
    10+ Cited Publications

    GDC-0980; GNE 390; RG 7422

    PI3K mTOR Apoptosis Cancer
    Apitolisib (GDC-0980; GNE 390; RG 7422) is a selective, potent, orally bioavailable Class I PI3 kinase and mTOR kinase (TORC1/2) inhibitor with IC50s of 5 nM/27 nM/7 nM/14 nM for PI3Kα/PI3Kβ/PI3Kδ/PI3Kγ, and with a Ki of 17 nM for mTOR.
    Apitolisib
  • HY-15346
    Copanlisib
    20+ Cited Publications

    BAY 80-6946

    PI3K Apoptosis Cancer
    Copanlisib (BAY 80-6946) is a potent, selective and ATP-competitive pan-class I PI3K inhibitor, with IC50s of 0.5 nM, 0.7 nM, 3.7 nM and 6.4 nM for PI3Kα, PI3Kδ, PI3Kβ and PI3Kγ, respectively. Copanlisib has more than 2,000-fold selectivity against other lipid and protein kinases, except for mTOR. Copanlisib has superior antitumor activity .
    Copanlisib
  • HY-15900
    Voxtalisib
    4 Publications Verification

    XL765; SAR245409

    PI3K mTOR Cancer
    Voxtalisib (XL765) is a potent PI3K inhibitor, which has a similar activity toward class I PI3K (IC50s=39, 113, 9 and 43 nM for p110α, p110β, p110γ and p110δ, respectively), also inhibits DNA-PK (IC50=150 nM) and mTOR (IC50=157 nM). Voxtalisib (XL765) inhibits mTORC1 and mTORC2 with IC50s of 160 and 910 nM, respectively.
    Voxtalisib
  • HY-12513
    Samotolisib
    4 Publications Verification

    LY3023414

    PI3K DNA-PK mTOR Autophagy Cancer
    Samotolisib (LY3023414) potently and selectively inhibits class I PI3K isoforms, DNA-PK, and mTORC1/2 with IC50s of 6.07 nM, 77.6 nM, 38 nM, 23.8 nM, 4.24 nM and 165 nM for PI3Kα, PI3Kβ, PI3Kδ, PI3Kγ, DNA-PK and mTOR, respectively. Samotolisib potently inhibits mTORC1/2 at low nanomolar concentrations .
    Samotolisib
  • HY-15346A
    Copanlisib dihydrochloride
    20+ Cited Publications

    BAY 80-6946 dihydrochloride

    PI3K Apoptosis Cancer
    Copanlisib dihydrochloride (BAY 80-6946 dihydrochloride) is a potent, selective and ATP-competitive pan-class I PI3K inhibitor, with IC50s of 0.5 nM, 0.7 nM, 3.7 nM and 6.4 nM for PI3Kα, PI3Kδ, PI3Kβ and PI3Kγ, respectively. Copanlisib dihydrochloride has more than 2,000-fold selectivity against other lipid and protein kinases, except for mTOR. Copanlisib dihydrochloride has superior antitumor activity .
    Copanlisib dihydrochloride
  • HY-146159

    PI3K HDAC Cancer
    PI3K/HDAC-IN-2 is a potent dual PI3K/HDAC inhibitor with IC50s of 226 nM, 279 nM, 467 nM, 29 nM for PI3Kα, PI3Kβ, PI3Kγ, PI3Kδ, respectively, and IC50s of 1.3 nM, 3.4 nM, 972 nM, 17 nM, 12 nM for HDAC1, HDAC2, HDC4, HDAC6, HDAC8, respectively. PI3K/HDAC-IN-2 exhibits PI3Kδ and class I and IIb HDAC selectivity. PI3K/HDAC-IN-2 has remarkable anticancer effects .
    PI3K/HDAC-IN-2
  • HY-112608

    PI3K Cancer
    CHMFL-PI3KD-317 is a highly potent, selective and orally active PI3Kδ inhibitor, with an IC50 of 6 nM, and exhibits over 10-1500 fold selectivity over other class I, II and III PIKK family isoforms, such as PI3Kα (IC50, 62.6 nM), PI3Kβ (IC50, 284 nM), PI3Kγ (IC50, 202.7 nM), PIK3C2A (IC50, >10000 nM), PIK3C2B (IC50, 882.3 nM), VPS34 (IC50, 1801.7 nM), PI4KIIIA (IC50, 574.1 nM) and PI4KIIIB (IC50, 300.2 nM). CHMFL-PI3KD-317 inhibits PI3Kδ-mediated Akt T308 phosphorylation in Raji cells, with an EC50 of 4.3 nM. CHMFL-PI3KD-317 has antiproliferative effects on cancer cells .
    CHMFL-PI3KD-317

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