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kidney injury

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Click Chemistry

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-135772

    12-Ketolithocholic acid

    Endogenous Metabolite Metabolic Disease
    12-Ketodeoxycholic acid (12-Ketolithocholic acid) is a bile acid, metabolite from kidney. 12-Ketodeoxycholic acid can be a detectable marker for evidence of kidney injury
    12-Ketodeoxycholic acid
  • HY-P3434A

    Pyroptosis Inflammation/Immunology
    Ac-FEID-CMK TFA is a potent zebrafish-specific GSDMEb-derived peptide inhibitor. Ac-FEID-CMK TFA can attenuate the mortality and kidney injury during septic shock. Ac-FEID-CMK TFA inhibits pyroptosis and attenuates septic AKI (acute kidney injury) in vivo. Ac-FEID-CMK TFA can suppress the caspy2-mediated noncanonical inflammasome pathway .
    Ac-FEID-CMK TFA
  • HY-149594

    Others Metabolic Disease
    CL-Pa is a chemiluminescent probe suitable for detection of urinary Vanin-1. CL-Pa can be used to detect drug-induced acute kidney injury (AKI) through urinalysis .
    CL-Pa
  • HY-P3434

    Pyroptosis Inflammation/Immunology
    Ac-FEID-CMK is a potent zebrafish-specific GSDMEb-derived peptide inhibitor. Ac-FEID-CMK can attenuate the mortality and kidney injury during septic shock. Ac-FEID-CMK inhibits pyroptosis and attenuates septic AKI (acute kidney injury) in vivo. Ac-FEID-CMK can suppress the caspy2-mediated noncanonical inflammasome pathway .
    Ac-FEID-CMK
  • HY-149426

    Sirtuin Inflammation/Immunology
    SIRT5 inhibitor 7 (compound 58) is a substrate-competitive and selective SIRT5 inhibitor with anti-inflammatory activity. SIRT5 inhibitor 7 has renal protective effects and regulates protein succinylation and the release of pro-inflammatory cytokines. SIRT5 inhibitor 7 has in vivo activity in AKI mouse models of lipopolysaccharide (LPS) and cecal ligation/perforation (CLP)-induced sepsis-related acute kidney injury .
    SIRT5 inhibitor 7
  • HY-B0516A

    Hoe-045 free base

    NF-κB NOD-like Receptor (NLR) Sodium Channel Inflammation/Immunology
    Articaine (Hoe-045 free base) is an amide anaesthetic containing an ester group, reversibly binding to the α-subunit of the voltage-gated sodium channels within the inner cavity of the nerve, can provide effective pain relief. Articaine ameliorates LPS-induced acute kidney injury via inhibition of NF-ĸB activation and the NLRP3 inflammasome pathway .
    Articaine
  • HY-156519

    NF-κB Inflammation/Immunology
    ALPK1-IN-3 is an inhibitor of ALPK1 extracted from patent WO2022063153A1 compound T007. ALPK1-IN-3 inhibits kidney proinflammatory gene expression and improves the survival rate of the animals in sepsis induced acute kidney injury animal model . ALPK1-IN-3 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    ALPK1-IN-3
  • HY-B0516

    Hoe-045

    Sodium Channel NF-κB NOD-like Receptor (NLR) Neurological Disease
    Articaine hydrochloride (Hoe-045) is an amide anaesthetic containing an ester group, reversibly binding to the α-subunit of the voltage-gated sodium channels within the inner cavity of the nerve, can provide effective pain relief. Articaine hydrochloride ameliorates LPS-induced acute kidney injury via inhibition of NF-ĸB activation and the NLRP3 inflammasome pathway .
    Articaine hydrochloride
  • HY-155759

    Others Inflammation/Immunology Cancer
    HMGB1-IN-2 (compound 15) is an inhibitor of highly conserved nuclear protein (HMGB1), showing NO inhibitory effect with IC50 value of 20.2 μM in RAW264.7 cells. HMGB1-IN-2 (30 μM) decreases the level of IL-1 β, TNF-α, caspase-1 p20, inhibits the phosphorylation of NF-κB p65, exhibits anti-apoptotic activity. HMGB1-IN-2 (15 mg/kg; ip) relives kidney injury in septic acute kidney injury mouse. HMGB1-IN-2 inhibits Huh7 cells and A549 cells with IC50s of 77.0 μM, and 82.0 μM, respectively .
    HMGB1-IN-2
  • HY-44307

    Ferroptosis Cancer
    84-B10 is a 3-phenylglutaric acid derivative. 84-B10 inhibits cisplatin (HY-17394) induced tubular ferroptosis. 84-B10 attenuates cisplatin-induced mitochondrial damage and oxidative stress. 84-B10 ameliorates cisplatin-induced acute kidney injury (AKI) .
    84-B10
  • HY-120801
    APX-115
    1 Publications Verification

    Ewha-18278

    NADPH Oxidase Metabolic Disease Inflammation/Immunology
    APX-115 (Ewha-18278) is a potent, orally active pan NADPH oxidase (Nox) inhibitor with Ki values of 1.08 μM, 0.57 μM, and 0.63 μM for Nox1, Nox2 and Nox4, respectively. APX-115 effectively prevents kidney injury .
    APX-115
  • HY-155751

    Interleukin Related TNF Receptor NOD-like Receptor (NLR) Inflammation/Immunology
    HMGB1-IN-1 (compound 6) displays strong NO inhibitory effect in RAW264.7 cells with IC50 value of 15.9 ± 0.6 μM. HMGB1-IN-1 inhibit the HMGB1/NF-κB/NLRP3 pathway. HMGB1-IN-1 shows good anti-inflammatory activity and good anti-sepsis effects in kidney injury .
    HMGB1-IN-1
  • HY-120801A
    APX-115 free base
    1 Publications Verification

    Ewha-18278 free base; Isuzinaxib free base

    NADPH Oxidase Inflammation/Immunology Endocrinology
    APX-115 free base (Ewha-18278 free base) is a potent, orally active pan NADPH oxidase (Nox) inhibitor with Ki values of 1.08 μM, 0.57 μM, and 0.63 μM for Nox1, Nox2 and Nox4, respectively. APX-115 free base effectively prevents kidney injury .
    APX-115 free base
  • HY-151342

    Others Others
    Ser@TPP@CUR is a Curcumin (HY-N0005) derivative. Ser@TPP@CUR effectively ameliorates injured renal tubular epithelial cells and improves renal functions of acute kidney injury (AKI) mice. Ser@TPP@CUR can be used for the research of AKI .
    Ser@TPP@CUR
  • HY-144332

    HDAC HIF/HIF Prolyl-Hydroxylase Cancer
    PHD2/HDACs-IN-1 is a potent PHD2/HDACs hybrid inhibitor (IC50s of 1.15 μM, 19.75 μM, 26.60 μM and 15.98 μM for PHD2, HDAC1, HDAC2 and HDAC6, respectively). PHD2/HDACs-IN-1 is a low-toxicity renoprotective agent for research of cisplatin-induced acute kidney injury (AKI) .
    PHD2/HDACs-IN-1
  • HY-N0164
    Matrine
    Maximum Cited Publications
    12 Publications Verification

    Matridin-15-one; Vegard; α-Matrine

    PINK1/Parkin Opioid Receptor Autophagy Mitophagy Ferroptosis Apoptosis Inflammation/Immunology Cancer
    Matrine (Matridin-15-one) is an alkaloid found in plants from the Sophora genus that can act as a kappa opioid receptor and u-receptor agonist. Matrine has a variety of pharmacological effects, including anti-cancer, anti-oxidative stress, anti-inflammation and anti-apoptosis effects. Matrine is potential in the research of disease like human non-small cell lung cancer, hepatoma, papillary thyroid cancer and acute kidney injury (AKI) .
    Matrine
  • HY-101337

    RS 21361 free base

    Imiloxan is a potent and selective alpha 2B-adrenoceptor antagonist. Imiloxan has the potential for acute kidney injury research .
    Imiloxan
  • HY-101337A

    RS 21361

    Imiloxan hydrochloride is a potent and selective alpha 2B-adrenoceptor antagonist. Imiloxan hydrochloride has the potential for acute kidney injury research .
    Imiloxan hydrochloride
  • HY-132595A

    QPI-1002 sodium

    MDM-2/p53 Cancer
    Teprasiran sodium is a small interfering RNA that temporarily inhibits p53-mediated cell death that underlies acute kidney injury (AKI) .
    Teprasiran sodium
  • HY-132595

    QPI-1002

    Small Interfering RNA (siRNA) MDM-2/p53 Cancer
    Teprasiran (QPI-1002) is a small interfering RNA that temporarily inhibits p53-mediated cell death that underlies acute kidney injury (AKI) .
    Teprasiran
  • HY-144236

    Epigenetic Reader Domain Others
    Considerable studies confirmed that BRD4 inhibition ameliorated kidney injury and fibrosis ,and ZLD2218 exhibited the most potent inhibitory activity against BRD4, with the IC50 value of 107 nM
    ZLD2218
  • HY-156368

    RIP kinase Inflammation/Immunology
    RIPK3-IN-4 (Compound 42) is a RIPK3 inhibitor. RIPK3-IN-4 inhibits HK-2 cell damage, necroptosis and inflammatory responses. RIPK3-IN-4 reduces Cisplatin (HY-17394)- and I/R-induced kidney damage, inflammatory response and necroptosis in acute kidney injury .
    RIPK3-IN-4
  • HY-125923

    Others Metabolic Disease
    Djenkolic acid is a sulfur-containing non-protein amino acid naturally found in the djenkol beans of the Southeast Asian plant Archidendron jiringa. Djenkolic Acid often causes renal injury, including hypersensitivity to or a direct toxic effect of a djenkol bean metabolite, resulting in acute kidney injury and/or urinary tract obstruction by djenkolic acid crystals, sludge, and/or possible ureteral spasms .
    Djenkolic acid
  • HY-P4053

    Opioid Receptor Neurological Disease
    Dalargin is a potent δ-opioid receptor agonist. Dalargin mitigates Gentamicin (HY-A0276)-induced cell death. Dalargin shows nephroprotective effects on Gentamicin-induced kidney injury. Dalargin shows antiulcer activity .
    Dalargin
  • HY-N4130

    Others Inflammation/Immunology
    25S-Inokosterone is a phytoecdysone in the roots of two same species of A. bidentata Blume and A. japonica Nakai, and two different species of C. capitata Moq and C. officinalis Kuan. 25S-Inokosterone has the potential for the LPS-induced acute kidney injury research .
    25S-Inokosterone
  • HY-137455

    ANG-3777

    c-Met/HGFR Inflammation/Immunology
    Terevalefim (ANG-3777), an hepatocyte growth factor (HGF) mimetic, selectively activates the c-Met receptor .
    Terevalefim
  • HY-P5984

    mTOR Others
    Thioether-cyclized helix B peptide, CHBP can improve metabolic stability and renoprotective effect through inducing autophagy via inhibition of mTORC1 and activation of mTORC2 .
    Thioether-cyclized helix B peptide, CHBP
  • HY-P5984A

    mTOR Others
    Thioether-cyclized helix B peptide, CHBP (TFA) is the TFA form of Thioether-cyclized helix B peptide, CHBP (HY-P5984). Thioether-cyclized helix B peptide, CHBP (TFA) can improve metabolic stability and renoprotective effect through inducing autophagy via inhibition of mTORC1 and activation of mTORC2 .
    Thioether-cyclized helix B peptide, CHBP TFA
  • HY-103213

    Adrenergic Receptor Neurological Disease Endocrinology
    JP1302 dihydrochloride is a potent, selective, high affinity antagonist of the α2C-adrenoceptor, with a Kb of 16 nM and a Ki of 28 nM for the human α2C-receptor. JP1302 dihydrochloride shows antidepressant and antipsychotic-like effects. JP1302 dihydrochloride can be used for neuropsychiatric disorders and renal dysfunction research .
    JP1302 dihydrochloride
  • HY-103213A

    Adrenergic Receptor Neurological Disease
    JP1302 is a potent, selective, high affinity antagonist of the α2C-adrenoceptor, with a Kb of 16 nM and a Ki of 28 nM for the human α2C-receptor. JP1302 shows antidepressant and antipsychotic-like effects. JP1302 can be used for neuropsychiatric disorders and renal dysfunction research .
    JP1302
  • HY-149425

    Sirtuin Inflammation/Immunology Cancer
    SIRT5 Inhibitor 6 is a potent, substrate-competitive and selective SIRT5 inhibitor with an IC50 of 3.0 μM. SIRT5 Inhibitor6 has a therapeutic potential against septic AKI in vivo .
    SIRT5 inhibitor 6
  • HY-109041
    Razuprotafib
    1 Publications Verification

    AKB-9778

    Phosphatase Tie Inflammation/Immunology
    Razuprotafib (AKB-9778) is a potent and selective inhibitor of the catalytic activity of VE-PTP (vascular endothelial protein tyrosine phosphatase) with an IC50of 17 pM. Razuprotafib promotes TIE2 activation, enhances ANG1-induced TIE2 activation, and stimulates phosphorylation of signaling molecules in the TIE2 pathway, including AKT, eNOS, and ERK. Razuprotafib inhibits the structurally related phosphatase PTP1B with an IC50 of 780 nM. Razuprotafib shows excellent selectivity for VE-PTP versus a variety of phosphatases, with the exception of HPTPη (IC50=36 pM) and HPTPγ (100 pM) .
    Razuprotafib
  • HY-151369

    RIP kinase Cardiovascular Disease Neurological Disease Metabolic Disease Inflammation/Immunology
    AV123 (compound 12) is a non-cytotoxic RIPK1 inhibitor (IC50=12.12 µM). AV123 blocks the TNF-α-induced necroptotic (EC50=1.7 μM) but not the apoptotic cell death. AV123 can be used in the study of necrotic chronic conditions such as ischemia-reperfusion injury of the brain, heart and kidney, inflammatory diseases, neurodegenerative diseases and infectious diseases .
    AV123
  • HY-B0347
    Lacidipine
    1 Publications Verification

    Calcium Channel Reactive Oxygen Species Caspase Apoptosis Cardiovascular Disease
    Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI) .
    Lacidipine
  • HY-B0516R

    Hoe-045 (Standard)

    Sodium Channel NF-κB NOD-like Receptor (NLR) Neurological Disease
    Articaine (hydrochloride) (Standard) is the analytical standard of Articaine (hydrochloride). This product is intended for research and analytical applications. Articaine hydrochloride (Hoe-045) is an amide anaesthetic containing an ester group, reversibly binding to the α-subunit of the voltage-gated sodium channels within the inner cavity of the nerve, can provide effective pain relief. Articaine hydrochloride ameliorates LPS-induced acute kidney injury via inhibition of NF-ĸB activation and the NLRP3 inflammasome pathway .
    Articaine hydrochloride (Standard)
  • HY-P99198

    NNC 0109-0012

    Interleukin Related Inflammation/Immunology
    Fletikumab (NNC0109-0012) is a monoclonal antibody targeting to IL-20. Fletikumab can be used for inflammation research, such as rheumatoid arthritis .
    Fletikumab
  • HY-B0347S1

    Apoptosis Caspase Calcium Channel Reactive Oxygen Species Cardiovascular Disease
    Lacidipine- 13C8 is the deuterium labeled Lacidipine[1]. Lacidipine is an orally active and highly selective L-type calcium channel blocker that acts on smooth muscle calcium channels, primarily dilates peripheral arteries, reduces peripheral resistance, and has long-lasting anti-hypertensive activity. Lacidipine protects HKCs from apoptosis induced by ATP depletion and recovery by modulating the caspase-3 pathway. Lacidipine can be used in studies of hypertension, atherosclerosis and acute kidney injury (AKI)[2][3].
    Lacidipine-13C8
  • HY-12118

    NO Synthase Inflammation/Immunology
    L-NIL dihydrochloride is an inducible NO synthase inhibitor, with an IC50 of 3.3 μM for miNOS .
    L-NIL dihydrochloride
  • HY-B0202
    Irbesartan
    5 Publications Verification

    SR-47436; BMS-186295

    Angiotensin Receptor Apoptosis Cardiovascular Disease Endocrinology
    Irbesartan (SR-47436) is an orally active Ang II type 1 (AT1) receptor blocker (ARB). Irbesartan can relax the blood vessels, low blood pressure and increase the supply of blood and oxygen to the heart. Irbesartan can be used for the research of high blood pressure, heart failure, and diabetic kidney disease .
    Irbesartan
  • HY-B0202A

    SR-47436 hydrochloride; BMS-186295 hydrochloride

    Angiotensin Receptor Apoptosis Neurological Disease Metabolic Disease
    Irbesartan (SR-47436) hydrochloride is an orally active Ang II type 1 (AT1) receptor blocker (ARB). Irbesartan hydrochloride can relax the blood vessels, low blood pressure and increase the supply of blood and oxygen to the heart. Irbesartan hydrochloride can be used for the research of high blood pressure, heart failure, and diabetic kidney disease .
    Irbesartan hydrochloride

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