Search Result
Results for "
liver dysfunction
" in MedChemExpress (MCE) Product Catalog:
1
Isotope-Labeled Compounds
Cat. No. |
Product Name |
Target |
Research Areas |
Chemical Structure |
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- HY-42682
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D-Galactosamine HCl
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Others
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Inflammation/Immunology
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D(+)-Galactosamine (D-Galactosamine) hydrochloride, which is an established experimental toxin, primarily causes liver injury by the generation of free radicals and depletion of UTP nucleotides. D(+)-Galactosamine hydrochloride intoxication also induces renal dysfunction thus, renal failure is often associated with the end-stage of the liver damage. Lipopolysaccharide/D(+)-Galactosamine-induced acute liver injury is a known animal model of fulminant hepatic failure .
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- HY-131929
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NO Synthase
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Inflammation/Immunology
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AE-ITU dihydrobromide is the dihydrobromide form of AE-ITU. AE-ITU dihydrobromide is a selective inhibitor for inducible NO synthase (iNOS), and attenuates the liver dysfunction caused by endotoxaemia in rats .
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- HY-111338
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Tacrine
5 Publications Verification
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Cholinesterase (ChE)
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Neurological Disease
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Tacrine is an effective oral acetylcholine (AChE) inhibitor (IC50 = 109 nM) and also acts as an active substrate for CYP1A2. Tacrine can restore cognitive dysfunction in elderly rats. Tacrine can cause liver toxicity and is used in research related to Alzheimer's disease .
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- HY-42682R
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Others
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Inflammation/Immunology
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D(+)-Galactosamine (hydrochloride) (Standard) is the analytical standard of D(+)-Galactosamine (hydrochloride). This product is intended for research and analytical applications. D(+)-Galactosamine (D-Galactosamine) hydrochloride, which is an established experimental toxin, primarily causes liver injury by the generation of free radicals and depletion of UTP nucleotides. D(+)-Galactosamine hydrochloride intoxication also induces renal dysfunction thus, renal failure is often associated with the end-stage of the liver damage. Lipopolysaccharide/D(+)-Galactosamine-induced acute liver injury is a known animal model of fulminant hepatic failure .
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- HY-W099331
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MEGX hydrochloride; Norlidocaine hydrochloride
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Drug Metabolite
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Metabolic Disease
Inflammation/Immunology
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Monoethylglycinexylidide (MEGX) hydrochloride is a metabolite of Lidocain (HY-B0185) via oxidative N-deethylation of Lignocaine by liver cytochrome P-450 enzymes in the liver. Monoethylglycinexylidide has proven to be a highly sensitive indicator of hepatic dysfunction, especially in the field of liver transplantation .
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- HY-108056
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Dopamine Receptor
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Endocrinology
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PF 219061 is an selective agonist for dopamine 3 receptor with an EC50 of 15 nM. PF 219061 exhibits a rapid absorption and a good liver blood clearance, and can be used for research of female sexual dysfunction .
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- HY-125129
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Keap1-Nrf2
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Others
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Carlinoside is a flavone glycoside with hepatoprotective efficiency. Carlinoside reduces hepatic bilirubin accumulation by stimulating bilirubin-UGT activity through Nrf2 gene expression. Carlinoside has the potential to intervene hyperbilirubinemia due to liver dysfunction .
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- HY-P3003
-
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Apoptosis
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Neurological Disease
Inflammation/Immunology
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Cereulide, a toxin depsipeptide, can be produced by Bacillus cereus. Cereulide induces cell apoptosis. Cereulide acts on mitochondria, leading to dysfunction in different organs (liver, pancreatic islet, brain, intestines, etc.) and body systems (immune system and nervous system) .
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- HY-168046
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Thyroid Hormone Receptor
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Metabolic Disease
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ALG-055009 is a thyroid hormone receptor β (THR-β) agonist with an EC50 value of 0.063 μM. In rats on a high-fat diet, ALG-055009 can lower total cholesterol levels. ALG-055009 can be used in studies related to metabolic dysfunction-associated fatty liver disease .
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- HY-161647
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Reactive Oxygen Species
Apoptosis
Autophagy
Ferroptosis
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Cancer
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Antitumor agent-156 (Compound 20) causes DNA damage and mitochondrial dysfunction, promotes reactive oxygen species
generation, activates endoplasmic reticulum stress, and induce apoptosis, autophagy and ferroptosis. Antitumor agent-156 shows superior antitumor activity against cancer cells including Cisplatin (HY-17394) resistance cells. Antitumor agent-156 displayS good liver-targeting ability .
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- HY-111179
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Others
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Inflammation/Immunology
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ML261 is a hepatic lipid droplets formation inhibitor with an IC50 value of 69.7 nM. ML261 can be used for the research of non-alcoholic fatty liver disease (NAFLD) and inflammation .
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- HY-162122
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PPAR
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Inflammation/Immunology
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PPARα/γ agonist 3 (Compound 4) is a dual agonist of PPARα/γ. PPARα/γ agonist 3 has anti-inflammatory activity, significantly reducing inflammatory markers such as IL-6 and MCP-1 on THP-1 macrophages through NF-κB activation. PPARα/γ agonist 3 can be used in the study of metabolic syndrome and metabolic dysfunction-related fatty liver disease (MAFLD) .
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- HY-P1624
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ALX-0600
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Nuclear Hormone Receptor 4A/NR4A
FXR
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Inflammation/Immunology
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Teduglutide (ALX-0600) is an analog of human glucagon like peptide-2 (GLP-2). Teduglutide can activate the expression of nuclear receptor subfamily 4 group a member 1 (NR4a1)/nur77 and intestinal FXR signaling in human hepatic stellate cells, thereby improving liver inflammation and fibrosis in mice with sclerosing cholangitis. Teduglutide can alleviate intestinal dysfunction in mice, improve lung injury, alleviate obesity related neuroinflammation and cell apoptosis .
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- HY-P1624A
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ALX-0600 TFA
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Nuclear Hormone Receptor 4A/NR4A
FXR
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Inflammation/Immunology
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Teduglutide TFA is a dipeptidyl peptidase IV resistant glucagon-like peptide 2 (GLP-2) analogue. Teduglutide TFA can activate the expression of nuclear receptor subfamily 4 group a member 1 (NR4a1)/nur77 and intestinal FXR signaling in human hepatic stellate cells, thereby improving liver inflammation and fibrosis in mice with sclerosing cholangitis. Teduglutide TFA can alleviate intestinal dysfunction in mice, improve lung injury, alleviate obesity related neuroinflammation and cell apoptosis .
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- HY-B0402A
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1-Adamantanamine hydrochloride; 1-Adamantylamine hydrochloride; 1-Aminoadamantane hydrochloride
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Influenza Virus
Orthopoxvirus
SARS-CoV
Apoptosis
Bcl-2 Family
CDK
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Infection
Neurological Disease
Cancer
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Amantadine (1-Adamantanamine) hydrochloride is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine hydrochloride inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine hydrochloride also has anti-orthopoxvirus and anticancer activity. Amantadine hydrochloride can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research .
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- HY-B0402
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1-Adamantanamine; 1-Aminoadamantane
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Influenza Virus
Orthopoxvirus
SARS-CoV
Apoptosis
CDK
Bcl-2 Family
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Infection
Neurological Disease
Cancer
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Amantadine (1-Adamantanamine) is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine also has anti-orthopoxvirus and anticancer activity. Amantadine can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research .
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- HY-B0402B
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1-Adamantanamine sulfate; 1-Aminoadamantane sulfate
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Influenza Virus
Orthopoxvirus
SARS-CoV
Apoptosis
CDK
Bcl-2 Family
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Infection
Neurological Disease
Cancer
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Amantadine (1-Adamantanamine) sulfate is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine sulfate inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine sulfate also has anti-orthopoxvirus and anticancer activity. Amantadine sulfate can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research .
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- HY-W653905
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Isotope-Labeled Compounds
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Infection
Neurological Disease
Cancer
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Amantadine-d15 hydrochloride is deuterated labeled Amantadine. Amantadine (1-Adamantanamine) is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine also has anti-orthopoxvirus and anticancer activity. Amantadine can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research .
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- HY-B0402AR
-
|
Influenza Virus
Orthopoxvirus
SARS-CoV
Apoptosis
Bcl-2 Family
CDK
|
Infection
Neurological Disease
Cancer
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Amantadine (hydrochloride) (Standard) is the analytical standard of Amantadine (hydrochloride). This product is intended for research and analytical applications. Amantadine (1-Adamantanamine) hydrochloride is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine hydrochloride inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine hydrochloride also has anti-orthopoxvirus and anticancer activity. Amantadine hydrochloride can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research .
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-
- HY-B0402R
-
|
Influenza Virus
Orthopoxvirus
SARS-CoV
Apoptosis
CDK
Bcl-2 Family
|
Infection
Neurological Disease
Cancer
|
Amantadine (Standard) is the analytical standard of Amantadine. This product is intended for research and analytical applications. Amantadine (1-Adamantanamine) is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine also has anti-orthopoxvirus and anticancer activity. Amantadine can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research [4] .
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HY-L076
-
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1,443 compounds
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Drug-induced liver injury (DILI; also known as drug-induced hepatotoxicity) is caused by medications (prescription or OTC), herbal and dietary supplements (HDS), or other xenobiotics that result in abnormalities in liver tests or in hepatic dysfunction that cannot be explained by other causes. Drugs are an important cause of liver injury. Drug-induced hepatic injury is the most common reason cited for withdrawal of an approved drug.
DILI is thought to occur via several different mechanisms. Among these are direct impairment of the structural (e.g., mitochondrial dysfunction) and functional integrity of the liver; production of a metabolite that alters hepatocellular structure and function; production of a reactive drug metabolite that binds to hepatic proteins to produce new antigenic drug-protein adducts, which are targeted by hosts’ defenses (the hapten hypothesis); and initiation of a systemic hypersensitivity response (i.e., drug allergy) that damages the liver.
MCE Drug-induced Liver Injury (DILI) Compound Library contains a unique collection of 1,443 hepatotoxicity causing compounds and is a powerful tool to research DILI and other drug toxicities. This library can be used to understand the mechanisms of DILI, identify biomarkers for early DILI prediction, and allow timely recognition during drug development, thus finally achieving successful DILI prevention and assessment in the pre-marketing phase.
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HY-L155
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492 compounds
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Mitochondria, as the main place of energy supply in life, is essential to maintain normal life activities. Mitochondrial dysfunction is associated with common diseases, such as cardiovascular diseases, neurodegenerative diseases, diabetes and cancer. The heart, brain and liver rely heavily on mitochondrial function as the main organs for drug metabolism. In addition, mitochondria is also a target of many drugs, some of which induce organotoxicity by inducing mitochondrial toxicity.
MCE contains 492 mitochondrial toxic compounds, which can be used as tool compounds for drug development and disease mechanism research.
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Cat. No. |
Product Name |
Target |
Research Area |
-
- HY-P1624
-
ALX-0600
|
Nuclear Hormone Receptor 4A/NR4A
FXR
|
Inflammation/Immunology
|
Teduglutide (ALX-0600) is an analog of human glucagon like peptide-2 (GLP-2). Teduglutide can activate the expression of nuclear receptor subfamily 4 group a member 1 (NR4a1)/nur77 and intestinal FXR signaling in human hepatic stellate cells, thereby improving liver inflammation and fibrosis in mice with sclerosing cholangitis. Teduglutide can alleviate intestinal dysfunction in mice, improve lung injury, alleviate obesity related neuroinflammation and cell apoptosis .
|
-
- HY-P3003
-
|
Apoptosis
|
Neurological Disease
Inflammation/Immunology
|
Cereulide, a toxin depsipeptide, can be produced by Bacillus cereus. Cereulide induces cell apoptosis. Cereulide acts on mitochondria, leading to dysfunction in different organs (liver, pancreatic islet, brain, intestines, etc.) and body systems (immune system and nervous system) .
|
-
- HY-P1624A
-
ALX-0600 TFA
|
Nuclear Hormone Receptor 4A/NR4A
FXR
|
Inflammation/Immunology
|
Teduglutide TFA is a dipeptidyl peptidase IV resistant glucagon-like peptide 2 (GLP-2) analogue. Teduglutide TFA can activate the expression of nuclear receptor subfamily 4 group a member 1 (NR4a1)/nur77 and intestinal FXR signaling in human hepatic stellate cells, thereby improving liver inflammation and fibrosis in mice with sclerosing cholangitis. Teduglutide TFA can alleviate intestinal dysfunction in mice, improve lung injury, alleviate obesity related neuroinflammation and cell apoptosis .
|
Cat. No. |
Product Name |
Category |
Target |
Chemical Structure |
-
- HY-42682
-
-
-
- HY-42682R
-
|
Microorganisms
Source classification
Vitis vinifera cv. Zalema
Plants
Vitaceae
Saccharides
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Others
|
D(+)-Galactosamine (hydrochloride) (Standard) is the analytical standard of D(+)-Galactosamine (hydrochloride). This product is intended for research and analytical applications. D(+)-Galactosamine (D-Galactosamine) hydrochloride, which is an established experimental toxin, primarily causes liver injury by the generation of free radicals and depletion of UTP nucleotides. D(+)-Galactosamine hydrochloride intoxication also induces renal dysfunction thus, renal failure is often associated with the end-stage of the liver damage. Lipopolysaccharide/D(+)-Galactosamine-induced acute liver injury is a known animal model of fulminant hepatic failure .
|
-
-
- HY-125129
-
-
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- HY-P3003
-
|
Microorganisms
Source classification
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Apoptosis
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Cereulide, a toxin depsipeptide, can be produced by Bacillus cereus. Cereulide induces cell apoptosis. Cereulide acts on mitochondria, leading to dysfunction in different organs (liver, pancreatic islet, brain, intestines, etc.) and body systems (immune system and nervous system) .
|
-
Cat. No. |
Product Name |
Chemical Structure |
-
- HY-W653905
-
|
Amantadine-d15 hydrochloride is deuterated labeled Amantadine. Amantadine (1-Adamantanamine) is an orally avtive and potent antiviral agent with activity against influenza A viruses. Amantadine inhibits several ion channels such as NMDA and M2, and also inhibits Coronavirus ion channels. Amantadine also has anti-orthopoxvirus and anticancer activity. Amantadine can be used for Parkinson's disease, postoperative cognitive dysfunction (POCD) and COVID-19 research .
|
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