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tumor metabolism

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-135849
    Catalase, Aspergillus niger
    3 Publications Verification

    Reactive Oxygen Species (ROS) Cancer
    Catalase, Aspergillus niger is a key enzyme in the metabolism of H2O2 and reactive oxygen species (ROS), and its expression and localization is markedly altered in tumors . Free oxygen radical scavenger.
    Catalase, Aspergillus niger
  • HY-128748

    Endogenous Metabolite Others
    DL-Glyceraldehyde is a bioactive substance involved in cellular energy metabolism and a key intermediate in sugar metabolism pathways (such as glycolysis and gluconeogenesis). During glycolysis, DL-Glyceraldehyde is converted by enzymes into other metabolites to provide energy for cells; during gluconeogenesis, DL-Glyceraldehyde participates in the synthesis of glucose as a precursor. In the field of medical research, DL-Glyceraldehyde can be used to study diseases related to sugar metabolism, such as diabetes, tumors, etc[1][2].
    DL-Glyceraldehyde
  • HY-N5034
    Phosphorylethanolamine
    3 Publications Verification

    Monoaminoethyl phosphate; NSC 254167; O-Phosphoethanolamine

    Endogenous Metabolite Neurological Disease Metabolic Disease Cancer
    Phosphorylethanolamine (Monoaminoethyl phosphate) is a membrane phospholipid and an important precursor of Phosphatidylcholine (HY-B2233B). It is found in most animal tissues and various human extracranial tumors, playing a critical role in membrane integrity, cell division, mitochondrial respiratory function, and more. Studies have shown that changes in the abundance of Phosphorylethanolamine are associated with Alzheimer's disease and Parkinson's disease. Lowering the ratio of Phosphorylethanolamine to Phosphatidylcholine in the liver can improve insulin signaling. Phosphorylethanolamine holds promise for research in the fields of cancer, neurodegenerative disorders, and metabolic diseases .
    Phosphorylethanolamine
  • HY-132832
    Sirpiglenastat
    1 Publications Verification

    DRP-104

    Others Cancer
    Sirpiglenastat (DRP-104) is a broad acting glutamine antagonist. Sirpiglenastat has anticancer effects by directly targeting tumor metabolism and simultaneously inducing a potent antitumor immune response .
    Sirpiglenastat
  • HY-59208

    Kynurine

    Endogenous Metabolite Neurological Disease Cancer
    4-Quinolone (Kynurine) is a quinoline derivative. Kynurine pathway modulates tryptophan metabolism and involves in neuroprotective effect. Kynurine promotes tumor cell survival and motility by suppressing antitumor immune .
    4-Quinolinol
  • HY-156965

    Fluorescent Dye Metabolic Disease Cancer
    BAY-771, a structurally close pyrimidinedione, is a chemical probe with good lead-like properties and high permeability in Caco-2 cells (no hint of efflux). BAY-771 shows very weak inhibitory activity in the BCAT1 biochemical assay and no activity in BCAT2. BAY-771 can be used as a negative control of HY-148242 BAY-069. BAY-771 can be used for the research of tumor metabolism .
    BAY-771
  • HY-146215

    Indoleamine 2,3-Dioxygenase (IDO) Cancer
    Hy-146215 is an enzyme that catalyzes the oxidative metabolism of tryptophan. It can immunosuppress tumors in the tumor microenvironment.
    IDO1-IN-20
  • HY-126775

    Mitochondrial Metabolism Endogenous Metabolite Cancer
    Xenoclauxin is a secondary metabolite isolated from certain species of the Penicillium genus, which exhibits an inhibitory effect on the proliferation of tumor cells. Xenoclauxin affects cellular energy metabolism, particularly by inhibiting ATP synthesis in the mitochondria. Xenoclauxin can be used for anti-tumor research .
    Xenoclauxin
  • HY-174518

    mRNA Cancer
    Human TNF mRNA encodes the human tumor necrosis factor (TNF) protein, a multifunctional proinflammatory cytokine that belongs to the tumor necrosis factor (TNF) superfamily. TNF is involved in the regulation of a wide spectrum of biological processes including cell proliferation, differentiation, apoptosis, lipid metabolism, and coagulation.
    Human TNF mRNA
  • HY-128748R

    Endogenous Metabolite Others
    DL-Glyceraldehyde (Standard) is the analytical standard of DL-Glyceraldehyde. This product is intended for research and analytical applications. DL-Glyceraldehyde is a bioactive substance involved in cellular energy metabolism and a key intermediate in sugar metabolism pathways (such as glycolysis and gluconeogenesis). During glycolysis, DL-Glyceraldehyde is converted by enzymes into other metabolites to provide energy for cells; during gluconeogenesis, DL-Glyceraldehyde participates in the synthesis of glucose as a precursor. In the field of medical research, DL-Glyceraldehyde can be used to study diseases related to sugar metabolism, such as diabetes, tumors, etc .
    DL-Glyceraldehyde (Standard)
  • HY-N0587
    Demethylzeylasteral
    5 Publications Verification

    Apoptosis TGF-beta/Smad Estrogen Receptor/ERR NF-κB FAK Cardiovascular Disease Inflammation/Immunology Endocrinology Cancer
    Demethylzeylasteral is an orally active triterpenoid compound isolated from Tripterygium wilfordii, which has functions such as anti-inflammatory, anti-tumor, anti fertility, estrogen metabolism regulation, immune suppression, and immune system regulation [1][2].
    Demethylzeylasteral
  • HY-174511

    mRNA Cancer
    Human TP53 mRNA encodes the human tumor protein p53 (TP53) protein, a tumor suppressor protein containing transcriptional activation, DNA binding, and oligomerization domains. TP53 responds to diverse cellular stresses to regulate expression of target genes, thereby inducing cell cycle arrest, apoptosis, senescence, DNA repair, or changes in metabolism.
    Human TP53 mRNA
  • HY-P10928A

    Transferrin Receptor Neurological Disease Cancer
    BCY17901 is a potent irreversible transferrin receptor 1 (TfR1) inhibitor (Ki=12 nM). BCY17901 inhibits TfR1-mediated endocytosis and iron transport, and suppresses the proliferation of tumor cells dependent on iron metabolism. BCY17901 can be used in the research of solid tumors (such as breast cancer, glioblastoma) and neurodegenerative diseases .
    BCY17901
  • HY-N0093A

    Cyclocytidine; Cyclo-CMP

    DNA/RNA Synthesis CMV Autophagy Cancer
    Ancitabine is the precursor of the anticancer agent Cytarabine (HY-13605), which targets targets related to cell metabolism and proliferation. Ancitabine can inhibit tumor cell proliferation, interfere with the DNA synthesis process of tumor cells, and prevent cell division. Under alkaline pH conditions, Ancitabine can be quantitatively converted into Cytarabine and can be used in the study of cancers such as colorectal cancer .
    Ancitabine
  • HY-N0093
    Ancitabine hydrochloride
    1 Publications Verification

    Cyclocytidine hydrochloride; Cyclo-CMP hydrochloride; Cyclo-C

    Autophagy CMV DNA/RNA Synthesis Cancer
    Ancitabine hydrochloride is the precursor of the anticancer agent Cytarabine (HY-13605), which targets targets related to cell metabolism and proliferation. Ancitabine hydrochloride can inhibit tumor cell proliferation, interfere with the DNA synthesis process of tumor cells, and prevent cell division. Under alkaline pH conditions, Ancitabine hydrochloride can be quantitatively converted into Cytarabine and can be used in the study of cancers such as colorectal cancer .
    Ancitabine hydrochloride
  • HY-P10928

    Transferrin Receptor Neurological Disease Cancer
    BCY17901 TFA is a potent irreversible transferrin receptor 1 (TfR1) inhibitor (Ki=12 nM). BCY17901 TFA inhibits TfR1-mediated endocytosis and iron transport, and suppresses the proliferation of tumor cells dependent on iron metabolism. BCY17901 TFA can be used in the research of solid tumors (such as breast cancer, glioblastoma) and neurodegenerative diseases .
    BCY17901 TFA
  • HY-Y0520S

    Endogenous Metabolite Inflammation/Immunology
    Itaconic acid- 13C5 is the 13C labeled Itaconic acid. Itaconic acid, a precursor of polymers, chemicals, and fuels, can be synthesized by many fungi. Itaconic acid also is a macrophage-specific metabolite. Itaconic acid mediates crosstalk between macrophage metabolism and peritoneal tumors .
    Itaconic acid-13C5
  • HY-174586

    mRNA Inflammation/Immunology
    Human LTBR mRNA encodes the human lymphotoxin beta receptor (LTBR) protein, a member of the tumor necrosis factor receptor superfamily. LTBR plays a role in signalling during the development of lymphoid and other organs, lipid metabolism, immune response, and programmed cell death.
    Human LTBR mRNA
  • HY-170322

    Indoleamine 2,3-Dioxygenase (IDO) Metabolic Disease
    Human TDO2-IN-1 (Cpd-2) is a potent inhibitor of Human TDO2, with the IC50 of 14.8 nM. Human TDO2-IN-1 plays an important role in metabolism, inflammation, and tumor immune surveillance research .
    Human TDO2-IN-1
  • HY-P99157

    CD276/B7-H3 Cancer
    Omburtamab is a humanized monoclonal antibody targeting B7-H3 (CD276). Omburtamab selectively binds to B7-H3 highly expressed on the surface of tumor cells and activates anti-tumor immune responses mediated by T cells and natural killer (NK) cells. Omburtamab can promote the specific infiltration of CAR-T cells into tumors, enhance the killing function of NK cells through the CD16 signaling pathway, and regulate tumor cell glucose metabolism (such as inhibiting the Warburg effect). Omburtamab has the potential to inhibit solid tumors such as non-small cell lung cancer (NSCLC) .
    Omburtamab
  • HY-Y0520
    Itaconic acid
    2 Publications Verification

    Methylenesuccinic acid

    Endogenous Metabolite Ferroptosis Inflammation/Immunology Cancer
    Itaconic acid, a precursor of polymers, chemicals, and fuels, can be synthesized by many fungi. Itaconic acid also is a macrophage-specific metabolite. Itaconic acid mediates crosstalk between macrophage metabolism and peritoneal tumors. Itaconic acid has anti-inflammatory, anti-microbial and immunomodulatory effect .
    Itaconic acid
  • HY-N5034R

    Monoaminoethyl phosphate (Standard); NSC 254167 (Standard); O-Phosphoethanolamine (Standard)

    Reference Standards Endogenous Metabolite Metabolic Disease Cancer
    Phosphorylethanolamine (Standard) is the analytical standard of Phosphorylethanolamine. This product is intended for research and analytical applications. Phosphorylethanolamine (Monoaminoethyl phosphate) is present in most animal tissues and is also present in various human extracranial tumors. Phosphorylethanolamine is considered as the intermediate product of phospholipid metabolism. Phosphorylethanolamine is essential for the formation and maintenance of the cell membrane .
    Phosphorylethanolamine (Standard)
  • HY-W014233

    Endogenous Metabolite Aminoacyl-tRNA Synthetase Cancer
    L-Histidinol dihydrochloride is an orally active histidyl-tRNA synthetase inhibitor. L-Histidinol dihydrochloride interferes with the initiation stage of protein synthesis, thus affecting cell proliferation and metabolism. L-Histidinol dihydrochloride has the effect of modulating the sensitivity of tumor cells to chemotherapeutic agents. L-Histidinol dihydrochloride reduces the toxicity of certain chemotherapeutic agents to normal tissues and enhance the sensitivity of tumor cells to chemotherapeutic agents .
    L-Histidinol dihydrochloride
  • HY-113081
    1-Methyladenosine
    3 Publications Verification

    Endogenous Metabolite PPAR Hedgehog Cancer
    1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis .
    1-Methyladenosine
  • HY-106435

    DNA/RNA Synthesis DNA Alkylator/Crosslinker Cancer
    Cystemustine is a DNA inhibitor (a chloroethyl nitrosourea, CENU). Cystemustine can cause DNA cross-linking, thereby inhibiting the proliferation of tumor cells. Cystemustine can also exert cytotoxic effects by interfering with the cell cycle, inducing cell re-differentiation, and altering phospholipid metabolism. Cystemustine exhibits high anti-tumor activity and a relatively short plasma half-life in mice. Cystemustine can be used for the study of various malignant tumors, including melanoma, glioma, renal cancer, head and neck cancer, and colorectal cancer, etc .
    Cystemustine
  • HY-N0587R

    Reference Standards Apoptosis TGF-beta/Smad Estrogen Receptor/ERR NF-κB FAK Cardiovascular Disease Inflammation/Immunology Endocrinology Cancer
    Demethylzeylasteral (Standard) is the analytical standard of Demethylzeylasteral. This product is intended for research and analytical applications. Demethylzeylasteral is an orally active triterpenoid compound isolated from Tripterygium wilfordii, which has functions such as anti-inflammatory, anti-tumor, anti fertility, estrogen metabolism regulation, immune suppression, and immune system regulation .
    Demethylzeylasteral (Standard)
  • HY-59208R

    Endogenous Metabolite Neurological Disease Cancer
    4-Quinolinol (Standard) is the analytical standard of 4-Quinolinol. This product is intended for research and analytical applications. 4-Quinolone (Kynurine) is a quinoline derivative. Kynurine pathway modulates tryptophan metabolism and involves in neuroprotective effect. Kynurine promotes tumor cell survival and motility by suppressing antitumor immune .
    4-Quinolinol (Standard)
  • HY-163199

    ASCT mTOR Apoptosis Autophagy Cancer
    ASCT2-IN-2 (compound 25e) is an ASCT2 inhibitor with IC50 of 5.14 μM. ASCT2-IN-2 regulates amino acid metabolism as well as mTOR signaling and thereby induces cell apoptosis. ASCT2-IN-2 inhibits tumor growth .
    ASCT2-IN-2
  • HY-14518A

    4-Aminofolic acid sodium; APGA sodium

    Antifolate Cancer
    Aminopterin sodium (4-Aminofolic acid sodium) is an anti-tumor drug with immunosuppressive activity. Aminopterin sodium blocks the metabolism of folic acid by inhibiting the activity of dihydrofolate reductase, thereby affecting nucleic acid synthesis. Aminopterin sodium is mainly used to inhibit acute lymphoblastic leukemia and certain other types of cancer. Aminopterin sodium is also used clinically as an immunosuppressant to suppress autoimmune diseases .
    Aminopterin sodium
  • HY-B1334

    Mitochondrial Metabolism Apoptosis Cardiovascular Disease Cancer
    Perhexiline is an orally active CPT1 and CPT2 inhibitor that reduces fatty acid metabolism. Perhexiline induces mitochondrial dysfunction and apoptosis in hepatic cells. Perhexiline can cross the blood brain barrier (BBB) and shows anti-tumor activity. Perhexiline can be used in the research of cancers, and cardiovascular disease like angina .
    Perhexiline
  • HY-B1334A
    Perhexiline maleate
    5 Publications Verification

    Mitochondrial Metabolism Apoptosis Cardiovascular Disease Cancer
    Perhexiline maleate is an orally active CPT1 and CPT2 inhibitor that reduces fatty acid metabolism. Perhexiline maleate induces mitochondrial dysfunction and apoptosis in hepatic cells. Perhexiline maleate can cross the blood brain barrier (BBB) and shows anti-tumor activity. Perhexiline maleate can be used in the research of cancers, and cardiovascular disease like angina .
    Perhexiline maleate
  • HY-N6237

    Aminotransferases (Transaminases) Apoptosis Cancer
    Aspulvinone O is a selective inhibitor of glutamate oxaloacetate aminotransferase GOT1. Aspulvinone O inhibits glutamine metabolism and reduces NADPH production, thereby inducing oxidative stress and apoptosis in pancreatic ductal adenocarcinoma (PDAC) cells. Aspulvinone O inhibits PDAC cell proliferation in vitro and tumor growth in xenograft models .
    Aspulvinone O
  • HY-154973

    Oxidative Phosphorylation Mitochondrial Metabolism AMPK Metabolic Disease Cancer
    AMPK activator 11 is an AMP-activated protein kinase (AMPK) activator with nanomolelevel antiproliferation activities against several CRCs. AMPK activator 11 selectively inhibits the RKO xenograft growth along by activating AMPK and upregulating oxidative phosphorylation (OXPHOS) ( mitochondrial metabolism ) and can be used for anti-tumor and metabolic disease research .
    AMPK activator 11
  • HY-116264

    Ser/Thr Protease Cancer
    CatB-IN-1 is an enzyme inhibitor with significant inhibitory activity against tumor invasion. CatB-IN-1 may reduce the invasiveness of tumor cells by regulating intracellular protein metabolism. CatB-IN-1 demonstrates effective anti-invasive ability in cell models and can significantly reduce the invasive ability of MCF-10A neoT cells. The structure-activity relationship study of CatB-IN-1 shows that its design can target multiple functions of cat hepsin B .
    CatB-IN-1
  • HY-149540

    Fatty Acid Synthase (FASN) Cancer
    CTL-06 is an inhibitor of Fatty Acid Synthase (FASN) (IC50: 3 μM) and can induce apoptosis. CTL-12 blocks the cell cycle in the Sub-G1/S phase, upregulates the expression of caspase-9 and the apoptosis marker Bax, and downregulates the anti-apoptotic marker Bcl-xL. CTL-12 inhibits de novo lipogenesis, blocks the metabolic demands of tumor cells, and is commonly used in breast and colorectal cancer research .
    CTL-06
  • HY-149541

    Fatty Acid Synthase (FASN) Cancer
    CTL-12 is an inhibitor of fatty acid synthase (FASN) (IC50: 2.5 μM) and can induce apoptosis. CTL-12 blocks the cell cycle in the Sub-G1/S phase, upregulates the expression of caspase-9 and the apoptosis marker Bax, and downregulates the anti-apoptotic marker Bcl-xL. CTL-12 inhibits de novo lipogenesis, blocks the metabolic demands of tumor cells, and is commonly used in breast and colorectal cancer research .
    CTL-12
  • HY-P1120A

    Formyl Peptide Receptor (FPR) PERK Apoptosis Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    WKYMVm (TFA) is a selective formylpeptide receptor 2 (FPR2) agonist. WKYMVm has a powerful anti-inflammatory effect that can reduce lung injury and spinal cord injury. WKYMVm ameliorates obesity by regulating lipid metabolism and leptin signaling. WKYMVm is involved in the regulation of immune cells by activating FPRs, and WKYMVm can promote the chemotactic migration of immune cells and inhibit the apoptosis of phagocytes. In addition, WKYMVm may play a favorable or unfavorable role in tumors, depending on the type of tumor .
    WKYMVm TFA
  • HY-P1120

    Formyl Peptide Receptor (FPR) PERK Apoptosis Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    WKYMVm is a selective formylpeptide receptor 2 (FPR2) agonist. WKYMVm has a powerful anti-inflammatory effect that can reduce lung injury and spinal cord injury. WKYMVm ameliorates obesity by regulating lipid metabolism and leptin signaling. WKYMVm is involved in the regulation of immune cells by activating FPRs. WKYMVm can promote the chemotactic migration of immune cells and inhibit the apoptosis of phagocytes. In addition, WKYMVm may play a favorable or unfavorable role in tumors, depending on the type of tumor .
    WKYMVm
  • HY-Y0520R

    Methylenesuccinic acid (Standard)

    Reference Standards Endogenous Metabolite Ferroptosis Inflammation/Immunology
    Itaconic acid (Standard) is the analytical standard of Itaconic acid. This product is intended for research and analytical applications. Itaconic acid, a precursor of polymers, chemicals, and fuels, can be synthesized by many fungi. Itaconic acid also is a macrophage-specific metabolite. Itaconic acid mediates crosstalk between macrophage metabolism and peritoneal tumors. Itaconic acid has anti-inflammatory, anti-microbial and immunomodulatory effect .
    Itaconic acid (Standard)
  • HY-W422400

    Biochemical Assay Reagents Others Cancer
    Fluoroglutamine (2S,4R) is a fluorinated derivative of glutamine. As a substrate for various aminotransferases, Fluoroglutamine (2S,4R) can be used as a tracer for positron emission tomography (PET) imaging. Fluoroglutamine (2S,4R) is applied in the research fields of tumor metabolism and imaging .
    Fluoroglutamine (2S,4R)
  • HY-145963

    GLUT Cancer
    DRB18 is a potent pan-class GLUT inhibitor. DRB18 alters energy-related metabolism in A549 cells by changing the abundance of metabolites in glucose-related pathways. DRB18 can eventually lead to G1/S phase arrest and increase oxidative stress and necrotic cell death. DRB18 has anti-tumor activity .
    DRB18
  • HY-Y1322

    Monoamine Oxidase Reactive Oxygen Species (ROS) NF-κB Interleukin Related TNF Receptor Neurological Disease Inflammation/Immunology
    Triphenyl phosphate is an organic phosphate flame retardant. Triphenyl phosphate can disrupt placental tryptophan metabolism by activating MAOA/ROS/NFκB, leading to abnormal neurological behavior. Triphenyl phosphate promotes oxidative stress by inducing inflammatory factors like nuclear factor kappa B (NFκB), interleukin-6, and tumor necrosis factor α. Triphenyl phosphate can also cause allergic contact dermatitis .
    Triphenyl phosphate
  • HY-158378

    R-AST-OH

    Glutaminase Cancer
    Trivalent hydroxyarsinothricn (R-AST-OH) is a covalent and irreversible kidney-type glutaminase (KGA) inhibitor. Trivalent hydroxyarsinothricn binds to the glutamine binding site and forms a covalent bond with an active site cysteine residue. Trivalent hydroxyarsinothricn selectively kills triple-negative breast cancer (TNBC) cells and is not cytotoxic to the control cell line. KGA is the enzyme that controls glutamine metabolism and is correlated with tumor malignancy .
    Trivalent hydroxyarsinothricn
  • HY-113853

    Akt Apoptosis Others
    WF-10129 is a cytotoxic steroidal compound isolated from the plant Physalis. WF-10129 inhibits liver cancer cell proliferation, induces apoptosis, interferes with metabolism, and significantly reduces lactate production in vitro and in vivo. WF-10129 can also exert anti-tumor activity by regulating the expression of related genes and proteins through the AKT-p53 pathway.
    WF-10129
  • HY-176237

    NAMPT Apoptosis Cancer
    Nampt-IN-16 (Compound 9a) is an orally active NAMPT inhibitor with an IC50 of 0.15 μM. Nampt-IN-16 can reduce intracellular NAD + and ATP levels. Nampt-IN-16 can inhibit the proliferation, migration, and invasion, induce cell cycle arrest and apoptosis, and alter cellular metabolism of gastric cancer cells. Nampt-IN-16 can be used in the research of tumors such as gastric cancer .
    Nampt-IN-16
  • HY-148114

    Autophagy Cancer
    MOPIPP is a novel indolebased chalcone, and vacuolin-1, is a non-lethal vacuoleinducing 2-propyl analog of MOMIPP (HY-119624). MOPIPP induces cellular vacuolization and increases autophagosomes numbers. MOPIPP also triggers methuosis, and interrupts glucose uptake and glycolytic metabolism. MOPIPP can cross the blood-brain barrier and shows efficacy in suppressing tumor progression agaisnt glioblastoma cells .
    MOPIPP
  • HY-113081S

    Isotope-Labeled Compounds Endogenous Metabolite PPAR Hedgehog Cancer
    1-Methyl Adenosine-d3 is the deuterium labeled 1-Methyladenosine. 1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis .
    1-Methyladenosine-d3
  • HY-B1334AR

    Mitochondrial Metabolism Apoptosis Cardiovascular Disease Cancer
    Perhexiline (maleate) (Standard) is the analytical standard of Perhexiline (maleate). This product is intended for research and analytical applications. Perhexiline maleate is an orally active CPT1 and CPT2 inhibitor that reduces fatty acid metabolism. Perhexiline maleate induces mitochondrial dysfunction and apoptosis in hepatic cells. Perhexiline maleate can cross the blood brain barrier (BBB) and shows anti-tumor activity. Perhexiline maleate can be used in the research of cancers, and cardiovascular disease like angina .
    Perhexiline maleate (Standard)
  • HY-113081S1

    Isotope-Labeled Compounds Endogenous Metabolite PPAR Hedgehog Cancer
    1-Methyladenosine-d3 hydriodide is the deuterium labeled 1-Methyladenosine (HY-113081). 1-Methyladenosine is an RNA modification that can serve as a tumor marker, with elevated levels in the body associated with cancer development. Following 1-methyladenosine methylation, upregulation of PPARδ expression regulates cholesterol metabolism and activates Hedgehog signaling pathway, driving liver tumorigenesis .
    1-Methyladenosine-d3 hydriodide
  • HY-150023

    EGFR Itk PI4K Btk CDK Raf JAK Cancer
    BI-1622 is an orally active, potent and highly selective HER2 (ERBB2) inhibitor, with an IC50 of 7 nM. BI-1622 shows greater than 25-fold selectivity over EGFR. BI-1622 shows high antitumor efficacy in vivo in xenograft mouse tumor models with engineered H2170 and PC9 cells and had a favorable agent metabolism and pharmacokinetics profile .
    BI-1622

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