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lifespan

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51

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2

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2

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5

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1

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13

Natural
Products

3

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N2342
    Procyanidin C1
    Maximum Cited Publications
    8 Publications Verification

    PCC1

    Apoptosis Cancer
    Procyanidin C1 (PCC1), a natural polyphenol with oral activity, causes DNA damage, cell cycle arrest and induces apoptosis. Procyanidin C1 decreases the level of Bcl-2, but enhances BAX, caspase 3 and 9 expression in cancer cells. Procyanidin C1 shows senotherapeutic activity and increases lifespan in mice .
    Procyanidin C1
  • HY-N2031
    Parishin
    4 Publications Verification

    Others Neurological Disease
    Parishin is a phenolic glucoside isolated from Gastrodia elata. Parishin exhibits antiaging effects and extends the lifespan of yeast via regulation of Sir2/Uth1/TOR signaling pathway .
    Parishin
  • HY-N8804

    Asparanin B

    Reactive Oxygen Species (ROS) Neurological Disease Cancer
    Shatavarin IV is a steroidal saponin, that can be isolated from the roots of Asparagus racemosus (Liliaceae). Shatavarin IV shows anticancer activity. Shatavarin IV elicits lifespan extension and alleviates Parkinsonism in Caenorhabditis elegans .
    Shatavarin IV
  • HY-P991488

    Interleukin Related Inflammation/Immunology
    BI-765423 is a selective monoclonal antibody inhibitor targeting IL-11. BI-765423 blocks IL-11-mediated signaling, inhibits fibroblast activation, and can extend the healthy lifespan of mammals, counteract cellular senescence in human cells, and alleviate inflammatory aging-related pathological processes. BI-765423 is primarily used in research on fibrotic diseases such as idiopathic pulmonary fibrosis (IPF) .
    BI-765423
  • HY-172371

    Hemoglobin Neurological Disease Metabolic Disease Inflammation/Immunology
    Hypoxystat is an orally active hypoxia mimetic. HypoxyStat increases Hemoglobin’s oxygen affinity, limiting oxygen offloading to the tissues and inducing local tissue hypoxia. Hypoxystat reduces Iba1 + cells. HypoxyStat causes systemic hypoxia. Hypoxystat effectively rescues hyperglycemia in mouse models of type 1 and type 2 diabetes. HypoxyStat not only extends lifespan but also rescues key neuropathological and behavioral deficits in the premier mouse model of Leigh syndrome .
    Hypoxystat
  • HY-133968
    24-Methylenecholesterol
    2 Publications Verification

    Ostreasterol

    Acyltransferase Reactive Oxygen Species (ROS) Inflammation/Immunology
    24-Methylenecholesterol (Ostreasterol) is a regulator targeting acyl-CoA cholesterol acyltransferase (ACAT) with anti-aging and neuroprotective effects. 24-Methylenecholesterol mimics the effects of nerve growth factor (NGF), can extend yeast lifespan through an anti-oxidative stress mechanism, and exhibits neuroprotective activity in PC12 cells. 24-Methylenecholesterol can reduce intracellular reactive oxygen species (ROS) and malondialdehyde (MDA) levels, activate anti-oxidative stress pathways (such as UTH1, SOD-related genes), and promote synaptic growth .
    24-Methylenecholesterol
  • HY-N0723
    Neomangiferin
    1 Publications Verification

    Autophagy p38 MAPK TNF Receptor Interleukin Related PPAR Metabolic Disease Inflammation/Immunology
    Neomangiferin is an orally active natural flavonoid. Neomangiferin partially ameliorates non-alcoholic fatty liver disease (NAFLD) by regulating the expression of genes related to free fatty acid uptake and lipid oxidation. Neomangiferin exerts anti-colitis effects by inhibiting Th17/Treg cell differentiation. Neomangiferin exerts anti-aging and lifespan-extending effects by targeting upregulation of bas-1, which in turn activates the autophagy, IIS and MAPK pathways. Neomangiferin has the potential to prevent aseptic loosening of prostheses after total joint arthroplasty due to its significant anti-inflammatory and osteoclastogenesis-inhibiting effects .
    Neomangiferin
  • HY-18676B

    OSU-T315 analog

    Integrin Autophagy Apoptosis Caspase PDHK Cancer
    ILK-IN-2 (OSU-T315 analog) is an oral PDK2 inhibitor and also an ILK inhibitor, with an IC50 of 0.6 μM. ILK-IN-2 induces cell autophagy and apoptosis, showing anti-tumor activity. ILK-IN-2 directly abolishes AKT activation by preventing AKT from translocating to lipid rafts, triggering Caspase-dependent apoptosis in chronic lymphocytic leukemia (CLL) and extending the lifespan in TCL1 mouse models .
    ILK-IN-2
  • HY-P10861A

    Tau Protein Neurological Disease
    RI-AG03 acetate is a proteolytically stable tau aggregation inhibitor that crosses the blood-brain barrier and exhibits oral efficacy. RI-AG03 acetate inhibits tau aggregation and promotes the formation of alternative amorphous aggregates that are non-amyloidogenic. RI-AG03 acetate mediates cellular uptake through direct membrane penetration and macropinocytosis, and its conjugation with cell-penetrating peptide sequences (CPPs) enhances the binding of cells to liposomes. RI-AG03 acetate suppresses aggregation-dependent neurodegenerative and behavioral phenotypes, and extends the lifespan of Drosophila models of tauopathy. RI-AG03 acetate can be used for research on tau-related diseases such as Alzheimer's disease .
    RI-AG03 acetate
  • HY-159834

    SLC-D011

    DNA/RNA Synthesis Others
    Progerinin (SLC-D011) is an orally active progerin-lamin A binding inhibitor. Progerinin selectively binds to the C-terminal region of progerin, disrupting its interaction with lamin A and promoting progerin degradation while sparing wild-type lamin A, B, and C. Progerinin ameliorates nuclear deformation, increases H3K9me3 levels, and reduces progerin expression in HGPS patient-derived fibroblasts. Progerinin extends lifespan in Lmna G609G/G609G mice and Lmna G609G/+ mice, improves body weight, hair morphology, cardiac function, and histological phenotypes. Progerinin can be used for the study of Hutchinson-Gilford progeria syndrome (HGPS) .
    Progerinin
  • HY-155528

    Others Others
    O4I4 (compound 23) is a OCT4-inducing compound with metabolical stability. O4I4 extends lifespan in Caenorhabditis elegans and Drosophila. O4I4 can be used for regenerative medicine and rejuvenation research .
    O4I4
  • HY-N6924
    Zingibroside R1
    1 Publications Verification

    HIV PIN1 Fungal GLUT Reactive Oxygen Species (ROS) Infection Neurological Disease Metabolic Disease Cancer
    Zingibroside R1 is an orally active triterpene saponin with multiple biological activities including antioxidant, anti-inflammatory, antiviral, and metabolic regulatory properties. Zingibroside R1 reduces the expression of PIN family members, inhibits the expression of PLT1/PLT2, WOX5, SHR, and SCR, disrupts auxin transport and distribution, triggers plant ROS responses, and inhibits root growth. Zingibroside R1 extends the lifespan of Caenorhabditis elegans, enhances its heat stress resistance, and improves its motor ability. Hydrogel derivatives of Zingibroside R1 inhibit the proliferation of Candida albicans by binding to its β-1,3-glucan and exhibit antifungal activity. Zingibroside R1 inhibits GLUT1-mediated uptake and alleviates liver injury. Zingibroside R1 can be used in research related to neurodegenerative diseases, vulvovaginal candidiasis, acute liver injury, Ehrlich ascites tumor and HIV-1 infection .
    Zingibroside R1
  • HY-121811

    Lanceolatin C

    Glycosidase Phosphatase Interleukin Related TNF Receptor COX Beclin1 GLUT FAK Akt mTOR p38 MAPK Keap1-Nrf2 Apoptosis Amyloid-β Tau Protein Autophagy Neurological Disease Inflammation/Immunology Cancer
    Pongamol (Lanceolatin C) is an orally active flavonoid with an IC50 of 75 μM and a Ki of 58 μM against PTPase-1B, and an IC50 of 103.5 μM against intestinal α-Glycosidase. Pongamol reduces the release of IL‑1β, TNF‑α, COX‑2 and iNOS in cells, reverses the nuclear translocation of NF‑κB, and upregulates the levels of Beclin 1 and LC3 Ⅱ/LC3 Ⅰ. Pongamol promotes glucose uptake by increasing the level of GLUT4 on the surface of skeletal muscle cells. Pongamol inhibits epithelial-mesenchymal transition by suppressing the FAK/Akt-mTOR signaling pathway. Pongamol inhibits neuronal cytotoxicity, suppresses cell apoptosis and extends the lifespan of Caenorhabditis elegans by activating the MAPKs/Nrf2 signaling pathway. Pongamol exerts hypoglycemic effects in diabetic mouse models. Pongamol exhibits antibacterial activity. Pongamol alleviates oxidative stress, neuroinflammation, deposition and excessive phosphorylation of Tau Protein, and restores autophagy function in Alzheimer's disease mouse models by inhibiting the Akt/mTOR signaling pathway. Pongamol is applicable to research related to Alzheimer's disease, type 2 diabetes, non-small cell lung cancer and postprandial hyperglycemia .
    Pongamol
  • HY-P11005

    Dynamin ATP Synthase Neurological Disease
    P259 is a Drp1-Mff inhibitor. P259 distinguishes physiological from pathological fission by specifically inhibiting Drp1-Mff interaction. P259 elongates cell mitochondria and disrupts mitochondrial function and motility. P259 reduces ATP levels and alters mitochondrial structure in the brain, resulting in behavioral deficits in wild-type mice and a short lifespan in Huntington's disease (HD) mice model .
    P259
  • HY-B2119

    Tauroglycocholic acid sodium salt

    Biochemical Assay Reagents Metabolic Disease
    Sodium tauroglycocholate (Tauroglycocholic acid sodium salt) is a multifunctional surfactant and penetration enhancer that can serve as a cholegraphic contrast agent. In organic solvents, Sodium tauroglycocholate embeds and stabilizes invertase by forming reverse micelles, and prolongs its active lifespan. In terms of transdermal absorption, Sodium tauroglycocholate effectively regulates the flux of aminophylline through snake slough by binding to keratin filaments, disrupting keratinocytes and altering lipid components of the stratum corneum. It exhibits rapid penetration characteristics without lag time at a concentration of 100 μg/mL. Sodium tauroglycocholate does not interfere with the hepatic uptake of Gd-EOB-DTPA by the bile acid transport system in rat hepatocytes .
    Sodium tauroglycocholate
  • HY-159067

    DEAE-dextran, MW 500000 hydrochloride, from bacterial (Leuconostoc mesenteroides); Diethylaminoethyl-dextran, MW 500000 hydrochloride

    Biochemical Assay Reagents Cancer
    DEAE-dextran, MW 500000 hydrochloride (DEAE-dextran, MW 500000 hydrochloride, from bacterial (Leuconostoc mesenteroides)) is a high-molecular-weight positively charged polymer that significantly enhances the uptake of viral RNA by tissue culture cells. When employed in the delivery system for "tumor immunity" RNA-splenocyte transfer, DEAE-dextran can markedly extend the lifespan of tumor-bearing animals, comparable to that of actively immunized animals. Furthermore, DEAE-dextran serves as a complexing agent for nucleic acids, forming composite particles with DNA/RNA for extensive applications in gene delivery. Additionally, DEAE-dextran can be utilized as a coating for liposomes .
    DEAE-dextran, MW 500000 hydrochloride
  • HY-P10861

    Tau Protein Neurological Disease
    RI-AG03 is a proteolytically stable tau aggregation inhibitor that crosses the blood-brain barrier and exhibits oral efficacy. RI-AG03 inhibits tau aggregation and promotes the formation of alternative amorphous aggregates that are non-amyloidogenic. RI-AG03 mediates cellular uptake through direct membrane penetration and macropinocytosis, and its conjugation with cell-penetrating peptide sequences (CPPs) enhances the binding of cells to liposomes. RI-AG03 suppresses aggregation-dependent neurodegenerative and behavioral phenotypes, and extends the lifespan of Drosophila models of tauopathy. RI-AG03 can be used for research on tau-related diseases such as Alzheimer's disease .
    RI-AG03
  • HY-124089

    Cannabinoid Receptor Metabolic Disease
    Eicosapentaenoyl ethanolamide, an omega-3 fatty acid, is one of N-acylethanolamines (NAEs). Eicosapentaenoyl ethanolamide is cannabinoid CB1/CB2 receptor agonist. Eicosapentaenoyl ethanolamide acts as a metabolic signal. Eicosapentaenoyl ethanolamide inhibits dietary restriction (DR)-induced lifespan extension in wild type animals and suppresses lifespan extension in a TOR pathway mutant .
    Eicosapentaenoyl ethanolamide
  • HY-162269

    NAMPT Inflammation/Immunology
    Nampt activator-5 is a NAMPT activator with a KD value of 6.19 μM. Nampt activator-5 activates the rate-limiting enzyme in NAD + biosynthesis and promotes NAD + production. Nampt activator-5 delays the senescence process of senescent hepatocytes, extends the lifespan of *Caenorhabditis elegans*, and alleviates age-related dysfunction and abnormal biomarkers in naturally aged mice. Nampt activator-5 can be used in aging research .
    Nampt activator-5
  • HY-162866

    Autophagy Metabolic Disease
    CXM102 is an autophagy activator. CXM102 can induce autophagy in aged BMSCs, leading to the rejuvenation of BMSCs and preferential differentiation into osteoblasts. CXM102 promotes the nuclear translocation of transcription factor EB (TFEB) and the formation of osteoblasts. CXM102 can stimulate bone synthesis metabolism in middle-aged male mice, reduce bone marrow adipocytes, delay bone loss, lower serum inflammation levels, decrease organ fibrosis, and extend the lifespan of the mice .
    CXM102
  • HY-N2342R

    PCC1 (Standard)

    Reference Standards Apoptosis Cancer
    Procyanidin C1 (Standard) is the analytical standard of Procyanidin C1. This product is intended for research and analytical applications. Procyanidin C1 (PCC1), a natural polyphenol with oral activity, causes DNA damage, cell cycle arrest and induces apoptosis. Procyanidin C1 decreases the level of Bcl-2, but enhances BAX, caspase 3 and 9 expression in cancer cells. Procyanidin C1 shows senotherapeutic activity and increases lifespan in mice .
    Procyanidin C1 (Standard)
  • HY-148322

    Sirtuin Infection Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    Sirtuin modulator 5 is a sirtuin modulating agent. Sirtuin modulator 5 can activate SIRT1 with a DC50 value of <50 μM. Sirtuin modulator 5 can be used for increasing the lifespan of a cell and used for the research of variety of diseases including, for example, diseases or disorders related to aging or stress, diabetes, obesity, neurodegenerative diseases, cardiovascular disease, blood clotting disorders, inflammation, cancer, and/or flushing as well as diseases or disorders that would benfit from increased mitochondrial activity .
    Sirtuin modulator 5
  • HY-175862

    Aldose Reductase Reactive Oxygen Species (ROS) PI3K Akt SOD p38 MAPK Keap1-Nrf2 Metabolic Disease
    ALR2-IN-9 is a potent ALR2 inhibitor (IC50 = 21.8 nM) with excellent antioxidant activity (EC50 for DPPH radical scavenging = 2.8 μM). ALR2-IN-9 interacts directly with Reactive Oxygen Species (ROS)/Reactive Nitrogen Species (RNS) and interrupts the free radical chain reactions, and as an endogenous enzymatic antioxidant regulator, which regulates enzyme functions of CAT and SOD. ALR2-IN-9 regulates PI3K/Akt/Nrf2 pathway to attenuate hyperglycemia-mediated mitochondrial superoxide overproduction in vitro, and ameliorates CuSO4- and H2O2-induced oxidative stress in vivo. ALR2-IN-9 prolongs lifespan of C. elegans via the regulation of stress response genes such as PMK-1. ALR2-IN-9 is a promising anti-aging drug candidate. ALR2-IN-9 can be used for diabetic complication research .
    ALR2-IN-9
  • HY-167711

    Mitochondrial Metabolism Metabolic Disease Inflammation/Immunology Cancer
    Sirtuin modulator 9 (Compound 214) is a sirtuin-modulating compound that may be used to increase lifespan of cells and in diseases related to aging, inflammation and cancer as well as diseases that would benefit from increased mitochondrial activity .
    Sirtuin modulator 9
  • HY-173337

    HSP Interleukin Related Cancer
    HSP90α-IN-1 is a HSP90α inhibitor (IC50 = 111 nM) that exhibits senolytic activity across various cellular senescence models. HSP90α-IN-1 is related to the xanthinic family. HSP90α-IN-1 is involved in research on combating age-related inflammaging and diseases, including cancer, and possibly extend a healthy lifespan .
    HSP90α-IN-1
  • HY-174438

    HSP Metabolic Disease
    PSEC13 is an activator of HSF-1/DAF-16 axis. PSEC13 can upregulate heat shock proteins. PSEC13 can form hydrogen bonds with key residues in the HSP-16.2 active site. PSEC13 can be used to enhance proteostasis and extend lifespan through the modulation of HSP-16.2. PSEC13 could promote the nuclear translocation of daf-16, upgrading the proportion of intermediate. PSEC13 can be studied in research for aging and age-related diseases .
    PSEC13
  • HY-Q49697

    Sirtuin Metabolic Disease Inflammation/Immunology Cancer
    Sirtuin modulator 3 (compound 129) is a N-phenyl benzamide derivative, acts as a sirtuin modulator .
    Sirtuin modulator 3
  • HY-148312

    Sirtuin Cardiovascular Disease Neurological Disease Inflammation/Immunology Cancer
    Sirtuin modulator 4 (compound 12) is a sirtuin modulator. Sirtuin modulator 4 shows inhibitory effect to SIRT1 with an EC50 value of 51-100 μM. Sirtuin modulator 4 may be used for the research of increasing the lifespan of a cell, and preventing a wide variety of diseases and disorders including, for example, diabetes, obesity, neurodegenerative diseases, cardiovascular diseases, inflammation and cancer .
    Sirtuin modulator 4
  • HY-N2031R

    Reference Standards Others Neurological Disease
    Parishin (Standard) is the analytical standard of Parishin. This product is intended for research and analytical applications. Parishin is a phenolic glucoside isolated from Gastrodia elata. Parishin exhibits antiaging effects and extends the lifespan of yeast via regulation of Sir2/Uth1/TOR signaling pathway .
    Parishin (Standard)
  • HY-146497

    Topoisomerase Cancer
    Topoisomerase I inhibitor 7 (Compound 8) is a potent inhibitor of Topoisomerase I. Topoisomerase I inhibitor 7 significantly inhibits tumor growth (up to 79%) and increases the lifespan (153%) of mice bearing P388 lymphoma transplants. Topoisomerase I inhibitor 7 indicates prospects for further search of new antitumor agent candidates among the heteroarene-fused anthraquinones .
    Topoisomerase I inhibitor 7
  • HY-145755

    Biochemical Assay Reagents Others
    Benzyl-piperazine-CO-benzothiazole-4-methylpiperidine alters the lifespan of a eukaryotic organism .
    Benzyl-piperazine-CO-benzothiazole-4-methylpiperidine
  • HY-153117

    Others Others
    Cyclohexyl [3,5-bis(methylthio)-4-isothiazolyl]carbamate is a compound that can be used for altering the lifespan of eukaryotic organisms .
    Cyclohexyl [3,5-bis(methylthio)-4-isothiazolyl]carbamate
  • HY-124089S

    Isotope-Labeled Compounds Cannabinoid Receptor Metabolic Disease
    Eicosapentaenoyl ethanolamide-d4 is the deuterium labeled Eicosapentaenoyl ethanolamide. Eicosapentaenoyl ethanolamide, an omega-3 fatty acid, is one of N-acylethanolamines (NAEs). Eicosapentaenoyl ethanolamide is cannabinoid CB1/CB2 receptor agonist. Eicosapentaenoyl ethanolamide acts as a metabolic signal. Eicosapentaenoyl ethanolamide inhibits dietary restriction (DR)-induced lifespan extension in wild type animals and suppresses lifespan extension in a TOR pathway mutant .
    Eicosapentaenoyl ethanolamide-d4
  • HY-155988

    Sirtuin Cardiovascular Disease Neurological Disease Metabolic Disease Cancer
    Sirtuin modulator 6 (compound 262) increases the lifespan of a cell. Sirtuin modulator 6 can be used for study of diabetes, obesity, neurodegenerative diseases, cardiovascular disease, and so an extracted from patent WO2009064913A1 .
    Sirtuin modulator 6
  • HY-169518

    Telomerase Cancer
    TERT activator-2 (Compound 1030) is a telomerase reverse transcriptase (TERT) activator that can increase the expression of TERT in cells. TERT activator-2 can be used in telomere-related cell lifespan research .
    TERT activator-2
  • HY-N12622

    Cholinesterase (ChE) Neurological Disease
    AChE-IN-58 (Compound 3) is an acetylcholinesterase (AChE) inhibitor. AChE-IN-58 can extend the mean lifespan, delay the Aβ1-42-induced paralysis, enhanc the locomotion, and alleviate glutamic acid (Glu)-induced neurotoxicity of CL4176 worms .
    AChE-IN-58
  • HY-W420337

    LH2010A

    Reactive Oxygen Species (ROS) Infection
    Fluopimomide (LH2010A) is a potent pesticide, widely used for agricultural pest management. Fluopimomide adversely affects the nematodes growth, locomotive behaviors, reproduction, and lifespan, accompanying with enhanced of reactive oxygen species (ROS) generation, lipid and lipofuscin accumulation, and malondialdehyde content. Fluopimomide inhibits antioxidant systems in the nematodes .
    Fluopimomide
  • HY-126617

    NSC 258308

    Others Cancer
    Duclauxin decreases proliferation of tumor cells in vitro and increases the lifespan of mice innoculated with Ehrlich ascitic tumor cells. Duclauxin (10-30 μg/mL) inhibits mitochondrial respiration of P-388 tumor cells and nucleic acid synthesis in cell culture of Ehrlich cancer, the lymphadenomas NK/LI and L 5178, and sarcoma 37. Duclauxin also inhibits growth of wheat coleoptile.
    Duclauxin
  • HY-N12887

    Mitochondrial Metabolism Others Cancer
    Mycothiazole is an inhibitor for mitochondrial electron transport chain (ETC) complex I. Mycothiazole exhibits cytotoxicity in cancer cells Huh7 (IC50 is 55.8 μM), U87 and MCF7. Mycothiazole induces apoptosis in Huh7. Mycothiazole utilizes the unfolded protein response (UPR) and heat shock response (HSR) pathway involved transcription factors ATFS-1 and HSF1, to extend the lifespan of C. elegans .
    Mycothiazole
  • HY-19242

    Antifolate Inflammation/Immunology
    MX-68 is an orally active antifolate agent. MX-68 can prolong the lifespan of MRL/lpr mice, delay the onset of proteinuria, and inhibit the elevation of serum blood urea nitrogen and cholesterol levels. MX-68 is also an anti-rheumatic agent, which exerts potent antiproliferative effects on rheumatoid arthritis-related cells and can inhibit arthritis in rats. MX-68 can be used in the research of autoimmune diseases such as autoimmune kidney disease and rheumatoid arthritis .
    MX-68
  • HY-P4610

    GLP Receptor Metabolic Disease
    H-Trp-Tyr-OH is an orally active tryptophan-tyrosine dipeptide with blood-brain barrier permeability. H-Trp-Tyr-OH exerts physiological regulatory effects by stimulating enteroendocrine cells to secrete glucagon-like peptide GLP-1. In mouse models of tauopathies, H-Trp-Tyr-OH inhibits tau phosphorylation, reduces the level of neurofibrillary tangles, increases dopamine turnover, upregulates synapsin expression, and elevates cecal short-chain fatty acid levels, thereby improving behavioral deficits and extending lifespan. H-Trp-Tyr-OH can be used in research related to impaired glucose tolerance and tauopathies .
    H-Trp-Tyr-OH
  • HY-133968R

    Ostreasterol (Standard)

    Reference Standards Acyltransferase Reactive Oxygen Species (ROS) Inflammation/Immunology
    24-Methylenecholesterol (Ostreasterol) (Standard) is the analytical standard of 24-Methylenecholesterol (HY-133968). This product is intended for research and analytical applications. 24-Methylenecholesterol (Ostreasterol) is a regulator targeting acyl-CoA cholesterol acyltransferase (ACAT) with anti-aging and neuroprotective effects. 24-Methylenecholesterol mimics the effects of nerve growth factor (NGF), can extend yeast lifespan through an anti-oxidative stress mechanism, and exhibits neuroprotective activity in PC12 cells. 24-Methylenecholesterol can reduce intracellular reactive oxygen species (ROS) and malondialdehyde (MDA) levels, activate anti-oxidative stress pathways (such as UTH1, SOD-related genes), and promote synaptic growth .
    24-Methylenecholesterol (Standard)
  • HY-133968S1

    Ostreasterol-13C

    Isotope-Labeled Compounds Acyltransferase Reactive Oxygen Species (ROS) Inflammation/Immunology
    24-Methylenecholesterol- 13C (Ostreasterol- 13C) is the 13C labeled 24-Methylenecholesterol (HY-133968) . 24-Methylenecholesterol (Ostreasterol) is a regulator targeting acyl-CoA cholesterol acyltransferase (ACAT) with anti-aging and neuroprotective effects. 24-Methylenecholesterol mimics the effects of nerve growth factor (NGF), can extend yeast lifespan through an anti-oxidative stress mechanism, and exhibits neuroprotective activity in PC12 cells. 24-Methylenecholesterol can reduce intracellular reactive oxygen species (ROS) and malondialdehyde (MDA) levels, activate anti-oxidative stress pathways (such as UTH1, SOD-related genes), and promote synaptic growth .
    24-Methylenecholesterol-13C
  • HY-N0723R

    Reference Standards Autophagy p38 MAPK TNF Receptor Interleukin Related PPAR Metabolic Disease Inflammation/Immunology
    Neomangiferin (Standard) is the analytical standard of Neomangiferin. This product is intended for research and analytical applications. Neomangiferin is an orally active natural flavonoid. Neomangiferin partially ameliorates non-alcoholic fatty liver disease (NAFLD) by regulating the expression of genes related to free fatty acid uptake and lipid oxidation. Neomangiferin exerts anti-colitis effects by inhibiting Th17/Treg cell differentiation. Neomangiferin exerts anti-aging and lifespan-extending effects by targeting upregulation of bas-1, which in turn activates the autophagy, IIS and MAPK pathways. Neomangiferin has the potential to prevent aseptic loosening of prostheses after total joint arthroplasty due to its significant anti-inflammatory and osteoclastogenesis-inhibiting effects.
    Neomangiferin (Standard)
  • HY-W720629

    Isotope-Labeled Compounds Phytohormone Aldehyde Dehydrogenase (ALDH) Others
    Cyanamide- 15N2 is the 15N-labeled Cyanamide (HY-Y0070). Cyanamide is a cell division and plant growth inhibitor, as well as an allelochemical derived from Vicia villosa. Cyanamide inhibits root growth and biomass accumulation in a dose-dependent manner by disrupting the formation of mitotic spindles and phragmoplast complexes, reducing the number of mitotic cells and blocking the cell cycle. The effects of Cyanamide are partially reversible after removal from low-concentration environments. Cyanamide is also a specific inhibitor of aldehyde dehydrogenase (ALDH). Although Cyanamide has no direct effect on tumor growth, it can significantly enhance the anti-tumor efficacy of Cyclophosphamide (HY-17420) at non-toxic doses by inhibiting the inactivation of Cyclophosphamide. Cyanamide enables Cyclophosphamide to exert equivalent therapeutic effects at lower doses, effectively inhibiting the growth of primary and metastatic tumors and prolonging the lifespan of tumor-bearing mice. Cyanamide is commonly used in studies related to ha-1 hepatoma and rls lymphosarcoma .
    Cyanamide-15N2
  • HY-180323

    RAR/RXR Inflammation/Immunology
    ER-38925 is a retinoid agonist with selevtivity to retinoic acid receptor subtype α (RAR-α). ER-38925 prolongs the lifespan of the recipient mice dose-dependently. ER-38925 potently inhibits alloantigenstimulated donor T lymphocyte prolifertion in vitro. ER-38925 can prevent the development of antiallogeneic cytotoxic T lymphocyte response in mice. ER-38925 inhibits serum anti-DNA autoantibody production in mouse model of human chronic GVHD .
    ER-38925
  • HY-182642

    P2X Receptor Nucleoside Antimetabolite/Analog Cardiovascular Disease
    MRS2339 is a ribose-modified nucleotide and a nucleotidase-resistant P2 receptor agonist. MRS2339 activates P2X4R. MRS2339 induces ionic currents via P2X receptors, reduces cardiomyocyte cross-sectional area and heart weight/body weight ratio, lacks vasodilatory activity, and extends the lifespan of mice with cardiomyopathy. MRS2339 can be used in research related to heart failure and cardiomyopathy .
    MRS2339
  • HY-180346

    Huntingtin Neurological Disease
    Hepta-histidine is an inhibitor of Ku70-Huntingtin protein interaction. Hepta-histidine can reverse the morphological abnormalities of primary neurons differentiatied from hiPSCs. Hepta-histidine prolongs the lifespan in severe Huntington’s disease R6/2 mouse model. Hepta-histidine ameliorates DNA damage in vitro. Hepta-histidine can be used to study anti-aggregation agent against Tau-associated neurodegenerative diseases such as Alzheimer’s disease and Huntington’s disease .
    Hepta-histidine
  • HY-181604

    Malate Dehydrogenase (MDH) Inflammation/Immunology
    MDH2-IN-2 is an orally active MDH2 inhibitor with an IC50 of 5.9 μM. MDH2-IN-2 reduces the levels of senescence markers and senescence-associated secretory phenotype (SASP) factors in mammalian cell models. MDH2-IN-2 extends the lifespan and improves the healthspan of Caenorhabditis elegans. MDH2-IN-2 alleviates tissue senescence in aged mice, inhibits SASP factors, and restores liver and kidney functions. MDH2-IN-2 is applicable for senescence-related research .
    MDH2-IN-2
  • HY-Y0070

    Phytohormone Aldehyde Dehydrogenase (ALDH) Cancer
    Cyanamide is a cell division and plant growth inhibitor, as well as an allelochemical derived from Vicia villosa. Cyanamide inhibits root growth and biomass accumulation in a dose-dependent manner by disrupting the formation of mitotic spindles and phragmoplast complexes, reducing the number of mitotic cells and blocking the cell cycle. The effects of Cyanamide are partially reversible after removal from low-concentration environments. Cyanamide is also a specific inhibitor of aldehyde dehydrogenase (ALDH). Although Cyanamide has no direct effect on tumor growth, it can significantly enhance the anti-tumor efficacy of Cyclophosphamide (HY-17420) at non-toxic doses by inhibiting the inactivation of Cyclophosphamide. Cyanamide enables Cyclophosphamide to exert equivalent therapeutic effects at lower doses, effectively inhibiting the growth of primary and metastatic tumors and prolonging the lifespan of tumor-bearing mice. Cyanamide is commonly used in studies related to ha-1 hepatoma and rls lymphosarcoma .
    Cyanamide

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