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Energy processes

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18

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7

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1

Fluorescent Dye

2

Biochemical Assay Reagents

2

Peptides

4

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-121965

    Biochemical Assay Reagents Endogenous Metabolite Others
    β-D-Glucose, also known as glucose, is a monosaccharide, the most important carbohydrate in biological systems, the main energy source of cells, and plays a key role in various metabolic processes. β-D-Glucose has unique chemical properties that make it an abundant component in plant and animal tissues and is readily metabolized by organisms to produce cellular energy. It is commonly used to improve hypoglycemia and dehydration, and as a sweetener and preservative in food and beverage production.
    β-D-Glucose
  • HY-P10618

    Bacterial Infection
    BTM-P1 is a polycationic peptide that exhibits antibacterial activity against both Gram-positive and Gram-negative bacteria. BTM-P1 can form ion-permeable channels in the inner mitochondrial membrane to interfere with mitochondrial energy processes .
    BTM-P1
  • HY-164556

    DNA/RNA Synthesis Others
    3′-Deoxy-5′-AMPIt can be used to study various physiological processes such as energy metabolism and information transmission.
    3′-Deoxy-5′-AMP
  • HY-164556A

    DNA/RNA Synthesis Others
    3′-Deoxy-5′-AMP sodiumIt can be used to study various physiological processes such as energy metabolism and information transmission.
    3′-Deoxy-5′-AMP sodium
  • HY-138227

    3′-dADP

    DNA/RNA Synthesis Others
    3′-Deoxyadenosine 5′-diphosphate (3′-dADP)It can be used to study various physiological processes such as energy metabolism and information transmission.
    3′-Deoxyadenosine 5′-diphosphate
  • HY-138227A

    3′-dADP disodium

    DNA/RNA Synthesis Others
    3′-Deoxyadenosine 5′-diphosphate (3′-dADP) disodiumIt can be used to study various physiological processes such as energy metabolism and information transmission.
    3′-Deoxyadenosine 5′-diphosphate disodium
  • HY-W749117

    Endogenous Metabolite Metabolic Disease
    Inosine 5’-diphosphate sodium is a purine ribonucleoside 5’-diphosphate with inosine as the nucleobase, which can participate in intracellular energy metabolism and signal transduction processes .
    Inosine 5′-diphosphate sodium
  • HY-123294

    YRC 2388; BAY-YRC 2388; NBA 061

    Others Neurological Disease Metabolic Disease
    Fentrazamide (YRC 2388) is a herbicide. Fentrazamide has specific toxic effects on the nervous system and erythrocytes in rats, affecting the energy supply of cells mainly by interfering with the glycolysis process. Fentrazamide can be used as a useful tool to study the mechanisms of neurodegenerative diseases and erythrocyte dysfunction .
    Fentrazamide
  • HY-P10379

    Neuropeptide FF Receptor Others Neurological Disease
    palm-PrRP31 is a potent dual receptor agonist for both GPR10 (EC50=72 pM) and NPFF-R2. palm-PrRP31 activates downstream signaling pathways through binding to its receptors, GPR10 and NPFF-R2, which results in reduced appetite and increased energy expenditure. Utilizing palm-PrRP31 facilitates the study of the mechanism of action in the nervous system, thereby elucidating the complex biological processes that regulate appetite and energy expenditure .
    palm-PrRP31
  • HY-123294R

    Others Neurological Disease Metabolic Disease
    Fentrazamide (Standard) is the analytical standard of Fentrazamide. This product is intended for research and analytical applications. Fentrazamide (YRC 2388) is a herbicide. Fentrazamide has specific toxic effects on the nervous system and erythrocytes in rats, affecting the energy supply of cells mainly by interfering with the glycolysis process. Fentrazamide can be used as a useful tool to study the mechanisms of neurodegenerative diseases and erythrocyte dysfunction .
    Fentrazamide (Standard)
  • HY-129328
    Magnesium glycinate
    1 Publications Verification

    Magnesium bisglycinate; Magnesium diglycinate

    Others Cancer
    Magnesium glycinate (Magnesium bisglycinate), the magnesium salt of glycine, is a nutrient supplement. Magnesium glycinate has satisfactory physico-chemical properties and bioactivities. Metal glycinate chelates are formed by glycine and metal compounds through chemical reactions. Magnesium is an essential mineral that plays a critical role in the human body. Magnesium takes part in the process of energy metabolism and assists the maintenance of normal muscle function .
    Magnesium glycinate
  • HY-D1671

    Fluorescent Dye Others
    TRITC-DHPE is a rhodamine-labeled glycerophosphate ethanolamine lipid, with head groups marked with bright red fluorescent TRITC dye (λEx/λEm=514/580 nm). TRITC-DHPE can be used for membrane fusion assay to trace lipid processing in intracellular phagocytosis. TRITC-DHPE can serves as an energy transfer receptor for NBD, BODIPY and fluorescein lipid probes .
    TRITC-DHPE
  • HY-W854727

    Others Others
    N-Methylfulleropyrrolidine serves as an electron acceptor molecule characterized by its fullerene core and a nitrogen-free lone pair associated with the pyrrolidine ring. This compound can act as an intermediate in the synthesis of various functionalized fullerenes and plays a significant role in the development of opto-electronic devices. Comprehensive studies have been conducted on the photoinduced energy and electron transfer processes between oligothienylenevinylenes and N-Methylfulleropyrrolidine (MP-C60).
    N-Methylfulleropyrrolidine
  • HY-P2733C

    GPO, microorganism

    Endogenous Metabolite Metabolic Disease
    Glycerol-3-phosphate oxidase, microorganism is an enzyme that catalyzes the oxidation of glycerol-3-phosphate to dihydroxyacetone phosphate, producing hydrogen peroxide in the process. Glycerol-3-phosphate oxidase is located in the mitochondria of microorganisms and is involved in the glycerol-3-phosphate cycle, regulating cellular energy metabolism. Glycerol-3-phosphate oxidase, microorganism can be used in conjunction with Lipoprotein Lipase and Glycerol Kinase to determine triglyceride levels .
    Glycerol-3-phosphate oxidase, microorganism
  • HY-N0354

    Virus Protease Topoisomerase Apoptosis Infection Metabolic Disease Inflammation/Immunology Cancer
    Anthraquinone is used as a precursor for dye formation and agrochemicals, existing in different organisms, such as bacteria, fungi, plants, and some animals. Anthraquinone has biological activities: anticancer, antiinflammatory, diuretic, antiarthritic, antifungal, antibacterial, antimalarial and antioxidant. Anthraquinone also plays an important role in the primary metabolism of plants by acting on the electron transport chain through the inhibition of energy transfer in the photosynthetic process. Anthraquinone can intercalates into DNA and inhibits the topoisomerase II (topo II) enzyme, resulting in cell death via Apoptosis .
    Anthraquinone
  • HY-113225B

    GTP tritris

    Others Endogenous Metabolite Cancer
    Guanosine triphosphate tritris (GTP tritris) serves as a vital enhancer of myogenic cell differentiation and plays a critical role in modulating miRNA-myogenic regulator factors. It also facilitates the release of exosomes enriched with guanosine and guanosine-derived molecules, and is regarded as an activated precursor for RNA synthesis. In mitochondrial function, GTP participates in the import of proteins into the matrix, which is essential for various regulated pathways, and is involved in initiating peptide synthesis through the binding of formylmethionyl-tRNA to the ribosome, as well as polypeptide chain elongation. Additionally, GTP acts as a phosphate and pyrophosphate carrier that channels chemical energy into specific biosynthetic pathways. It activates signal transducing G proteins that regulate cellular processes such as proliferation and differentiation, and its hydrolysis by small GTPases, including Ras and Rho, is integral to both proliferation and apoptosis. Furthermore, the small GTPase Rab is instrumental in vesicle docking, fusion, and formation. Beyond signal transduction, GTP is an energy-rich precursor in the enzymatic biosynthesis of DNA and RNA.
    Guanosine triphosphate tritris
  • HY-P2822

    PGK

    Endogenous Metabolite Infection Endocrinology Cancer
    Phosphoglycerate kinase, yeast (PGK), namely phosphoglycerate kinase, is a glycolytic enzyme commonly used in biochemical research. Phosphoglycerate kinase can catalyze the reversible transfer of phosphate groups from 1,3-bisphosphoglycerate (1,3-BPG) to ADP to generate 3-phosphoglycerate (3-PG) and ATP. At the same time, it can also participate in gluconeogenesis, catalyzing the opposite reaction to produce 1,3BPGA and ADP. Phosphoglycerate kinase is involved in energy metabolism, interaction with nucleic acid, tumor progression, cell death and virus replication and other related processes .
    Phosphoglycerate kinase, yeast
  • HY-W010918R

    Endogenous Metabolite Others
    Adenosine 5'-diphosphate (Standard) is the analytical standard of Adenosine 5'-diphosphate. This product is intended for research and analytical applications. Adenosine 5'-diphosphate (Adenosine diphosphate) is a nucleoside diphosphate. Adenosine 5'-diphosphate is the product of ATP dephosphorylation by ATPases. Adenosine 5'-diphosphate induces human platelet aggregation and inhibits stimulated adenylate cyclase by an action at P2T-purinoceptors. In Vitro: Adenosine 5'-diphosphate consists of the pyrophosphate group, the pentose sugar ribose, and the nucleobase adenine. Adenosine 5'-diphosphate is the product of ATP dephosphorylation by ATPases. ADP is converted back to ATP by ATP synthases. ATP is an important energy transfer molecule in cells. Adenosine 5'-diphosphate is utilized in a wide number of cellular processes, including respiration, biosynthetic reactions, motility, and cell division.
    Adenosine 5'-diphosphate (Standard)

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