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5-Fluorouracil-<sup>13</sup>C<sub>4</sub>,<sup>15</sup>N<sub>2</sub>

" in MedChemExpress (MCE) Product Catalog:

6

Inhibitors & Agonists

3

Peptides

4

Isotope-Labeled Compounds

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-90006S1

    5-FU-<sup>13sup>C,<sup>15sup>N<sub>2sub>

    Apoptosis Nucleoside Antimetabolite/Analog HIV Endogenous Metabolite Cancer
    5-Fluorouracil- 13C, 15N2 is the 13C and 15N labeled 5-Fluorouracil . 5-Fluorouracil (5-FU) is an analogue of uracil and a potent antitumor agent. 5-Fluorouracil affects pyrimidine synthesis by inhibiting thymidylate synthetase thus depleting intracellular dTTP pools. 5-Fluorouracil induces apoptosis and can be used as a chemical sensitizer . 5-Fluorouracil also inhibits HIV .
    5-Fluorouracil-13C,15N2
  • HY-90006S3

    5-FU-<sup>13sup>C<sub>4sub>,<sup>15sup>N<sub>2sub>

    Apoptosis Nucleoside Antimetabolite/Analog HIV Endogenous Metabolite Cancer
    5-Fluorouracil- 13C4, 15N2 is the 13C and 15N labeled 5-Fluorouracil . 5-Fluorouracil (5-FU) is an analogue of uracil and a potent antitumor agent. 5-Fluorouracil affects pyrimidine synthesis by inhibiting thymidylate synthetase thus depleting intracellular dTTP pools. 5-Fluorouracil induces apoptosis and can be used as a chemical sensitizer . 5-Fluorouracil also inhibits HIV .
    5-Fluorouracil-13C4,15N2
  • HY-W766548

    5-Fluorouracil 2'-deoxyriboside-<sup>13sup>C,<sup>15sup>N<sub>2sub>

    Isotope-Labeled Compounds Apoptosis Nucleoside Antimetabolite/Analog CMV HSV Bacterial DNA/RNA Synthesis Cancer
    Floxuridine- 13C, 15N2 (5-Fluorouracil 2'-deoxyriboside- 13C, 15N2) is the 13C- and 15N-labeled labeled Floxuridine (HY-B0097). Floxuridine (5-Fluorouracil 2'-deoxyriboside) is a pyrimidine analog and known as an oncology antimetabolite. Floxuridine inhibits Poly(ADP-Ribose) polymerase and induces DNA damage by activating the ATM and ATR checkpoint signaling pathways in vitro. Floxuridine is a extreamly potent inhibitor for S. aureus infection and induces cell apoptosis . Floxuridine has antiviral effects against HSV and CMV .
    Floxuridine-13C,15N2
  • HY-134160S

    5-DHFU-<sup>13sup>C,<sup>15sup>N<sub>2sub>; 5-Fluorodihydropyrimidine-2,4-dione-<sup>13sup>C,<sup>15sup>N<sub>2sub>; 5-Fluorodihydrouracil-<sup>13sup>C,<sup>15sup>N<sub>2sub>

    Isotope-Labeled Compounds Nucleoside Antimetabolite/Analog Cancer
    5,6-Dihydro-5-Fluorouracil- 13C, 15N2 (5-DHFU- 13C, 15N2) is the 13C- and 15N-labeled labeled 5,6-Dihydro-5-Fluorouracil (HY-134160). 5,6-Dihydro-5-Fluorouracil (5-DHFU; 5-Fluorodihydropyrimidine-2,4-dione) is the active metabolite of the thymidylate synthase inhibitor prodrug 5-fluorouracil (HY-90006), which is formed from 5-fluorouracil by dihydropyrimidine dehydrogenase (DPD). 5,6-Dihydro-5-Fluorouracil is cytotoxic to HaCaT keratinocytes (IC50=13.5 μM). Intravenous administration of 5,6-Dihydro-5-Fluorouracil (90 mg/kg/wk) in combination with 5-fluorouracil and the DPD inhibitor eniluracil (HY-10533) slows tumor growth in a rat colon cancer model.
    5,6-Dihydro-5-Fluorouracil-13C,15N2
  • HY-P2496

    Endothelin Receptor Cardiovascular Disease
    Endothelin 1 (swine, human), Alexa Fluor 488-labeled is a synthetic Endothelin 1 peptide labled with Alexa Fluor 488. Endothelin 1 (swine, human) is a synthetic peptide with the sequence of human and swine Endothelin 1, which is a potent endogenous vasoconstrictor. Endothelin 1 acts through two types of receptors ETA and ETB .
    Endothelin 1 (swine, human), Alexa Fluor 488-labeled
  • HY-P5372

    Protease Activated Receptor (PAR) Others
    Ala-parafluoroPhe-Arg-Cha-Cit-Tyr-NH2 is a biological active peptide. (Protease activated receptor 1 (PAR-1) belongs to a subfamily of G-protein coupled receptors and is known to mediate the cellular effects of thrombin. This peptide is a PAR-1 selective agonist displaying a high level of specificity to PAR-1 over PAR-2. The specificity of peptide was evaluated in cell-based calcium signaling assay using HEK293 cells. PAR-1 selective agonists can be used to study PAR-1 activation in vivo. In addition to its varied cellular effects of thrombin, PAR-1 has also been shown to coordinate with PAR-4 and regulate thrombin-induced hepatocellular carcinoma harboring thrombin formation within the tumor environment classified as 'coagulation type'.)
    Ala-parafluoroPhe-Arg-Cha-Cit-Tyr-NH2

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