>>Signaling Pathways>> Cell Cycle/Checkpoint>> Microtubule/Tubulin>>Vincristine-d3-ester sulfate

Vincristine-d3-ester sulfate

Catalog No.GC64451

빈크리스틴-d3-에스테르(류로크리스틴-d3-에스테르) 황산염은 빈크리스틴 황산염으로 표시된 중수소입니다. 빈크리스틴 황산염은 유사분열 방추에서 미세소관 형성을 억제하여 중기 단계에서 분열하는 세포를 정지시키는 항종양 빈카 알칼로이드입니다. 85nM의 Ki로 미세소관에 결합합니다.

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Vincristine-d3-ester sulfate Chemical Structure

Cas No.: 1217854-24-4

Size 가격 재고 수량
1 mg
US$1,152.00
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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents

Vincristine-d3-ester (Leurocristine-d3-ester) sulfate is the deuterium labeled Vincristine sulfate. Vincristine sulfate is an antitumor vinca alkaloid which inhibits microtubule formation in mitotic spindle, resulting in an arrest of dividing cells at the metaphase stage. It binds to microtubule with a Ki of 85 nM[1].

Stable heavy isotopes of hydrogen, carbon, and other elements have been incorporated into drug molecules, largely as tracers for quantitation during the drug development process. Deuteration has gained attention because of its potential to affect the pharmacokinetic and metabolic profiles of drugs[1].

[1]. Russak EM, et al. Impact of Deuterium Substitution on the Pharmacokinetics of Pharmaceuticals. Ann Pharmacother. 2019;53(2):211-216.
[2]. Jordan, M.A., et al. Comparison of the effects of vinblastine, vincristine, vindesine, and vinepidine on microtubule dynamics and cell proliferation in vitro. Cancer Res, 1985. 45(6): p. 2741-7.
[3]. Gidding, C.E., et al, Vincristine revisited. Crit Rev Oncol Hematol, 1999. 29(3): p. 267-87.
[4]. Donoso, J.A., et al, Action of the vinca alkaloids vincristine, vinblastine, and desacetyl vinblastine amide on axonal fibrillar organelles in vitro. Cancer Res, 1977. 37(5): p. 1401-7.
[5]. Horton, J.K., et al. Relationships between tumor responsiveness, vincristine pharmacokinetics and arrest of mitosis in human tumor xenografts. Biochem Pharmacol, 1988. 37(20): p. 3995-4000.
[6]. Baguley, B.C., et al, Inhibition of growth of colon 38 adenocarcinoma by vinblastine and colchicine: evidence for a vascular mechanism. Eur J Cancer, 1991. 27(4): p. 482-7.
[7]. Zhang D, et al. Co-delivery nanoparticles with characteristics of intracellular precision release drugs for overcoming multidrug resistance. Int J Nanomedicine. 2017 Mar 16;12:2081-2108.

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