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Thermodynamic analysis of the reaction of phosphoramide mustard with protector thiols.

作者信息

Seitz D E, Katterjohn C J, Rinzel S M, Pearce H L

机构信息

Department of Medicine, University Hospital, Indiana University Medical School, Indianapolis 46223.

出版信息

Cancer Res. 1989 Jul 1;49(13):3525-8.

PMID:2499418
Abstract

The systemic use of thiol-containing uroepithelial protecting agents, e.g., N-acetylcysteine (NAC) or mesna, in conjunction with the alkylating agent cyclophosphamide is predicated on the assumption that the toxic metabolic by-products will be consumed by thiol without diminishing the cytotoxicity of the active alkylating intermediate, phosphoramide mustard. Studies in murine tumor systems have been with either a single dose or two equally divided doses of thiol, administered within 30 min of the addition of cyclophosphamide, without an observed adverse effect on antitumor activity; however, the relatively short serum half-life of thiol relative to alkylating agent in humans weakens the clinical relevance of these results. This study presents a thermodynamic model for the chemical reaction of phosphoramide mustard with either NAC or mesna. The gas phase thermodynamic parameters for these reactions, enthalpy (H) and entropy (S), were calculated using the semiempirical quantum mechanical method AM1 and were used to predict the free energy (delta G) for these processes. For the reaction of phosphoramide mustard with NAC or mesna, delta G = +3.82 and 2.29 kcal/mol, respectively. In the absence of enzyme catalysis, these results suggest that such reactions are not favored. In order to assess the validity of this gas phase thermodynamic model, the cellular cytotoxicity of phosphoramide mustard in the presence or absence of either NAC or mesna was studied using CCRF-CEM cells in culture. In these experiments the 50% effective dose of phosphoramide mustard was 1.7 micrograms/ml; this result was unchanged in the presence of 10 micrograms/ml concentration of either thiol. This study supports the conclusion that phosphoramide mustard and protector thiols are compatible.

摘要

相似文献

1
Thermodynamic analysis of the reaction of phosphoramide mustard with protector thiols.
Cancer Res. 1989 Jul 1;49(13):3525-8.
2
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Cancer Treat Rep. 1984 Oct;68(10):1247-54.
3
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4
Conversion of 4-hydroperoxycyclophosphamide and 4-hydroxycyclophosphamide to phosphoramide mustard and acrolein mediated by bifunctional catalysis.双功能催化介导4-氢过氧环磷酰胺和4-羟基环磷酰胺转化为磷酰胺芥和丙烯醛。
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5
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6
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Binding of metabolites of cyclophosphamide to DNA in a rat liver microsomal system and in vivo in mice.环磷酰胺代谢产物在大鼠肝微粒体系统及小鼠体内与DNA的结合
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9
Cyclophosphamide modulates rat hepatic cytochrome P450 2C11 and steroid 5 alpha-reductase activity and messenger RNA levels through the combined action of acrolein and phosphoramide mustard.环磷酰胺通过丙烯醛和磷酰胺氮芥的联合作用调节大鼠肝脏细胞色素P450 2C11和类固醇5α-还原酶活性及信使核糖核酸水平。
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10
Half-life of oxazaphosphorines in biological fluids.生物体液中氮杂磷三环类化合物的半衰期。
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引用本文的文献

1
Possible role of acrolein in oxazaphosphorine-induced enhancement of immunological reactivity.丙烯醛在恶唑磷诱导的免疫反应性增强中的可能作用。
Cancer Immunol Immunother. 1990;31(4):221-5. doi: 10.1007/BF01789172.
2
L-cysteine prodrug protects against cyclophosphamide urotoxicity without compromising therapeutic activity.L-半胱氨酸前药可预防环磷酰胺所致的尿路毒性,且不影响其治疗活性。
Cancer Chemother Pharmacol. 1991;28(3):166-70. doi: 10.1007/BF00685504.