Department of Chemistry, Texas A&M University, College Station, Texas 77843, USA.
Mol Pharm. 2010 Apr 5;7(2):307-49. doi: 10.1021/mp900243b.
This review summarizes the in vivo assessment-preliminary, preclinical, and clinical-of chemotherapeutics derived from camptothecin or a derivative. Camptothecin is a naturally occurring, pentacyclic quinoline alkaloid that possesses high cytotoxic activity in a variety of cell lines. Major limitations of the drug, including poor solubility and hydrolysis under physiological conditions, prevent full clinical utilization. Camptothecin remains at equilibrium in an active lactone form and inactive hydrolyzed carboxylate form. The active lactone binds to DNA topoisomerase I cleavage complex, believed to be the single site of activity. Binding inhibits DNA religation, resulting in apoptosis. A series of small molecule camptothecin derivatives have been developed that increase solubility, lactone stability and bioavailability to varying levels of success. A number of macromolecular agents have also been described wherein camptothecin(s) are covalently appended or noncovalently associated with the goal of improving solubility and lactone stability, while taking advantage of the tumor physiology to deliver larger doses of drug to the tumor with lower systemic toxicity. With the increasing interest in drug delivery and polymer therapeutics, additional constructs are anticipated. The goal of this review is to summarize the relevant literature for others interested in the field of camptothecin-based therapeutics, specifically in the context of biodistribution, dosing regimens, and pharmacokinetics with the desire of providing a useful source of comparative data. To this end, only constructs where in vivo data is available are reported. The review includes published reports in English through mid-2009.
这篇综述总结了喜树碱或其衍生物的体内评估——初步的、临床前和临床——的情况。喜树碱是一种天然存在的五环喹啉生物碱,在多种细胞系中具有很高的细胞毒性活性。该药物的主要限制因素包括在生理条件下溶解度差和水解,这阻止了其充分的临床应用。喜树碱在活性内酯形式和非活性水解羧酸盐形式之间处于平衡状态。活性内酯与 DNA 拓扑异构酶 I 断裂复合物结合,被认为是单一的活性部位。结合抑制 DNA 再连接,导致细胞凋亡。已经开发了一系列小分子喜树碱衍生物,它们在不同程度上提高了溶解度、内酯稳定性和生物利用度。也有许多大分子试剂被描述为喜树碱(s)与目标共价连接或非共价结合,以提高溶解度和内酯稳定性,同时利用肿瘤生理学将更大剂量的药物输送到肿瘤中,同时降低全身毒性。随着对药物输送和聚合物治疗的兴趣增加,预计会有更多的结构。这篇综述的目的是为对喜树碱治疗领域感兴趣的人,特别是在生物分布、给药方案和药代动力学方面,总结相关文献,希望提供有用的比较数据来源。为此,只报告了具有体内数据的结构。综述包括截至 2009 年年中以英文发表的报告。
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