喜树碱传递系统:利用氨基酸间隔剂将喜树碱与聚乙二醇偶联以产生前药。

Anti-cancer drug design Pub Date : 1999-12-01
C D Conover, R B Greenwald, A Pendri, K L Shum
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引用次数: 0

摘要

本研究的主要目的是筛选聚乙二醇(PEG)偶联喜树碱中单个氨基酸间隔物对偶联物抗肿瘤活性的影响。其次,该系列的一个活性成员被用来评估聚乙二醇-喜树碱缀合物对一系列实体肿瘤类型的疗效。聚乙二醇喜树碱是天然衍生抗肿瘤药物20-(S)-喜树碱(CPT)的一种新型水溶性转运形式(大分子前药)。研究了磷酸缓冲盐水(PBS)和大鼠和人血浆中的水解速率。对P388/0小鼠白血病和LS174T人结肠实体瘤异种移植模型进行体内疗效筛选。结果表明,虽然所有衍生物在PBS中具有相当的稳定性,但根据所使用的氨基酸间隔剂,它们在大鼠和人血浆中的水解率不同。毫不奇怪,改变氨基酸也会影响体内毒性和治疗腹水和实体瘤的疗效。该氨基酸系列的一个代表,peg -丙氨酸- cpt,在实体瘤筛查中显示出中等活性,被选择用于评估广泛实体瘤类型的疗效,并在所有测试的异种移植模型(结肠、卵巢、乳腺、肺、胰腺和前列腺)中显示出显著的抗肿瘤活性(% T/C < 30%)。因此,本研究表明,特定氨基酸间隔剂的使用既影响聚乙二醇-喜树碱偶联物的分解,也影响其生物活性。我们预计,利用这些见解,这种可溶性大分子运输技术可以成功地应用于许多抗肿瘤药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Camptothecin delivery systems: the utility of amino acid spacers for the conjugation of camptothecin with polyethylene glycol to create prodrugs.

The primary purpose of this study was to screen individual amino acid spacers in polyethylene glycol (PEG) conjugated camptothecin for their impact on the conjugates' antitumor activity. Secondly, an active member of this series was used to assess the PEG-camptothecin conjugate's efficacy against a battery of solid tumor types. PEG-camptothecin is a novel water soluble transport form (macromolecular prodrug) of the naturally derived antitumor drug, 20-(S)-camptothecin (CPT). Rates of hydrolysis were studied in phosphate buffered saline (PBS) and the plasma of both rats and humans. In vivo efficacy screens were performed against P388/0 murine leukemia and LS174T human colon solid tumor xenograft models. The results showed that while all the derivatives had considerable stability in PBS, their rates of hydrolysis varied in both rat and human plasma according to the amino acid spacer employed. Not surprisingly, changing the amino acid also affected in vivo toxicity and efficacy in the treatment of ascites and solid tumors. A representative of this amino acid series, PEG-alanine-CPT, which showed moderate activity in the solid tumor screen, was chosen for evaluation of efficacy across a wide range of solid tumor types and demonstrated significant antitumor activity (% T/C < 30%) in all tested xenograft models (colon, ovarian, mammary, lung, pancreatic and prostate). Therefore, this study showed that the use of specific amino acid spacers affected both the PEG-camptothecin conjugates' breakdown and biological activity. We anticipate that using these insights, this soluble macromolecular transport technology could be successfully employed with a number of antitumor drugs.

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