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首页> 外文期刊>Cancer chemotherapy and pharmacology. >Pharmacokinetics and tissue distribution of PGG-paclitaxel, a novel macromolecular formulation of paclitaxel, in nuu mice bearing NCI-460 lung cancer xenografts
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Pharmacokinetics and tissue distribution of PGG-paclitaxel, a novel macromolecular formulation of paclitaxel, in nuu mice bearing NCI-460 lung cancer xenografts

机译:PGG-紫杉醇(一种新型的紫杉醇大分子制剂)在带有NCI-460肺癌异种移植物的nu / nu小鼠中的药代动力学和组织分布

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摘要

Purpose PGG-PTX is a water-soluble formulation of paclitaxel (PTX), made by conjugating PTX to poly(L-gamma-glutamylglutamine) acid (PGG) via ester bonds, that spontaneously forms a nanoparticle in aqueous environments. The purpose of this study was to compare the pharmacokinetics and tissue distribution of PTX following injection of either free PTX or PGG-PTX in mice. Experimental design Both [~3H]PTX and PGG-[~3H]PTX were administered as an IV bolus injection to mice bearing SC NCI-H460 lung cancer xenografts at a dose of 40-mg PTX equivalents/kg. Plasma, tumor, major organs, urine, and feces were collected at intervals out to 340 h. Total taxanes, taxane extractable into ethyl acetate, and native PTX were quantified by liquid scintillation counting and HPLC.Results Conjugation of PTX to the PGG polymer increased plasma and tumor C_(max), prolonged plasma half-life and the period of accumulation in tumor, and reduced washout from tumor. In plasma injection of PGG-PTX increased total taxane AUC_(0-340) by 23-fold above that attained with PTX. In tumors, it increased the total taxane by a factor of 7.7, extractable taxane by 5.7, and native PTX by a factor of 3.5-fold. Conjugation delayed and reduced total urinary and fecal excretion of total taxanes. Conclusions Incorporation of PTX into the PGG-PTX polymer significantly prolonged the half-life of total taxanes, extractable taxane, and native PTX in both the plasma and tumor compartments. This resulted in a large increase in the amount of active PTX delivered to the tumor. PGG-PTX is an attractive candidate for further development.
机译:目的PGG-PTX是紫杉醇(PTX)的水溶性制剂,它是通过酯键将PTX与聚(L-γ-谷氨酰胺基谷氨酰胺)酸(PGG)缀合而成的,在水性环境中可自发形成纳米颗粒。这项研究的目的是比较小鼠体内注射游离PTX或PGG-PTX后PTX的药代动力学和组织分布。实验设计[〜3H] PTX和PGG- [〜3H] PTX均以40毫克PTX当量/ kg的剂量通过静脉推注方式注射给携带SC NCI-H460肺癌异种移植物的小鼠。每隔340小时收集一次血浆,肿瘤,主要器官,尿液和粪便。通过液体闪烁计数和HPLC对总紫杉烷,可萃取到乙酸乙酯中的紫杉烷和天然PTX进行定量。结果PTX与PGG聚合物的缀合增加了血浆和肿瘤的C_(max),延长了血浆半衰期并延长了肿瘤的积累时间,并减少了从肿瘤中清除的情况。在PGG-PTX的血浆注射中,总紫杉烷AUC_(0-340)比PTX所获得的高23倍。在肿瘤中,它使总紫杉烷增加了7.7倍,可提取的紫杉烷增加了5.7倍,而天然PTX则增加了3.5倍。共轭延迟并减少总紫杉烷类的总尿和粪便排泄。结论将PTX掺入PGG-PTX聚合物中可显着延长血浆和肿瘤区室中总紫杉烷,可萃取紫杉烷和天然PTX的半衰期。这导致递送至肿瘤的活性PTX的量大大增加。 PGG-PTX是进一步发展的有吸引力的候选人。

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