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首页> 外文期刊>Pharmaceutical research >Accelerated blood clearance of PEGylated PLGA nanoparticles following repeated injections: Effects of polymer dose, PEG coating, and encapsulated anticancer drug
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Accelerated blood clearance of PEGylated PLGA nanoparticles following repeated injections: Effects of polymer dose, PEG coating, and encapsulated anticancer drug

机译:重复注射后,聚乙二醇化PLGA纳米颗粒的血液清除率加快:聚合物剂量,聚乙二醇涂层和封装的抗癌药的影响

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摘要

Purpose: To investigate accelerated blood clearance (ABC) induction upon repeated injections of PLGA-PEG nanoparticles as a commonly used polymeric drug carrier. Methods: Etoposide-loaded PLGA-PEG NPs were developed and administered as the test dose to rats pre-injected with various NP treatments at certain time intervals. Pharmacokinetic parameters of etoposide and production of anti-PEG IgM antibody were evaluated. Results: A notable ABC effect was induced by a wide range of polymer doses (0.1 to 20 mg) of empty NPs, accompanied by IgM secretion. However, a further increase in polymer dose resulted not only in the abrogation of the observed ABC induction but also in distinctly a higher value for AUC of the NPs relative to the control. The data from the PEG-negative group verified the fundamental role of PEG for ABC induction. The first injection of etoposide-containing PEGylated nanoparticles (a cell cycle phase-specific drug) produced a strong ABC phenomenon. Three sequential administrations of etoposide-loaded NPs abolished ABC, although a high level of IgM was still detected, which suggests saturation with insignificant poisoning of immune cells. Conclusion: The presented results demonstrate the importance of clinical evaluations for PLGA-PEG nanocarriers that consider the administration schedule in multiple drug delivery, particularly in cancer chemotherapy.
机译:目的:研究重复注射PLGA-PEG纳米颗粒作为常用的聚合物载体后,加速血液清除(ABC)的情况。方法:开发了负载依托泊苷的PLGA-PEG NPs,并以一定剂量将其作为试验剂量给予预先注射了各种NP治疗的大鼠。评价了依托泊苷的药代动力学参数和抗PEG IgM抗体的产生。结果:大量的空NP聚合物剂量(0.1至20 mg)伴随IgM分泌而引起显着的ABC效应。然而,聚合物剂量的进一步增加不仅导致观察到的ABC诱导的废除,而且相对于对照而言,NPs的AUC值明显更高。 PEG阴性组的数据验证了PEG对ABC诱导的基本作用。第一次注射含依托泊苷的聚乙二醇化纳米颗粒(一种细胞周期特异性药物)产生了强烈的ABC现象。尽管仍检测到高水平的IgM,但依托泊苷装载的NPs的三个顺序给药废除了ABC,这表明免疫细胞中毒微不足道。结论:提出的结果证明了考虑多种给药方式(特别是癌症化疗)中给药方案的PLGA-PEG纳米载体临床评估的重要性。

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