首页> 外文学位 >Mise au point de complexes liposome/polymere sensibles au pH pour la vectorisation d'agents anticancereux (French text).
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Mise au point de complexes liposome/polymere sensibles au pH pour la vectorisation d'agents anticancereux (French text).

机译:pH敏感的脂质体/聚合物复合物的开发,用于抗癌剂的矢量化(法文)。

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摘要

pH-Sensitive liposomes are vesicles that are stable at neutral pH and become leaky and/or fusion competent under acidic conditions. They have been suggested as a means to increase the cytoplasmic delivery of drug following their endocytosis. The purpose of this doctorate work was to develop a pH-sensitive liposomal formulation in which contents release would be triggered by a polymer at a pH corresponding to the endosomal pH. Moreover, this formulation had to be stable in the presence of biological fluids and to demonstrate a prolonged circulation time. Thus, different liposome/N-isopropylacrylamide (NIPAM) copolymer complexes were prepared and characterized as delivery systems for anticancer drugs.; Alkylated copolymers of NIPAM and methacrylic acid were complexed with liposomes. Formulations were characterized with regard to their pH-sensitivity, stability in serum and pharmacokinetic profile in rats. Vesicles of different compositions were complexed with different pH-sensitive NIPAM copolymers.; All formulations were stable at neutral pH and efficiently released their contents at mildly acidic pH (i.e. 4.9 to 5.8). In general, incubation of these formulations in serum did not affect their release properties.; In order to gain additional information for the rational design of a pH-sensitive formulation, pH- and temperature triggered conformational change of one of the synthesized copolymer was studied. Differential scanning calorimetry and infrared spectroscopy experiments revealed that at pH 7.4 and 37°C, although the polymer was water-soluble, it was not in a random coil conformation and was partly dehydrated. Thus, these studies showed that some polymers were not in an optimal conformation to provide liposomes with an optimal steric protection at neutral pH.; The pharmacokinetics of different pH-sensitive formulations was also studied. Two NIPAM copolymers were found to increase the systemic circulation time of liposomes following their intravenous administration. As only a slight increase in the circulation time was obtained with NIPAM copolymers, optimization of the in vivo pharmacokinetics was achieved by incorporating poly(ethylene glycol) (PEG)-lipid derivatives to the formulation.; This work showed that it was possible to develop a pH-sensitive liposomal formulation that releases its content at acidic pH while maintaining its stability at neutral pH in the presence of serum. Moreover, these liposomes exhibited a long circulation time. The best formulation was obtained by combining a terminally alkylated NIPAM copolymer with a PEG-lipid derivative of a molecular weight of 5000.
机译:对pH敏感的脂质体是在中性pH下稳定并且在酸性条件下能渗漏和/或融合的囊泡。已经提出将它们作为增加其内吞作用后细胞质传递药物的手段。这项博士学位工作的目的是开发一种pH敏感的脂质体制剂,其中在与内体pH相对应的pH值下,聚合物会触发内容物的释放。此外,该制剂必须在存在生物流体的情况下稳定并且证明延长的循环时间。因此,制备了不同的脂质体/ N-异丙基丙烯酰胺(NIPAM)共聚物复合物,并将其表征为抗癌药物的递送系统。将NIPAM和甲基丙烯酸的烷基化共聚物与脂质体复合。关于制剂的pH敏感性,在血清中的稳定性和在大鼠中的药代动力学特征进行了表征。将不同组成的囊泡与不同的pH敏感型NIPAM共聚物复合。所有制剂在中性pH下均稳定,并在中等酸性pH(即4.9至5.8)下有效地释放其含量。通常,将这些制剂在血清中孵育不会影响其释放特性。为了获得合理设计pH敏感配方的更多信息,研究了其中一种合成共聚物的pH和温度引发的构象变化。差示扫描量热法和红外光谱实验表明,在pH 7.4和37℃下,尽管该聚合物是水溶性的,但它不是无规卷曲构象,并且部分脱水。因此,这些研究表明,某些聚合物并非处于最佳构型,无法在中性pH下为脂质体提供最佳的空间保护。还研究了不同pH敏感制剂的药代动力学。发现两种NIPAM共聚物在静脉内给药后会增加脂质体的全身循环时间。由于使用NIPAM共聚物的循环时间仅略微增加,因此通过将聚(乙二醇)(PEG)-脂质衍生物掺入制剂中,可以优化体内药代动力学。这项工作表明,有可能开发一种对pH敏感的脂质体制剂,该制剂在酸性pH下释放其含量,同时在存在血清的情况下在中性pH下保持稳定性。而且,这些脂质体表现出长的循环时间。通过将末端烷基化的NIPAM共聚物与分子量为5000的PEG-脂质衍生物混合可获得最佳配方。

著录项

  • 作者

    Roux, Emmanuelle.;

  • 作者单位

    Universite de Montreal (Canada).;

  • 授予单位 Universite de Montreal (Canada).;
  • 学科 Health Sciences Pharmacy.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 255 p.
  • 总页数 255
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药剂学;
  • 关键词

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