首页> 美国卫生研究院文献>Journal of Drug Delivery >Kanamycin Sulphate Loaded PLGA-Vitamin-E-TPGS Long Circulating Nanoparticles Using Combined Coating of PEG and Water-Soluble Chitosan
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Kanamycin Sulphate Loaded PLGA-Vitamin-E-TPGS Long Circulating Nanoparticles Using Combined Coating of PEG and Water-Soluble Chitosan

机译:卡那霉素硫酸盐负载的PLGA-维生素E-TPGS长循环纳米粒子的PEG和水溶性壳聚糖的复合涂层

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摘要

Kanamycin sulphate (KS) is a Mycobacterium tuberculosis protein synthesis inhibitor. Due to its intense hydrophilicity, KS is cleared from the body within 8 h. KS has a very short plasma half-life (2.5 h). KS is used in high concentrations to reach the therapeutic levels in plasma, which results in serious nephrotoxicity/ototoxicity. To overcome aforementioned limitations, the current study aimed to develop KS loaded PLGA-Vitamin-E-TPGS nanoparticles (KS-PLGA-TPGS NPs), to act as an efficient carrier for controlled delivery of KS. To achieve a substantial extension in blood circulation, a combined design, affixation of polyethylene glycol (PEG) to KS-PLGA-TPGS NPs and adsorption of water-soluble chitosan (WSC) (cationic deacetylated chitin) to particle surface, was raised for surface modification of NPs. Surface modified NPs (KS-PEG-WSC NPs) were prepared to provide controlled delivery and circulate in the bloodstream for an extended period of time, thus minimizing dosing frequency. In vivo pharmacokinetics and in vivo biodistribution following intramuscular administration were investigated. NPs surface charge was close to neutral +3.61 mV and significantly affected by the WSC coating. KS-PEG-WSC NPs presented striking prolongation in blood circulation, reduced protein binding, and long drew-out the blood circulation half-life with resultant reduced kidney sequestration vis-à-vis KS-PLGA-TPGS NPs. The studies, therefore, indicate the successful formulation development of KS-PEG-WSC NPs with reduced frequency of dosing of KS indicating low incidence of nephrotoxicity/ototoxicity.
机译:硫酸卡那霉素(KS)是结核分枝杆菌蛋白质合成抑制剂。由于其强烈的亲水性,KS可在8 h内从体内清除。 KS的血浆半衰期非常短(2.5 h)。 KS以高浓度使用,以达到血浆中的治疗水平,从而导致严重的肾毒性/耳毒性。为了克服上述局限性,当前的研究旨在开发载有KS的PLGA-维生素-E-TPGS纳米颗粒(KS-PLGA-TPGS NPs),以作为控制KS传递的有效载体。为了实现血液循环的实质性扩展,提出了一种组合设计:将聚乙二醇(PEG)固定在KS-PLGA-TPGS NP上,并将水溶性壳聚糖(WSC)(阳离子脱乙酰几丁质)吸附到颗粒表面NP的修饰。制备了表面修饰的NP(KS-PEG-WSC NP)以提供受控的递送并在血流中循环较长时间,从而使给药频率最小化。研究了肌内给药后的体内药代动力学和体内生物分布。 NPs的表面电荷接近中性+3.61 mV,并受到WSC涂层的显着影响。 KS-PEG-WSC NPs显着延长血液循环,减少蛋白结合,延长血液循环半衰期,相对于KS-PLGA-TPGS NPs减少的肾脏螯合。因此,研究表明成功开发了KS-PEG-WSC NPs,降低了KS的给药频率,表明肾毒性/耳毒性的发生率较低。

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