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利福平通过液晶叶酸纳米颗粒的体外控释

In vitro controlled release of Rifampicin through liquid-crystalline folate nanoparticles.

作者信息

Parmar Rohan, Misra Rahul, Mohanty Sanat

机构信息

Department of Chemical Engineering, Indian Institute of Technology-Delhi, Hauz Khas, New Delhi 110016, India.

Department of Chemical Engineering, Indian Institute of Technology-Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Colloids Surf B Biointerfaces. 2015 May 1;129:198-205. doi: 10.1016/j.colsurfb.2015.03.051. Epub 2015 Mar 31.

Abstract

Rifampicin is one of the frontline drugs for tuberculosis therapy but poor bioavailability of Rifampicin in combination with other anti-tuberculosis drugs is a subject of concern. Nano-based formulations for sustained release of anti-tubercular drugs have been shown to increase antibacterial efficacy and pharmacokinetic behavior. In the present study, liquid-crystalline folate nanoparticles were designed for sustained delivery of Rifampicin and its in vitro release study is reported. Liquid-crystalline nanoparticles of biocompatible folate ions consist of self assembled structures, resulting in high encapsulation, controlled release and low drug losses of about 20-30%, which is significant in itself. This study reports the size-control method of forming Rifampicin encapsulated folate nanoparticles as well as the parameters to control the release profiles of Rifampicin through these nanoparticles. These designs are able to present sustained release for over 25 days. The effect of different parameters such as nanoparticles size, type of cross-linking cation, cross-linking cation concentration and drug-loading on Rifampicin release was studied in vitro. The intracellular uptake and low cytotoxicity of nanoparticles by alveolar macrophages was also demonstrated using fluorescence microscopy and MTT assay respectively.

摘要

利福平是结核病治疗的一线药物之一,但利福平与其他抗结核药物联合使用时生物利用度较差,这是一个值得关注的问题。已证明基于纳米的抗结核药物缓释制剂可提高抗菌疗效和药代动力学行为。在本研究中,设计了液晶叶酸纳米颗粒用于利福平的持续递送,并报道了其体外释放研究。生物相容性叶酸离子的液晶纳米颗粒由自组装结构组成,导致高包封率、控释以及约20%-30%的低药物损失,这本身就很显著。本研究报道了形成利福平包封的叶酸纳米颗粒的尺寸控制方法以及通过这些纳米颗粒控制利福平释放曲线的参数。这些设计能够实现超过25天的持续释放。体外研究了纳米颗粒大小、交联阳离子类型、交联阳离子浓度和载药量等不同参数对利福平释放的影响。还分别使用荧光显微镜和MTT法证明了纳米颗粒被肺泡巨噬细胞的细胞内摄取和低细胞毒性。

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