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超临界抗溶剂技术辅助合成用于辐射防护的百里醌脂质体:制剂优化、体外和体内研究

Supercritical anti-solvent technique assisted synthesis of thymoquinone liposomes for radioprotection: Formulation optimization, in-vitro and in-vivo studies.

作者信息

Ahmad Iqbal, Akhter Sohail, Anwar Mohammed, Zafar Sobiya, Sharma Rakesh Kumar, Ali Asgar, Ahmad Farhan Jalees

机构信息

Nanomedicine Research Lab, Faculty of Pharmacy, Jamia Hamdard, New Delhi 110062, India.

Nanomedicine Research Lab, Faculty of Pharmacy, Jamia Hamdard, New Delhi 110062, India; Centre de Biophysique Moléculaire (CBM)-CNRS UPR4301, Rue Charles Sadron, 45071 Orléans Cedex 2, France.

出版信息

Int J Pharm. 2017 May 15;523(1):398-409. doi: 10.1016/j.ijpharm.2017.03.052. Epub 2017 Mar 24.

Abstract

The aim of this study was to develop Thymoquinone (TQ) loaded PEGylated liposomes using supercritical anti-solvent (SAS) process for enhanced blood circulation, and greater radioprotection. The SAS process of PEGylated liposomes synthesis was optimized by Box-Behnken design. Spherical liposomes with a particle size of 195.6±5.56nm and entrapment efficiency (%EE) of 89.4±3.69% were obtained. Optimized SAS process parameters; temperature, pressure and solution flow rate were 35°C, 140bar and 0.18mL/min, respectively, while 7.5mmol phospholipid, 0.75mmol of cholesterol, and 1mmol TQ were optimized formulation ingredients. Incorporation of MPEG-2000-DSPE (5% w/w) provided the PEGylated liposomes (FV-17B; particle size=231.3±6.74nm, %EE=91.9±3.45%, maximum TQ release >70% in 24h). Pharmacokinetics of FV-17B in mice demonstrated distinctly superior systemic circulation time for TQ in plasma. Effectiveness of radioprotection by FV-17B in mice model was demonstrated by non-significant body weight change, normal vital blood components (WBCs, RBCs, and Platelets), micronuclei and spleen index and increased survival probability in post irradiation animal group as compared to controls (plain TQ and marketed formulation). Altogether, the results anticipated that the SAS process could serve as a single step environmental friendly technique for the development of stable long circulating TQ loaded liposomes for effective radioprotection.

摘要

本研究的目的是使用超临界抗溶剂(SAS)工艺开发负载百里醌(TQ)的聚乙二醇化脂质体,以增强血液循环并提高辐射防护能力。通过Box-Behnken设计优化了聚乙二醇化脂质体合成的SAS工艺。获得了粒径为195.6±5.56nm、包封率(%EE)为89.4±3.69%的球形脂质体。优化后的SAS工艺参数;温度、压力和溶液流速分别为35°C、140bar和0.18mL/min,而7.5mmol磷脂、0.75mmol胆固醇和1mmol TQ是优化后的制剂成分。加入MPEG-2000-DSPE(5% w/w)得到聚乙二醇化脂质体(FV-17B;粒径=231.3±6.74nm,%EE=91.9±3.45%,24小时内TQ最大释放>70%)。FV-17B在小鼠体内的药代动力学表明,TQ在血浆中的全身循环时间明显更长。与对照组(普通TQ和市售制剂)相比,FV-17B在小鼠模型中的辐射防护效果表现为体重变化不显著、重要血液成分(白细胞、红细胞和血小板)正常、微核和脾脏指数正常,以及辐照后动物组的存活概率增加。总之,结果表明SAS工艺可作为一种单步环保技术,用于开发稳定的长循环负载TQ的脂质体,以实现有效的辐射防护。

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