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由无毒生物相容性羧甲基普鲁兰多糖-聚乙烯醇互穿聚合物网络制成的吡非尼酮治疗有效控释制剂

Therapeutically Effective Controlled Release Formulation of Pirfenidone from Nontoxic Biocompatible Carboxymethyl Pullulan-Poly(vinyl alcohol) Interpenetrating Polymer Networks.

作者信息

Soni Saundray Raj, Bhunia Bibhas K, Kumari Nimmy, Dan Subhashis, Mukherjee Sudipta, Mandal Biman B, Ghosh Animesh

机构信息

Department of Pharmaceutical Sciences and Technology, Birla Institute of Technology, Mesra, Ranchi 835215, Jharkhand, India.

Biomaterial and Tissue Engineering Laboratory, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.

出版信息

ACS Omega. 2018 Sep 30;3(9):11993-12009. doi: 10.1021/acsomega.8b00803. Epub 2018 Sep 26.

Abstract

The present study was conducted to develop therapeutically effective controlled release formulation of pirfenidone (PFD) and explore the possibility to reduce the total administered dose and dosing regimen. For this purpose, pH-sensitive biomaterial was prepared by inducing carboxymethyl group on pullulan by Williamson ether synthesis reaction, and further, interpenetrating polymeric network microspheres were prepared by glutaraldehyde-assisted water-in-oil (w/o) emulsion cross-linking method, which showed higher swelling ratio in acidic and basic pH. The formation of microspheres was confirmed by different spectral characterization techniques, and thermal kinetic study indicated the formation of thermally stable microspheres. Cell viability and biocompatibility studies on hepatocellular carcinoma (HepG2) cell showed the polymeric matrix to be biocompatible. In vitro dissolution of optimized formulation (F5) showed releases of 54.09 and 76.37% in 0.1 N HCl after 2 h and phosphate buffer (pH 6.8) up to 8 h, respectively. In vivo performances of prepared microsphere and marketed product of PFD were compared in rabbit. (time taken to reach peak plasma concentration) was found to be achieved at 0.83 h, compared to 0.5 h for Pirfenex with no significant difference complementing the immediate action, while area under curve was significantly greater for optimized formulation (9768 ± 1300 ng h/mL) compared to Pirfenex (4311 ± 110 ng h/mL), complementing the sustained action. In vivo pharmacokinetic study suggested that the prepared microsphere could be a potential candidate for therapeutically effective controlled delivery of PFD used in dyspnea and cough management due to idiopathic pulmonary fibrosis.

摘要

本研究旨在开发具有治疗效果的吡非尼酮(PFD)控释制剂,并探索降低总给药剂量和给药方案的可能性。为此,通过威廉姆森醚合成反应在普鲁兰多糖上引入羧甲基基团制备了pH敏感生物材料,进一步采用戊二醛辅助的油包水(w/o)乳液交联法制备了互穿聚合物网络微球,该微球在酸性和碱性pH条件下具有较高的溶胀率。通过不同的光谱表征技术证实了微球的形成,热动力学研究表明形成了热稳定的微球。对肝癌(HepG2)细胞的细胞活力和生物相容性研究表明该聚合物基质具有生物相容性。优化制剂(F5)的体外溶出度显示,在0.1 N HCl中2小时后释放率为54.09%,在磷酸盐缓冲液(pH 6.8)中8小时内释放率为76.37%。在兔体内比较了所制备微球和市售PFD产品的性能。发现(达到血浆峰浓度所需时间)在0.83小时达到,而Pirfenex为0.5小时,两者无显著差异,这与即刻作用相符,而优化制剂的曲线下面积(9768±1300 ng h/mL)明显大于Pirfenex(4311±110 ng h/mL),这与持续作用相符。体内药代动力学研究表明,所制备的微球可能是用于特发性肺纤维化引起的呼吸困难和咳嗽管理的PFD治疗有效控释的潜在候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a98e/6646252/e4abd4348047/ao-2018-00803m_0010.jpg

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