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基于脂质-聚乙二醇脂肪酸酯的胃滞留多颗粒生物大分子研究。

Studies on biological macromolecules lipid-Gelucire based gastroretentive multiparticulate.

作者信息

Upadhyay Prashant, Pandit Jayanta Kumar, Wahi Arun Kumar

机构信息

Department of Pharmaceutics, College of Pharmacy, IFTM, Moradabad 244102, Uttar Pradesh, India; Uttar Pradesh Technical University, Lucknow, India.

Department of Pharmaceutics, IIT-Banaras Hindu University (BHU), Varanasi, Uttar Pradesh 221010, India.

出版信息

Int J Biol Macromol. 2014 Jun;67:463-77. doi: 10.1016/j.ijbiomac.2014.03.045. Epub 2014 Mar 31.

Abstract

Studies on biological macromolecules lipid-Gelucire based sustained release gastroretentive multiparticulates of metformin hydrochloride (MH) were developed by dispersing MH in melted Gelucire 39/01 and 43/01 using the melt granulation technique while fast release solid dispersions gastroretentive multiparticulates of glibenclamide (GLB), poorly soluble drug were developed using Gelucire 50/13 and PEG 200, 400, 4000, 6000 as carrier at different ratios. Percent drug entrapment of MH was 99.6±0.35% and in vitro floating ability was 11.3±0.47h. Model dependent analysis shows that zero order kinetics was followed while drug release mechanism was anomalous diffusion controlled. Combination of ethylcellulose, methylcellulose and microcrystalline cellulose with Gelucire were explored for release of drug, floatability and consistency for optimized formulation. While GLB multiparticulates showed entrapment efficiency of 99.8±0.11%, in vitro buoyancy for 11±0.2h and improved solubility and dissolution rate. Zero order kinetics was promising for all formulations. Model independent analysis f2 value for GIV was 40 while for M II was 54. Characterization was done by SEM, FTIR and PXRD. RP-HPLC method was adopted for simultaneous pharmacokinetic analysis of the drugs in rat plasma. In IVIVC studies confirm increased bioavailability of drugs in combination form and followed level A correlation using the diabetic type II Wistar rat.

摘要

对基于脂质 - Gelucire的生物大分子盐酸二甲双胍(MH)缓释胃滞留多颗粒制剂进行了研究,通过熔融制粒技术将MH分散在熔融的Gelucire 39/01和43/01中;而对于难溶性药物格列本脲(GLB),使用Gelucire 50/13以及不同比例的聚乙二醇200、400、4000、6000作为载体,制备了速释固体分散体胃滞留多颗粒制剂。MH的药物包封率为99.6±0.35%,体外漂浮能力为11.3±0.47小时。模型依赖性分析表明,药物释放遵循零级动力学,而药物释放机制受异常扩散控制。研究了乙基纤维素、甲基纤维素和微晶纤维素与Gelucire组合对药物释放、漂浮性和一致性的影响,以优化制剂。GLB多颗粒制剂的包封率为99.8±0.11%,体外漂浮时间为11±0.2小时,溶解度和溶解速率均有所提高。所有制剂的零级动力学均表现良好。GIV的模型无关分析f2值为40,M II为54。通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和粉末X射线衍射(PXRD)进行表征。采用反相高效液相色谱(RP - HPLC)法对大鼠血浆中的药物进行同步药代动力学分析。在体外 - 体内相关性(IVIVC)研究中,证实联合剂型药物的生物利用度提高,并在II型糖尿病Wistar大鼠中呈现A级相关性。

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