首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Formulation and Evaluation of In-vitro Characterization of Gastic-Mucoadhesive Microparticles/Discs Containing Metformin Hydrochloride
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Formulation and Evaluation of In-vitro Characterization of Gastic-Mucoadhesive Microparticles/Discs Containing Metformin Hydrochloride

机译:含盐酸二甲双胍的气粘膜微粒/碟的体外表征及其评价

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摘要

The present study involves preparation and evaluation of gastric-mucoadhesive microparticles with Metformin Hydrochloride as model drug for prolongation of gastric residence time. The microparticles were prepared by the emulsification solvent evaporation technique using polymers of Carbomer 934p (CP) and Ethylcellulose (EC). The microparticles were prepared by emulsion solvent evaporation method (O1/O2). Disc formulations were prepared by direct compression technique from microparticles. In the current study, gastric-mucoadhesive microparticles with different polymers ratios (CP:EC) were prepared and were characterized by encapsulation efficiency, particle size, flowability, mucoadhesive property and drug release studies. The best polymers ratio was 1:3 (F2) with Carbomer 934p (as mucoadhesive polymer) and ethylcellulose (as retardant polymer), respectively. The production yield microparticles F2 showed 98.80%, mean particle size 933.25 µm and loading efficiency %98.44. The results were found that microparticle discs prepared had slower release than microparticles (p > o.o5). The microparticles exhibited very good percentage of mucoadhesion and flowability properties. The release of drug was prolonged to 8 h (71.65-82.22%) when incorporated into mucoadhesive microparticles. The poor bioavailability of metformine is attributed to short retention of its dosage form at the absorption sites (in upper gastrointestinal tract). The results of mucoadhesion study showed better retention of metformine microparticles (8 h) in duodenal and jejunum regions of intestine (F1, 1:2 ratio of CP:EC). Therefore, it may be concluded that drug loaded gastric-mucoadhesive microparticles are a suitable delivery system for metformin hydrochloride, and may be used for effective management of NIDDM (Non Insulin Dependent Diabetes Mellitus).
机译:本研究涉及以盐酸二甲双胍为模型药物制备和评价胃粘膜粘附微粒,以延长胃停留时间。使用卡波姆934p(CP)和乙基纤维素(EC)的聚合物,通过乳化溶剂蒸发技术制备微粒。通过乳液溶剂蒸发法(O1 / O2)制备微粒。通过直接压缩技术从微粒制备盘制剂。在当前的研究中,制备了具有不同聚合物比例(CP:EC)的胃粘膜粘附微粒,并通过包封效率,粒径,流动性,粘膜粘附特性​​和药物释放研究对其进行了表征。最佳聚合物比例分别为:Carbomer 934p(作为粘膜粘附性聚合物)和乙基纤维素(作为阻燃性聚合物)的1:3(F2)。产率的微粒F2显示为98.80%,平均粒径为933.25μm,装载效率为98.44%。结果发现,所制备的微粒盘的释放速度比微粒慢(p> o.o5)。微粒表现出非常好的粘膜粘附和流动性百分比。当掺入粘膜粘附微粒中时,药物释放被延长至8小时(71.65-82.22%)。二甲双胍的生物利用度差归因于其剂型在吸收部位(在上消化道)的保留时间短。粘膜粘附研究的结果显示,二甲双胍微粒在肠道十二指肠和空肠区域的保留时间更长(8小时)(F1,CP:EC的比例为1:2)。因此,可以得出结论,载有药物的胃粘膜粘附微粒是盐酸二甲双胍的合适递送系统,可用于有效治疗NIDDM(非胰岛素依赖型糖尿病)。

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