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Development and Characterization of 99mTc-timolol Maleate for Evaluating Efficacy of In Situ Ocular Drug Delivery System

机译:99mTc-替莫洛尔马来酸酯的开发和表征,用于评价原位眼药递送系统的功效

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摘要

In situ gel-forming systems have drawn much attention of current researchers to overcome the poor bioavailability from the conventional eye drops. The present work described formulation and pharmacoscintigraphic evaluation of timolol-maleate-loaded chitosan/hydroxy propyl methyl cellulose (HPMC)-based polymer matrix for enhanced ocular retention. Chitosan and HPMC ratio was optimized and formulation was characterized for various in vitro parameters. The ocular retention was studied on New Zealand rabbits by gamma scintigraphy, which is a very simple and noninvasive technique. For scintigraphy study, the drug timolol maleate was radiolabeled 99mTc by direct labeling method using SnCl2·2H2O as reducing agent. The labeling procedure was optimized to get maximum labeling efficiency (>98%). In vitro stability of the radiolabeled drug (99mTc-timolol maleate complex) was checked and it was found to be stable for up to 24 h. Plain drug eliminates rapidly as significant activity was recorded in kidney and bladder after 2 h of ocular administration. It was evident from the scintigraphic images and the time–activity curve plotted from the data that the plain drug solution cleared very rapidly from the corneal region and reached into systemic circulation via nasolachrymal drainage system, as significant activity was recorded in kidney and bladder after 2 h of ocular administration. Developed formulation cleared at a slow rate and remained at corneal surface for longer time duration. No radioactivity was observed in systemic circulation after 2 h. Ocular irritation of the developed formulation was also checked by hen’s egg chorioallantoic membrane test and formulation was found to be practically nonirritant. The study signified the potential of gamma scintigraphy in evaluation of novel drug delivery systems in a noninvasive manner.
机译:原位凝胶形成系统引起了当前研究者的极大关注,以克服常规滴眼剂的不良生物利用度。本工作描述了基于噻吩洛尔-马来酸酯的壳聚糖/羟丙基甲基纤维素(HPMC)基聚合物基质的配方和药理学评价,以增强眼部保持力。优化了壳聚糖和HPMC的比例,并针对各种体外参数对制剂进行了表征。通过伽玛闪烁显像对新西兰兔的眼保持力进行了研究,这是一种非常简单且无创的技术。为了进行闪烁显像学研究,使用SnCl2·2H2O作为还原剂,通过直接标记法将噻吗洛尔马来酸酯放射标记为99mTc。优化了贴标程序,以获得最大贴标效率(> 98%)。检查了放射性标记药物(99mTc-噻吗洛尔马来酸酯复合物)的体外稳定性,发现其在长达24小时内都是稳定的。眼用药2小时后发现肾脏和膀胱中有明显的活性,因此普通药物可迅速消除。从闪烁图像和数据绘制的时间-活动曲线可以明显看出,普通药物溶液从角膜区域清除得非常快,并通过鼻泪管引流系统进入全身循环,因为在第2次肾和膀胱中记录到明显的活动眼内给药h。发达的制剂以缓慢的速率清除,并在角膜表面保留了更长的时间。 2小时后全身循环中未观察到放射性。还通过母鸡的鸡蛋绒膜尿囊膜检查检查了该配方的眼刺激性,发现该配方实际上无刺激性。这项研究表明了伽玛闪烁显像技术在以无创方式评估新型药物输送系统方面的潜力。

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