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Self-nanoemulsifying ramipril tablets: a novel delivery system for the enhancement of drug dissolution and stability

机译:自纳米雷米普利片:一种新型的给药系统,可增强药物的溶出度和稳定性

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Background: Ramipril (RMP) suffers from poor aqueous solubility along with sensitivity to mechanical stress, heat, and moisture. The aim of the current study is to improve RMP solubility and stability by designing solid self-nanoemulsifying drug delivery system (S-SNEDDS) as tablet. Methods: The drug was initially incorporated in different liquid formulations (L-SNEDDS) which were evaluated by equilibrium solubility, droplet size, and zeta potential studies. The optimized formulation was solidified into S-SNEDDS powder by the adsorbent Syloidsup?/sup?and compressed into a self-nanoemulsifying tablet (T-SNEDDS). The optimized tablet was evaluated by drug content uniformity, hardness, friability, disintegration, and dissolution tests. Furthermore, pure RMP, optimized L-SNEDDS, and T-SNEDDS were enrolled in accelerated and long-term stability studies. Results: Among various liquid formulations, F5 L-SNEDDS [capmul MCM/transcutol/HCO-30 (25/25/50%w/w)] showed relatively high drug solubility, nano-scaled droplet size, and high negative zeta potential value. The optimized SNEDDS solidification with Syloidsup?/sup?at ratio (1:1) resulted in a compressible powder with an excellent flowability. The optimized tablet (T-SNEDDS) showed accepted content uniformity, hardness, friability, and disintegration time (15 minutes). The optimized L-SNEDDS, S-SNEDDS, and T-SNEDDS showed superior enhancement of RMP dissolution compared to the pure drug. Most importantly, T-SNEDDS showed significant ( P 0.05) improvement of RMP stability compared to the pure drug and L-SNEDDS in both accelerated and long-term stability studies. Conclusion: RMP-loaded T-SNEDDS offers a potential oral dosage form that provides combined improvement of RMP dissolution and chemical stability.
机译:背景:雷米普利(RMP)的水溶性差,并且对机械应力,热量和水分敏感。当前研究的目的是通过设计固体自纳米乳化药物递送系统(S-SNEDDS)作为片剂来提高RMP的溶解度和稳定性。方法:该药物最初掺入不同的液体制剂(L-SNEDDS)中,通过平衡溶解度,液滴大小和zeta电位研究对其进行评估。优化后的配方通过吸附剂Syloid αα固化成S-SNEDDS粉末,并压制成自纳米乳化片剂(T-SNEDDS)。通过药物含量均匀性,硬度,脆性,崩解和溶出度测试对优化的片剂进行评估。此外,纯的RMP,优化的L-SNEDDS和T-SNEDDS参与了加速和长期稳定性研究。结果:在各种液体制剂中,F5 L-SNEDDS [capmul MCM / transcutol / HCO-30(25/25/50%w / w)]显示相对较高的药物溶解度,纳米级液滴尺寸和较高的负ζ电势值。以Syloid αα的比例(1:1)进行优化的SNEDDS固化,产生了具有出色流动性的可压缩粉末。优化的片剂(T-SNEDDS)显示出可接受的含量均匀性,硬度,脆性和崩解时间(<15分钟)。与纯药物相比,优化的L-SNEDDS,S-SNEDDS和T-SNEDDS显示出RMP溶出度更高的增强。最重要的是,与纯药物和L-SNEDDS相比,T-SNEDDS在加速和长期稳定性研究中均显示RMP稳定性显着提高(P <0.05)。结论:加载RMP的T-SNEDDS提供了潜在的口服剂型,可改善RMP的溶出度和化学稳定性。

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