pH响应性、血液相容性、无毒的刺五加种子多糖水凝胶对非布索坦的缓释作用

IF 1.3 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Journal of the Brazilian Chemical Society Pub Date : 2023-06-23 DOI:10.21577/0103-5053.20230001
Arshad Ali, M. Hussain, M. Haseeb, M. Ashraf, Muhammad Farid-ul-Haq, T. Tabassum, Gulzar Muhammad, A. Abbas
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引用次数: 1

摘要

本研究以Salvia spinosa种子(SSH)为原料制备的多糖水凝胶作为ph响应、超孔、血液相容性、无毒和缓释材料进行了评价。基于ssh的片剂分别表现出pH依赖性肿胀(pH 7.4 > 6.8 > 4.5 > 1.2)以及pH 7.4和1.2时的肿胀和消肿行为。非布司他通过模拟胃肠道条件,遵循零级动力学和超case-II转运机制,实现了14 h的缓释。扫描电镜显示,即使经过压缩,SSH也具有多孔性。发现SSH具有抗氧化性和血液相容性。急性毒性研究表明,在动物2.0 g kg-1体重的最大剂量水平下,SSH是安全的。研究还发现,SSH对眼睛没有刺激性。重要脏器组织病理学未见病变及炎症。总之,SSH可以被认为是口服、皮肤和眼科配方的安全成分。
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pH-Responsive, Hemocompatible, and Non-Toxic Polysaccharide-Based Hydrogel from Seeds of Salvia spinosa L. for Sustained Release of Febuxostat
Herein, a polysaccharide-based hydrogel from seeds of Salvia spinosa (SSH) was evaluated as a pH-responsive, superporous, hemocompatible, non-toxic, and sustained release material. The SSH-based tablets showed pH-dependent swelling (pH 7.4 > 6.8 > 4.5 > 1.2) as well as swelling and de-swelling behavior at pH 7.4 and 1.2, respectively. Sustained release of febuxostat was achieved by mimicking the gastrointestinal tract conditions for 14 h and following the zero-order kinetics and super case-II transport mechanism. Scanning electron microscopy revealed the porous nature of SSH even after compression. SSH was found to be hemocompatible with antioxidant properties. Acute toxicity studies ensured the safety of SSH at a maximum dose level of 2.0 g kg-1 body weight of the animals. SSH was also found as non-irritant to the eye. The histopathology of vital organs did not show any lesions or inflammation. Conclusively, SSH can be considered a safe ingredient for oral, dermal, and ophthalmic formulations.
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来源期刊
CiteScore
2.90
自引率
7.10%
发文量
99
审稿时长
3.4 months
期刊介绍: The Journal of the Brazilian Chemical Society embraces all aspects of chemistry except education, philosophy and history of chemistry. It is a medium for reporting selected original and significant contributions to new chemical knowledge.
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