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硫醇共轭泊洛沙姆的合成、评价及其药物应用

Synthesis and Evaluation of Thiol-Conjugated Poloxamer and Its Pharmaceutical Applications.

作者信息

Zaman Muhammad, Saeed Sadaf, Imtiaz Bajwa Rabia, Shafeeq Ur Rahman Muhammad, Rahman Saeed Ur, Jamshaid Muhammad, Rasool Muhammad F, Majeed Abdul, Imran Imran, Alqahtani Faleh, Alshehri Sultan, AlAsmari Abdullah F, Ali Nemat, Alasmari Mohammed S

机构信息

Faculty of Pharmacy, University of Central Punjab, Lahore 54000, Pakistan.

Department of Pharmaceutics, Faculty of Pharmacy, The University of Lahore, Lahore 54000, Pakistan.

出版信息

Pharmaceutics. 2021 May 11;13(5):693. doi: 10.3390/pharmaceutics13050693.

Abstract

The current study was designed to convert the poloxamer (PLX) into thiolated poloxamer (TPLX), followed by its physicochemical, biocompatibilities studies, and applications as a pharmaceutical excipient in the development of tacrolimus (TCM)-containing compressed tablets. Thiolation was accomplished by using thiourea as a thiol donor and hydrochloric acid (HCl) as a catalyst in the reaction. Both PLX and TPLX were evaluated for surface morphology based on SEM, the crystalline or amorphous nature of the particles, thiol contents, micromeritics, FTIR, and biocompatibility studies in albino rats. Furthermore, the polymers were used in the development of compressed tablets. Later, they were also characterized for thickness, diameter, hardness, weight variation, swelling index, disintegration time, mucoadhesion, and in vitro drug release. The outcomes of the study showed that the thiolation process was accomplished successfully, which was confirmed by FTIR, where a characteristic peak was noticed at 2695.9968 cm in the FTIR scan of TPLX. Furthermore, the considerable concentration of the thiol constituents (20.625 µg/g of the polymer), which was present on the polymeric backbone, also strengthened the claim of successful thiolation. A mucoadhesion test illustrated the comparatively better mucoadhesion strength of TPLX compared to PLX. The in vitro drug release study exhibited that the TPLX-based formulation showed a more rapid ( < 0.05) release of the drug in 1 h compared to the PLX-based formulation. The in vivo toxicity studies confirmed that both PLX and TPLX were safe when they were administered to the albino rats. Conclusively, the thiolation of PLX made not only the polymer more mucoadhesive but also capable of improving the dissolution profile of TCM.

摘要

本研究旨在将泊洛沙姆(PLX)转化为硫醇化泊洛沙姆(TPLX),随后对其进行物理化学性质、生物相容性研究,并将其作为药用辅料应用于含他克莫司(TCM)的压制片开发。硫醇化反应通过使用硫脲作为硫醇供体和盐酸(HCl)作为催化剂来完成。基于扫描电子显微镜(SEM)对PLX和TPLX的表面形态、颗粒的结晶或无定形性质、硫醇含量、粉体学性质、傅里叶变换红外光谱(FTIR)以及对白化大鼠的生物相容性进行了评估。此外,这些聚合物被用于压制片的开发。随后,还对压制片的厚度、直径、硬度、重量差异、溶胀指数、崩解时间、粘膜粘附性和体外药物释放进行了表征。研究结果表明,硫醇化过程成功完成,FTIR证实了这一点,在TPLX的FTIR扫描中,在2695.9968 cm处观察到一个特征峰。此外,聚合物主链上存在的相当浓度的硫醇成分(20.625 µg/g聚合物)也进一步证明了硫醇化的成功。粘膜粘附性测试表明,与PLX相比,TPLX的粘膜粘附强度相对更好。体外药物释放研究表明,与基于PLX的制剂相比,基于TPLX的制剂在1小时内药物释放更快(<0.05)。体内毒性研究证实,将PLX和TPLX给予白化大鼠时都是安全的。总之,PLX的硫醇化不仅使聚合物具有更强的粘膜粘附性,还能够改善TCM的溶出曲线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/461e/8151909/cf966ffdedee/pharmaceutics-13-00693-g001.jpg

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