Laboratorio de Medicina Genómica, Departamento de Genética, Instituto Nacional de Rehabilitación Luis Guillermo Ibarra Ibarra, Ciudad de México, 14389, Mexico.
Departamento de Farmacia, Facultad de Química, Universidad Nacional Autónoma de México, Ciudad de México, 04510, Mexico.
Cell Mol Biol (Noisy-le-grand). 2020 Jun 25;66(4):199-207.
Controlled release is of vital relevance for many drugs; thus, there is a keen interest in materials that can improve the release profiles of formulations administered via buccal, transdermal, ophthalmic, vaginal, and nasal. The desirable effects of those materials include the improvement of stability, adhesiveness, solubility, and retention time. Hence, different synthetic and natural polymers are utilized to achieve these objectives. In this respect, xanthan gum is an anionic polysaccharide that can be obtained from Xanthomonas bacteria. It is a natural polymer broadly employed in numerous food products, lotions, shampoos, and dermatological articles. Furthermore, due to its physicochemical features, xanthan gum is growingly utilized for the development and improvement of drug delivery systems. In this regard, encouraging findings have been revealed by recent formulations for pharmaceutical applications, including antiviral carriers, antibacterial transporters, transdermal patches, vaginal formulations, and anticancer medications. In this article, we perform a concise description of the chemical properties of xanthan gum and its role as a modifier of drug release. Furthermore, we present an outlook of the state of the art of research focused on the utilization of xanthan gum in varied pharmaceutical formulations, which include tablets, films, hydrogels, and nanoformulations. Finally, we discuss some perspectives about the use of xanthan gum in these formulations.
控制释放对于许多药物至关重要;因此,人们对能够改善经口腔、经皮、眼用、阴道和鼻用给药制剂释放曲线的材料非常感兴趣。这些材料的理想效果包括提高稳定性、粘附性、溶解度和保留时间。因此,不同的合成和天然聚合物被用于实现这些目标。在这方面,黄原胶是一种阴离子多糖,可从黄单胞菌中获得。它是一种天然聚合物,广泛应用于许多食品、乳液、洗发水和皮肤科产品中。此外,由于其物理化学特性,黄原胶越来越多地用于开发和改进药物传递系统。在这方面,最近针对制药应用的制剂揭示了令人鼓舞的发现,包括抗病毒载体、抗菌转运器、经皮贴剂、阴道制剂和抗癌药物。在本文中,我们对黄原胶的化学性质及其作为药物释放调节剂的作用进行了简要描述。此外,我们还介绍了黄原胶在各种药物制剂中的研究现状,包括片剂、薄膜、水凝胶和纳米制剂。最后,我们讨论了黄原胶在这些制剂中的应用的一些前景。