Industrial Pharmacy Laboratory, Department of Pharmaceutics, R. C. Patel Institute of Pharmaceutical Education and Research, Shirpur, India.
Division of Computer Aided Drug Design, Department of Pharmaceutical Chemistry, R. C. Patel Institute of Pharmaceutical Education and Research, Shirpur, India.
Int J Biol Macromol. 2017 Nov;104(Pt A):799-812. doi: 10.1016/j.ijbiomac.2017.06.088. Epub 2017 Jun 23.
The near future of drug delivery system would lie in the search of a versatile and innocuous material, based mostly on the natural resources. The tamarind seed xyloglucan (XG) is a natural neutral hemicellulose and a hydrophilic polysaccharide consisting of a main chain of glucan backbone with xylose and galactose side chains. XG is endowed with idiosyncratic mucoadhesive and in situ gelling properties which rated XG as an attractive, functional polymer for numerous drug delivery applications. In milieu of this, the present review is designed to underline the plausible potential of XG or XG-based systems in drug delivery. The feasibility of surface-tailoring, the flexibility of chemical-modification, and the possibility as ligand-conjugations grant XG an extraordinary consideration in the scientific territory. The authors are hopeful that the versatility of XG would meet the expectations of regulatory authorities and the XG-based products will serve the therapeutic needs of the community in the future, if sufficiently investigated and promising outcomes are obtained in human subjects.
药物输送系统的近期未来将在于寻找一种通用且无害的材料,这些材料主要基于自然资源。罗望子种子木葡聚糖(XG)是一种天然中性半纤维素和亲水性多糖,由葡聚糖主链和木糖及半乳糖侧链组成。XG 具有独特的黏膜黏附性和原位凝胶特性,使其成为用于多种药物输送应用的有吸引力的功能聚合物。有鉴于此,本综述旨在强调 XG 或基于 XG 的系统在药物输送方面的潜在可能性。表面修饰的可行性、化学修饰的灵活性以及配体结合的可能性,使 XG 在科学领域得到了特别的关注。作者希望,如果在人体研究中进行充分的研究并获得有前景的结果,XG 的多功能性将满足监管机构的期望,并且基于 XG 的产品将满足社区的治疗需求。