树枝状聚合物和树枝状聚合物凝胶衍生的药物递送系统:打破青光眼药物局部给药的瓶颈

Juan Wang, Boxuan Li, Uday B. Kompella, Hu Yang
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引用次数: 3

摘要

由于具有高的结构灵活性、多药携带能力和可调的尺寸,树枝状聚合物已被用作眼科药物递送的合适载体。药物分子可以被封装或化学偶联到树枝状大分子上。聚酰胺胺(PAMAM)树状大分子的纳米尺寸、球形和阳离子表面促进了它们与角膜的相互作用,并导致角膜前滞留时间延长。树枝状聚合物可以进一步交联以产生三维水凝胶网络或树枝状聚合物水凝胶(DH)。DH的性质可以很容易地调节,以保持流动性和粘附性,使其适合开发局部眼部药物制剂。微/纳米尺寸的DHs,即树枝状聚合物微/纳米凝胶,具有独特的性质,如易于给药、大的粘附比表面积和药物靶向功能,使其对眼科药物递送具有吸引力。这一观点报道了基于PAMAM树状大分子的药物递送系统的进展,包括药物偶联物和微纳米凝胶,以增强和维持多种抗青光眼药物的递送。树状大分子和树状大分子凝胶衍生的药物递送系统作为眼部多功能局部药物递送系统具有巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dendrimer and dendrimer gel-derived drug delivery systems: Breaking bottlenecks of topical administration of glaucoma medications

Dendrimer and dendrimer gel-derived drug delivery systems: Breaking bottlenecks of topical administration of glaucoma medications

Due to high structural flexibility, multidrug carrying capability, and tunable size, dendrimers have been used as suitable carriers for ophthalmic drug delivery. Drug molecules can be either encapsulated or chemically coupled to dendrimers. The nanoscopic size, spheroidal shape, and cationic surface of polyamidoamine (PAMAM) dendrimers promote their interaction with the cornea and result in prolonged precorneal retention. Dendrimers could be further cross-linked to produce three-dimensional hydrogel networks or dendrimer hydrogels (DH). The properties of the DH can be readily adjusted to maintain both fluidity and adhesiveness, making them suitable for developing topical ocular drug formulations. Micro-/nano- sized DHs, that is, dendrimer micro-/nano- gels, have unique properties such as ease of administration, large specific surface area for adhesion, and drug targeting functionalities, making them attractive for ophthalmic drug delivery. This perspective reports advances in PAMAM dendrimer based drug delivery systems including drug conjugates and micro- and nano- gels to enhance and sustain the delivery of multiple anti-glaucoma drugs, Dendrimer and dendrimer gel-derived drug delivery systems hold great potential as multifunctional  topical drug delivery systems for the eye.

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