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利用糖胺聚糖/趋化因子相互作用实现 5P12-RANTES 在 HIV 预防中的长效递送。

Using glycosaminoglycan/chemokine interactions for the long-term delivery of 5P12-RANTES in HIV prevention.

机构信息

Department of Biomedical Engineering, Case Western Reserve University , 10900 Euclid Ave, Cleveland, Ohio 44106, United States.

出版信息

Mol Pharm. 2013 Oct 7;10(10):3564-73. doi: 10.1021/mp3007242. Epub 2013 Aug 26.

Abstract

5P12-RANTES is a recently developed chemokine analogue that has shown high level protection from SHIV infection in macaques. However, the feasibility of using 5P12-RANTES as a long-term HIV prevention agent has not been explored partially due to the lack of available delivery devices that can easily be modified for long-term release profiles. Glycosaminoglycans (GAGs) have been known for their affinity for various cytokines and chemokines, including native RANTES, or CCL5. In this work, we investigated used of GAGs in generating a chemokine drug delivery device. Initial studies used surface plasmon resonance analysis to characterize and compare the affinities of different GAGs to 5P12-RANTES. These different GAGs were then incorporated into drug delivery polymeric hydrogels to engineer sustained release of the chemokines. In vitro release studies of 5P12-RANTES from the resulting polymers were performed, and we found that 5P12-RANTES release from these polymers can be controlled by the amount and type of GAG incorporated. Polymer disks containing GAGs with stronger affinity to 5P12-RANTES resulted in more sustained and longer term release than did polymer disks containing GAGs with weaker 5P12-RANTES affinity. Similar trends were observed by varying the amount of GAGs incorporated into the delivery system. 5P12-RANTES released from these polymers demonstrated good levels of CCR5 blocking, retaining activity even after 30 days of incubation.

摘要

5P12-RANTES 是一种新开发的趋化因子类似物,在恒河猴中显示出对 SHIV 感染的高水平保护。然而,由于缺乏可用于长期释放的现成输送装置,5P12-RANTES 作为长期 HIV 预防剂的可行性尚未得到探索。糖胺聚糖 (GAGs) 因其对各种细胞因子和趋化因子的亲和力而闻名,包括天然 RANTES 或 CCL5。在这项工作中,我们研究了 GAGs 在生成趋化因子药物输送装置中的用途。最初的研究使用表面等离子体共振分析来表征和比较不同 GAGs 与 5P12-RANTES 的亲和力。然后将这些不同的 GAGs 掺入药物输送聚合物水凝胶中,以工程化趋化因子的持续释放。对由此产生的聚合物中 5P12-RANTES 的体外释放研究表明,5P12-RANTES 从这些聚合物中的释放可以通过掺入的 GAG 的量和类型来控制。含有与 5P12-RANTES 亲和力更强的 GAG 的聚合物盘导致比含有与 5P12-RANTES 亲和力较弱的 GAG 的聚合物盘更持续和更长时间的释放。通过改变输送系统中 GAG 的含量也观察到类似的趋势。从这些聚合物中释放的 5P12-RANTES 表现出良好的 CCR5 阻断水平,即使在孵育 30 天后仍保持活性。

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