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多孔骨形态发生蛋白-2微球:聚合物结合与体外释放

Porous bone morphogenetic protein-2 microspheres: polymer binding and in vitro release.

作者信息

Schrier J A, DeLuca P P

机构信息

Faculty of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, KY 40536, USA.

出版信息

AAPS PharmSciTech. 2001 Oct 7;2(3):E17. doi: 10.1208/pt020317.

Abstract

This research compared the binding and release of recombinant human bone morphogenetic protein 2 (rhBMP-2) with a series of hydrophobic and hydrophilic poly-lactide-co-glycolide (PLGA) copolymers. Porous microspheres were produced via a double emulsion process. Binding and incorporation of protein were achieved by soaking microspheres in buffered protein solutions, filtering, and comparing protein concentration remaining to nonmicrosphere-containing samples. Protein release was determined by soaking bound microspheres in a physiological buffer and measuring protein concentration (by reversed-phase high-performance liquid chromatography) in solution over time. Normalized for specific surface area and paired by polymer molecular weight, microspheres made from hydrophilic 50:50 or 75:25 PLGA bound significantly more protein than microspheres made from the corresponding hydrophobic PLGA. Increased binding capacity correlated with higher polymer acid values. With certain polymers, rhBMP-2 adsorption was decreased or inhibited at high protein concentration, but protein loading could be enhanced by increasing the protein solution:PLGA (volume:mass) ratio or by repetitive soaking. Microspheres of various PLGAs released unbound protein in 3 days, whereas the subsequent bound protein release corresponded to mass loss. RhBMP-2 binding to PLGA was controlled by the acid value, protein concentration, and adsorption technique. The protein released in 2 phases; the first occurred over 3 days regardless of PLGA used and emanated from unbound, incorporated protein, while the second was controlled by mass loss and therefore was dependent on the polymer molecular weight. Overall, control of rhBMP-2 delivery is achievable by selection of PLGA microsphere carriers.

摘要

本研究比较了重组人骨形态发生蛋白2(rhBMP-2)与一系列疏水和亲水聚乳酸-乙醇酸共聚物(PLGA)的结合与释放情况。通过双乳液法制备了多孔微球。通过将微球浸泡在缓冲蛋白溶液中、过滤,并比较剩余蛋白浓度与不含微球的样品,实现了蛋白的结合与包封。通过将结合有蛋白的微球浸泡在生理缓冲液中,并随时间测量溶液中的蛋白浓度(通过反相高效液相色谱法)来测定蛋白释放。针对比表面积进行归一化处理,并按聚合物分子量进行配对,由亲水性50:50或75:25 PLGA制成的微球比由相应疏水性PLGA制成的微球结合的蛋白明显更多。结合能力的提高与聚合物酸值的升高相关。对于某些聚合物,在高蛋白浓度下rhBMP-2的吸附会降低或受到抑制,但通过增加蛋白溶液与PLGA的(体积:质量)比或重复浸泡可以提高蛋白负载量。各种PLGA的微球在3天内释放未结合的蛋白,而随后结合蛋白的释放与质量损失相对应。rhBMP-2与PLGA的结合受酸值、蛋白浓度和吸附技术的控制。蛋白分两个阶段释放;第一阶段在3天内发生,与所使用的PLGA无关,源于未结合的、包封的蛋白,而第二阶段受质量损失控制,因此取决于聚合物分子量。总体而言,通过选择PLGA微球载体可以实现对rhBMP-2递送的控制。

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