工程聚乳酸基支架丰富,持续和延长乳酸释放

IF 6.9 Q1 POLYMER SCIENCE
Pilar A. Haro Gutiérrez, Samuele Colombi, Jordi Casanovas, Leonor Resina, Jordi Sans, Elisabeth Engel, Hamidreza Enshaei*, José García-Torres*, Maria M. Pérez-Madrigal* and Carlos Alemán*, 
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引用次数: 0

摘要

最近的研究表明,通过给予初始剂量的外源性乳酸并通过持续释放在局部维持该化合物的丰富浓度(即约10-14天),可以促进心脏组织再生。本研究的目的是开发一种基于聚乳酸(PLA)的支架,以实现从第一天到推荐期结束的持续每日乳酸释放。首先,使用三层聚乳酸(第一层、第三层和第五层)设计了一个五层电反应支架,每层都由电纺微纤维(MFs)组成,由自旋涂层乳酸(第二层)和聚(3,4-乙烯二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)(第四层)中间层分开。PLA外层(第一层和第五层)的疏水性被用来维持中间第二层乳酸的释放超过3天,而导电的第四层PEDOT:PSS层则通过电刺激确保乳酸的完全释放。之后,在第二步中,对相同的支架进行重新设计,使其不仅能在短时间内(3天)保持持续释放,而且能在较长时间内(10天)保持持续释放。为此,中间层的PLA MFs已被等离子体处理的含有蛋白酶k的PLA MFs所取代,该PLA MFs是通过静电纺丝PLA:酶混合物获得的。分解聚乳酸酯键的酶的活性,加上血浆对聚乳酸结构的影响,导致长时间的持续释放,并且可以调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering Poly(lactic Acid)-Based Scaffolds for Abundant, Sustained, and Prolonged Lactate Release

Recent studies have revealed that cardiac tissue regeneration is promoted by administering an initial dose of exogenous lactate and locally maintaining an abundant concentration of this compound for a prolonged period (i.e., around 10–14 days) through sustained release. The aim of this study is to develop a scaffold based on poly(lactic acid) (PLA) for achieving a sustained daily release of lactate from the first day to the end of the recommended period. First, a five-layered electroresponsive scaffold has been engineered using three PLA layers (first, third, and fifth), each composed of electrospun microfibers (MFs), separated by spin coated lactate (second) and poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) (fourth) intermediate layers. The hydrophobicity of the outer PLA layers (first and fifth) has been used to maintain the release of lactate from the intermediate second layer over 3 days, while the conducting fourth PEDOT:PSS layer has ensured a complete lactate release by electrostimulation. After that, in a second step, the same scaffold has been re-engineered to maintain the sustained release not only for a short period (3 days) but also for a prolonged period (>10 days). For this purpose, the PLA MFs of the intermediate third layer have been substituted by plasma-treated proteinase K-containing PLA MFs, obtained by electrospinning a PLA:enzyme mixture. The activity of the enzyme, which decomposes the ester bonds of PLA, combined with the effect of the plasma on the PLA structure, results in a prolonged sustained release that, in addition, can be modulated.

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