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Method for Preparation, Programming, and Characterization of Miniaturized Particulate Shape-Memory Polymer Matrices

机译:小型颗粒状形状记忆聚合物基体的制备,编程和表征方法

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摘要

Their capability to change their shape on demand has created significant interest for shape-memory polymers (SMPs) in minimally invasive surgery. To evaluate the miniaturization of SMP matrices for small-sized implants or controlled release systems, a strategy to prepare and evaluate microsized SMP model particles is required. This methodological study reports the emulsion-based preparation of ~30 μm microparticles (MPs) from a phase-segregated SMP, poly(ε-caprolactone) [PCL] and poly(ω-pentadecalactone) [PPDL], with a particular focus on the effects of process parameters such as polymer solvents or stabilizer type/ concentration on formation and size distribution of SMP MPs. Processes for the preparation of SMP MP-loaded water-soluble polymer films with tailored mechanical properties were developed and applied for programming the SMP MP to a temporary ellipsoid shape by film stretching. For the functional evaluation of shape recovery of MPs, a light microscopy-based setup with temperature control is proposed by which the stimuliinduced switching of the microsized SMP matrices could be confirmed. Overall, by applying this methodological strategy to various thermoplastic SMPs, a routine to identify and characterize the microscale functionality of SMPs in miniaturized applications will be broadly accessible.
机译:它们按需改变形状的能力引起了微创手术中形状记忆聚合物(SMP)的极大兴趣。为了评估小型植入物或控释系统的SMP基质的小型化,需要一种策略来制备和评估微型SMP模型颗粒。这项方法学研究报告了从乳液中以相分离的SMP,聚(ε-己内酯)[PCL]和聚(ω-十五烯内酯)[PPDL]制备约30μm微粒(MPs),其中特别关注工艺参数(如聚合物溶剂或稳定剂类型/浓度)对SMP MP的形成和尺寸分布的影响。开发了制备具有定制机械性能的负载SMP MP的水溶性聚合物膜的方法,并将其用于通过膜拉伸将SMP MP编程为临时椭圆体形状。为了对MP的形状恢复进行功能评估,提出了一种基于光学显微镜且具有温度控制的设置,通过该设置可以确定由刺激引起的SMP矩阵切换。总体而言,通过将这种方法学策略应用于各种热塑性SMP,将可以广泛使用在小型应用中识别和表征SMP微观功能的例程。

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