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Generation of Photopolymerized Microparticles Based on PEGDA Using Microfluidic Devices. Part 1. Initial Gelation Time and Mechanical Properties of the Material

机译:基于PEGDA使用微流体装置产生光聚合微粒。第1部分。初始凝胶化时间和材料的力学性能

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摘要

Photopolymerized microparticles are made of biocompatible hydrogels like Polyethylene Glycol Diacrylate (PEGDA) by using microfluidic devices are a good option for encapsulation, transport and retention of biological or toxic agents. Due to the different applications of these microparticles, it is important to investigate the formulation and the mechanical properties of the material of which they are made of. Therefore, in the present study, mechanical tests were carried out to determine the swelling, drying, soluble fraction, compression, cross-linking density (Mc) and mesh size (ξ) properties of different hydrogel formulations. Tests provided sufficient data to select the best formulation for the future generation of microparticles using microfluidic devices. The initial gelation times of the hydrogels formulations were estimated for their use in the photopolymerization process inside a microfluidic device. Obtained results showed a close relationship between the amount of PEGDA used in the hydrogel and its mechanical properties as well as its initial gelation time. Consequently, it is of considerable importance to know the mechanical properties of the hydrogels made in this research for their proper manipulation and application. On the other hand, the initial gelation time is crucial in photopolymerizable hydrogels and their use in continuous systems such as microfluidic devices.
机译:光聚合的微粒由诸如聚乙二醇二丙烯酸酯(PEGDA)等生物相容性水凝胶,通过微流体装置是一种良好的封装,运输和保留生物或有毒剂的良好选择。由于这些微粒的应用不同,重要的是研究其由它们制成的材料的配方和机械性能。因此,在本研究中,进行机械测试以确定不同水凝胶制剂的溶胀,干燥,可溶性级分,压缩,交联密度(MC)和网格尺寸(ξ)性质。测试提供了足够的数据来选择使用微流体装置的未来产生微粒的最佳配方。估计水凝胶制剂的初始凝胶化时间用于它们在微流体装置内的光聚合过程中使用。得到的结果显示水凝胶中使用的PEGDA的量与其机械性能以及其初始凝胶化时间之间的密切关系。因此,了解本研究中的水凝胶的机械性能具有相当重视,以适当操纵和应用。另一方面,初始凝胶化时间在可光聚合的水凝胶中至关重要,以及它们在连续系统中的用途,例如微流体装置。

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