Suppr超能文献

基于聚合物颗粒的微成型技术制备新型微结构。

Polymer particle-based micromolding to fabricate novel microstructures.

作者信息

Park Jung-Hwan, Choi Seong-O, Kamath Rachna, Yoon Yong-Kyu, Allen Mark G, Prausnitz Mark R

机构信息

School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Biomed Microdevices. 2007 Apr;9(2):223-34. doi: 10.1007/s10544-006-9024-4.

Abstract

Conventional micromolding provides rapid and low-cost methods to fabricate polymer microstructures, but has limitations when producing sophisticated designs. To provide more versatile micromolding techniques, we developed methods based on filling micromolds with polymer microparticles, as opposed to polymer melts, to produce microstructures composed of multiple materials, having complex geometries, and made using mild processing conditions. Polymer microparticles of 1 to 30 microm in size were made from PLA, PGA and PLGA using established spray drying and emulsion techniques either with or without encapsulating model drug compounds. These polymer microparticles were filled into PDMS micromolds at room temperature and melted or bonded together to form microstructures according to different protocols. Porous microstructures were fabricated by ultrasonically welding microparticles together in the mold while maintaining the voids inherent in their packing structure. Multi-layered microstructures were fabricated to have different compositions of polymers and encapsulated compounds located in different regions of the microstructures. More complex arrowhead microstructures were fabricated in a two-step process using a single mold. To assess possible applications, microstructures were designed as microneedles for minimally invasive drug delivery. Multi-layer microneedles were shown to insert into cadaver tissue and, according to design, detach from their base substrate and remain embedded in the tissue for controlled release drug delivery over time. We conclude that polymer particle-based micromolding can encapsulate compounds within microstructures composed of multiple materials, having complex geometries, and made using mild processing conditions.

摘要

传统的微成型技术提供了快速且低成本的方法来制造聚合物微结构,但在制造复杂设计时存在局限性。为了提供更多样化的微成型技术,我们开发了基于用聚合物微粒而非聚合物熔体填充微模具的方法,以生产由多种材料组成、具有复杂几何形状且采用温和加工条件制造的微结构。使用既定的喷雾干燥和乳液技术,无论是否封装模型药物化合物,由聚乳酸(PLA)、聚乙醇酸(PGA)和聚乳酸-乙醇酸共聚物(PLGA)制成了尺寸为1至30微米的聚合物微粒。这些聚合物微粒在室温下被填充到聚二甲基硅氧烷(PDMS)微模具中,并根据不同的方案熔化或粘结在一起以形成微结构。通过在模具中超声焊接微粒同时保持其堆积结构中固有的空隙来制造多孔微结构。制造多层微结构,使其具有位于微结构不同区域的不同聚合物组成和封装化合物。使用单个模具通过两步工艺制造更复杂的箭头形微结构。为了评估可能的应用,将微结构设计为用于微创给药的微针。多层微针被证明可以插入尸体组织中,并且根据设计,从其基底分离并留在组织中以实现药物的控释。我们得出结论,基于聚合物颗粒的微成型可以将化合物封装在由多种材料组成、具有复杂几何形状且采用温和加工条件制造的微结构内。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验