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通过控制多孔性来全面调节具有生物黏附性能的聚二甲基硅氧烷(PDMS)膜。

Comprehensive tuning of bioadhesive properties of polydimethylsiloxane (PDMS) membranes with controlled porosity.

机构信息

Department of Mechanical Design Engineering, College of Engineering, Chonbuk National University, Jeonju 54896, Republic of Korea.

出版信息

Biofabrication. 2019 May 31;11(3):035021. doi: 10.1088/1758-5090/ab1da9.

Abstract

Polydimethylsiloxane (PDMS)-based elastomers have become the de facto platform for various biomedical applications. But the stable attachment of biomolecules to PDMS for more robust and long-term performance of the PDMS-based devices has been a significant challenge, owing to its unique physical properties (e.g. hydrophobicity, dynamic molecular mobility). Herein, the PDMS membrane with tunable surface porosity is developed via high-pressure saturated steam technology in order to promote a strong and lasting bioadhesion to the PDMS membrane without additional processing steps. The resulting porous PDMS membranes demonstrate enhanced physical properties (e.g. Young's modulus, roughness, and air permeability), which is dependent on the membrane thickness. The bioactivity of porous PDMS membranes, evaluated by measuring the adhesion of various biomolecules and bioactivity of cells, shows significant improvement over conventional non-porous control. This effect can be attributed to the strong physical adsorption on the porous PDMS membrane by increased surface roughness and stiffness. In sum, the porous PDMS membrane provides a simple and yet highly effective platform to create bioactive surface for various biomedical devices.

摘要

基于聚二甲基硅氧烷(PDMS)的弹性体已成为各种生物医学应用的事实上的平台。但是,由于其独特的物理性质(例如疏水性、动态分子迁移率),将生物分子稳定地附着在 PDMS 上以实现更稳健和长期的 PDMS 基器件性能一直是一个重大挑战。在此,通过高压饱和蒸汽技术开发了具有可调表面多孔性的 PDMS 膜,以促进与 PDMS 膜的强而持久的生物黏附,而无需额外的处理步骤。所得的多孔 PDMS 膜表现出增强的物理性质(例如杨氏模量、粗糙度和透气性),这取决于膜的厚度。通过测量各种生物分子的黏附性和细胞的生物活性来评估多孔 PDMS 膜的生物活性,与传统的非多孔对照相比有显著改善。这种效果可以归因于表面粗糙度和刚度的增加导致多孔 PDMS 膜上的强物理吸附。总之,多孔 PDMS 膜为各种生物医学设备提供了一个简单而又非常有效的平台来创建生物活性表面。

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