Department of Textile Technology, Indian Institute of Technology Delhi , Hauz Khas, New Delhi 110016, India.
Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi , Hauz Khas, New Delhi 110016, India.
Langmuir. 2017 Aug 15;33(32):8062-8069. doi: 10.1021/acs.langmuir.7b02119. Epub 2017 Aug 4.
Functionalized matrices have been sought for their application in sensors, filtration, energy storage, catalysis, and tissue engineering. We report formation of an inorganic-organic composite matrix based on poly(ε-caprolactone) (PCL) functionalized with hydrophobically modified silica (m-silica) fabricated with reduced organic solvent usage. The matrix was obtained via electrospinning of a water-in-oil emulsion of PCL that was stabilized by judicious choice of m-silica as a Pickering agent resulting into an emulsifier free matrix. Inclusion of m-silica in PCL matrix resulted in enhancing tensile properties and cell proliferation efficiency. The electrospun composite matrix was free from any emulsifier or template polymer; thus any abrupt loss in mechanical properties was prevented when the matrix was subjected to aqueous conditions. The inorganic-organic biodegradable composite matrices thus produced using an emulsifier free emulsion find applications in tissue engineering and may further be evaluated for other areas including selective sorption and separation.
功能化基质因其在传感器、过滤、储能、催化和组织工程中的应用而受到关注。我们报告了一种基于聚己内酯(PCL)的无机-有机复合基质的形成,该基质通过使用减少有机溶剂的水包油乳液静电纺丝制备,其中聚己内酯用疏水改性的二氧化硅(m-二氧化硅)进行了功能化。该基质是通过明智地选择 m-二氧化硅作为 Pickering 剂来稳定 PCL 的水包油乳液而获得的,从而得到了无乳化剂的基质。m-二氧化硅的加入提高了拉伸性能和细胞增殖效率。静电纺丝的复合基质中没有任何乳化剂或模板聚合物;因此,当基质处于水相条件下时,防止了任何机械性能的突然损失。使用无乳化剂乳液制备的这种无机-有机可生物降解的复合基质可用于组织工程,并且可能进一步在包括选择性吸附和分离在内的其他领域进行评估。