Incorporation of bioactive glass nanoparticles in electrospun PCL/chitosan fibers by using benign solvents
نویسندگان
چکیده
منابع مشابه
Incorporation of Calcium Containing Mesoporous (MCM-41-Type) Particles in Electrospun PCL Fibers by Using Benign Solvents
The electrospinning technique is a versatile method for the production of fibrous scaffolds able to resemble the morphology of the native extra cellular matrix. In the present paper, electrospinning is used to fabricate novel SiO2 particles (type MCM-41) containing poly(epsilon-caprolactone) (PCL) fibers. The main aims of the present work are both the optimization of the particle synthesis and ...
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Over the past decades, bioactive glass (BG) has been of a great interest in the bone regeneration field, due to its excellent biocompatibility, bioactivity and osteoconductivity. Herein, fabrication of bioactive glass as one-dimensional fibers by employing an Electrospinning process is reported. The Sol-Gel method was chosen considering the final fibers smoothness and homogeneity. Starting sol ...
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(A), 10% BG (B) and 60% BG (C) ELAC fibers. Scale bar = 2 μm. (D) Stress vs. strain curve for mechanical assessment of nBG incorporated ELAC fibers. Incorporation of Nano-sized Bioactive Glass Enhances the Mechanical Properties of Electrochemically Aligned Collagen Fibers Meet J. Pastakia, Thuy-Uyen Nguyen, Vipuil Kishore Dept. of Biomedical Engineering, Dept. of Chemical Engineering, Florida I...
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15 صفحه اولVersatile Production of Poly(Epsilon-Caprolactone) Fibers by Electrospinning Using Benign Solvents
The electrospinning technique is widely used for the fabrication of micro- and nanofibrous structures. Recent studies have focused on the use of less toxic and harmful solvents (benign solvents) for electrospinning, even if those solvents usually require an accurate and longer process of optimization. The aim of the present work is to demonstrate the versatility of the use of benign solvents, l...
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ژورنال
عنوان ژورنال: Bioactive Materials
سال: 2018
ISSN: 2452-199X
DOI: 10.1016/j.bioactmat.2017.05.003