纳米粘土对含脂肪间充质干细胞的聚己内酯纳米复合支架性能的影响

S. S. Shafiei, M. Shavandi, Y. Nickakhtar
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引用次数: 0

摘要

组织工程支架为细胞粘附、生长和分化提供了生物学和力学框架。纳米纤维支架模拟天然细胞外基质(ECM),在组织和/或器官的形成和重塑中发挥重要作用。一种模拟纤维ECM所需性能的方法是将纳米颗粒添加到聚合物基体中。本研究采用静电纺丝法,成功制备了含有不同层状双氢氧化物(LDH)含量(0.1 wt.% ~ 10 wt.%)的聚ε-己内酯(PCL)均匀纤维。LDH *:یکینورتکلاتسپ،تابتاکملوئسم:shafiei@nigeb.ac.ir噢问oa de D fr om ja m e . iu t.a c .红外1 2:46红外D T o n F掉ay m ay 2 8 T h 20 21یعیفشوناراکمهتسبرادتایصوصخربسرونانندوزفارثایسررب……通过能量色散x射线分析(EDX),证实了46 ،یسدنهم رد هتفرشیپ داوم لاس 39 رامش, 4, ناتسمز 1399纳米颗粒随机分散在纤维中。从形态、物理和力学角度对支架进行了分析。从细胞附着和小鼠脂肪干细胞(mADSCs)的成脂分化方面对支架进行了生物学评估。结果表明,LDH纳米颗粒的加入降低了PCL支架的平均纤维直径,提高了其抗拉强度和断裂伸长率。富ldh静电纺PCL支架对细胞粘附有显著影响。此外,我们还观察到mADSCs的成脂分化显著增加。PCL/LDH纳米纤维支架在软组织工程中具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Nanoclay Addition on the Properties of Polycaprolactone Nanocomposite Scaffolds Containing Adipose Derived Mesenchymal Stem Cells used in Soft Tissue Engineering
Tissue-engineering scaffolds provide biological and mechanical frameworks for cell adhesion, growth, and differentiation. Nanofibrous scaffolds mimic the native extracellular matrix (ECM) and play a significant role in formation and remodeling of tissues and/or organs . One way to mimic the desired properties of fibrous ECM is adding nanoparticles into the polymer matrix. In the current study, the uniform fibers of poly (ε-caprolactone) (PCL) enriched with different layered double hydroxide (LDH) contents (ranging from 0.1 wt.% to 10 wt.%) were successfully fabricated by electrospinning method. The LDH * :یکینورتکلا تسپ ،تابتاکم لوئسم : shafiei@nigeb.ac.ir D ow nl oa de d fr om ja m e. iu t.a c. ir at 1 2: 46 IR D T o n F rid ay M ay 2 8t h 20 21 یعیفش و ناراکمه تسبراد تایصوصخ رب سرونان ندوزفا رثا یسررب ... 46 ،یسدنهم رد هتفرشیپ داوم لاس 39 رامش ، ه 4 ، ناتسمز 1399 nano particles were randomly dispersed in the fibers, as confirmed by Energy Dispersive X-ray analysis (EDX). Scaffolds were analyzed from morphological, physical and mechanical view. Biological assessments of scaffolds in terms of cellular attachment and adipogenic differentiation of mouse adipose derived stem cells (mADSCs) were performed. The results showed that inclusion of LDH nanoparticles reduced the average fiber diameter and enhanced the tensile strength and elongation at break values of the PCL scaffold. The LDH-enriched electrospun PCL scaffolds had remarkable effects on cell adhesion. Moreover, a significant increase in adipogenic differentiation of mADSCs was observed. The PCL/LDH nanofibrous scaffolds showed great potential in application for soft tissue engineering.
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