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纳米工程生物相容性 n-HA/壳聚糖-罗望子多糖的制备与表征:用于骨组织工程的仿生纳米复合材料。

Fabrication and characterization of nanoengineered biocompatible n-HA/chitosan-tamarind seed polysaccharide: Bio-inspired nanocomposites for bone tissue engineering.

机构信息

Inorganic Chemistry Laboratory, Department of Chemistry, Aligarh Muslim University, Aligarh 202002, India.

Inorganic Chemistry Laboratory, Department of Chemistry, Aligarh Muslim University, Aligarh 202002, India.

出版信息

Int J Biol Macromol. 2018 May;111:903-916. doi: 10.1016/j.ijbiomac.2018.01.035. Epub 2018 Jan 11.

Abstract

In this communication we describe the fabrication of nano-hydroxyapatite/chitosan-tamarind seed polysaccharide (n-HA/CS-TSP) nanocomposite with a weight ratio of 70/20/10, 70/15/15 and 70/10/20, respectively through a co-precipitation method. A comparative assessment of the properties of n-HA/CS-TSP and n-HA/CS nanocomposites was done by FT-IR, SEM-EDX, TEM, TGA/DTA, XRD and mechanical testing. The results suggested strong chemical interactions between the three components, decreased particle size and homogeneous dispersion of n-HA particles in n-HA/CS-TSP as compared to n-HA/CS. The n-HA/CS-TSP (70/10/20) showed the most porous and rough surface, enhanced thermal stability and highest compressive strength (4.0 MPa) and modulus (81 MPa). In addition, n-HA/CS-TSP (70/10/20) exhibited greater swelling character, acceptable degradation and increased biomineralization in simulated body fluid (SBF) as compared to n-HA/CS-TSP (70/20/10, 70/15/15) and n-HA/CS nanocomposites. The superior non-toxic response with MG-63 cells and better haemocompatibility was observed with n-HA/CS-TSP (70/15/15). Thereby, n-HA/CS-TSP nanocomposites could be promising alternative biomaterials in the field of bone tissue engineering compared to the n-HA/CS nanocomposite.

摘要

在本通讯中,我们描述了通过共沉淀法制备纳米羟基磷灰石/壳聚糖-罗望子多糖(n-HA/CS-TSP)纳米复合材料,其重量比分别为 70/20/10、70/15/15 和 70/10/20。通过傅里叶变换红外光谱(FT-IR)、扫描电子显微镜-能谱(SEM-EDX)、透射电子显微镜(TEM)、热重分析/差热分析(TGA/DTA)、X 射线衍射(XRD)和力学测试对 n-HA/CS-TSP 和 n-HA/CS 纳米复合材料的性能进行了比较评估。结果表明,与 n-HA/CS 相比,三种成分之间存在强烈的化学相互作用,n-HA/CS-TSP 中的 n-HA 颗粒粒径减小且均匀分散。n-HA/CS-TSP(70/10/20)表现出最多孔和最粗糙的表面、增强的热稳定性和最高的压缩强度(4.0 MPa)和模量(81 MPa)。此外,与 n-HA/CS-TSP(70/20/10、70/15/15)和 n-HA/CS 纳米复合材料相比,n-HA/CS-TSP(70/10/20)在模拟体液(SBF)中表现出更大的溶胀特性、可接受的降解和增加的生物矿化作用。与 n-HA/CS 纳米复合材料相比,n-HA/CS-TSP(70/15/15)对 MG-63 细胞表现出优异的无毒反应和更好的血液相容性。因此,与 n-HA/CS 纳米复合材料相比,n-HA/CS-TSP 纳米复合材料在骨组织工程领域可能是有前途的替代生物材料。

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