首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Incorporation of PLGA nanoparticles into porous chitosan-gelatin scaffolds: influence on the physical properties and cell behavior.
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Incorporation of PLGA nanoparticles into porous chitosan-gelatin scaffolds: influence on the physical properties and cell behavior.

机译:将PLGA纳米粒子掺入多孔壳聚糖-明胶支架中:对物理性质和细胞行为的影响。

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摘要

Bone regeneration can be accelerated by localized delivery of appropriate growth factors/biomolecules. Localized delivery can be achieved by a 2-level system: (i) incorporation of biomolecules within biodegradable particulate carriers (nanoparticles), and (ii) inclusion of such particulate carriers (nanoparticles) into suitable porous scaffolds. In this study, freeze-dried porous chitosan-gelatin scaffolds (CH-G: 1:2 ratio by weight) were embedded with various amounts of poly(lactide-co-glycolide) (PLGA) nanoparticles, precisely 16.6%, 33.3% and 66.6% (respect to CH-G weight). Scaffolds loaded with PLGA nanoparticles were subjected to physico-mechanical and biological characterizations including morphological analysis, swelling and dissolution tests, mechanical compression tests and cell viability tests. Results showed that incorporation of PLGA nanoparticles into porous crosslinked CH-G scaffolds: (i) changed the micro-architecture of the scaffolds in terms of mean pore diameter and pore size distribution, (ii) reduced the dissolution degree of the scaffolds, and (iii) increased the compressive modulus. On the other hand, the water uptake behavior of CH-G scaffolds containing PLGA nanoparticles significantly decreased. The incorporation of PLGA nanoparticles did not affect the biocompatibility of CH-G scaffolds.
机译:局部再生适当的生长因子/生物分子可以促进骨骼再生。局部递送可以通过两级系统来实现:(i)将生物分子掺入可生物降解的颗粒载体(纳米颗粒)内,和(ii)将这种颗粒载体(纳米颗粒)包含在合适的多孔支架中。在这项研究中,冻干的多孔壳聚糖-明胶支架(CH-G:1:2的重量比)嵌入了各种数量的聚(丙交酯-共-乙交酯)(PLGA)纳米颗粒,分别为16.6%,33.3%和66.6%(相对于CH-G重量)。对负载有PLGA纳米颗粒的支架进行了物理力学和生物学表征,包括形态分析,溶胀和溶解测试,机械压缩测试和细胞生存力测试。结果表明,将PLGA纳米颗粒掺入多孔交联的CH-G支架中:(i)在平均孔径和孔径分布方面改变了支架的微结构,(ii)降低了支架的溶解度,并且( iii)增加了压缩模量。另一方面,包含PLGA纳米颗粒的CH-G支架的吸水行为显着降低。 PLGA纳米颗粒的并入不会影响CH-G支架的生物相容性。

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