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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Nature derived scaffolds for tissue engineering applications: Design and fabrication of a composite scaffold incorporating chitosan-g-D,L-lactic acid and cellulose nanocrystals from Lactuca sativa L. cv green leaf
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Nature derived scaffolds for tissue engineering applications: Design and fabrication of a composite scaffold incorporating chitosan-g-D,L-lactic acid and cellulose nanocrystals from Lactuca sativa L. cv green leaf

机译:自然衍生的组织工程应用的脚手架:从Lactuca sativa L.CV绿叶的含壳聚糖-G-D,L-乳酸和纤维素纳米晶体的复合支架和纤维素纳米晶体的设计和制造

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Through exhaustive extraction via successive alkali and bleaching treatments cellulose was isolated from lettuce. The isolated cellulose was hydrolyzed using 64 wt% H2SO4 at 55 degrees C under constant stirring for 1 h to obtain cellulose nanocrystals (CNCs). Characterizations such as SEM,TEM, FTIR, TGA and XRD were done in order to determine differences in the physico-chemical characteristics of cellulose after each treatment step. The isolated CNCs have mean dimensions of 237 +/- 26, 33 +/- 12 and 32 +/- 7 nm in length, thickness and height, respectively. These nanocrystals were incorporated to the formulations that were used to fabricate different chitosan-g-D,L-lactic acid (CgLA) scaffolds. Amide linkage formation between chitosan and lactic acid and further removal of water was facilitated by oven-drying under vacuum at 80 degrees C. Results show that an increase in the concentration of CNCs added, increase in porosity, degradability, drug release property and cell viability were observed from the fabricated composite scaffolds. These results can provide information on how nanofillers such as CNCs can alter the properties of tissue scaffolds through the chemical properties and interactions they provide. Moreover, these characteristics can give new properties that are necessary for certain tissue engineering applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过经由连续碱和漂白处理纤维素彻底萃取从莴苣中分离。所述分离的纤维素在恒定搅拌下使用64%(重量)H 2 SO 4在55℃下1个小时以获得纤维素纳米晶体(CNC控制器)水解。表征如SEM,TEM,FTIR,TGA和XRD进行以确定每个处理步骤之后在纤维素的物理 - 化学特性的差异来完成。的分离的CNC具有237平均尺寸+/- 26,在分别的长度,厚度和高度,33 +/- 12和32 +/- 7纳米。这些纳米晶体并入了用来制造不同的壳聚糖-G-d,L-乳酸(CgLA)支架的制剂。脱乙酰壳多糖和乳酸,并进一步除去水之间的酰胺键的形成通过在真空下烘干,在80度促进C.结果表明,增加的CNC的浓度加入时,多孔性,降解性,药物释放性和细胞活力的增加从所制造的复合支架中观察到。这些结果提供了有关如何纳米填料如数控系统可通过化学性质和它们所提供的互动改变组织支架的属性信息。此外,这些特性可以给新的属性所必需的某些组织工程应用。 (c)2017年Elsevier B.V.保留所有权利。

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