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Carboxymethyl Cellulose Entrapped in a Poly(vinyl) Alcohol Network: Plant-Based Scaffolds for Cartilage Tissue Engineering

机译:炭甲基纤维素捕获在聚(乙烯基)醇网络中:基于植物的软骨组织工程支架

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摘要

Cartilage has a limited inherent healing capacity after injury, due to a lack of direct blood supply and low cell density. Tissue engineering in conjunction with biomaterials holds promise for generating cartilage substitutes that withstand stress in joints. A major challenge of tissue substitution is creating a functional framework to support cartilage tissue formation. Polyvinyl alcohol (PVA) was crosslinked with glutaraldehyde (GA), by varying the mole ratios of GA/PVA in the presence of different amounts of plant-derived carboxymethyl cellulose (CMC). Porous scaffolds were created by the freeze-drying technique. The goal of this study was to investigate how CMC incorporation and crosslinking density might affect scaffold pore formation, swelling behaviors, mechanical properties, and potential use for engineered cartilage. The peak at 1599 cm−1 of the C=O group in ATR–FTIR indicates the incorporation of CMC into the scaffold. The glass transition temperature (Tg) and Young’s modulus were lower in the PVA/CMC scaffold, as compared to the PVA control scaffold. The addition of CMC modulates the pore architecture and increases the swelling ratio of scaffolds. The toxicity of the scaffolds and cell attachment were tested. The results suggest that PVA/CMC scaffolding material can be tailored in terms of its physical and swelling properties to potentially support cartilage formation.
机译:由于缺乏直接血液供应和低细胞密度,软骨具有有限的固有愈合能力。组织工程与生物材料结合持有承担在承受关节应力的软骨替代品的承担。组织替代的主要挑战正在产生功能框架,以支持软骨组织形成。通过在不同量的植物衍生的羧甲基纤维素(CMC)存在下,通过改变Ga / PVA的摩尔比,将聚乙烯醇(PVA)与戊二醛(GA)交联。通过冷冻干燥技术产生多孔支架。本研究的目标是研究CMC掺入和交联密度如何影响支架孔隙的形成,肿胀行为,机械性能和用于工程软骨的潜在用途。 ATR-FTIR中1599cm-1的峰值在ATR-FTIR中的C = O组表示将CMC掺入支架中。与PVA控制支架相比,PVA / CMC支架中的玻璃化转变温度(Tg)和杨氏模量较低。添加CMC调制孔结构并增加支架的溶胀比。测试了支架和细胞附着的毒性。结果表明,PVA / CMC脚手架材料可以根据其物理和溶胀性能来定制,以潜在地支持软骨形成。

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