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Oxidized Cashew Gum Scaffolds for Tissue Engineering

机译:氧化腰果牙龈组织的支架工程

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摘要

Abstract In the last few years, several strategies have been proposed to fabricate scaffolds for tissue engineering (TE) applications; however, they are based on harsh and time‐consuming techniques. The choice for natural polymers such as cashew gum (CG) allows to circumvent the demands of biocompatibility and degradability of TE systems. In this work, CG, a polysaccharide derived from Anacardium occidentale trees, is functionalized with aldehyde groups through periodate oxidation. The resultant oxidized cashew gum (CGO) is mixed with gelatin (GE) to yield a covalently crosslinked hydrogel. CGO/GE sponges are obtained by employing a freeze‐drying methodology to the previously obtained hydrogels. The mechanical properties, swelling ability, and porosity of the GE/CGO sponges are tuned by using CGO with different degrees of oxidation. The resultant sponges can maintain high levels of water absorption and recover their initial mechanical properties after cyclic compression. Moreover, these porous and mechanically robust devices can support the adhesion and proliferation of cells, which can envision their application for the regeneration of soft tissues.
机译:在过去几年,已经提出的一些策略制作组织工程支架(TE)应用程序;地理和时间消耗的技术。天然聚合物,如腰果口香糖(CG)允许绕过生物相容性的要求TE系统的降解性。多糖是从 Anacardiumoccidentale 树,携带通过高碘酸盐氧化醛组。合成氧化腰果口香糖(CGO)混合产生共价交联明胶(GE)水凝胶。雇佣一个冷冻干燥方法之前得到的水凝胶。属性、肿胀的能力和孔隙度的通用电气/ CGO海绵被用CGO调谐不同程度的氧化。海绵能保持高水平的水吸收和恢复最初的机械属性后循环压缩。这些多孔和机械强劲的设备支持细胞的粘附和增殖,可以想象他们的申请吗软组织的再生。

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