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Self-assembling helical rosette nanotubes for cartilage tissue engineering

机译:用于软骨组织工程的自组装螺旋玫瑰纳米管

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Today, one of the limitations associated with cartilage grafting is the lack of bonding between the implanted materials and the natural tissue. Helical rosette nanotubes (HRNs) are novel biomimetic self-assembled supramolecular structures whose basic building blocks are DNA base-pairs, which can solidify into a viscous gel at body temperatures in short periods of time. HRNs are similar in size to collagen in cartilage. In this study, the mechanical properties of select hydrogel/HRN composites were tested. In addition, electrospinning was used to generate three-dimensional, implantable, composite HRN fibers containing fibroblast-like type-B synoviocytes (SFB cells) or chondrocytes. Importantly, results showed that HRNs enhanced hydrogel adhesive strength to fractured collagen and created a scaffold with nanometer-rough surface structures that promoted SFB cell and chondrocyte adhesion and viability. In this manner, this study provided an alternative cartilage regenerative material produced by nanotechnology techniques that can be injected as a liquid, solidify at body temperatures under short periods of time, have suitable mechanical properties to cartilage, and promote SFB cell viability and adhesion.
机译:如今,与软骨移植相关的局限性之一是植入材料与天然组织之间缺乏结合。螺旋玫瑰花碳纳米管(HRNs)是新型的仿生自组装超分子结构,其基本构件是DNA碱基对,可以在短时间内在体温下固化成粘性凝胶。 HRNs的大小类似于软骨中的胶原蛋白。在这项研究中,测试了选定的水凝胶/ HRN复合材料的机械性能。另外,静电纺丝用于产生三维,可植入的复合HRN纤维,其中包含成纤维样B型滑膜细胞(SFB细胞)或软骨细胞。重要的是,结果表明,HRNs增强了水凝胶对断裂的胶原蛋白的粘合强度,并创建了具有纳米粗糙表面结构的支架,从而促进了SFB细胞和软骨细胞的粘合性和生存能力。通过这种方式,这项研究提供了一种通过纳米技术生产的软骨再生材料,可以以液体形式注射,在短时间内在体温下固化,具有适合软骨的机械性能并促进SFB细胞的活力和粘附力。

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