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Biomimetic engineering of a fully bio-based system in nanomedicine

机译:纳米医生全基于生物系统的仿生工程

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Design of materials and devices by mimicking the fascinating systems found in nature, have enabled scientists to discover new techniques to treat diseases from diagnosis to therapeutic care. With the recent advances in nanomedicine, the length-scale of this design has further extended down into a nano-sized array. Inspired by the two natural assemblies found in nature; cellulose and collagen; we have designed a new class of green functional material with nano-sized arrangement. The fabricated material composed of collagen hydrogel reinforced by cellulose nanowhiskers in order to effectively enhance the rigidity of collagen and to better mimic the morphology and profile features existed in biological tissues. The biocompatibility of the hydrogel nanocomposite was also investigated by the invasion and proliferation of human bone marrow derived mesenchymal stem cells around the materials at 8 day of culture. We believe that our biomimetically-engineered platform in this study could increase the biomedical applications of fully bio-based systems such as scaffolding in tissue engineering.
机译:通过模仿本质上发现的迷人系统来设计材料和设备,使科学家能够发现从诊断到治疗护理的疾病的新技术。随着纳米医生最近的进步,该设计的长度尺度进一步延伸到纳米尺寸阵列中。灵感来自于本质上的两种自然组合物;纤维素和胶原;我们设计了一种新型绿色功能材料,具有纳米大小的布置。由纤维素纳米须尼克斯加固的胶原水凝胶构成的制造材料,以有效地增强胶原蛋白的刚性并更好地模仿生物组织中存在的形态和型材特征。还通过在8天的培养物中,通过侵袭和增殖的人骨髓源性间充质干细胞的侵袭和增殖来研究水凝胶纳米复合物的生物相容性。我们认为,我们在本研究中的生物模型工程平台可以增加完全生物基系统的生物医学应用,例如组织工程中的脚手架。

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