会议专题

Nanodiamond for Structural Biomimetic Scaffolds

  Bio-mechanically active scaffolds for tissue engineering combining hydrophilic polymeric matrix and nano-diamond fillers properties are presented and discussed in this paper.The resulting scaffolding materials revealed remarkable mechanical and biological properties to be exploited in advanced biomedical applications.The novel hybrid material is based on 2 and 5 volume % of detonation nano-diamond particles in a hydrophilic poly-(hydroxylethyl-methacrylate) matrix.According to its mechanical and biological properties, the nanocomposite shows a hybrid nature.The base analytical procedures for the preparation of the hybrid nano-composites and some preliminary mechanical characteristics are presented.The proposed hybrid system has been considered for potential biomimetic, osteoconductive and osteoinductive scaffolds application in bio-mechanically active bone scaffolds for osteoblast, and stem cell differentiation and growth.These more rigid hybrid nano-composites are predicted to possess improved mechanical strength overcoming the mechanical weaknesses of traditional hydrogels clinically utilized for bone regeneration.

Hybrid Nano-Composites Biomaterials Bioactive Scaffolds Bioengineering

Raffaella Aversa Relly Victoria V.Petrescu Florian Ion T.Petrescu Antonio Apicella

Advanced Material Lab, Department of Architecture and Industrial Design, University of Campania Luig Transport Traffic and Logistics Department, Bucharest Polytechnic University, Bucharest, Romania Theory of Mechanisms and Robots Department, Bucharest Polytechnic University, Bucharest,Romania

国际会议

第四届薄膜技术与应用国际会议(TFTA2018)

三亚

英文

6-17

2018-01-13(万方平台首次上网日期,不代表论文的发表时间)