首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Optimally designed collagen/polycaprolactone biocomposites supplemented with controlled. release of HA/TCP/rhBMP-2 and HA/TCP/PRP for hard tissue regeneration
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Optimally designed collagen/polycaprolactone biocomposites supplemented with controlled. release of HA/TCP/rhBMP-2 and HA/TCP/PRP for hard tissue regeneration

机译:最佳设计的胶原蛋白/聚己内酯生物复合材料补充了受控。 释放HA / TCP / RHBMP-2和HA / TCP / PRP用于硬组织再生

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摘要

Collagen has been widely used as a very promising material to regenerate various tissues. It is a chief component of the extracellular matrix, and encourages various biological effects conducive to tissue regeneration. However, poor mechanical stability, low processability, and high level of water absorption can lead to impaired control of growth factor release and have impeded the use of collagen as a functional biomedical scaffold. Here, to overcome the shortcomings of collagen scaffolds, we have additively manufactured collagen/polycaprolactone (PCL) biocomposites supplemented with a bioceramic (hydroxyapatite (HA)/(beta-tricalcium-phosphate (TCP)) and two growth factors (recombinant human bone morphogenetic protein-2 [rhBMP-2] and platelet-rich plasma [PRP]). Various weight fractions of PCL in the collagen/PCL composites were manipulated to select optimal growth factor release and highly active cellular responses. After the optimal concentration of PCL in the collagen/PCL scaffold was determined, biocomposites supplemented with bioceramic/growth-factors were fabricated. Continuously released growth factors were assumed to increase the in vitro cellular activities of the osteoblast-like cells (MG63) cultured on the biocomposites. In vitro cellular responses, including osteogenic activities, were examined, and results showed that compared to the HA/TCP/rhBMP-2 supplemented scaffold the HA/TCP/PRP biocomposites provide significantly high cellular activities (cell proliferation: >1.3-fold) and mineralization (calcium deposition: >1.4-fold, osteocalcin: >2.6-fold) sufficient for regenerating bone tissue. (C) 2017 Published by Elsevier B.V.
机译:胶原蛋白已被广泛用作非常有希望的材料来再生各种组织。它是细胞外基质的主要组分,并鼓励有利于组织再生的各种生物学效应。然而,机械稳定性差,降低的可加工性和高水平的吸水性可能导致对生长因子释放的控制受损,并且已经将胶原蛋白作为官能生物医学支架的控制。在这里,为了克服胶原蛋白支架的缺点,我们具有补充有生物陶瓷(羟基磷灰石(HA)/(β-三磷酸钙(TCP))和两种生长因子(重组人骨形态发生的生长因子(重组人骨形态发生)的胶原/聚己内酯(PCL)生物复合材料。(重组人骨形态发生)蛋白-2 [rhBMP-2]和富含血小板的血浆[PRP])。操纵胶原/ PCL复合材料中的PCL各种重量级分,以选择最佳的生长因子释放和高活性细胞反应。在最佳浓度的PCL测定胶原蛋白/ PCL支架,制备补充有生物陶瓷/生长因子的生物复合材料。假设不断释放的生长因子以增加在生物复合材料上培养的成骨细胞样细胞(Mg63)的体外细胞活性。体外细胞反应检查,包括成骨活性,结果表明,与HA / TCP / RHBMP-2相比,HA / TCP / PRP生物复合物的HA / TCP / RHBMP-2相比α显着高的细胞活性(细胞增殖:1.3倍)和矿化(钙沉积:> 1.4倍,骨甲酰胺:> 2.6倍)足以再生骨组织。 (c)2017年由Elsevier B.V发布。

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