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柔性聚氨酯/聚左旋乳酸复合支架作为骨再生潜在填充材料的生物学评价

Biological Evaluation of Flexible Polyurethane/Poly l-Lactic Acid Composite Scaffold as a Potential Filler for Bone Regeneration.

作者信息

Lui Yuk Fai, Ip Wing Yuk

机构信息

Department of Orthopaedics and Traumatology, The University of Hong Kong, Hong Kong, China.

出版信息

Materials (Basel). 2017 Sep 13;10(9):1042. doi: 10.3390/ma10091042.

Abstract

Degradable bone graft substitute for large-volume bone defects is a continuously developing field in orthopedics. With the advance in biomaterial in past decades, a wide range of new materials has been investigated for their potential in this application. When compared to common biopolymers within the field such as PLA or PCL, elastomers such as polyurethane offer some unique advantages in terms of flexibility. In cases of bone defect treatments, a flexible soft filler can help to establish an intimate contact with surrounding bones to provide a stable bone-material interface for cell proliferation and ingrowth of tissue. In this study, a porous filler based on segmented polyurethane incorporated with poly l-lactic acid was synthesized by a phase inverse salt leaching method. The filler was put through in vitro and in vivo tests to evaluate its potential in acting as a bone graft substitute for critical-sized bone defects. In vitro results indicated there was a major improvement in biological response, including cell attachment, proliferation and alkaline phosphatase expression for osteoblast-like cells when seeded on the composite material compared to unmodified polyurethane. In vivo evaluation on a critical-sized defect model of New Zealand White (NZW) rabbit indicated there was bone ingrowth along the defect area with the introduction of the new filler. A tight interface formed between bone and filler, with osteogenic cells proliferating on the surface. The result suggested polyurethane/poly l-lactic acid composite is a material with the potential to act as a bone graft substitute for orthopedics application.

摘要

用于大面积骨缺损的可降解骨移植替代物是骨科领域一个不断发展的方向。在过去几十年中,随着生物材料的进步,人们对多种新型材料在该应用中的潜力进行了研究。与该领域常见的生物聚合物(如聚乳酸或聚己内酯)相比,聚氨酯等弹性体在柔韧性方面具有一些独特优势。在骨缺损治疗中,柔性软填充剂有助于与周围骨骼紧密接触,为细胞增殖和组织向内生长提供稳定的骨 - 材料界面。在本研究中,通过相转化盐析法合成了一种基于聚己内酯与聚左旋乳酸的多孔填充剂。对该填充剂进行了体外和体内测试,以评估其作为关键尺寸骨缺损骨移植替代物的潜力。体外结果表明,与未改性的聚氨酯相比,接种在复合材料上的成骨样细胞的生物学反应(包括细胞附着、增殖和碱性磷酸酶表达)有显著改善。在新西兰白兔关键尺寸缺损模型上的体内评估表明,引入新填充剂后,缺损区域有骨向内生长。骨与填充剂之间形成了紧密的界面,有成骨细胞在表面增殖。结果表明,聚氨酯/聚左旋乳酸复合材料有潜力作为骨科应用的骨移植替代物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4302/5615697/a51e356f99c6/materials-10-01042-g001.jpg

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