Qu Xiangyang, Cao Yujiang, Chen Cong, Die Xiaohong, Kang Quan
Ministry of Education Key Laboratory of Child Development and Disorders, The Children's Hospital of Chongqing Medical University, Chongqing, 400014, China.
Key Laboratory of Pediatrics in Chongqing, Chongqing, 400014, China.
J Biomed Mater Res A. 2015 Aug;103(8):2786-96. doi: 10.1002/jbm.a.35379. Epub 2015 Apr 3.
We explored a novel biodegradable poly(lactide-co-glycolide) (PLGA) film loaded with over 80 wt % bone morphogenetic protein (BMP)-2, which was regarded as a substrate-promoting osteoblast attachment, proliferation, and differentiation for application of bone tissue engineering. Using phospholipid as a surfactant, BMP-2 was modified as a complex (PBC) for dispersing in PLGA/dichloromethane solution. The PLGA film loaded with BMP-2 and phospholipid complex (PBC-PF) showed rough and draped morphology with high entrapment efficiency exceeding 80% and good hydrophilicity, respectively. The in vitro release study of BMP-2 showed that about 50% BMP-2 was slowly and continuously released from PBC-PF within 5 weeks and had a short initial burst release only in the last 1.5 days, which was better than serious burst release of PLGA film loaded with pure BMP-2 without phospholipid (BMP-PF) as control. By comparison with other PLGA films and tissue culture plates, it was confirmed that PBC-PF significantly promoted the attachment, proliferation, and differentiation of osteoblasts with higher entrapment efficiency and better sustained release. These advantages illustrated that PBC-PF could be a potential substrate providing long-term requisite growth factors for osteoblasts, which might be applied in bone tissue engineering.
我们探索了一种新型的、负载超过80 wt%骨形态发生蛋白(BMP)-2的可生物降解聚(丙交酯-共-乙交酯)(PLGA)薄膜,该薄膜被视为一种促进成骨细胞附着、增殖和分化的基质,用于骨组织工程应用。使用磷脂作为表面活性剂,将BMP-2修饰为一种复合物(PBC),以便分散在PLGA/二氯甲烷溶液中。负载有BMP-2和磷脂复合物(PBC-PF)的PLGA薄膜分别呈现出粗糙且褶皱的形态、超过80%的高包封率以及良好的亲水性。BMP-2的体外释放研究表明,约50%的BMP-2在5周内从PBC-PF中缓慢且持续释放,仅在最后1.5天有短暂的初始突释,这优于作为对照的负载无磷脂纯BMP-2的PLGA薄膜(BMP-PF)的严重突释。通过与其他PLGA薄膜和组织培养板比较,证实PBC-PF以更高的包封率和更好的缓释显著促进了成骨细胞的附着、增殖和分化。这些优势表明PBC-PF可能是一种为成骨细胞提供长期所需生长因子的潜在基质,可应用于骨组织工程。