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基于β-磷酸三钙/聚乳酸-羟基乙酸共聚物的载有OIC-A006的聚乳酸-羟基乙酸共聚物微球的冻干三维梯度结构支架用于骨再生。

Bone regeneration using a freeze-dried 3D gradient-structured scaffold incorporating OIC-A006-loaded PLGA microspheres based on β-TCP/PLGA.

作者信息

Lin Liulan, Gao Haitao, Dong Yangyang

机构信息

School of Mechatronics Engineering and Automation, Shanghai University, Shanghai, 200444, People's Republic of China.

出版信息

J Mater Sci Mater Med. 2015 Jan;26(1):5327. doi: 10.1007/s10856-014-5327-9. Epub 2015 Jan 11.

Abstract

To reveal the latent capacity of the growth factor-like low-molecular-weight material OIC-A006 in tissue regeneration, it is essential to design a porous scaffold in order to concurrently accommodate cells and drug release in a controlled manner. Consequently, we fabricated poly (L-lactide-co-glycolide) (PLGA)-based microspheres with an OIC-A006-loaded gradient-structured β-TCP/PLGA scaffold by freeze-drying which could then be used for drug delivery and bone regeneration. The OIC-A006-loaded β-TCP/PLGA scaffold consisted of two parts which loaded different doses of OIC-A006 (6.25 μM, outside; 12.5 μM, inside). The porosity, compressive strength, SEM, degradation, and cumulative amount of drug release in vitro were characterized. Furthermore, we confirmed the incorporation of OIC-A006 into the PLGA-based microspheres within the scaffolds using UV-spectrophotometry, and the amount of drug remaining in the scaffold was maintained by 10 % for up to 28 days. The drug release was slower in the normal-structured drug-loaded scaffold. The OIC-A006 released action from the OIC-A006-loaded β-TCP/PLGA scaffold with ideal therapeutic prospects in tissue regeneration. In vitro cell culture results showed that this gradient-structured composite scaffold can induce the adhesion and proliferation of rat bone marrow stromal cells towards osteoblasts. These results showed that the newly developed OIC-A006-loaded scaffolds with gradient structure can be potentially applied to bone regeneration in clinical applications.

摘要

为了揭示生长因子样低分子量物质OIC-A006在组织再生中的潜在能力,设计一种多孔支架以同时容纳细胞并以可控方式释放药物至关重要。因此,我们通过冷冻干燥制备了基于聚(L-丙交酯-共-乙交酯)(PLGA)的微球,其与负载OIC-A006的梯度结构β-TCP/PLGA支架,随后可用于药物递送和骨再生。负载OIC-A006的β-TCP/PLGA支架由两部分组成,分别负载不同剂量的OIC-A006(外部6.25μM;内部12.5μM)。对其孔隙率、抗压强度、扫描电子显微镜(SEM)、降解情况以及体外药物累积释放量进行了表征。此外,我们使用紫外分光光度法确认了OIC-A006掺入支架内基于PLGA的微球中,并且支架内药物残留量在长达28天的时间内保持在10%。在正常结构的载药支架中药物释放较慢。OIC-A006从负载OIC-A006 的β-TCP/PLGA支架中释放的作用在组织再生方面具有理想的治疗前景。体外细胞培养结果表明,这种梯度结构复合支架可诱导大鼠骨髓基质细胞向成骨细胞的黏附与增殖。这些结果表明,新开发的具有梯度结构的负载OIC-A006的支架在临床应用中具有潜在的骨再生应用价值。

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