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宿主血管对异位成骨过程中宏观孔隙大小分级分布的反应。

The response of host blood vessels to graded distribution of macro-pores size in the process of ectopic osteogenesis.

机构信息

Key Laboratory of Advanced Technologies of Materials (MOE), School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, PR China; WuXi AppTec (Chengdu) Co. Ltd., Chengdu 611130, PR China.

Key Laboratory of Advanced Technologies of Materials (MOE), School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Apr;109:110641. doi: 10.1016/j.msec.2020.110641. Epub 2020 Jan 7.

Abstract

Angiogenesis is of great importance to bone regeneration, but it remains a significant challenge to induce sufficient angiogenesis and osteogenesis within bone grafts for large bone defect healing. The aim of this study is to investigate the effects of hydroxyapatite (HA) scaffold via a novel graded pore distribution approach on vascularization and osteoinduction. Two types of graded porous scaffolds were fabricated by sugar templates-leaching techniques: (1) one with large pores of 1100-1250 μm in the center and small pores of 500-650 μm at the periphery (HALS); (2) the other with small pores of 500-650 μm in the center and large pores of 1100-1250 μm at the periphery (HASL). In vivo data showed different pore size distribution had a remarkable impact on blood vessel formation during bone formation, which led to distinct localization of new bone within the defects. After one month of implantation, the diameters of the blood vessels infiltrated on the periphery of HASL were substantially larger than those in the center though the host blood vessels were successful in infiltrating throughout the whole scaffold. In contrast, vascularization within HALS appeared to be poor with very few blood vessels formed in the center, indicating heterogeneous vascularization in the scaffolds. After 3 months of implantation, we found that HASL induced more homogeneous bone formation in the whole bone graft but new bone was only found at the periphery of HALS. This study suggests that the pores size distribution in graded scaffolds cannot only affected early stage vascularization, but also influence late stage bone formation and remodeling. The architecture of larger pores at the periphery of graded scaffold may be capable of enhancing angiogenesis and osteogenesis during large size bone defect healing.

摘要

血管生成对于骨再生非常重要,但在骨移植物中诱导足够的血管生成和成骨以促进大骨缺损的愈合仍然是一个重大挑战。本研究旨在探讨通过新型分级孔分布方法对羟基磷灰石(HA)支架在血管生成和骨诱导方面的影响。采用糖模板-浸出技术制备了两种分级多孔支架:(1)中心大孔为 1100-1250μm,周边小孔为 500-650μm 的分级多孔支架(HALS);(2)中心小孔为 500-650μm,周边大孔为 1100-1250μm 的分级多孔支架(HASL)。体内数据表明,不同的孔径分布对成骨过程中的血管形成有显著影响,导致缺损内新骨的不同定位。植入后 1 个月,尽管宿主血管成功地渗透到整个支架中,但 HASL 外周渗透的血管直径明显大于中心的血管直径。相比之下,HALS 中的血管化似乎很差,中心几乎没有形成血管,表明支架中的血管化不均匀。植入 3 个月后,我们发现 HASL 诱导整个骨移植物中更均匀的骨形成,但仅在 HALS 的外周发现新骨。本研究表明,分级支架中的孔径分布不仅可以影响早期血管生成,还可以影响晚期骨形成和重塑。分级支架边缘较大孔径的结构可能能够增强大尺寸骨缺损愈合过程中的血管生成和成骨作用。

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