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旋转喷射纺丝法制备聚己内酯/β-磷酸三钙支架:体外与体内评价。

Polycaprolactone/Beta-Tricalcium Phosphate Scaffolds Obtained via Rotary Jet-Spinning: in vitro and in vivo Evaluation.

机构信息

Department of Materials Engineering, University of Campinas, Campinas, Brazil,

School of Dentistry, Herminio Ometto University Center, Araras, Brazil,

出版信息

Cells Tissues Organs. 2022;211(4):477-491. doi: 10.1159/000511570. Epub 2021 Mar 10.

DOI:10.1159/000511570
PMID:33691307
Abstract

This study aimed to evaluate in vitro and in vivo polymeric membranes obtained by a rotary jet-spinning process for the repair of critical bone defects in the calvaria of Wistar rats, for future use in tissue engineering. Experimental sample collections were performed on the 30, 60 and 90th postoperative days, and the analyses performed were histomorphometric, immunohistochemistry, and western blotting. Reducing inflammatory infiltrate in all groups and experimental periods, angiogenesis on the 30th day did not show any difference between the groups, on the 60th day, 5% polycaprolactone/beta-tricalcium phosphate(PCL/β-TCP) was high compared to control (C), and on the 90th day, the same group reduced when compared to C and 10% PCL/β-TCP. The fibroplasia presented oscillations in every segment; on the 30th and 60th day, there was an increase in 5% PCL/β-TCP, which decreased by the 90th day compared to group C. 10% PCL/β-TCP decreased compared to C on the 60th and 90th day. The percentage of the collagen area remained high in all groups and all experimental periods. Immunohistochemistry quantifications showed variations in bone metabolism suggesting new bone formation. The 5 and 10% PCL/β-TCP scaffold were promising for the bone regeneration process because they participated in the modulation of inflammation, angiogenesis, fibroplasia, and collagenosis.

摘要

本研究旨在评估旋转喷射纺丝工艺制备的聚合物膜在 Wistar 大鼠颅骨临界骨缺损修复中的体外和体内性能,以期未来应用于组织工程。在术后第 30、60 和 90 天进行实验样本采集,并进行组织形态计量学、免疫组织化学和 Western blot 分析。所有组别的炎症浸润均减少,血管生成在第 30 天无明显差异,但在第 60 天,5%聚己内酯/β-磷酸三钙(PCL/β-TCP)组与对照组(C)相比较高,在第 90 天,同一组与 C 和 10% PCL/β-TCP 相比降低。纤维形成在每个阶段都有波动;在第 30 天和第 60 天,5% PCL/β-TCP 增加,第 90 天与 C 相比减少。第 60 天和第 90 天,10% PCL/β-TCP 与 C 相比减少。所有组和所有实验期的胶原面积百分比均较高。免疫组织化学定量分析显示骨代谢存在变化,提示有新骨形成。5%和 10% PCL/β-TCP 支架有望参与骨再生过程,因为它们参与了炎症、血管生成、纤维形成和胶原形成的调节。

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