Nowacki Maciej, Jundziłł Arkadiusz, Nazarewski Łukasz, Kotela Andrzej, Kloskowski Tomasz, Skopińska-Wisniewska Joanna, Bodnar Magdalena, Łukasiewicz Aleksander, Nazarewski Sławomir, Kotela Ireneusz, Kucharzewski Marek, Pokrywczyńska Marta, Marszałek Andrzej, Drewa Tomasz
Chair of Regenerative Medicine, Department of Tissue Engineering, Collegium Medicum, Nicolaus Copernicus University in Torun, Ulica Karlowicza 24, 85-092 Bydgoszcz, Poland.
Department of General, Transplant and Liver Surgery, Warsaw Medical University, Ulica Banacha 1A, 02-097 Warsaw, Poland.
Biomed Res Int. 2015;2015:890613. doi: 10.1155/2015/890613. Epub 2015 Feb 5.
The aim of this study was to present abdominal wall reconstruction using a porcine vascular graft seeded with MSC (mesenchymal stem cells) on rat model.
Abdominal wall defect was prepared in 21 Wistar rats. Acellular porcine-vascular grafts taken from aorta and prepared with Triton X were used. 14 aortic grafts were implanted in place, of which 7 grafts were seeded with rat MSC cells (Group I), and 7 were acellular grafts (Group II). As a control, 7 standard polypropylene meshes were used for defect augmentation (Group III). The assessment method was performed by HE and CD31 staining after 6 months. The mechanical properties have been investigated by Zwick&Roell Z0.5.
The strongest angiogenesis and lowest inflammatory response were observed in Group I. Average capillaries density was 2.75, 0.75, and 1.53 and inflammatory effect was 0.29, 1.39, and 2.72 for Groups I, II, and III, respectively. The means of mechanical properties were 12.74 ± 1.48, 7.27 ± 1.56, and 14.4 ± 3.7 N/cm in Groups I and II and control, respectively.
Cell-seeded grafts have better mechanical properties than acellular grafts but worse than polypropylene mesh. Cells improved mechanical and physiological properties of decellularized natural scaffolds.
本研究的目的是在大鼠模型上展示使用接种间充质干细胞(MSC)的猪血管移植物进行腹壁重建。
在21只Wistar大鼠身上制备腹壁缺损。使用从主动脉获取并用Triton X处理的去细胞猪血管移植物。植入14个主动脉移植物,其中7个移植物接种大鼠MSC细胞(第一组),7个为去细胞移植物(第二组)。作为对照,使用7个标准聚丙烯网片来扩大缺损(第三组)。6个月后通过苏木精-伊红(HE)染色和CD31染色进行评估。通过Zwick&Roell Z0.5研究力学性能。
第一组观察到最强的血管生成和最低的炎症反应。第一组、第二组和第三组的平均毛细血管密度分别为2.75、0.75和1.53,炎症效应分别为0.29、1.39和2.72。第一组、第二组和对照组的力学性能平均值分别为12.74±1.48、7.27±1.56和14.4±3.7N/cm。
接种细胞的移植物比去细胞移植物具有更好的力学性能,但比聚丙烯网片差。细胞改善了去细胞天然支架的力学和生理性能。