首页> 外文期刊>BMC Musculoskeletal Disorders >Development of a new pre-vascularized tissue-engineered construct using pre-differentiated rADSCs, arteriovenous vascular bundle and porous nano-hydroxyapatide-polyamide 66 scaffold
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Development of a new pre-vascularized tissue-engineered construct using pre-differentiated rADSCs, arteriovenous vascular bundle and porous nano-hydroxyapatide-polyamide 66 scaffold

机译:使用预分化的rADSC,动静脉血管束和多孔的纳米羟基磷酰胺-聚酰胺66支架开发新的预血管化组织工程构建体

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Background Development of a pre-vascularized tissue-engineered construct with intrinsic vascular system for cell growth and tissue formation still faces many difficulties due to the complexity of the vascular network of natural bone tissue. The present study was to design and form a new vascularized tissue-engineered construct using pre-differentiated rADSCs, arteriovenous vascular bundle and porous nHA-PA 66 scaffold. Methods rADSCs were pre-differentiated to endothelial cells (rADSCs-Endo) and then incorporated in nHA-PA 66 scaffolds in vitro. Subsequently, in vivo experiments were carried out according to the following groups: Group A (rADSCs-EndoHA-PA 66 scaffold with arteriovenous vascular bundle), Group B (rADSCsHA-PA 66 scaffold with arteriovenous vascular bundle); Group C (nHA-PA66 scaffold with arteriovenous vascular bundle), Group D (nHA-PA 66 scaffold only). The vessel density and vessel diameter were measured based on histological and immunohistochemical evaluation, furthermore, the VEGF-C, FGF-2 and BMP-2 protein expressions were also evaluated by western blot analysis. Results The results of in vivo experiments showed that the vessel density and vessel diameter in group A were significantly higher than the other three groups. Between Group B and C, no statistical difference was observed at each time point. In accordance with the results, there were dramatically higher expressions of VEGF-C and FGF-2 protein in Group A than that of Group B, C and D at 2 or 4?weeks. Statistical differences were not observed in VEGF-C and FGF-2 expression between Group B and C. BMP-2 was not expressed in any group at each time point. Conclusions Compared with muscular wrapping method, arteriovenous vascular bundle implantation could promote vascularization of the scaffold; and the angiogenesis of the scaffold was significantly accelerated when pre-differentiated rADSCs (endothelial differentiation) were added. These positive results implicate the combination of pre-differentiated rADSCs (endothelial differentiation) and arteriovenous vascular bundle may achieve rapidly angiogenesis of biomaterial scaffold.
机译:背景技术由于天然骨组织的血管网络的复杂性,具有内在的血管系统用于细胞生长和组织形成的预血管化组织工程构造的开发仍然面临许多困难。本研究旨在使用预分化的rADSC,动静脉血管束和多孔nHA-PA 66支架设计并形成一种新的血管化组织工程构建体。方法将rADSCs预先分化为内皮细胞(rADSCs-Endo),然后将其掺入nHA-PA 66支架中。随后,根据以下组进行体内实验:A组(具有动静脉血管束的rADSCs-Endo / nHA-PA 66支架),B组(具有动静脉血管束的rADSCs / nHA-PA 66支架); C组(带有动静脉血管束的nHA-PA66支架),D组(仅nHA-PA 66支架)。根据组织学和免疫组织化学评估来测量血管密度和血管直径,并且还通过蛋白质印迹分析来评估VEGF-C,FGF-2和BMP-2蛋白的表达。结果体内实验结果表明,A组的血管密度和血管直径明显高于其他三组。在B组和C组之间,在每个时间点均未观察到统计学差异。根据结果​​,在2或4周时,A组中VEGF-C和FGF-2蛋白的表达明显高于B,C和D组。 B组和C组之间未观察到VEGF-C和FGF-2表达的统计学差异。在任何时候,任何组中BMP-2均未表达。结论与肌肉包裹法相比,动静脉血管束植入可促进支架的血管形成。加入预分化的rADSCs(内皮细胞分化)后,支架的血管生成显着加速。这些积极的结果暗示了预分化的rADSCs(内皮细胞分化)和动静脉血管束的结合可以实现生物材料支架的快速血管生成。

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