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Repair of rat cranial bone defect by using bone morphogenetic protein-2-related peptide combined with microspheres composed of polylactic acid/polyglycolic acid copolymer and chitosan

机译:骨形态发生蛋白2相关肽结合聚乳酸/聚乙醇酸共聚物和壳聚糖组成的微球修复大鼠颅骨缺损

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The effects of the transplanted bone morphogenetic protein-2 (BMP2) -related peptide P24 and rhBMP(2) combined with poly(lactic-co-glycolic acid) (PLGA)/chitosan (CS) microspheres were investigated in promoting the repair of rat cranial bone defect. Forty white rats were selected and equally divided into four groups (group A: 1 mu g of rhBMP(2)/PLGA/CS composite; group B: 3 mg of P24/PLGA/CS composite; group C: 0.5 mu g of rhBMP(2) + 1.5 mg of P24/PLGA/CS composite; group D: blank PLGA/CS material), and rat cranial bone defect models with a diameter of 5 mm were established. The materials were transplanted to the cranial bone defects. The animals were sacrificed on weeks 6 and 12 post-operation. Radiographic examinations (x-ray imaging and 3D CT scanning) and histological evaluations were performed. The repaired areas of cranial bone defects were measured, and the osteogenetic abilities of various materials were compared. Cranial histology, imaging, and repaired area measurements showed that the osteogenetic effects at two time points (weeks 6 and 12) in group C were better than those in groups A and B. The effects in groups A and B were similar. Group D achieved the worst repair effect of cranial bone defects, where a large number of fibrous connective tissues were observed. The PLGA/CS composite microspheres loaded with rhBMP(2) and P24 had optimal concrescence and could mutually increase their osteogenesis capability. rhBMP(2) + P24/PLGA/CS composite is a novel material for bone defect repair with stable activity to induce bone formation.
机译:研究了移植的骨形态发生蛋白2(BMP2)相关肽P24和rhBMP(2)结合聚乳酸-乙醇酸(PLGA)/壳聚糖(CS)微球的作用,促进了大鼠的修复。颅骨缺损。选择四十只白鼠并将其平均分为四组(A组:1μgrhBMP(2)/ PLGA / CS复合物; B组:3 mg P24 / PLGA / CS复合物; C组:0.5μgrhBMP (2)+ 1.5 mg P24 / PLGA / CS复合材料; D组:空白PLGA / CS材料),并建立直径5 mm的大鼠颅骨缺损模型。该材料被移植到颅骨缺损处。术后第6和12周处死动物。进行了放射线检查(X射线成像和3D CT扫描)和组织学评估。测量颅骨缺损的修复区域,并比较各种材料的成骨能力。颅骨组织学,影像学和修复区域测量结果显示,C组在两个时间点(第6周和第12周)的成骨作用优于A和B组。A和B组的作用相似。 D组的颅骨缺损修复效果最差,观察到大量纤维结缔组织。装有rhBMP(2)和P24的PLGA / CS复合微球具有最佳的缩合度,并且可以相互增加其成骨能力。 rhBMP(2)+ P24 / PLGA / CS复合材料是一种用于骨缺损修复的新型材料,具有诱导骨形成的稳定活性。

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