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首页> 外文期刊>International Journal of Nanomedicine >In vivo experimental study on bone regeneration in critical bone defects using PIB nanogels/boron-containing mesoporous bioactive glass composite scaffold
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In vivo experimental study on bone regeneration in critical bone defects using PIB nanogels/boron-containing mesoporous bioactive glass composite scaffold

机译:PIB纳米凝胶/含硼介孔生物活性玻璃复合支架在关键骨缺损中骨再生的体内实验研究

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Purpose: In the present study, the fabrication of novel p(N-isopropylacrylamide-co-butyl methylacrylate) (PIB) nanogels was combined with boron-containing mesoporous bioactive glass (B-MBG) scaffolds in order to improve the mechanical properties of PIB nanogels alone. Scaffolds were tested for mechanical strength and the ability to promote new bone formation in vivo.Patients and methods: To evaluate the potential of each scaffold in bone regeneration, ovariectomized rats were chosen as a study model to determine the ability of PIB nanogels to stimulate bone formation in a complicated anatomical bone defect. PIB nanogels and PIB nanogels/B-MBG composites were respectively implanted into ovariectomized rats with critical-sized femur defects following treatment periods of 2, 4, and 8 weeks post-implantation.Results: Results from the present study demonstrate that PIB nanogels/B-MBG composites showed greater improvement in mechanical strength when compared to PIB nanogels alone. In vivo, hematoxylin and eosin staining revealed significantly more newly formed bone in defects containing PIB nanogels/B-MBG composite scaffolds when compared to PIB nanogels alone. Tartrate-resistant acid phosphatase-positive staining demonstrated that both scaffolds were degraded over time and bone remodeling occurred in the surrounding bone defect as early as 4 weeks post-implantation.Conclusion: The results from the present study indicate that PIB nanogels are a potential bone tissue engineering biomaterial able to treat defects of irregular shapes and deformities as an injectable, thermoresponsive, biocompatible hydrogel which undergoes rapid thermal gelation once body temperature is reached. Furthermore, its combination with B-MBG scaffolds improves the mechanical properties and ability to promote new bone formation when compared to PIB nanogels alone.
机译:目的:在本研究中,将新型p(N-异丙基丙烯酰胺-甲基丙烯酸丁酯)(PIB)纳米凝胶与含硼的介孔生物活性玻璃(B-MBG)支架相结合,以改善PIB的机械性能仅纳米凝胶。测试支架的机械强度和促进体内新骨形成的能力。患者和方法:为了评估每种支架在骨再生中的潜力,选择去卵巢大鼠作为研究模型,以确定PIB纳米凝胶刺激骨的能力。复杂的解剖学骨缺损形成。 PIB纳米凝胶和PIB纳米凝胶/ B-MBG复合材料分别在植入后2、4和8周的治疗期后植入具有临界尺寸股骨缺损的卵巢切除大鼠中。结果:本研究结果表明PIB纳米凝胶/ B与单独的PIB纳米凝胶相比,MBG复合材料在机械强度方面显示出更大的提高。在体内,与单独的PIB纳米凝胶相比,苏木精和曙红染色显示含有PIB纳米凝胶/ B-MBG复合支架的缺损中新形成的骨明显更多。耐酒石酸酸性磷酸酶阳性染色表明,两种支架均随时间降解,并且在植入后4周就发生了周围骨缺损的骨重塑。结论:本研究结果表明PIB纳米凝胶是潜在的骨组织工程生物材料,能够将不规则形状和畸形的缺陷作为可注射的,热响应性的,生物相容的水凝胶进行处理,一旦达到体温,它就会迅速发生热凝胶化。此外,与单独的PIB纳米凝胶相比,它与B-MBG支架的结合改善了机械性能并促进了新的骨形成。

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