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首页> 外文期刊>RSC Advances >Biocompatibility and safety evaluation of a silk fibroin-doped calcium polyphosphate scaffold copolymer in vitro and in vivo
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Biocompatibility and safety evaluation of a silk fibroin-doped calcium polyphosphate scaffold copolymer in vitro and in vivo

机译:丝纤蛋白掺杂的聚磷酸钙支架共聚物 体内的生物相容性和安全性评估

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摘要

For the reconstruction of cartilage and bone defects, bone repair scaffolds with porous network structures have been extensively studied. In our previous study, CPP-type bioceramics showed higher compressive strength and enhanced degradation after silk fibroin doping, and SF/CPP could be considered a suitable bioceramic for bone tissue-engineering. The aim of this study was to evaluate the biocompatibility and safety of SF/CPP in vitro and in vivo. The cell biocompatibility was evaluated with regard to the cytotoxicity of the scaffolds using co-culture and MTT tests in vitro. The in vivo biocompatibility of SF/CPP was evaluated by implanting the scaffolds in the subcutaneous and intramuscular regions of experimental animals. We established an experimental animal model to prepare critical-sized cranial defects and evaluated the biodegradability and osteoconductivity of the scaffolds in vivo. The results indicated that the SF/CPP scaffold yielded better biocompatibility and safety performance than the CPP scaffold in vitro and in vivo. Immunohistochemistry staining in vivo for OPN and OCN also indicated that SF/CPP has potential to promote the regeneration of critical-sized cranial defects. The SF/CPP scaffold has good biocompatibility and safety for experimental animals and could also serve as a potential effective bioceramic for a range of bone regeneration applications.
机译:为了重建软骨和骨缺损,已经广泛研究了具有多孔网络结构的骨修复支架。在我们以前的研究中,CPP型生物陶瓷在丝纤蛋白掺杂后显示出更高的抗压强度和增强的降解,并且SF / CPP被认为是适合骨组织工程的生物陶瓷。这项研究的目的是评估SF / CPP 体外体内的生物相容性和安全性。使用体外共培养和MTT试验评估了支架的细胞毒性对细胞的生物相容性。 SF / CPP的体内生物相容性通过将支架植入实验动物的皮下和肌肉内区域进行评估。我们建立了一个实验动物模型来准备临界大小的颅骨缺损,并评估了支架在体内的生物降解性和骨传导性。结果表明,SF / CPP支架在体外体内具有更好的生物相容性和安全性。 OPN和OCN的体内免疫组化染色还表明,SF / CPP具有促进关键性颅骨缺损再生的潜力。 SF / CPP支架对于实验动物具有良好的生物相容性和安全性,并且还可以用作一系列骨再生应用的潜在有效生物陶瓷。

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