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Comprehensive Appraisal of Graphene–Oxide Ratio in Porous Biopolymer Hybrids Targeting Bone-Tissue Regeneration

机译:多孔生物聚合物杂交体综合评价靶向骨组织再生的氧化物杂交种

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摘要

The bone-tissue engineering (BTE) field is continuously growing due to a major need for bone substitutes in cases of serious traumas, when the bone tissue has reduced capacity for self-regeneration. So far, graphene oxide (GO)-reinforced natural materials provide satisfactory results for BTE, for both in vitro and in vivo conditions. In this study, we aimed to evaluate the biocompatibility of a new biocomposite consisting of chitosan and fish gelatin crosslinked with genipin and loaded with various concentrations of GO (0.5, 1, 2, 3 wt.%) for prospective BTE applications. Scaffold characterizations revealed a constant swelling degree and good resistance to enzyme degradation. The composites presented a porous structure with pores of similar size, thus mimicking the bone structure. In vitro biocompatibility assays demonstrated an overall beneficial interaction between preosteoblasts, and these particular composites, particularly with 0.5 wt.% GO, reinforced composition. Next, the materials were implanted subcutaneously in 6-week old CD1 mice for in vivo evaluation of biocompatibility and inflammatory activity. Immunohistochemical staining revealed maximal cell infiltration and minimal inflammatory reaction for fish gelatin/chitosan/genipin with 0.5 wt.% GO scaffold, thus demonstrating the best biocompatibility for this particular composition, confirming the in vitro results. This study revealed the potential use of fish gelatin/chitosan GO composites for further implementation in the BTE field.
机译:当骨组织减少自我再生能力时,骨组织工程(BTE)域是不断增长的骨替代的主要需要。到目前为止,氧化石墨烯(GO) - 在体外和体内条件下为BTE提供令人满意的结果。在这项研究中,我们旨在评估由壳聚糖和鱼明胶组成的新生物复合材料的生物相容性与Genipin交联,并为前瞻性BTE应用的各种浓度的GO(0.5,1,2,3重量%)加载。支架表征揭示了恒定的溶胀度和良好的酶降解抗性。复合材料呈现具有相似尺寸的孔的多孔结构,从而模仿骨骼结构。体外生物相容性测定证明了预卵细胞和这些特定复合材料之间的总有益相互作用,特别是0.5重量%。%GO,增强组合物。接下来,将材料皮下注射在6周龄CD1小鼠中,用于体内评估生物相容性和炎症活性。免疫组织化学染色揭示了鱼明胶/壳聚糖/ Genipin的最大细胞浸润和最小的炎症反应,具有0.5重量%的成支架,从而证明了这种特定组合物的最佳生物相容性,证实了体外结果。本研究揭示了鱼明胶/壳聚糖去复合材料的潜在用途,以进一步实现BTE领域。

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