首页> 外文期刊>ACS applied materials & interfaces >Characterization and Potential of a Bilayered Hydrogel of Gellan Gum and Demineralized Bone Particles for Osteochondral Tissue Engineering
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Characterization and Potential of a Bilayered Hydrogel of Gellan Gum and Demineralized Bone Particles for Osteochondral Tissue Engineering

机译:骨胶胶和脱矿骨颗粒的双层水凝胶对骨质色组织工程的表征及潜力

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摘要

Osteochondral (OC) tissue engineering (TE) is a promising strategy to regenerate acute or degenerative chondral and OC lesions. However, advancing a proper model for OC TE is still under way. Herein, a bilayer hydrogel (BH) based on gellan gum (GG) hydrogel and demineralized bone particles (DBPs) is suggested as a new model. The BH composite can be fabricated easily with a cell-friendly biomaterial and cross-linker. The BH composite was characterized by a morphological method and physicochemical aspect. The mechanical and rheological characters were further confirmed to verify its applicability in OC TE. The thermodynamic property of the composite was determined to analyze thermal stability and interaction among matrices. The bioactivity of the material was studied by treating simulated body fluid (SBF) solution for 28 days to examine the formation of crystalline structure in the BH construct. In vitro studies were carried out to study the viability and biochemical characters of the developed biomaterial. An in vivo study was performed to analyze the biocompatibility of the material and regeneration of the injured OC region implanted with BH composites. The data displayed stable physicochemical properties and mechanical characters when the DBPs were incorporated with a proper amount. The bioactivity of the DBP-loaded hydrogels displayed a high amount of apatite formation. The cytotoxicity of the fabricated material was low, which allows application in vitro and in vivo. The biochemical studies displayed a high level of alkaline phosphatase (ALP) activity and gene expression, which shows promising application of DBP-loaded GG in the bone layer of the BH model. The long-term in vivo study displayed excellent biocompatibility and great potential in the OC defected region. Overall, these results suggest the significance of combined and innovative approaches to improve the therapeutic strategies for OC regeneration, and the BH model suggested in this study can be a promising biomaterial model for OC TE.
机译:骨质色盲(OC)组织工程(TE)是一种对急性或退化性骨髓和OC病变进行急性或退行性的有希望的策略。然而,推进OC TE的适当模型仍在进行。这里,基于Gellan Gum(GG)水凝胶和脱耳化骨颗粒(DBPS)的双层水凝胶(BH)作为新模型。 BH复合材料可以用细胞友好的生物材料和交联剂容易地制造。 BH复合物的特征在于形态学方法和物理化学方面。进一步证实,机械和流变特征验证了其在OC TE中的适用性。复合材料的热力学性能确定分析基质之间的热稳定性和相互作用。通过处理模拟体液(SBF)溶液28天来研究材料的生物活性,以检查BH构建体中晶体结构的形成。进行体外研究,以研究发育生物材料的活力和生化特征。进行体内研究以分析植入BH复合材料的受损oc区的材料和再生的生物相容性。当DBPS掺入适当量时,数据显示了稳定的物理化学性质和机械字符。 DBP加载水凝胶的生物活性显示出大量的磷灰石形成。制造物质的细胞毒性低,允许在体外和体内施用。生物化学研究显示了高水平的碱性磷酸酶(ALP)活性和基因表达,其显示有希望在BH模型的骨层中施加DBP负载的GG。长期在体内研究表现出优异的生物相容性和oc叛逃区的巨大潜力。总体而言,这些结果表明了合并和创新方法改善oc再生的治疗策略的重要性,本研究建议的BH模型可以是OC TE的有希望的生物材料模型。

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