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An in vitro Study to Assess the Potential of a Unique Micro porous Algal Derived Cap Bone Void Filler in Comparison with Clinically-Used Bone Void Fillers

机译:与临床使用的骨空隙填充物相比,评估独特的微孔藻类衍生的帽状骨空隙填充物潜力的体外研究

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摘要

Macroporosity (>100µm) in bone void fillers is a known prerequisite for tissue regeneration, but recent literature has highlighted the added benefit of microporosity (0.5 - 10µm). The aim of this study was to compare the in vitro performances of a novel interconnective microporous hydroxyapatite (HA) derived from red algae to four clinically available macroporous calcium phosphate (CaP) bone void fillers. The use of algae as a starting material for this novel void filler overcomes the issue of sustainability, which overshadows continued use of scleractinian coral in the production of some commercially available materials, namely Pro-OsteonTM and Bio-Coral®. This study investigated the physicochemical properties of each bone voidfiller material using x-ray diffraction, fourier transform infrared spectroscopy, inductive coupled plasma, and nitrogen gas absorption and mercury porosimetry. Biochemical analysis, XTT, picogreen and alkaline phosphatase assays were used to evaluate the biological performances of the five materials. Results showed that algal HA is non-toxic to human foetal osteoblast (hFOB) cells and supports cell proliferation and differentiation. The preliminary in vitro testing of microporous algal-HA suggests that it is comparable to the four clinically approved macroporous bone void fillers tested. The results demonstrate that microporous algal HA has good potential for use in vivo and in new tissue engineered strategies for hard tissue repair.
机译:骨空隙填充剂中的大孔(>100μm)是组织再生的已知先决条件,但最近的文献强调了微孔(0.5-10μm)的附加好处。这项研究的目的是比较新型的互连红藻微孔羟基磷灰石(HA)与四种临床可用的大孔磷酸钙(CaP)骨空隙填充剂的体外性能。使用藻类作为这种新型空隙填充剂的起始材料克服了可持续性的问题,该问题使巩膜珊瑚在生产某些可商购材料Pro-OsteonTM和Bio-Coral®的过程中继续使用。这项研究使用X射线衍射,傅立叶变换红外光谱,感应耦合等离子体以及氮气吸收和汞孔隙率法研究了每种骨填充材料的理化性质。生化分析,XTT,微微绿和碱性磷酸酶测定法用于评估五种材料的生物学性能。结果表明藻类HA对人胎儿成骨细胞(hFOB)无毒,并支持细胞增殖和分化。体外微孔藻HA的初步测试表明,它可与四种经临床批准的大孔骨空隙填充剂进行比较。结果表明,微孔藻类HA具有在体内和硬组织修复新组织工程策略中使用的良好潜力。

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