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Influence of single and binary doping of strontium and lithium on in vivo biological properties of bioactive glass scaffolds

机译:锶和锂单掺和二元掺杂对生物活性玻璃支架体内生物学性质的影响

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摘要

Effects of strontium and lithium ion doping on the biological properties of bioactive glass (BAG) porousudscaffolds have been checked in vitro and in vivo. BAG scaffolds were prepared by conventional glass melting route and subsequently, scaffolds were produced by evaporation of fugitive pore formers. After thorough physico-chemical and in vitro cell characterization, scaffolds were used for pre-clinical study. Soft and hard tissue formation in a rabbit femoral defect model after 2 and 4 months, were assessed using different tools. Histological observations showed excellent osseous tissue formation in Sr and Li + Sr scaffolds and moderate bone regeneration in Li scaffolds. Fluorochrome labeling studies showed wide regions of new bone formation in Sr and Li + Sr doped samples as compared to Li doped samples. SEM revealed abundant collagenous network and minimal or no interfacial gap between boneudand implant in Sr and Li + Sr doped samples compared to Li doped samples. Micro CT of Li + Sr samples showed highest degree of peripheral cancellous tissue formation on periphery and cortical tissues inside implanted samples and vascularity among four compositions. Our findings suggest that addition of Sr and/or Li alters physico-chemical properties of BAG and promotes early stage in vivo osseointegration and bone remodeling that may offer new insight in bone tissue engineering.
机译:锶和锂离子掺杂对生物活性玻璃(BAG)多孔支架的生物学特性的影响已在体外和体内进行了检查。通过常规的玻璃熔化路线制备BAG支架,随后,通过蒸发逃逸的成孔剂来生产支架。经过彻底的理化和体外细胞表征后,将支架用于临床前研究。使用不同的工具评估兔子股骨缺损模型在2和4个月后的软组织和硬组织的形成。组织学观察显示,在Sr和Li + Sr支架中骨组织形成极好,在Li支架中骨骼再生适中。荧光染料标记研究表明,与掺Li的样品相比,掺Sr和Li + Sr的样品中新骨形成的区域很大。 SEM表明,与掺Li的样品相比,掺Sr和掺Li + Sr的样品中骨植入物之间的胶原网络丰富,界面间隙最小或没有。 Li + Sr样品的Micro CT显示,在四种样品中,植入样品内部的周围和皮层组织的周围松质组织形成程度最高,并且血管分布也较高。我们的发现表明,添加Sr和/或Li会改变BAG的理化性质,并促进体内早期骨整合和骨重塑,这可能会为骨组织工程学提供新的见识。

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