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Integrated Oxidized-Hyaluronic Acid/Collagen Hydrogel with β-TCP Using Proanthocyanidins as a Crosslinker for Drug Delivery

机译:以原花色素为交联剂的β-TCP氧化羟透明质酸/胶原水凝胶

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摘要

The susceptibility of guided bone regeneration (GBR) material to infection by pathogens at wound sites during bone healing has often been overlooked. The objective of this study was the synthesis and characterization of a potential material for antibacterial GBR application. In the current study, the mechanical strength and biocompatibility of a composite restoration material—made of oxidized hyaluronic acid (HA)/type I collagen hydrogel integrated with tricalcium phosphate (β-TCP) using a natural crosslinking agent, oligomeric proanthocyanidins (OPCs)—were evaluated. The suitability of the material as a carrier matrix for antibacterial applications was evaluated by following the drug-release profile of tetracycline loaded within the composite. Results indicated that this composite material had a high swelling ratio of 420% and mechanical strength of 25 kPa while remaining at more than 60% of the weight after 30 days of an in vitro degradation test with good biocompatibility in promoting the proliferation of MG-63 cells. Drug release studies further showed that 93% of the tetracycline was released after 5 days, which supports this GBR material’s capability to release antibacterial drugs while keeping other required GBR material design functions.
机译:人们常常忽视了引导骨再生(GBR)材料在骨愈合过程中易受伤口部位病原体感染的敏感性。这项研究的目的是合成和表征抗菌GBR应用的潜在材料。在当前的研究中,复合修复材料的机械强度和生物相容性-由氧化的透明质酸(HA)/ I型胶原水凝胶与磷酸三钙(β-TCP)结合而成,并使用天然交联剂,低聚原花色素(OPC)-被评估。通过遵循负载在复合物中的四环素的药物释放曲线,评估了该材料作为抗菌应用载体基质的适用性。结果表明,该复合材料的体外降解试验30天后,具有420%的高溶胀率和25 kPa的机械强度,同时仍保持重量的60%以上,具有良好的生物相容性,可促进MG-63的增殖。细胞。药物释放研究进一步表明,在5天后释放了93%的四环素,这支持了该GBR材料释放抗菌药物的能力,同时保留了其他所需的GBR材料设计功能。

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