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Polymer Membranes Sonocoated and Electrosprayed with Nano-Hydroxyapatite for Periodontal Tissues Regeneration

机译:纳米羟基磷灰石超声喷涂和电喷涂的聚合物膜用于牙周组织再生

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摘要

Diseases of periodontal tissues are a considerable clinical problem, connected with inflammatory processes and bone loss. The healing process often requires reconstruction of lost bone in the periodontal area. For that purpose, various membranes are used to prevent ingrowth of epithelium in the tissue defect and enhance bone regeneration. Currently-used membranes are mainly non-resorbable or are derived from animal tissues. Thus, there is an urgent need for non-animal-derived bioresorbable membranes with tuned resorption rates and porosity optimized for the circulation of body nutrients. We demonstrate membranes produced by the electrospinning of biodegradable polymers (PDLLA/PLGA) coated with nanohydroxyapatite (nHA). The nHA coating was made using two methods: sonocoating and electrospraying of nHA suspensions. In a simulated degradation study, for electrosprayed membranes, short-term calcium release was observed, followed by hydrolytic degradation. Sonocoating produced a well-adhering nHA layer with full coverage of the fibers. The layer slowed the polymer degradation and increased the membrane wettability. Due to gradual release of calcium ions the degradation-associated acidity of the polymer was neutralized. The sonocoated membranes exhibited good cellular metabolic activity responses against MG-63 and BJ cells. The collected results suggest their potential use in Guided Tissue Regeneration (GTR) and Guided Bone Regeneration (GBR) periodontal procedures.
机译:牙周组织疾病是一个严重的临床问题,与炎症过程和骨质流失有关。愈合过程通常需要重建牙周区域的骨丢失。为此,使用各种膜来防止组织缺损中上皮向内生长并增强骨再生。当前使用的膜主要是不可吸收的或源自动物组织。因此,迫切需要非动物来源的生物可吸收膜,其具有针对身体营养循环而优化的调节的吸收速率和孔隙率。我们展示了由静电包覆纳米羟基磷灰石(nHA)的可生物降解聚合物(PDLLA / PLGA)产生的膜。使用两种方法制备nHA涂层:超声涂层和nHA悬浮液的电喷涂。在模拟降解研究中,对于电喷涂膜,观察到短期钙释放,随后水解降解。 Sonocoating产生了粘附力良好的nHA层,纤维被完全覆盖。该层减慢了聚合物的降解并增加了膜的润湿性。由于钙离子的逐渐释放,聚合物的与降解相关的酸度被中和。涂有超声波的膜对MG-63和BJ细胞表现出良好的细胞代谢活性。收集到的结果表明它们在牙周组织再生(GTR)和骨再生(GBR)牙周手术中的潜在用途。

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