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首页> 外文期刊>Materials science & engineering >Resorbable bacterial cellulose membranes with strontium release for guided bone regeneration
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Resorbable bacterial cellulose membranes with strontium release for guided bone regeneration

机译:具有锶释放的可再吸收的细菌纤维素膜,用于引导骨再生

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摘要

Hybrid materials, based on bacterial cellulose (BC) and hydroxyapatite (HA), have been investigated for guided bone regeneration (GBR). However, for some GBR, degradability in the physiological environment is an essential requirement. The present study aimed to explore the use of oxidized bacterial cellulose (OxBC) membranes, associated with strontium apatite, for GBR applications. BC membranes were produced by fermentation and purified, before oxidizing and mineralizing by immersing in strontium chloride solution and sodium bibasic phosphate for 5 cycles. The hybrid materials (BC/HA/Sr, BC/SrAp, OxBC/HA/Sr and OxBC/SrAp) were characterized for biodegradability and bioactivity and for their physicochemical and morphological properties. In vitro cytotoxicity and hemolytic properties of the materials were also investigated. In vivo biocompatibility was analyzed by performing histopathological evaluation at 1, 3 and 9 weeks in mices. Results showed that the samples presented different strontium release profiles and that oxidation enhances degradation under physiological conditions. All the hybrid materials were bioactive. Cell viability assay indicated that the materials are non-cytotoxic and in vivo studies showed low inflammatory response and increased connective tissue repair, as well as degradation in most of the materials, especially the oxidized membranes. This study confirms the potential use of bacterial cellulose-derived hybrid membranes for GBR.
机译:已经研究了基于细菌纤维素(BC)和羟基磷灰石(HA)的杂化材料用于引导骨再生(GBR)。然而,对于一些GBR,生理环境中的可降解性是必不可少的要求。本研究旨在探讨与锶磷灰石相关的氧化细菌纤维素(OXBC)膜的使用,用于GBR应用。 BC膜通过发酵并纯化,在通过浸入氯化锶溶液和磷酸钠进行5个循环之前氧化和矿化之前。杂化材料(BC / HA / SR,BC / SRAP,OXBC / HA / SR和OXBC / SRAP)的特征在于生物降解性和生物活性以及它们的物理化学和形态学性质。还研究了体外细胞毒性和溶血性质。通过在一中1,3和9周内进行组织病理学评估来分析体内生物相容性。结果表明,样品呈现出不同的锶释放曲线,并且氧化能提高生理条件下的降解。所有杂种材料都是生物活性的。细胞活力测定表明,材料是非细胞毒性的,体内研究显示出低炎症反应和增加的结缔组织修复,以及大多数材料的降解,尤其是氧化膜。本研究证实了GBR的细菌纤维素衍生的杂交膜的潜在用途。

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