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用于辅助骨再生的非交联、多样化组织来源的胶原基膜的全面体外特性分析。

A comprehensive in vitro characterization of non-crosslinked, diverse tissue-derived collagen-based membranes intended for assisting bone regeneration.

机构信息

Department of Experimental Medicine, Section of Biotechnology, University of Campania "Luigi Vanvitelli", Napoli, Italy.

出版信息

PLoS One. 2024 Jul 15;19(7):e0298280. doi: 10.1371/journal.pone.0298280. eCollection 2024.

Abstract

Collagen-based membranes are class III-medical devices widely used in dental surgical procedures to favour bone regeneration. Here, we aimed to provide biophysical and biochemical data on this type of devices to support their optimal use and design/manufacturing. To the purpose, four commercial, non-crosslinked collagen-based-membranes, obtained from various sources (equine tendon, pericardium or cortical bone tissues, and porcine skin), were characterized in vitro. The main chemical, biophysical and biochemical properties, that have significant clinical implications, were evaluated. Membranes showed similar chemical features. They greatly differed in morphology as well as in porosity and density and showed a diverse ranking in relation to these latter two parameters. Samples highly hydrated in physiological medium (swelling-ratio values in the 2.5-6.0 range) and, for some membranes, an anisotropic expansion during hydration was, for the first time, highlighted. Rheological analyses revealed great differences in deformability (150-1500kPa G') also alerting about the marked variation in membrane mechanical behaviour upon hydration. Samples proved diverse sensitivity to collagenase, with the cortical-derived membrane showing the highest stability. Biological studies, using human-bone-derived cells, supported sample ability to allow cell proliferation and to prompt bone regeneration, while no relevant differences among membranes were recorded. Prediction of relative performance based on the findings was discussed. Overall, results represent a first wide panel of chemical/biophysical/biochemical data on collagen-based-membranes that 1) enhances our knowledge of these products, 2) aids their optimal use by providing clinicians with scientific basis for selecting products based on the specific clinical situation and 3) represents a valuable reference for optimizing their manufacturing.

摘要

基于胶原蛋白的膜是 III 类医疗器械,广泛用于牙科手术中以促进骨再生。在这里,我们旨在提供此类设备的生物物理和生物化学数据,以支持其最佳使用和设计/制造。为此,我们对四种商业的、未交联的基于胶原蛋白的膜进行了体外特征分析,这些膜来源于不同的来源(马腱、心包或皮质骨组织和猪皮)。评估了具有重要临床意义的主要化学、生物物理和生物化学特性。膜显示出相似的化学特征。它们在形态以及孔隙率和密度方面有很大的差异,并在与后两个参数的相关性方面表现出不同的等级。在生理介质中高度水合的样品(膨胀比在 2.5-6.0 范围内),并且,对于一些膜,在水合过程中首次强调了各向异性膨胀。流变分析显示出变形能力的巨大差异(150-1500kPa G'),也提醒了在水合作用下膜机械性能的明显变化。样品对胶原蛋白酶的敏感性不同,皮质衍生膜的稳定性最高。使用人源性骨细胞的生物学研究支持了样品允许细胞增殖和促进骨再生的能力,同时没有记录到膜之间的显著差异。根据研究结果讨论了相对性能的预测。总的来说,这些结果代表了基于胶原蛋白的膜的首次广泛的化学/生物物理/生物化学数据面板,1)增强了我们对这些产品的了解,2)为临床医生提供了基于特定临床情况选择产品的科学依据,从而有助于最佳使用这些产品,3)为优化其制造提供了有价值的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f48/11249220/891222eb3a66/pone.0298280.g001.jpg

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