Zenóbio Elton Gonçalves, Zenóbio Madelon Aparecida Fernandes, Martins Alessandro Gomides Veiga, Olivieira Leondro Junqueira de, Abreu Fernando Antônio Mauad de, Souza Paulo Eduardo Alencar de
Department of Dentistry, Pontifícia Universidade Católica de Minas Gerais, Belo Horizonte, Brazil.
Department of Nuclear Development and Technology Center, National Nuclear Energy Commission, Minas Gerais, Brazil.
J Int Acad Periodontol. 2017 Dec 24;20(1):19-24.
: The composition and morphology of the internal and external surfaces of membranes are important for preventing migration of epithelial and connective cells, and allow the installation of osteogenic cells for bone growth. The objective of this study was to analyze the morphology and composition of three types of commercially available resorbable collagen membranes.
Three types of collagen membranes, with different compositions and coming from different animals, were used: 1) Dental Surgidry F (bovine collagen type I); 2) Bio-Gide® (porcine collagen type I and III); and 3) OsseoGuard™ (bovine collagen type I). These membranes were analyzed using scanning electron microscopy and energy dispersive spectrometry.
The membranes showed distinct superficial architectures, porosities and chemical compositions. The membranes exhibited different surfaces and thicknesses, ranging from 0.32 mm to 0.75 mm. The chemical compositions exhibited a high percentage of niobium (Nb) in the Surgidry and OsseoGuard™ membranes; the Bio-Gide® membrane showed a greater proportion of calcium and aluminum relative to other elements.
Different types of resorbable collagen membranes exhibit different morphologies and chemical composition, which could lead to differences in the mode and time of resorption of the membranes used for guided tissue regeneration procedures.
膜内外表面的组成和形态对于防止上皮细胞和结缔组织细胞迁移以及为骨生长植入成骨细胞很重要。本研究的目的是分析三种市售可吸收胶原膜的形态和组成。
使用了三种不同组成且来源不同动物的胶原膜:1)Dental Surgidry F(I型牛胶原);2)Bio-Gide®(I型和III型猪胶原);3)OsseoGuard™(I型牛胶原)。使用扫描电子显微镜和能量色散光谱对这些膜进行分析。
这些膜呈现出不同的表面结构、孔隙率和化学成分。这些膜表现出不同的表面和厚度,范围从0.32毫米到0.75毫米。化学成分显示,Surgidry和OsseoGuard™膜中铌(Nb)的百分比很高;Bio-Gide®膜相对于其他元素显示出更高比例的钙和铝。
不同类型的可吸收胶原膜表现出不同的形态和化学成分,这可能导致用于引导组织再生程序的膜的吸收方式和时间存在差异。