Bernardi Sara, Marchetti Enrico, Torge Diana, Simeone Davide, Macchiarelli Guido, Bianchi Serena
Department of Life, Health and Environmental Sciences, University of L'Aquila, L'Aquila, Italy.
Histol Histopathol. 2025 Aug;40(8):1185-1194. doi: 10.14670/HH-18-860. Epub 2024 Dec 12.
Research towards regenerative dentistry focused on developing scaffold materials whose high performance induces cell adhesion support and guides tissue growth. An early study investigated the proliferation abilities and attachment of human periodontal ligament fibroblasts (HPLFs) on two bovine pericardium membranes with different thicknesses, 0.2 mm and 0.4 mm. Following those published results, we examined the ultrastructure of HPLFs in contact with these membranes. The HPLFs were cultured in standard conditions, exposed to the tested materials, and, after 24 hours, subjected to transmission electron microscopy preparation. The examined parameters included the quality and distribution of mitochondria, Golgi apparatus, and the nucleus. HPLFs exposed to membranes showed ultrastructural changes. The cellular compartments aimed at protein synthesis and metabolism increased compared with the control. Unpaired t-test and one-way ANOVA showed that HPLFs exposed to membranes displayed an increase in the number of mitochondria (89.23±7.44 vs. 66.90±9.58; T1 and control; <0.05 and 84.05±14.01 vs. 66.90±9.58; T2 and control; <0.05). The reported ultrastructural evidence suggests an active synthesis state of HPLFs, probably triggered by the bovine collagen membrane, showing an active role of this material in the biology of the regeneration process.
再生牙科的研究重点是开发高性能的支架材料,这种材料能诱导细胞黏附并支持和引导组织生长。一项早期研究调查了人牙周膜成纤维细胞(HPLFs)在两种不同厚度(0.2毫米和0.4毫米)的牛心包膜上的增殖能力和附着情况。基于那些已发表的结果,我们检查了与这些膜接触的HPLFs的超微结构。将HPLFs在标准条件下培养,使其接触测试材料,24小时后进行透射电子显微镜制样。检查的参数包括线粒体、高尔基体和细胞核的质量及分布。接触膜的HPLFs显示出超微结构变化。与对照组相比,旨在进行蛋白质合成和代谢的细胞区室有所增加。非配对t检验和单因素方差分析表明,接触膜的HPLFs线粒体数量增加(89.23±7.44对66.90±9.58;T1与对照组;<0.05;84.05±14.01对66.90±9.58;T2与对照组;<0.05)。所报道的超微结构证据表明HPLFs处于活跃的合成状态,可能是由牛胶原膜触发的,这表明这种材料在再生过程的生物学中发挥着积极作用。