Suppr超能文献

强调衰老对I型胶原蛋白的影响:在三维基质模型中使用共聚焦反射显微镜和漫反射光谱进行无标记研究。

Highlighting the impact of aging on type I collagen: label-free investigation using confocal reflectance microscopy and diffuse reflectance spectroscopy in 3D matrix model.

作者信息

Guilbert Marie, Roig Blandine, Terryn Christine, Garnotel Roselyne, Jeannesson Pierre, Sockalingum Ganesh D, Manfait Michel, Perraut François, Dinten Jean-Marc, Koenig Anne, Piot Olivier

机构信息

MéDIAN-Biophotonique et Technologies pour la Santé, Université de Reims Champagne-Ardenne, CNRS UMR 7369 MEDyC, UFR de Pharmacie, SFR CAP Santé, Reims, France.

CEA, LETI, Minatec Campus, Grenoble, France.

出版信息

Oncotarget. 2016 Feb 23;7(8):8546-55. doi: 10.18632/oncotarget.7385.

Abstract

During aging, alterations of extracellular matrix proteins contribute to various pathological phenotypes. Among these alterations, type I collagen cross-linking and associated glycation products accumulation over time detrimentally affects its physico-chemical properties, leading to alterations of tissue biomechanical stability. Here, different-age collagen 3D matrices using non-destructive and label-free biophotonic techniques were analysed to highlight the impact of collagen I aging on 3D constructs, at macroscopic and microscopic levels. Matrices were prepared with collagens extracted from tail tendons of rats (newborns, young and old adults) to be within the physiological aging process. The data of diffuse reflectance spectroscopy reveal that aging leads to an inhibition of fibril assembly and a resulting decrease of gel density. Investigations by confocal reflectance microscopy highlight poor-fibrillar structures in oldest collagen networks most likely related to the glycation products accumulation. Complementarily, an infrared analysis brings out marked spectral variations in the Amide I profile, specific of the peptidic bond conformation and for carbohydrates vibrations as function of collagen-age. Interestingly, we also highlight an unexpected behavior for newborn collagen, exhibiting poorly-organized networks and microscopic features close to the oldest collagen. These results demonstrate that changes in collagen optical properties are relevant for investigating the incidence of aging in 3D matrix models.

摘要

在衰老过程中,细胞外基质蛋白的改变会导致各种病理表型。在这些改变中,I型胶原蛋白的交联以及相关糖基化产物随时间的积累会对其物理化学性质产生不利影响,从而导致组织生物力学稳定性的改变。在此,我们使用非破坏性和无标记生物光子技术对不同年龄的胶原蛋白三维基质进行分析,以在宏观和微观层面突出I型胶原蛋白老化对三维结构的影响。我们用从大鼠(新生鼠、年轻成年鼠和老年成年鼠)尾腱中提取的胶原蛋白制备基质,使其处于生理衰老过程中。漫反射光谱数据表明,老化会导致原纤维组装受到抑制,进而导致凝胶密度降低。共聚焦反射显微镜研究突出显示,最老的胶原蛋白网络中存在原纤维结构不良的情况,这很可能与糖基化产物的积累有关。此外,红外分析揭示了酰胺I谱中的显著光谱变化,这是肽键构象以及碳水化合物振动随胶原蛋白年龄变化的特征。有趣的是,我们还突出显示了新生胶原蛋白的一种意外行为,即其网络组织不良,微观特征与最老的胶原蛋白相近。这些结果表明,胶原蛋白光学性质的变化对于研究三维基质模型中的老化发生率具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d78/4890986/90de73e9a58c/oncotarget-07-8546-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验