Canta Annalisa, Chiorazzi Alessia, Carozzi Valentina Alda, Meregalli Cristina, Oggioni Norberto, Bossi Mario, Rodriguez-Menendez Virginia, Avezza Federica, Crippa Luca, Lombardi Raffaella, de Vito Giuseppe, Piazza Vincenzo, Cavaletti Guido, Marmiroli Paola
Experimental Neurology Unit and Milan Center for Neuroscience, School of Medicine and Surgery, University of Milano-Bicocca, Monza, Italy.
Experimental Neurology Unit and Milan Center for Neuroscience, School of Medicine and Surgery, University of Milano-Bicocca, Monza, Italy.
Neurobiol Aging. 2016 Sep;45:136-148. doi: 10.1016/j.neurobiolaging.2016.05.014. Epub 2016 May 20.
This study is aimed at describing the changes occurring in the entire peripheral nervous system sensory pathway along a 2-year observation period in a cohort of C57BL/6 mice. The neurophysiological studies evidenced significant differences in the selected time points corresponding to childhood, young adulthood, adulthood, and aging (i.e., 1, 7, 15, and 25 months of age), with a parabolic course as function of time. The pathological assessment allowed to demonstrate signs of age-related changes since the age of 7 months, with a remarkable increase in both peripheral nerves and dorsal root ganglia at the subsequent time points. These changes were mainly in the myelin sheaths, as also confirmed by the Rotating-Polarization Coherent-Anti-stokes-Raman-scattering microscopy analysis. Evident changes were also present at the morphometric analysis performed on the peripheral nerves, dorsal root ganglia neurons, and skin biopsies. This extensive, multimodal characterization of the peripheral nervous system changes in aging provides the background for future mechanistic studies allowing the selection of the most appropriate time points and readouts according to the investigation aims.
本研究旨在描述C57BL/6小鼠队列在2年观察期内整个外周神经系统感觉通路中发生的变化。神经生理学研究表明,在对应于童年、青年、成年和衰老(即1、7、15和25月龄)的选定时间点存在显著差异,呈时间的抛物线变化过程。病理评估显示,自7月龄起就出现了与年龄相关的变化迹象,在随后的时间点外周神经和背根神经节均显著增加。这些变化主要发生在髓鞘中,旋转偏振相干反斯托克斯拉曼散射显微镜分析也证实了这一点。在外周神经、背根神经节神经元和皮肤活检的形态计量分析中也发现了明显变化。对衰老过程中外周神经系统变化的这种广泛、多模态表征为未来的机制研究提供了背景,从而能够根据研究目的选择最合适的时间点和读数。