Shiers Stephanie I, Mazhar Khadijah, Wangzhou Andi, Haberberger Rainer, Lesnak Joseph B, Sankaranarayanan Ishwarya, Tavares-Ferreira Diana, Cervantes Anna, Funk Geoffrey, Horton Peter, Vines Erin, Dussor Gregory, Price Theodore J
Department of Neuroscience, Center for Advanced Pain Studies, The University of Texas at Dallas. Richardson, TX.
School of Biomedicine, The University of Adelaide, Australia.
bioRxiv. 2024 Aug 23:2024.08.22.609215. doi: 10.1101/2024.08.22.609215.
Diabetic neuropathy is frequently accompanied by pain and loss of sensation attributed to axonal dieback. We recovered dorsal root ganglia (DRGs) from 90 organ donors, 19 of whom had medical indices for diabetic painful neuropathy (DPN). Nageotte nodules, dead sensory neurons engulfed by non-neuronal cells, were abundant in DPN DRGs and accounted for 25% of all neurons. Peripherin-and Nav1.7-positive dystrophic axons invaded Nageotte nodules, forming small neuroma-like structures. Using histology and spatial sequencing, we demonstrate that Nageotte nodules are mainly composed of satellite glia and non-myelinating Schwann cells that express and are intertwined with sprouting sensory axons originating from neighboring neurons. Our findings solve a 100-year mystery of the nature of Nageotte nodules linking these pathological structures to pain and sensory loss in DPN.
糖尿病性神经病变常伴有因轴突退变导致的疼痛和感觉丧失。我们从90名器官捐献者中获取了背根神经节(DRG),其中19人有糖尿病性疼痛性神经病变(DPN)的医学指标。在DPN的DRG中,被非神经元细胞吞噬的死亡感觉神经元组成的纳热奥特小结很常见,占所有神经元的25%。外周蛋白和Nav1.7阳性的营养不良性轴突侵入纳热奥特小结,形成小的神经瘤样结构。通过组织学和空间测序,我们证明纳热奥特小结主要由卫星神经胶质细胞和非髓鞘施万细胞组成,这些细胞表达并与源自相邻神经元的发芽感觉轴突交织在一起。我们的研究结果解开了一个长达100年的关于纳热奥特小结性质的谜团,将这些病理结构与DPN中的疼痛和感觉丧失联系起来。