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男性和女性大鼠腰骶脊髓中膀胱和尿道传入纤维的区域定位:多尺度分析。

Regional Targeting of Bladder and Urethra Afferents in the Lumbosacral Spinal Cord of Male and Female Rats: A Multiscale Analysis.

机构信息

Department of Anatomy and Physiology, University of Melbourne, Parkville, Victoria 3010, Australia.

Department of Anatomy and Physiology, University of Melbourne, Parkville, Victoria 3010, Australia

出版信息

eNeuro. 2021 Dec 16;8(6). doi: 10.1523/ENEURO.0364-21.2021. Print 2021 Nov-Dec.

Abstract

Sensorimotor circuits of the lumbosacral spinal cord are required for lower urinary tract (LUT) regulation as well as being engaged in pelvic pain states. To date, no molecular markers have been identified to enable specific visualization of LUT afferents, which are embedded within spinal cord segments that also subserve somatic functions. Moreover, previous studies have not fully investigated the patterning within or across spinal segments, compared afferent innervation of the bladder and urethra, or explored possible structural sex differences in these pathways. We have addressed these questions in adult Sprague Dawley rats, using intramural microinjection of the tract tracer, B subunit of cholera toxin (CTB). Afferent distribution was analyzed within individual sections and 3D reconstructions from sections across four spinal cord segments (L5-S2), and in cleared intact spinal cord viewed with light sheet microscopy. Simultaneous mapping of preganglionic neurons showed their location throughout S1 but restricted to the caudal half of L6. Afferents from both LUT regions extended from L5 to S2, even where preganglionic motor pathways were absent. In L6 and S1, most afferents were associated with the sacral preganglionic nucleus (SPN) and sacral dorsal commissural nucleus (SDCom), with very few in the superficial laminae of the dorsal horn. Spinal innervation patterns by bladder and urethra afferents were remarkably similar, likewise the patterning in male and female rats. In conclusion, microscale to macroscale mapping has identified distinct features of LUT afferent projections to the lumbosacral cord and provided a new anatomic approach for future studies on plasticity, injury responses, and modeling of these pathways.

摘要

腰骶脊髓的感觉运动回路对于下尿路(LUT)调节以及参与骨盆疼痛状态是必需的。迄今为止,尚未发现能够特异性可视化嵌入脊髓节段内的 LUT 传入的分子标记物,这些脊髓节段也用于躯体功能。此外,以前的研究没有充分研究脊髓节段内或跨脊髓节段的模式,比较膀胱和尿道的传入神经支配,或探索这些途径中可能存在的结构性别差异。我们在成年 Sprague Dawley 大鼠中解决了这些问题,使用腔内微注射示踪剂霍乱毒素(CTB)B 亚单位。在单个切片和四个脊髓节段(L5-S2)的切片 3D 重建中分析传入分布,并使用光片显微镜观察清除的完整脊髓。节前神经元的同时映射显示它们位于 S1 但仅限于 L6 的尾侧半部。来自 LUT 区域的传入纤维从 L5 延伸到 S2,即使在没有节前运动通路的地方也是如此。在 L6 和 S1 中,大多数传入纤维与骶前神经节核(SPN)和骶骨背侧连合核(SDCom)有关,在背角的浅层很少。膀胱和尿道传入纤维的脊髓支配模式非常相似,雄性和雌性大鼠的模式也相似。总之,从微观到宏观的映射确定了 LUT 传入投射到腰骶脊髓的独特特征,并为这些途径的可塑性、损伤反应和建模的未来研究提供了新的解剖方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0234/8690816/272b0851b105/ENEURO.0364-21.2021_f001.jpg

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