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首页> 外文期刊>American Journal of Physiology >Anterograde transneuronal viral tract tracing reveals central sensory circuits from brown fat and sensory denervation alters its thermogenic responses
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Anterograde transneuronal viral tract tracing reveals central sensory circuits from brown fat and sensory denervation alters its thermogenic responses

机译:前牙齿传递病毒道追踪揭示了棕色脂肪的中央感觉电路,感觉到的患者改变了其热响应

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Brown adipose tissue (BAT) thermogenic activity and growth are controlled by its sympathetic nervous system (SNS) innervation, but nerve fibers containing sensory-associated neuropeptides [substance P, calcitonin gene-related peptide (CGRP)] also suggest sensory innervation. The central nervous system (CNS) projections of BAT afferents are unknown. Therefore, we used the H129 strain of the herpes simplex virus-1 (HSV-1), an anterograde transneuronal viral tract tracer used to delineate sensory nerve circuits, to define these projections. HSV-1 was injected into interscapular BAT (IBAT) of Siberian hamsters and HSV-1 immunoreactivity (ir) was assessed 24, 48, 72, 96, and 114 h postinjection. The 96- and 114-h groups had the most HSV-l-ir neurons with marked infections in the hypothalamic paraventricular nucleus, periaqueductal gray, olivary areas, parabrachial nuclei, raphe nuclei, and reticular areas. These sites also are involved in sympathetic outflow to BAT suggesting possible BAT sensory-SNS ther-mogenesis feedback circuits. We tested the functional contribution of IBAT sensory innervation on fhermogenic responses to an acute (24 h) cold exposure test by injecting the specific sensory nerve toxin capsaicin directly into IBAT pads and then measuring core (T_c) and IBAT (T_(Ibat)) temperature responses. CGRP content was significantly decreased in capsaicin-treated IBAT demonstrating successful sensory nerve destruction. T_(Ibat) and T_c were significantly decreased in capsaicin-treated hamsters compared with the saline controls at 2 h of cold exposure. Thus the central sensory circuits from IBAT have been delineated for the first time, and impairment of sensory feedback from BAT appears necessary for the appropriate, initial thermogenic response to acute cold exposure.
机译:棕色脂肪组织(BAT)热活性和生长是通过其交感神经系统(SNS)的支配来控制,但含有感觉相关神经肽的神经纤维[物质P,Calcitonin基因相关肽(CGRP)]还提出了感觉的支配。蝙蝠传入的中枢神经系统(CNS)突出均未赘述。因此,我们使用了HERPES SIMPLES病毒-1(HSV-1)的H129菌株,用于描绘感觉神经电路的前瓣传球病毒道示踪剂,以限定这些突起。将HSV-1注射到西伯利亚仓鼠的间隙(IBAT)中,并评估24,48,72,96和114小时的分布率HSV-1免疫反应性(IR)。 96-和114-H组具有最多的HSV-L-IR神经元,下丘脑椎间盘核,Periaquental灰色,橄榄糖区域,桥核,Raphe核和网状区域中具有明显的感染。这些网站还参与了同情流出给BAT,表明可能的BAT Sensory-SNS Ther-Mogeresis反馈电路。我们通过将特定的感官神经毒素蛋白蛋白直接注入IBAT垫,测量核(T_(IBAT))温度,通过将特定的感官神经毒素(T_C)和IBAT(T_(IBAT))温度注入急性(24小时)对急性(24小时)冷暴露试验对急性(24小时)冷暴露试验的急性感觉响应的功能贡献。回复。 Capsicin治疗的IBAT中CGRP含量显着降低,证明了成功的感觉神经破坏。与2小时的冷暴露的盐水管相比,辣椒素处理的仓鼠中T_(IBAT)和T_C显着降低。因此,来自IBAT的中央感觉电路首次被描绘,并且适当的初始热应对对蝙蝠的感觉反馈的损害似乎是对急性冷暴露的适当的。

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