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Phenotypic plasticity in adult sympathetic ganglia in vivo: effects of deafferentation and axotomy on the expression of vasoactive intestinal peptide

机译:成年人成年交感神经节的表型可塑性:脱除咖啡因和轴突切开术对血管活性肠肽表达的影响

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摘要

The expression of neurotransmitterseuromodulators in sympathetic neurons is regulated by anterograde and retrograde mechanisms. We have examined the role of such mechanisms in the regulation of the neuropeptide vasoactive intestinal peptide (VIP). The adult rat superior cervical ganglion (SCG) contains low levels of peptide-like immunoreactivity (IR) and mRNA for VIP. Some VIP-IR nerve processes, but only a few VIP-IR cell bodies, are detectable. Previous evidence demonstrates, however, that after the SCG is placed in organ culture for 48 hr, the level of VIP-IR and VIP mRNA and the number of VIP-IR cell bodies and fibers increase considerably. Two of the possible causes for these changes in peptide expression in sympathetic neurons are deafferentation and axotomy, both of which occur when the SCG is placed in culture. To determine the importance of deafferentation, the preganglionic cervical sympathetic trunk was cut and the ganglion left in situ. Forty-eight hours later, VIP-IR increased twofold. A corresponding increase in the number of VIP-IR nerve processes was seen, but there was no detectable change in the number of VIP-IR cell bodies. The content of VIP/PHI mRNA also increased by 1.8-fold. The effect of axotomy on VIP-IR was examined by cutting the postganglionic internal and external carotid nerves and leaving the ganglion in situ. Forty-eight hours later, the level of VIP-IR increased 22-fold, many immunostained neurons were found, and the content of VIP mRNA increased over fivefold. After either deafferentation or axotomy, changes in VIP- IR were accompanied by comparable changes in the related molecule peptide histidine isoleucine amide (PHI)-IR. Neuropeptide Y-IR, on the other hand, decreased after deafferentation and increased only twofold after axotomy. The results indicate plasticity in the expression of VIP- and PHI-IR in adult sympathetic neurons in vivo, and suggest that the changes previously seen in organ culture were primarily a response to axotomy.
机译:交感神经元和逆行机制调节交感神经元中神经递质/神经调节剂的表达。我们已经检查了这种机制在调节神经肽血管活性肠肽(VIP)中的作用。成年大鼠上颈神经节(SCG)含有低水平的VIP肽样免疫反应性(IR)和mRNA。可以检测到一些VIP-IR神经过程,但只有少数VIP-IR细胞体。但是,先前的证据表明,将SCG置于器官培养物中48小时后,VIP-IR和VIP mRNA的水平以及VIP-IR细胞体和纤维的数量大大增加。交感神经元中肽表达发生这些变化的两个可能原因是脱咖啡因和轴突切开术,这两种情况都发生在将SCG置于培养物中时。为了确定去力的重要性,切开了神经节前颈交感神经干并将神经节留在原位。 48小时后,VIP-IR增加了两倍。看到VIP-IR神经过程的数量相应增加,但是VIP-IR细胞体的数量没有可检测到的变化。 VIP / PHI mRNA的含量也增加了1.8倍。通过切断神经节后内部和外部颈总神经并将神经节留在原位,检查了轴切对VIP-IR的影响。 48小时后,VIP-1R的水平增加了22倍,发现了许多免疫染色的神经元,并且VIP mRNA的含量增加了5倍以上。脱除咖啡因或轴切后,VIP-IR的变化伴随着相关分子肽组氨酸异亮氨酸酰胺(PHI)-IR的可比变化。另一方面,神经肽Y-IR在脱除咖啡因后减少,而在切开后仅增加两倍。结果表明体内成年交感神经元中VIP-和PHI-IR的表达具有可塑性,并且表明以前在器官培养物中看到的变化主要是对轴切术的反应。

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