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非肾上腺素能自主神经的超微结构类型与药理类型之间缺乏相关性。

Lack of correlation between ultrastructural and pharmacological types of non-adrenergic autonomic nerves.

作者信息

Gibbins I L

出版信息

Cell Tissue Res. 1982;221(3):551-81. doi: 10.1007/BF00215701.

DOI:10.1007/BF00215701
PMID:6276003
Abstract

In order to test the premise that non-adrenergic, non-cholinergic (NANC) autonomic nerves have a distinctive ultrastructural appearance, clearly different from that of cholinergic nerves, a detailed quantitative ultrastructural analysis has been made of the non-adrenergic innervation of 15 tissues thought from pharmacological evidence to be innervated by NANC nerves (rat and rabbit anococcygeus muscles; rabbit hepatic portal vein; extrinsically denervated toad lung); cholinergic nerves (atria of rat, rabbit, guinea-pig and toad); or both (guinea-pig cervical and thoracic trachealis muscle; rabbit rectococcygeus muscle; urinary bladder of rat, rabbit, guinea-pig and toad) in addition to their adrenergic supply. Following fixation with a modified chromaffin procedure allowing identification of adrenergic nerves, large, randomly selected samples of non-adrenergic nerve profiles from each tissue were analysed with respect to numbers, relative proportions, and size frequency distributions of different vesicle classes within the profiles. The neuromuscular relationships within each tissue were also analysed. On the basis of these analyses, it is clear that there are no consistent ultrastructural differences between cholinergic and NANC autonomic nerves: neither proportions nor sizes of the vesicles provide any clue as to the transmitter used by a particular nerve. The great majority of nerve profiles, whether cholinergic or NANC, contain predominantly small clear "synaptic" vesicles. Large filled "peptidergic" vesicles are no more common in most NANC

摘要

为了验证非肾上腺素能、非胆碱能(NANC)自主神经具有独特的超微结构外观这一前提,且该外观明显不同于胆碱能神经,我们对15种组织的非肾上腺素能神经支配进行了详细的定量超微结构分析。从药理学证据来看,这些组织被认为受NANC神经支配(大鼠和兔的肛门尾骨肌;兔肝门静脉;去神经支配的蟾蜍肺);胆碱能神经(大鼠、兔、豚鼠和蟾蜍的心房);或两者皆有(豚鼠颈段和胸段气管肌;兔直肠尾骨肌;大鼠、兔、豚鼠和蟾蜍的膀胱),此外还有它们的肾上腺素能供应。在用改良的嗜铬细胞法固定后,可识别肾上腺素能神经,然后对每个组织中大量随机选取的非肾上腺素能神经轮廓样本进行分析,包括轮廓内不同囊泡类别的数量、相对比例和大小频率分布。还分析了每个组织内的神经肌肉关系。基于这些分析,很明显胆碱能和NANC自主神经之间不存在一致的超微结构差异:囊泡的比例和大小都无法为特定神经所使用的递质提供任何线索。绝大多数神经轮廓,无论是胆碱能还是NANC的,主要都含有小的清亮“突触”囊泡。大的充满“肽能”的囊泡在大多数NANC中并不更常见

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本文引用的文献

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