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Quantifica??o dos neur?nios do plexo mientérico de morcegos da espécie Molossus rufus

机译:巨蟹座的定量巨变巨变鲁福斯

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There are no studies that characterize the enteric nervous system (ENS) bats. The organization and density of myenteric neurons may vary according to the animal species, as well as the segment of the digestive tube considered. The nitric oxide is one of the key neurotransmitters present in the myenteric neurons, acting as a mediator in the smooth muscle relaxation. These neurons are evidenced by immunohistochemistry of nitric oxide synthase (NOS) or by NADPH-diaphorase histochemistry. In this sense, this study aimed to characterize the total neuronal population and subpopulation NADPH-d+ of the myenteric plexus present in the jejunum of the insectivore species Molossus rufus quantitatively. Five specimens were collected of M. rufus in a buffer area of the “Reserva Biológica das Perobas” in the microregion of Cianorte/PR. After the euthanasia, in a chamber saturated with isoflurane, segments were collected from the small intestine corresponding to the jejunum intended for two techniques for neuronal marking, Giemsa and NADPH-diaphorase, and a fragment to the histological technique of hematoxylin-eosin and Masson’s trichrome. All the procedures were approved by the “Comitê de ética no Uso de Animais Unipar” (CEUA - protocol No. 34347/2017) and the “Instituto Chico Mendes de Conserva??o da Biodiversidade” (ICMBio - protocol No. 60061-1) The histological sections allowed to highlight the location of the myenteric plexus between the longitudinal and circular layers of the muscular tunic. The myenteric plexus had an average of total neuronal population (neurons Giemsa+) of 279.23 neurons/mm2, being the nitrergic neurons (neurons NADPH-d+) represented 20.4% of this total population, with an average of 58.14 neuron/mm2. Therefore, the collected data are consistent with previous studies in other mammalian species concerning the location of the myenteric plexus, as well as the neural myenteric proportion NADPH-d+ compared with the population of neurons Giemsa+. The gaps in the knowledge of ENS of bats limits comparative intraspecific and interspecific studies.
机译:没有研究表征肠道神经系统(ENS)蝙蝠。神经元神经元的组织和密度可根据动物物种而变化,以及考虑的消化管的区段。一氧化氮是神经元中存在的关键神经递质之一,作为平滑肌松弛中的介体作用。这些神经元通过免疫组织化学来证明一氧化氮合酶(NOS)或NADPH-透明酶组织化学。从这个意义上讲,本研究旨在表征定量神经疱疹鲁福斯的Jejunum中存在的神经元群体和亚贫民Nadph-D +。在Cianorte / Pr的微型引用中,在“储库Biológicadas perobas”的缓冲区域中收集5个样品。在Euthanasia在饱和异氟醚饱和的腔室中,从对应于Jejunum的小肠收集段,所述Jejunum用于两种神经元标记,Giemsa和Nadph-透明酶的技术,以及血毒素 - 嗜素和Masson richrome的组织学技术的片段。所有程序均由“Comitêdeéticano uso deviancais Unipar”(Ceua - 议定书第34347/2017号)和“Instituto Chico Mendes de Sencya ?? O Da Biodersidade”(ICMBIO - 议定书第60061-1 )组织学部分允许突出肌腱室的纵向和圆形层之间的神经聚集体的位置。神经元丛具有279.23神经元/ mm2的全神经元群(神经元Giemsa +)的平均值,是氮的神经元(神经元Nadph-d +)表示该总群的20.4%,平均为58.14神经元/ mm2。因此,收集的数据与先前关于神经丛位置的其他哺乳动物物种的研究一致,以及与神经元Giemsa +的群体相比,神经元丛的其他哺乳动物的研究以及神经元化比例。蝙蝠症知识中的差距限制了比较的惯性和三种研究。

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