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首页> 外文期刊>European journal of cardio-thoracic surgery: Official journal of the European Association for Cardio-thoracic Surgery >Distribution of adrenergic and cholinergic nerve fibres within intrinsic nerves at the level of the human heart hilum
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Distribution of adrenergic and cholinergic nerve fibres within intrinsic nerves at the level of the human heart hilum

机译:肾上腺素能和胆碱能神经纤维在人心脏内水平内在神经中的分布

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摘要

OBJECTIVES: The disbalance between adrenergic (sympathetic) and cholinergic (parasympathetic) cardiac inputs facilitates cardiac arrhythmias, including the lethal ones. In spite of the fact that the morphological pattern of the epicardiac ganglionated subplexuses (ENsubP) has been previously described in detail, the distribution of functionally distinct axons in human intrinsic nerves was not investigated thus far. Therefore, the aim of the present study was to quantitatively evaluate the distribution of tyrosine hydroxylase (TH)- and choline acetyltransferase (ChAT)-positive axons within intrinsic nerves at the level of the human heart hilum (HH), since they are of pivotal importance for determining proper treatment options for different arrhythmias. METHODS: Tissue samples containing the intrinsic nerves from seven epicardiac subplexuses were obtained from nine human hearts without cardiac pathology and processed for immunofluorescent detection of TH and ChAT. The nerve area was measured and the numbers of axons were counted using microphotographs of nerve profiles. The densities of fibres were extrapolated and compared between subplexuses. RESULTS: ChAT-immunoreactive (IR) fibres were evidently predominant (56%) in nerves of dorsal (DRA) and ventral right atrial (VRA) ENsubP. Within both left (LC) and right coronary ENsubP, the most abundant (70.9 and 83.0%, respectively) were TH-IR axons. Despite subplexal dependence, ChAT-IR fibres prevailed in comparatively thinner nerves, whereas TH-IR fibres in thicker ones. Morphometry showed that at the level of HH: (i) LC subplexal nerves were found to be the thickest (25 737 ± 4131 μm2) ones, whereas the thinnest (2604 ± 213 μm2) nerves concentrated in DRA ENsubP; (ii) the density of ChAT-IR axons was highest (6.8 ± 0.6/100 μm2) in the ventral left atrial nerves and lowest (3.2 ± 0.1/100 μm2) in left dorsal ENsubP and (iii) the density of TH-IR fibres was highest (15.9 ± 2.1/100 μm2) in LC subplexal nerves and lowest (4.4 ± 0.3/100 μm2) in VRA nerves. CONCLUSIONS: (i) The principal intrinsic adrenergic neural pathways in the human heart proceed via both coronary ENsubP that supply cardiac ventricles and (ii) the majority of cholinergic nerve fibres access the human heart through DRA and VRA ENsubP and extend towards the right atrium, including the region of the sinuatrial node.
机译:目的:肾上腺素能(交感神经)和胆碱能(副交感神经)之间的失衡会促进包括致死性的心律不齐。尽管先前已详细描述了心外膜神经节丛(ENsubP)的形态学模式,但迄今为止,尚未研究功能不同的轴突在人固有神经中的分布。因此,本研究的目的是定量评估人心肺(HH)水平上内在神经中酪氨酸羟化酶(TH)和胆碱乙酰转移酶(ChAT)阳性轴突的分布确定不同心律失常的正确治疗选择的重要性。方法:从9例无心脏病理的人心脏中获得含有7个心外膜下丛的内在神经的组织样品,并进行免疫荧光检测TH和ChAT。测量神经区域并使用神经轮廓的显微照片计数轴突的数目。外推纤维的密度,并在亚丛之间进行比较。结果:ChAT免疫反应性(IR)纤维明显在背侧(DRA)和腹侧右房(VRA)ENsubP神经中占主导地位(> 56%)。在左(LC)和右冠状动脉ENsubP中,最丰富的(分别为70.9%和83.0%)是TH-IR轴突。尽管有亚神经依赖性,但ChAT-IR纤维在较细的神经中占优势,而TH-IR纤维在较粗的神经中占优势。形态计量学表明,在HH水平:(i)发现LC丛下神经最厚(25 737±4131μm2),而最薄(2604±213μm2)的神经集中在DRA ENsubP中。 (ii)左房神经的ChAT-IR轴突密度最高(6.8±0.6 / 100μm2),而左背ENsubP的ChAT-IR轴突密度最低(3.2±0.1 / 100μm2),以及(iii)TH-IR密度LC下丛神经纤维最高(15.9±2.1 / 100μm2),VRA神经最低(4.4±0.3 / 100μm2)。结论:(i)人心脏中主要的内在肾上腺素能神经通路通过供应心室的冠状动脉ENsubP进行,并且(ii)大多数胆碱能神经纤维通过DRA和VRA ENsubP进入人心并延伸至右心房,包括窦房结区域。

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