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人脉络膜中有 Urocortin 阳性神经纤维和细胞。

Urocortin-positive nerve fibres and cells are present in the human choroid.

机构信息

Center for Anatomy and Cell Biology, Institute of Anatomy and Cell Biology - Salzburg, Paracelsus Medical University, Salzburg, Austria.

Department of Ophthalmology and Optometry, Paracelsus Medical University, Salzburg, Salzburg, Austria.

出版信息

Br J Ophthalmol. 2023 Oct;107(10):1575-1582. doi: 10.1136/bjophthalmol-2021-320697. Epub 2022 Feb 25.

Abstract

BACKGROUND

Choroidal vascular regulation is mediated by the autonomic nervous system in order to gain proper blood flow control. While the mechanisms behind this control are unknown, neuroregulatory peptides are involved in this process. To better understand choroidal function, we investigate the presence of urocortin-1 (UCN), a neuroregulatory peptide with vascular effects, in the human choroid and its possible intrinsic and extrinsic origin.

METHODS

Human choroid and eye-related cranial ganglia (superior cervical ganglion- SCG, ciliary ganglion-CIL, pterygopalatine ganglion-PPG, trigeminal ganglion-TRI) were prepared for immunohistochemistry against UCN, protein-gene product 9.5 (PGP9.5), substance P (SP), tyrosine hydroxylase (TH) and vesicular acetylcholine transporter (VAChT). For documentation, confocal laser scanning microscopy was used.

RESULTS

In choroidal stroma, UCN-immunoreactivity was present in nerve fibres, small cells and intrinsic choroidal neurons (ICN). Some UCN+ nerve fibres colocalised for VAChT, while others were VAChT. A similar situation was found with SP: some UCN+ nerve fibres showed colocalisation for SP, while others lacked SP. Colocalisation for UCN and TH was not observed. In eye-related cranial ganglia, only few cells in the SCG, PPG and TRI were UCN+, while many cells of the CIL displayed weak UCN immunoreactivity.

CONCLUSION

UCN is part of the choroidal innervation. UCN+/VAChT+ fibres could derive from the few cells of the PPG or cells of the CIL, if these indeed supply the choroid. UCN+/SP+ fibres might originate from ICN, or the few UCN+ cells detected in the TRI. Further studies are necessary to establish UCN function in the choroid and its implication for choroidal autonomic control.

摘要

背景

脉络膜的血管调节是通过自主神经系统来实现的,目的是获得适当的血流控制。虽然这种控制的机制尚不清楚,但神经调节肽参与了这个过程。为了更好地了解脉络膜的功能,我们研究了 UCN-1(一种具有血管作用的神经调节肽)在人脉络膜中的存在及其可能的内在和外在起源。

方法

为了进行 UCN、蛋白基因产物 9.5(PGP9.5)、P 物质(SP)、酪氨酸羟化酶(TH)和囊泡乙酰胆碱转运体(VAChT)的免疫组织化学染色,我们准备了人脉络膜和眼相关颅神经节(颈上神经节-SCG、睫状神经节-CIL、翼腭神经节-PPG、三叉神经节-TRI)。为了记录,我们使用了共聚焦激光扫描显微镜。

结果

在脉络膜基质中,UCN 免疫反应性存在于神经纤维、小细胞和内在脉络膜神经元(ICN)中。一些 UCN+神经纤维与 VAChT 共定位,而另一些则没有。SP 也存在类似的情况:一些 UCN+神经纤维显示出与 SP 的共定位,而另一些则没有 SP。没有观察到 UCN 与 TH 的共定位。在眼相关颅神经节中,只有 SCG、PPG 和 TRI 中的少数细胞 UCN+,而 CIL 中的许多细胞则显示出微弱的 UCN 免疫反应性。

结论

UCN 是脉络膜神经支配的一部分。UCN+/VAChT+纤维可能来自 PPG 的少数细胞或 CIL 的细胞,如果这些细胞确实供应脉络膜的话。UCN+/SP+纤维可能起源于 ICN,或在 TRI 中检测到的少数 UCN+细胞。需要进一步的研究来确定 UCN 在脉络膜中的功能及其对脉络膜自主控制的影响。

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