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克氏综合征的睾丸微血管不成熟,完整性受损,其特征是过度的炎症交叉对话。

The testicular microvasculature in Klinefelter syndrome is immature with compromised integrity and characterized by excessive inflammatory cross-talk.

机构信息

Department of Molecular Medicine, Aarhus University Hospital, Aarhus N, Denmark.

Department of Clinical Medicine, Aarhus University, Aarhus N, Denmark.

出版信息

Hum Reprod. 2023 Dec 4;38(12):2339-2349. doi: 10.1093/humrep/dead224.

Abstract

STUDY QUESTION

Does Klinefelter syndrome (KS) lead to a distinct gene expression pattern at single-cell level in the testes that could provide insight into the reported microvascular dysfunction in the testes?

SUMMARY ANSWER

A distinct gene expression pattern within microvascular-associated cells of males with KS suggests excessive endothelial cell (EC) activation, disorganized vessel formation, and the presence of immature vessels with compromised integrity.

WHAT IS KNOWN ALREADY

Recent studies show that males with KS exhibit microvascular dysfunction in their testes, which affects blood flow and is associated with lower circulating levels of testosterone.

STUDY DESIGN, SIZE, DURATION: A comparative cross-sectional study of males with KS (n = 6), non-obstructive azoospermia (NOA) (n = 5), cryptozoospermia (n = 3), and controls (n = 15) was carried out.

PARTICIPANTS/MATERIALS, SETTING, METHODS: We analyzed publicly available single-cell RNA sequencing data of testicular cells from males with KS, males with NOA, males with cryptozoospermia, and controls. The integration of these datasets allowed us to analyze gene expression profiles and communication patterns among the cell types within the testis and to identify capillary ECs to investigate changes at the microvascular level.

MAIN RESULTS AND THE ROLE OF CHANCE

Rooted in changes at the single-cell level, our study demonstrates a shift in gene expression forming the foundation for altered cellular communication, microvascular remodeling, and pro-inflammatory responses within the testes of males with KS. We identified genes that were dysregulated in capillary ECs from males with KS (Padj < 0.05). Specifically, the unique microvascular gene expression in males with KS indicated enhanced capillary EC activation and increased inflammatory cross-talk, leading to impaired vessel maturation and increased EC barrier permeability.

LIMITATIONS, REASONS FOR CAUTION: Our study is constrained by an unbalanced design, with varying sample sizes and number of cells within each group. We acknowledge the restricted access to clinical information. In addition, our findings were deduced from changes in gene expression, which limits us to infer potential biological consequences arising from these alterations. Furthermore, the absence of a pre-pubertal age group limits the generalizability of our findings and warrants further investigation.

WIDER IMPLICATIONS OF THE FINDINGS

This study offers novel insights into the testicular pathophysiology in KS and underscores the potential contribution of microvascular dysfunction to the hypogonadism and infertility observed in males with KS. While this study aims to better understand the microvascular dysfunction in KS, the precise connections to testosterone deficiency and testicular atrophy remain to be fully elucidated.

STUDY FUNDING/COMPETING INTEREST(S): A.S. was supported by the Independent Research Fund Denmark (0134-00130B). C.H.G. was supported by Novo Nordisk Foundation (NNF15OC0016474, NNF20OC0060610), 'Fonden til lægevidenskabens fremme', the Familien Hede Nielsen foundation and the Independent Research Fund Denmark (0134-00406A). E.B.J. was supported by Aarhus University and E.B.J. and C.H.G by the Independent Research Fund Denmark (2096-00165A). J.M.K. was supported by Lundbeckfonden (R307-2018-3667), Carlsberg Fonden (CF19-0687), Novo Nordisk Fonden (0073440) and Steno Diabetes Center Aarhus (SDCA). The authors declare no conflicts of interest.

TRIAL REGISTRATION NUMBER

N/A.

摘要

研究问题

克氏综合征(KS)是否会导致睾丸内的微血管相关细胞在单细胞水平上出现独特的基因表达模式,从而深入了解睾丸内报道的微血管功能障碍?

总结答案

KS 男性的微血管相关细胞内存在独特的基因表达模式,表明内皮细胞(EC)过度激活、血管形成紊乱以及存在完整性受损的不成熟血管。

已知情况

最近的研究表明,KS 男性的睾丸存在微血管功能障碍,这会影响血流,与循环睾酮水平降低有关。

研究设计、规模、持续时间:对 6 名 KS 男性(KS 组)、5 名非梗阻性无精子症(NOA)男性、3 名隐匿性精子症男性和 15 名对照男性进行了一项比较性横断面研究。

参与者/材料、设置、方法:我们分析了来自 KS 男性、NOA 男性、隐匿性精子症男性和对照男性的睾丸单细胞 RNA 测序数据的公共可用数据集。这些数据集的整合使我们能够分析细胞类型内的基因表达谱和通信模式,并鉴定毛细血管 EC,以研究微脉管水平的变化。

主要结果和机会的作用

以单细胞水平的变化为基础,我们的研究表明,KS 男性的睾丸内基因表达发生转变,为细胞间通讯改变、微血管重塑和促炎反应奠定了基础。我们鉴定了 KS 男性毛细血管 EC 中失调的基因(Padj < 0.05)。具体而言,KS 男性独特的微血管基因表达表明毛细血管 EC 激活增强,炎症交叉对话增加,导致血管成熟受损和 EC 屏障通透性增加。

局限性、谨慎的原因:我们的研究受到不平衡设计的限制,每组的样本量和细胞数量不同。我们承认对临床信息的获取有限。此外,我们的发现是从基因表达的变化中推断出来的,这限制了我们从这些改变中推断出潜在的生物学后果。此外,缺乏青春期前年龄组限制了我们发现的普遍性,并需要进一步研究。

研究结果的更广泛影响

这项研究为 KS 睾丸生理学提供了新的见解,并强调了微血管功能障碍可能导致 KS 男性出现性腺功能减退和不育。虽然这项研究旨在更好地理解 KS 中的微血管功能障碍,但睾酮缺乏和睾丸萎缩的确切联系仍有待充分阐明。

研究资金/竞争利益:A.S. 得到了丹麦独立研究基金会(0134-00130B)的支持。C.H.G. 得到了诺和诺德基金会(NNF15OC0016474、NNF20OC0060610)、“Fonden til lægevidenskabens fremme”、Familien Hede Nielsen 基金会和丹麦独立研究基金会(0134-00406A)的支持。E.B.J. 得到了奥胡斯大学的支持,E.B.J. 和 C.H.G. 得到了丹麦独立研究基金会(2096-00165A)的支持。J.M.K. 得到了隆德贝克基金会(R307-2018-3667)、嘉士伯基金会(CF19-0687)、诺和诺德基金会(0073440)和奥胡斯圣多玛斯糖尿病中心(SDCA)的支持。作者声明没有利益冲突。

试验注册编号

无。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6718/10694403/eb5fbaceb44e/dead224f1.jpg

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