TRPV4通道对集淋巴管收缩功能的调节。

IF 7.4 1区 医学 Q1 HEMATOLOGY
Mary E Schulz, Victoria L Akerstrom, Kejing Song, Sarah E Broyhill, Min Li, Michelle D Lambert, Tatia B Goldberg, Raghu P Kataru, Jinyeon Shin, Stephen E Braun, Charles E Norton, Rafael S Czepielewski, Babak J Mehrara, Timothy L Domeier, Scott D Zawieja, Jorge A Castorena-Gonzalez
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引用次数: 0

摘要

背景:TRPV4(瞬时受体电位香草样蛋白4)介导的信号传导失调与炎症和组织纤维化有关,这两者都是淋巴系统疾病病理生理的关键特征;然而,淋巴TRPV4通道的表达和功能作用在很大程度上仍未被探索。方法:我们从收集淋巴管的微解剖小鼠中生成单细胞RNA测序数据集,以表征Trpv4的表达。利用一种新的Trpv4fx/fx小鼠品系和cre系Prox1-CreERT2和LysM-Cre,我们分别评估了TRPV4通道在淋巴内皮细胞和淋巴周围髓样细胞中的作用。共聚焦显微镜和广泛的功能实验分离和加压淋巴管,包括测量细胞内钙活性,用来验证我们的单细胞RNA测序结果,并阐明潜在的机制。通过乳腺癌相关淋巴水肿患者的活检评估临床意义。结果:采集淋巴管及周围组织的单细胞转录组特征。Trpv4在淋巴内皮细胞和Lyve1+(淋巴管内皮透明质酸受体1)巨噬细胞亚群中高度富集,显示组织驻留谱。在临床样本中,乳腺癌相关淋巴水肿与共表达LYVE1和TRPV4的巨噬细胞浸润增加有关。TRPV4通道的药理激活导致离体收集淋巴的收缩失调。反应是多相的,包括最初的血管痉挛和随后的血管舒张和收缩抑制,这与淋巴肌细胞中的TXA2Rs(血栓素A2受体)被TRPV4+髓样细胞分泌的前列腺素激活和淋巴内皮细胞中一氧化氮(可能还有其他血管舒张前列腺素)的增加有关。txa2r介导的血管痉挛是由于细胞内储存的钙通过肌醇三磷酸受体和储存操作的钙进入而增加的动员。结论:我们的研究结果揭示了一种由表达trpv4的骨髓细胞(包括LYVE1+巨噬细胞)与淋巴肌肉细胞或淋巴内皮细胞之间的串扰介导的淋巴收缩失调的新机制。这些发现强调了TRPV4通道在炎症相关淋巴功能障碍(包括继发性淋巴水肿)中的潜在重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of Collecting Lymphatic Vessel Contractile Function by TRPV4 Channels.

Background: Dysregulation of TRPV4 (transient receptor potential vanilloid type 4)-mediated signaling has been associated with inflammation and tissue fibrosis, both of which are key features in the pathophysiology of lymphatic system diseases; however, the expression and functional roles of lymphatic TRPV4 channels remain largely unexplored.

Methods: We generated a single-cell RNA sequencing dataset from microdissected mouse collecting lymphatic vessels to characterize the expression of Trpv4. Using a novel Trpv4fx/fx mouse strain and the Cre-lines Prox1-CreERT2 and LysM-Cre we assessed the role of TRPV4 channels in lymphatic endothelial cells and peri-lymphatic myeloid cells, respectively. Confocal microscopy and extensive functional experimentation on isolated and pressurized lymphatics, including measurements of intracellular calcium activity, were used to validate our single-cell RNA sequencing findings and to elucidate the underlying mechanisms. Clinical significance was assessed using biopsies from patients with breast cancer-related lymphedema.

Results: We characterized the single-cell transcriptome of collecting lymphatic vessels and surrounding tissues. Trpv4 was highly enriched in lymphatic endothelial cells and in a subset of Lyve1+ (lymphatic vessel endothelial hyaluronan receptor 1) macrophages displaying a tissue-resident profile. In clinical samples, breast cancer-related lymphedema was associated with increased infiltration of macrophages coexpressing LYVE1 and TRPV4. Pharmacological activation of TRPV4 channels led to contractile dysregulation in isolated collecting lymphatics. The response was multiphasic, including initial vasospasm and subsequent vasodilation and inhibition of contractions, which was associated with the activation of TXA2Rs (thromboxane A2 receptors) in lymphatic muscle cells by secreted prostanoids from TRPV4+ myeloid cells, and increased nitric oxide (and perhaps other vasodilatory prostanoids) from lymphatic endothelial cells. The TXA2R-mediated vasospasm resulted from increased mobilization of calcium from intracellular stores through inositol trisphosphate receptors and store-operated calcium entry.

Conclusions: Our results uncovered a novel mechanism of lymphatic contractile dysregulation mediated by the crosstalk between TRPV4-expressing myeloid cells, including LYVE1+ macrophages, and lymphatic muscle cells or lymphatic endothelial cells. These findings highlight potentially important roles of TRPV4 channels in lymphatic dysfunction associated with inflammation, including secondary lymphedema.

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来源期刊
CiteScore
15.60
自引率
2.30%
发文量
337
审稿时长
2-4 weeks
期刊介绍: The journal "Arteriosclerosis, Thrombosis, and Vascular Biology" (ATVB) is a scientific publication that focuses on the fields of vascular biology, atherosclerosis, and thrombosis. It is a peer-reviewed journal that publishes original research articles, reviews, and other scholarly content related to these areas. The journal is published by the American Heart Association (AHA) and the American Stroke Association (ASA). The journal was published bi-monthly until January 1992, after which it transitioned to a monthly publication schedule. The journal is aimed at a professional audience, including academic cardiologists, vascular biologists, physiologists, pharmacologists and hematologists.
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