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一氧化氮合酶系统产生的一氧化氮在心血管器官间相互作用中的意义。

Significance of nitric oxide derived from the nitric oxide synthases system in cardiovascular interorgan crosstalk.

作者信息

Tsutsui Masato, Yatera Kazuhiro

机构信息

Department of Pharmacology, Graduate School of Medicine, University of the Ryukyus, Okinawa, Japan.

Department of Respiratory Medicine, School of Medicine, University of Occupational and Environmental Health, Japan, Kitakyushu, Japan.

出版信息

J Pharmacol Exp Ther. 2025 Feb;392(2):100025. doi: 10.1124/jpet.124.002222. Epub 2024 Nov 22.

Abstract

Interorgan crosstalk contributes to the pathogenesis of various disorders, and drug development based on interorgan crosstalk is attracting attention. The roles of nitric oxide (NO) derived from the NO synthases system (NOSs) in interorgan crosstalk remain unclear. We have investigated this issue by using our mice deficient in all 3 NOSs (triple n/i/eNOSs mice). We reported that 2/3 nephrectomized triple n/i/eNOSs mice die suddenly because of the early onset of myocardial infarction, suggesting the protective role of NO derived from NOSs in the crosstalk between the kidney and the heart. We studied the role of NO derived from NOSs expressed in the bone marrow in vascular lesion formation. Constrictive arterial remodeling and neointimal formation following unilateral carotid artery ligation were prominently aggravated in wild-type mice transplanted with triple n/i/eNOSs bone marrow cells as compared with those with wild-type bone marrow cells, suggesting the protective role of NO derived from NOSs in the crosstalk between the bone marrow and the blood vessel. We further investigated the role of NO derived from NOSs expressed in the bone marrow in pulmonary hypertension. The extent of pulmonary hypertension after chronic hypoxic exposure was markedly exacerbated in wild-type mice that underwent triple n/i/eNOSs bone marrow transplantation as compared with those that underwent wild-type bone marrow transplantation, suggesting the protective role of NO derived from NOSs in the crosstalk between the bone marrow and the lung. These lines of evidence demonstrate that systemic and myelocytic NOSs could be novel therapeutic targets for myocardial infarction, vascular disease, and pulmonary hypertension. SIGNIFICANCE STATEMENT: This study demonstrated partial nephrectomy accelerates the occurrence of myocardial infarction induced by systemic NOSs deficiency in triple n/i/eNOSs mice, that myelocytic NOSs deficiency aggravates vascular lesion formation after unilateral carotid artery ligation, and that myelocytic NOSs deficiency exacerbates chronic hypoxia-induced pulmonary hypertension. These results suggest that NO derived from NOSs plays a protective role in cardiovascular interorgan crosstalk, indicating that systemic and myelocytic NOSs could be important therapeutic targets for myocardial infarction, vascular disease, and pulmonary hypertension.

摘要

器官间的相互作用参与了多种疾病的发病机制,基于器官间相互作用的药物研发正受到关注。一氧化氮合酶系统(NOSs)产生的一氧化氮(NO)在器官间相互作用中的作用尚不清楚。我们通过使用全部三种NOS基因缺失的小鼠(三基因敲除n/i/eNOSs小鼠)来研究这个问题。我们报道,2/3肾切除的三基因敲除n/i/eNOSs小鼠因心肌梗死的早期发作而突然死亡,这表明NOSs产生的NO在肾脏和心脏之间的相互作用中具有保护作用。我们研究了骨髓中表达的NOSs产生的NO在血管病变形成中的作用。与移植野生型骨髓细胞的野生型小鼠相比,移植三基因敲除n/i/eNOSs骨髓细胞的野生型小鼠在单侧颈动脉结扎后,动脉狭窄性重塑和新生内膜形成明显加重,这表明NOSs产生的NO在骨髓和血管之间的相互作用中具有保护作用。我们进一步研究了骨髓中表达的NOSs产生的NO在肺动脉高压中的作用。与接受野生型骨髓移植的野生型小鼠相比,接受三基因敲除n/i/eNOSs骨髓移植的野生型小鼠在慢性低氧暴露后的肺动脉高压程度明显加重,这表明NOSs产生的NO在骨髓和肺之间的相互作用中具有保护作用。这些证据表明,全身和骨髓细胞的NOSs可能是心肌梗死、血管疾病和肺动脉高压的新型治疗靶点。重要声明:本研究表明,部分肾切除加速了三基因敲除n/i/eNOSs小鼠因全身NOSs缺乏而诱发的心肌梗死的发生,骨髓细胞NOSs缺乏加重了单侧颈动脉结扎后的血管病变形成,骨髓细胞NOSs缺乏加剧了慢性低氧诱导的肺动脉高压。这些结果表明,NOSs产生的NO在心血管器官间相互作用中起保护作用,表明全身和骨髓细胞的NOSs可能是心肌梗死、血管疾病和肺动脉高压的重要治疗靶点。

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