Faculté de Médecine, Université Paris-Saclay, Le Kremlin-Bicêtre, France.
INSERM UMR_S 999, Hypertension pulmonaire: Physiopathologie et Innovation Thérapeutique, Hôpital Marie Lannelongue, Le Plessis-Robinson, France.
Am J Physiol Lung Cell Mol Physiol. 2023 Aug 1;325(2):L246-L261. doi: 10.1152/ajplung.00011.2023. Epub 2023 Jun 27.
Pulmonary arterial hypertension (PAH) is due to progressive distal pulmonary artery (PA) obstruction, leading to right ventricular hypertrophy and failure. Exacerbated store-operated Ca entry (SOCE) contributes to PAH pathogenesis, mediating human PA smooth muscle cell (hPASMC) abnormalities. The transient receptor potential canonical channels (TRPC family) are Ca-permeable channels contributing to SOCE in different cell types, including PASMCs. However, the properties, signaling pathways, and contribution to Ca signaling of each TRPC isoform are unclear in human PAH. We studied in vitro the impact of TRPC knockdown on control and PAH-hPASMCs function. In vivo, we analyzed the consequences of pharmacological TRPC inhibition using the experimental model of pulmonary hypertension (PH) induced by monocrotaline (MCT) exposure. Compared with control-hPASMCs cells, in PAH-hPASMCs, we found a decreased TRPC4 expression, overexpression of TRPC3 and TRPC6, and unchanged TRPC1 expression. Using the siRNA strategy, we found that the knockdown of TRPC1-C3-C4-C6 reduced the SOCE and the proliferation rate of PAH-hPASMCs. Only TRPC1 knockdown decreased the migration capacity of PAH-hPASMCs. After PAH-hPASMCs exposure to the apoptosis inducer staurosporine, TRPC1-C3-C4-C6 knockdown increased the percentage of apoptotic cells, suggesting that these channels promote apoptosis resistance. Only TRPC3 function contributed to exacerbated calcineurin activity. In the MCT-PH rat model, only TRPC3 protein expression was increased in lungs compared with control rats, and in vivo "curative" administration of a TRPC3 inhibitor attenuated PH development in rats. These results suggest that TRPC channels contribute to PAH-hPASMCs dysfunctions, including SOCE, proliferation, migration, and apoptosis resistance, and could be considered as therapeutic targets in PAH. TRPC3 is increased in human and experimental pulmonary arterial hypertension (PAH). In PAH pulmonary arterial smooth muscle cells, TRPC3 participates in the aberrant store-operated Ca entry contributing to their pathological cell phenotypes (exacerbated proliferation, enhanced migration, apoptosis resistance, and vasoconstriction). Pharmacological in vivo inhibition of TRPC3 reduces the development of experimental PAH. Even if other TRPC acts on PAH development, our results prove that TRPC3 inhibition could be considered as an innovative treatment for PAH.
肺动脉高压(PAH)是由于远端肺动脉(PA)进行性阻塞导致右心室肥厚和衰竭所致。加剧的储存操作钙进入(SOCE)有助于 PAH 的发病机制,介导人肺动脉平滑肌细胞(hPASMC)异常。瞬时受体电位经典通道(TRPC 家族)是在不同细胞类型中导致 SOCE 的钙渗透性通道,包括 PASMCs。然而,在人 PAH 中,每个 TRPC 同工型的特性、信号通路和对 Ca 信号的贡献尚不清楚。我们在体外研究了 TRPC 敲低对对照和 PAH-hPASMC 功能的影响。在体内,我们使用单克隆毒素(MCT)暴露诱导的肺动脉高压(PH)实验模型分析了药理学 TRPC 抑制的后果。与对照-hPASMCs 细胞相比,在 PAH-hPASMCs 中,我们发现 TRPC4 表达减少,TRPC3 和 TRPC6 过表达,TRPC1 表达不变。使用 siRNA 策略,我们发现 TRPC1-C3-C4-C6 的敲低减少了 SOCE 和 PAH-hPASMCs 的增殖率。只有 TRPC1 的敲低降低了 PAH-hPASMCs 的迁移能力。在 PAH-hPASMCs 暴露于凋亡诱导剂 staurosporine 后,TRPC1-C3-C4-C6 的敲低增加了凋亡细胞的百分比,表明这些通道促进了凋亡抵抗。只有 TRPC3 功能有助于加剧钙调神经磷酸酶活性。在 MCT-PH 大鼠模型中,与对照大鼠相比,只有肺中的 TRPC3 蛋白表达增加,体内“治疗性”给予 TRPC3 抑制剂可减轻大鼠 PH 的发展。这些结果表明,TRPC 通道有助于 PAH-hPASMCs 的功能障碍,包括 SOCE、增殖、迁移和凋亡抵抗,并且可以被视为 PAH 的治疗靶点。TRPC3 在人及实验性肺动脉高压(PAH)中增加。在 PAH 肺动脉平滑肌细胞中,TRPC3 参与了异常的储存操作钙进入,有助于它们的病理细胞表型(加剧的增殖、增强的迁移、凋亡抵抗和血管收缩)。体内药理学 TRPC3 抑制可减少实验性 PAH 的发展。即使其他 TRPC 作用于 PAH 的发展,我们的结果证明 TRPC3 抑制可被视为 PAH 的一种创新治疗方法。