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Kv2.1 通道可防止血管运动并保护大鼠小脑上动脉的肌源性反应。

Kv2.1 Channels Prevent Vasomotion and Safeguard Myogenic Reactivity in Rat Small Superior Cerebellar Arteries.

机构信息

European Center of Angioscience (ECAS), Research Division Cardiovascular Physiology, Medical Faculty Mannheim, Heidelberg University, 68167 Mannheim, Germany.

Department of Physiology, N. I. Pirogov Russian National Research Medical University, 117997 Moscow, Russia.

出版信息

Cells. 2023 Aug 2;12(15):1989. doi: 10.3390/cells12151989.

Abstract

Vascular smooth muscle voltage-gated potassium (Kv) channels have been proposed to contribute to myogenic autoregulation. Surprisingly, in initial experiments, we observed that the Kv2 channel inhibitor stromatoxin induced vasomotion without affecting myogenic tone. Thus, we tested the hypothesis that Kv2 channels contribute to myogenic autoregulation by fine-tuning the myogenic response. Expression of Kv2 channel mRNA was determined using real-time PCR and 'multiplex' single-cell RT-PCR. Potassium currents were measured using the patch-clamp technique. Contractile responses of intact arteries were studied using isobaric myography. Expression of Kv2.1 but not Kv2.2 channels was detected in intact rat superior cerebellar arteries and in single smooth muscle cells. Stromatoxin, a high-affinity inhibitor of Kv2 channels, reduced smooth muscle Kv currents by 61% at saturating concentrations (EC 36 nmol/L). Further, stromatoxin (10-100 nmol/L) induced pronounced vasomotion in 48% of the vessels studied. In vessels not exhibiting vasomotion, stromatoxin did not affect myogenic reactivity. Notably, in vessels exhibiting stromatoxin-induced vasomotion, pressure increases evoked two effects: First, they facilitated the occurrence of random vasodilations and/or vasoconstrictions, disturbing the myogenic response (24% of the vessels). Second, they modified the vasomotion by decreasing its amplitude and increasing its frequency, thereby destabilizing myogenic tone (76% of the vessels). Our study demonstrates that (i) Kv2.1 channels are the predominantly expressed Kv channels in smooth muscle cells of rat superior cerebellar arteries, and (ii) Kv2.1 channels provide a novel type of negative feedback mechanism in myogenic autoregulation by preventing vasomotion and thereby safeguarding the myogenic response.

摘要

血管平滑肌电压门控钾(Kv)通道被认为有助于血管的肌源性自身调节。令人惊讶的是,在最初的实验中,我们观察到 Kv2 通道抑制剂 stromatoxin 诱导血管运动,而不影响肌源性张力。因此,我们通过微调肌源性反应来检验 Kv2 通道有助于肌源性自身调节的假说。使用实时 PCR 和“多重”单细胞 RT-PCR 测定 Kv2 通道 mRNA 的表达。使用膜片钳技术测量钾电流。使用等压肌动描记法研究完整动脉的收缩反应。在完整的大鼠小脑上动脉和单个平滑肌细胞中检测到 Kv2.1 但不是 Kv2.2 通道的表达。stromatoxin 是 Kv2 通道的高亲和力抑制剂,在饱和浓度(EC36nmol/L)下可使平滑肌 Kv 电流减少 61%。此外,stromatoxin(10-100nmol/L)在研究的 48%的血管中引起明显的血管运动。在不表现血管运动的血管中,stromatoxin 不影响肌源性反应性。值得注意的是,在表现出 stromatoxin 诱导的血管运动的血管中,压力增加引起两种效应:首先,它们促进随机血管舒张和/或收缩的发生,扰乱肌源性反应(24%的血管)。其次,它们通过降低幅度和增加频率来改变血管运动,从而破坏肌源性张力(76%的血管)。我们的研究表明:(i)Kv2.1 通道是大鼠小脑上动脉平滑肌细胞中表达最多的 Kv 通道,(ii)Kv2.1 通道通过防止血管运动并从而保护肌源性反应,提供了肌源性自身调节的新型负反馈机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cf0/10416909/487061e89335/cells-12-01989-g001.jpg

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