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抑制性神经网络对内括约肌间质细胞内钙活性的调节。

Modulation of intracellular calcium activity in interstitial cells of Cajal by inhibitory neural pathways within the internal anal sphincter.

机构信息

Department of Physiology and Cell BiologyUniversity of NevadaRenoNevadaUnited States.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2024 Sep 1;327(3):G382-G404. doi: 10.1152/ajpgi.00309.2023. Epub 2024 Jun 11.

Abstract

The internal anal sphincter (IAS) functions to maintain continence. Previous studies utilizing mice with cell-specific expression of GCaMP6f revealed two distinct subtypes of intramuscular interstitial cells of Cajal (ICC-IM) with differing Ca activities in the IAS. The present study further examined Ca activity in ICC-IM and its modulation by inhibitory neurotransmission. The spatiotemporal properties of Ca transients in Type II ICC-IM mimicked those of smooth muscle cells (SMCs), indicating their joint participation in the "SIP" syncytium. Electrical field stimulation (EFS; atropine present) abolished localized and whole cell Ca transients in Type I and II ICC-IM. The purinergic antagonist MRS2500 did not abolish EFS responses in either cell type, whereas the nitric oxide synthase (NOS) inhibitor -nitro-l-arginine (l-NNA) abolished responses in Type I but not Type II ICC-IM. Combined antagonists abolished EFS responses in Type II ICC-IM. In both ICC-IM subtypes, the ability of EFS to inhibit Ca release was abolished by l-NNA but not MRS2500, suggesting that the nitrergic pathway directly inhibits ICC-IM by blocking Ca release from intracellular stores. Since inositol (1,4,5)-trisphosphate receptor-associated cGMP kinase substrate I (IRAG1) is expressed in ICC-IM, it is possible that it participates in the inhibition of Ca release by nitric oxide. Platelet-derived growth factor receptor α (PDGFRα) cells but not ICC-IM expressed P2Y receptors (P2YR) and small-conductance Ca-activated K channels (SK3), suggesting that the purinergic pathway indirectly blocks whole cell Ca transients in Type II ICC-IM via PDGFRα cells. This study provides the first direct evidence for functional coupling between inhibitory motor neurons and ICC-IM subtypes in the IAS, with contractile inhibition ultimately dependent upon electrical coupling between SMCs, ICC, and PDGFRα cells via the SIP syncytium. Two intramuscular interstitial cells of Cajal (ICC-IM) subtypes exist within the internal anal sphincter (IAS). This study provides the first evidence for direct coupling between nitrergic motor neurons and both ICC-IM subtypes as well as indirect coupling between purinergic inputs and Type II ICC-IM. The spatiotemporal properties of whole cell Ca transients in Type II ICC-IM mimic those of smooth muscle cells (SMCs), suggesting that ICC-IM modulate the activity of SMCs via their joint participation in a SIP syncytium (SMCs, ICC, and PDGFRα cells).

摘要

内肛门括约肌(IAS)的功能是保持节制。先前的研究利用细胞特异性表达 GCaMP6f 的小鼠,揭示了 IAS 中具有不同 Ca 活性的两种不同的肌间 Cajal 间质细胞(ICC-IM)亚型。本研究进一步检查了 ICC-IM 中的 Ca 活性及其对抑制性神经传递的调节。Ⅱ型 ICC-IM 的 Ca 瞬变的时空特性模拟了平滑肌细胞(SMCs)的特性,表明它们共同参与了“SIP”合胞体。电刺激(EFS;阿托品存在)消除了Ⅰ型和Ⅱ型 ICC-IM 的局部和全细胞 Ca 瞬变。嘌呤能拮抗剂 MRS2500 并没有消除两种细胞类型的 EFS 反应,而一氧化氮合酶(NOS)抑制剂 -硝基-l-精氨酸(l-NNA)消除了Ⅰ型但不消除Ⅱ型 ICC-IM 的反应。联合拮抗剂消除了Ⅱ型 ICC-IM 的 EFS 反应。在两种 ICC-IM 亚型中,EFS 抑制 Ca 释放的能力被 l-NNA 而不是 MRS2500 消除,表明 nitrergic 途径通过阻止细胞内储存的 Ca 释放直接抑制 ICC-IM。由于肌间 Cajal 间质细胞中表达有肌醇(1,4,5)-三磷酸受体相关环鸟苷酸激酶底物 I(IRAG1),因此它有可能参与了由一氧化氮介导的 Ca 释放抑制。血小板衍生生长因子受体 α(PDGFRα)细胞而非 ICC-IM 表达 P2Y 受体(P2YR)和小电导钙激活钾通道(SK3),这表明嘌呤能途径通过 PDGFRα 细胞间接阻断Ⅱ型 ICC-IM 的全细胞 Ca 瞬变。本研究首次提供了 IAS 中抑制性运动神经元与 ICC-IM 亚型之间功能偶联的直接证据,收缩抑制最终取决于 SMCs、ICC 和 PDGFRα 细胞之间通过 SIP 合胞体的电偶联。内肛门括约肌(IAS)中存在两种肌间 Cajal 间质细胞(ICC-IM)亚型。本研究首次提供了 nitrergic 运动神经元与两种 ICC-IM 亚型以及嘌呤能输入与Ⅱ型 ICC-IM 之间的直接偶联的直接证据。Ⅱ型 ICC-IM 中的全细胞 Ca 瞬变的时空特性模拟了平滑肌细胞(SMCs)的特性,表明 ICC-IM 通过共同参与 SIP 合胞体(SMCs、ICC 和 PDGFRα 细胞)来调节 SMC 的活性。

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