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化学刺激对大鼠主动脉体 I 型细胞和内源性局部神经元 [Ca2+]i 反应的影响:与颈动脉体细胞的比较。

Effects of chemostimuli on [Ca2+]i responses of rat aortic body type I cells and endogenous local neurons: comparison with carotid body cells.

机构信息

Department of Biology, McMaster University, Life Sciences Building, Hamilton, Ontario, Canada.

出版信息

J Physiol. 2012 May 1;590(9):2121-35. doi: 10.1113/jphysiol.2012.229468. Epub 2012 Mar 19.

Abstract

Mammalian aortic bodies (ABs) are putative peripheral arterial chemoreceptors whose function remains controversial, partly because information on their cellular physiology is lacking. In this study, we used ratiometric Ca2+ imaging to investigate for the first time chemosensitivity in short-term cultures of dissociated cells of juvenile rat ABs, located near the junction of the left vagus and recurrent laryngeal nerves. Among the surviving cell population were glomus or type I cell clusters, endogenous local neurons and glia-like cells. A variety of chemostimuli, including hypoxia, isohydric or acidic hypercapnia, and isocapnic acidosis, caused a rise in intracellular [Ca2+] in AB type I cells. The [Ca2+]i responses were indistinguishable from those in carotid body (CB) type I cells grown in parallel cultures from the same animals, and responses to acidic hypercapnia were prevented by the non-specific voltage-gated Ca2+ channel antagonist, 2mM Ni2+. Furthermore, we identified a subpopulation (∼40%) of glia-like cells in AB cultures that resembled CB type II cells based on their approximately equal sensitivity to ATP and UTP, consistent with the expression of purinergic P2Y2 receptors. Finally, we showed that some local neurons, known to be uniquely associated with these AB paraganglia in situ, generated robust [Ca2+]i responses to these chemostimuli. Thus, these AB type I cells and associated putative type II cells resemble those from the well-studied CB. Unlike the CB, however, they also associate with a special group of endogenous neurons which we propose may subserve a sensory function in local cardiovascular reflexes.

摘要

哺乳动物主动脉体 (AB) 被认为是外周动脉化学感受器,但其功能仍存在争议,部分原因是缺乏有关其细胞生理学的信息。在这项研究中,我们首次使用比率 Ca2+ 成像技术研究了幼年大鼠 AB 分离细胞的短期培养物中的化学敏感性,这些细胞位于左迷走神经和喉返神经交界处附近。在存活的细胞群体中,存在球体型或 I 型细胞簇、内源性局部神经元和胶质样细胞。各种化学刺激物,包括缺氧、等渗或酸性高碳酸血症和等碳酸酸中毒,都会导致 AB 型 I 细胞内 [Ca2+] 的增加。[Ca2+]i 反应与在来自同一动物的平行培养物中生长的颈动脉体 (CB) I 型细胞的反应无法区分,并且酸性高碳酸血症的反应被非特异性电压门控 Ca2+ 通道拮抗剂 2mM Ni2+ 所阻止。此外,我们还在 AB 培养物中鉴定出了一个亚群(约 40%)的胶质样细胞,这些细胞类似于 CB 型 II 细胞,其对 ATP 和 UTP 的敏感性大致相等,这与嘌呤能 P2Y2 受体的表达一致。最后,我们表明,一些已知在原位与这些 AB 副神经节独特相关的局部神经元对这些化学刺激产生强烈的 [Ca2+]i 反应。因此,这些 AB 型 I 细胞和相关的假定的 II 型细胞类似于研究得很好的 CB 细胞。然而,与 CB 不同的是,它们还与一组特殊的内源性神经元相关,我们提出这些神经元可能在局部心血管反射中发挥感觉功能。

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