Niger C, Malassiné A, Cronier L
CNRS UMR 6187, Institut de Physiologie et Biologie Cellulaires, Université de Poitiers, 86022 Poitiers Cedex, France.
J Physiol. 2004 Dec 1;561(Pt 2):449-58. doi: 10.1113/jphysiol.2004.073023. Epub 2004 Sep 9.
Ca2+ transfer across the syncytiotrophoblast (ST) of the human placenta is essential for normal fetal development. However, the nature of Ca2+ conductance in the ST and the mechanisms by which it is regulated are poorly understood. With the major signal transduction pathway of endothelin-1 (ET1) acting via phospholipase C (PLC) and Ca2+, we used ET1 to analyse the nature of Ca2+ channels on cultured trophoblastic cells by means of cytofluorimetric analysis using the ratiometric Ca2+ indicator Indo-1. Results indicate that ET1 (10(-7) M) stimulates a biphasic (transient and sustained) increase in [Ca2+]i in trophoblastic cells. This response is mediated by the endothelin receptor B (ETB) coupled to PLC, since treatment with BQ788 (10(-6) M) or U73122 (2 microM) totally abolished the response. Persistence of the rapid transient rise in [Ca2+]i in Ca2+-free extracellular medium confirms the release of Ca2+ from intracellular stores in response to ET1 stimulation. Furthermore, abolition of the sustained increase in [Ca2+]i in Ca2+-free extracellular medium argues in favour of the entry of Ca2+ during the plateau phase. Abolition of this plateau phase by Ni2+ (1 mM) in the presence of extracellular Ca2+ confirmed the existence of an ET1-induced Ca2+ entry. No evidence for the presence of voltage-operated channels was demonstrated during ET1 action since nifedipine (10(-6) M) did not reduce the Ca2+ response and depolarization with a hyper-potassium solution had no effect. Pharmacological studies using the imidazole derivatives SK&F96365 (30 microM) and LOE 908 (10 microM) partially inhibited the ET1-evoked Ca2+ response, thus providing evidence for the presence of both store-operated Ca2+ channels and non-selective cationic channels in the human ST.
钙离子穿过人胎盘合体滋养层(ST)对于正常胎儿发育至关重要。然而,ST中钙离子电导的性质及其调节机制目前仍知之甚少。内皮素-1(ET1)主要通过磷脂酶C(PLC)和钙离子起信号转导作用,我们利用ET1,通过使用比率型钙离子指示剂Indo-1的细胞荧光分析,来分析培养的滋养层细胞上钙离子通道的性质。结果表明,ET1(10⁻⁷ M)刺激滋养层细胞内钙离子浓度([Ca²⁺]i)出现双相(瞬时和持续)增加。这种反应由与PLC偶联的内皮素受体B(ETB)介导,因为用BQ788(10⁻⁶ M)或U73122(2 μM)处理可完全消除该反应。在无钙细胞外培养基中[Ca²⁺]i快速瞬时升高的持续存在,证实了ET1刺激后细胞内钙库释放钙离子。此外,在无钙细胞外培养基中[Ca²⁺]i持续增加的消除,支持了平台期钙离子内流的观点。在细胞外存在钙离子的情况下,Ni²⁺(1 mM)消除该平台期,证实了ET1诱导的钙离子内流的存在。在ET1作用期间,未证明存在电压门控通道,因为硝苯地平(10⁻⁶ M)未降低钙离子反应,用高钾溶液进行去极化也无作用。使用咪唑衍生物SK&F96365(30 μM)和LOE 908(10 μM)的药理学研究部分抑制了ET1诱发的钙离子反应,从而证明人ST中存在储存操纵性钙离子通道和非选择性阳离子通道。