首页> 外文期刊>The Journal of Physiology >Store-operated Ca2+ entry in first trimester and term human placenta.
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Store-operated Ca2+ entry in first trimester and term human placenta.

机译:孕中期和足月人胎盘中的存储操作性Ca2 +进入。

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We have examined whether store-operated Ca2+ entry, a common pathway for Ca2+ entry in non-excitable tissue, is apparent in the syncytiotrophoblast of both first trimester and term human placenta. Expression of transient receptor potential (TRPC) homologues, a family of channels thought to be involved in store-operated Ca2+ entry, was also studied at the mRNA and protein levels. [Ca2+]i in syncytiotrophoblast of first trimester and term placental villous fragments was measured by microfluorimetry using the Ca2+-sensitive dye fura-2. Store-operated Ca2+ entry was stimulated using 1 microM thapsigargin in Ca(2+)-free Tyrode buffer (no added Ca2+ + 1 mM EGTA) followed by superfusion with control (Ca2+-containing) buffer. In term fragments, this protocol resulted in a rapid increase in [Ca2+]i, which was inhibited in the presence of 150 microM GdCl3, 200 microM NiCl2, 200 microM CoCl2 or 30 microM SKF96365 but was unaffected by addition of 10 microM nifedipine. It was not possible to stimulate such a rise in [Ca2+]i in first trimester fragments. Messenger RNA encoding TRPC1, TRPC3, TRPC4, TRPC5 and TRPC6 was identified in both first trimester and term placentas. From Western blotting, TRPC3 and TRPC6 proteins were detected in term, but not in first trimester, placentas, while TRPC1 protein was not detected. By immunocytochemistry, TRPC3 and TRPC4 were localised to cytotrophoblast cells in first trimester placentas and to the syncytiotrophoblast in term placentas. TRPC6 staining was present in the syncytiotrophoblast of both first trimester and term placenta, but the intensity was much greater in the latter. We propose that store-operated Ca2+ entry may be an important route for Ca2+ entry into the syncytiotrophoblast of term, but not first trimester placentas, and that in human placenta TRPC channels may underlie this entry mechanism.
机译:我们已经检查了在早期妊娠和足月人胎盘的合体滋养细胞中是否存在存储操纵的Ca2 +进入,这是非兴奋性组织中Ca2 +进入的常见途径。还研究了瞬时受体电位(TRPC)同系物的表达,TRPC同源物是一个被认为参与存储操纵性Ca2 +进入的通道家族,在mRNA和蛋白质水平上也得到了研究。使用Ca 2+敏感染料fura-2,通过微荧光法测定孕早期和胎盘绒毛绒毛膜滋养层中的[Ca 2+] i。使用1 microM thapsigargin在无Ca(2+)的Tyrode缓冲液(未添加Ca2 + + 1 mM EGTA)中刺激存储操作的Ca2 +进入,然后与对照(含Ca2 +)缓冲液进行超融合。在术语片段中,该方案导致[Ca2 +] i迅速增加,在150 microM GdCl3、200 microM NiCl2、200 microM CoCl2或30 microM SKF96365的存在下受到抑制,但不受添加10 microM硝苯地平的影响。不可能刺激孕早期片段中[Ca2 +] i的升高。在孕早期和足月胎盘中均鉴定出编码TRPC1,TRPC3,TRPC4,TRPC5和TRPC6的Messenger RNA。通过蛋白质印迹,足月检测到TRPC3和TRPC6蛋白,但在孕早期,胎盘中未检测到,而未检测到TRPC1蛋白。通过免疫细胞化学,将TRPC3和TRPC4定位于早孕胎盘中的滋养细胞和足月胎盘中的合体滋养细胞。早孕期和足月胎盘的合体滋养细胞都存在TRPC6染色,但后者的强度要大得多。我们建议,存储操作的Ca2 +进入可能是Ca2 +进入足月合体滋养层细胞的重要途径,而不是早孕胎盘,并且在人胎盘中TRPC通道可能是这种进入机制的基础。

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