首页> 外文期刊>European Journal of Pharmacology: An International Journal >Effects of manidipine and nitrendipine enantiomers on the plateau phase of K+-induced intracellular Ca2+ increase in GH3 cells.
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Effects of manidipine and nitrendipine enantiomers on the plateau phase of K+-induced intracellular Ca2+ increase in GH3 cells.

机译:马尼地平和尼群地平对映异构体对高原期的K +诱导的GH3细胞内Ca2 +升高的平台期。

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The aim of the present study was to investigate whether the chirality and type of substitution at position 3 of the dihydropyridine ring influences the pattern of voltage-gated Ca2+ channel blockade. For this purpose, the effect of R- and S-enantiomers of manidipine and nitrendipine, separated by chiral High-Pressure-Liquid-Chromatography columns, were investigated by fura-2 microfluorimetry during the plateau phase of the intracellular Ca2+ ([Ca2+]i) increase induced by 55 mM K+ and by patch-clamp recording of Ca2+ channel activity in GH3 cells. R- and S-enantiomers of both nitrendipine and manidipine produced a [Ca2+]i decay of the K+-induced plateau phase that followed a biexponential pattern with a 'fast' and a 'slow' phase. The S-configuration of both nitrendipine and manidipine produced a larger [Ca2+]i decrease during the 'fast phase', and a faster and smaller [Ca2+]i decrease in the 'slow phase' than did the R-enantiomers. The S- and R-enantiomers of manidipine, which possess a longer and more lipophilic side chain at position 3 of the dihydropyridine ring, induced a slower [Ca2+]i decrease than that observed with the respective nitrendipine enantiomers. Accordingly, patch-clamp experiments revealed that the S-enantiomers of both dihydropyridines displayed a faster onset of action and produced a greater blockade than the R-enantiomers. These results suggest that the enantiomeric configuration and a small side chain at position 3 of the dihydropyridine ring are factors in the chemical structure which influence the pattern of blockade of voltage-sensitive Ca2+ channels.
机译:本研究的目的是研究二氢吡啶环第3位的手性和取代类型是否影响电压门控Ca2 +通道阻滞的模式。为此,在细胞内Ca2 +([Ca2 +] i的稳定期)期间,通过fura-2微荧光法研究了被手性高压液相色谱柱分离的马尼地平和尼群地平的R-和S-对映体的作用。 )由55 mM K +和膜片钳记录GH3细胞中Ca2 +通道活性引起的增加。尼群地平和马尼地平的R-和S-对映体产生K +诱导的平台期的[Ca2 +] i衰变,该平稳期遵循具有“快”和“慢”相的双指数模式。与R-对映异构体相比,尼群地平和马尼地平的S-构型在“快相”期间产生更大的[Ca2 +] i降低,在“慢相”中产生更快和更小的[Ca2 +] i降低。马尼地平的S-和R-对映异构体在二氢吡啶环的3位具有更长和更亲脂性的侧链,其诱导的[Ca2 +] i降低要慢于相应的尼群地平对映体。因此,膜片钳实验显示两种二氢吡啶的S-对映体比R-对映体显示出更快的起效并产生更大的阻断作用。这些结果表明,对映体构型和二氢吡啶环第3位的小侧链是化学结构中的因素,这些因素影响对电压敏感的Ca2 +通道的阻断方式。

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