Medh J D, Rex K A, Benedict C R, Sordahl L A
Department of Human Biological Chemistry and Genetics, University of Texas Medical Branch, Galveston 77550.
J Cardiovasc Pharmacol. 1991 Oct;18(4):473-7. doi: 10.1097/00005344-199110000-00001.
Previous studies have shown that Ca2+ channel antagonists in all chemical classes can inhibit Na(+)-induced CA2+ release from mitochondria. The effects of R023-6152, a new thiazepinone Ca2+ channel antagonist, on isolated rabbit heart mitochondrial Ca2+ transport and respiratory activity were compared with those of diltiazem. Heart mitochondria were also isolated and assayed from dogs treated in vivo with either R023-6152 or diltiazem. The results indicate that R023-6152 produces half-maximal inhibition of Na(+)-induced Ca2+ release from isolated mitochondria at relatively the same concentrations (10-30 microM) as diltiazem but also produces inhibition of mitochondrial Ca2+ uptake and state 3 respiration at concentrations (25-100 microM), at which diltiazem has no effect. The greater lipophilicity of R023-6152 in gaining access to and inhibiting the phosphate transporter in the mitochondrial membrane as compared with that of diltiazem may explain these results. Heart mitochondria isolated from dogs treated with diltiazem and R023-6152 exhibited lower rates of state 3 respiration as compared with controls. We suggest that this may result from a reduction in transsarcolemmal Ca2+ flux causing a down-regulation in mitochondrial dehydrogenase activity and not from any direct intracellular effects of the two drugs.
先前的研究表明,所有化学类别的钙通道拮抗剂均可抑制钠离子诱导的线粒体钙释放。将新型噻氮平酮类钙通道拮抗剂R023 - 6152对离体兔心脏线粒体钙转运和呼吸活性的影响与地尔硫䓬进行了比较。还从体内用R023 - 6152或地尔硫䓬治疗的犬中分离并检测了心脏线粒体。结果表明,R023 - 6152在与地尔硫䓬相对相同的浓度(10 - 30微摩尔)下对离体线粒体钠离子诱导的钙释放产生半数最大抑制,但在25 - 100微摩尔浓度下也会抑制线粒体钙摄取和状态3呼吸,而在此浓度下地尔硫䓬无作用。与地尔硫䓬相比,R023 - 6152具有更高的亲脂性,能够进入并抑制线粒体膜中的磷酸转运体,这可能解释了这些结果。与对照组相比,从用地尔硫䓬和R023 - 6152治疗的犬中分离的心脏线粒体表现出较低的状态3呼吸速率。我们认为,这可能是由于跨肌膜钙通量减少导致线粒体脱氢酶活性下调,而非这两种药物的任何直接细胞内效应所致。