Svichar N, Shishkin V, Kostyuk E, Voitenko N
Bogomoletz Institute of Physiology, Kiev, Ukraine.
Neuroreport. 1998 Apr 20;9(6):1121-5. doi: 10.1097/00001756-199804200-00030.
Changes in neuronal Ca2+ homeostasis were studied on freshly isolated dorsal root ganglion neurons of adult control mice and mice with streptozotocin (STZ)-induced diabetes. The cytoplasmic free Ca2+ concentration ([Ca2+]in) was measured using indo-1 based microfluorimetry. The participation of mitochondria in [Ca2+]in homeostasis was determined by investigation of changes which occurred after addition of mitochondrial protonophore (CCCP) to the extracellular solution. In control cells 10 microM CCCP applied before membrane depolarization induced an increase of the amplitude of depolarization-induced [Ca2+]in transients and disappearance of their delayed recovery, indicating the participation of mitochondria in fast uptake of Ca2+ ions from the cytosol during the peak of the transient and subsequent slow release them back during its decay. In diabetic animals the increase of the peak transient amplitude under the action of CCCP became diminished in small (nociceptive) neurons and the delayed elevation of [Ca2+]in disappeared in both large and small neurons. It is concluded that in diabetic conditions substantial changes occur in the Ca2+ homeostatic functions of mitochondria, manifested by decreased Ca2+ uptake in small neurons and depressed Ca2+ release into the cytosol in all types of neurons.
在成年对照小鼠和链脲佐菌素(STZ)诱导的糖尿病小鼠新鲜分离的背根神经节神经元上研究了神经元钙稳态的变化。使用基于indo-1的显微荧光测定法测量细胞质游离钙浓度([Ca2+]in)。通过研究向细胞外溶液中添加线粒体质子载体(CCCP)后发生的变化来确定线粒体在[Ca2+]in稳态中的作用。在对照细胞中,在膜去极化之前施加10 microM CCCP会导致去极化诱导的[Ca2+]in瞬变幅度增加,并且其延迟恢复消失,这表明线粒体在瞬变峰值期间参与从细胞质中快速摄取钙离子,并在其衰减期间随后缓慢将它们释放回细胞质中。在糖尿病动物中,CCCP作用下峰值瞬变幅度的增加在小(伤害性)神经元中减弱,并且在大、小神经元中[Ca2+]in的延迟升高均消失。得出的结论是,在糖尿病状态下,线粒体的钙稳态功能发生了实质性变化,表现为小神经元中钙摄取减少以及所有类型神经元中钙释放到细胞质中的能力降低。