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维生素D缺乏引起的慢性低钙血症会导致大鼠肝细胞内的钙浓度降低。

Chronic hypocalcemia of vitamin D deficiency leads to lower intracellular calcium concentrations in rat hepatocytes.

作者信息

Gascon-Barré M, Haddad P, Provencher S J, Bilodeau S, Pecker F, Lotersztajn S, Vallières S

机构信息

Centre de Recherche Clinique André-Viallet, Hôpital Saint-Luc, Montreal, Canada.

出版信息

J Clin Invest. 1994 May;93(5):2159-67. doi: 10.1172/JCI117212.

Abstract

Several lines of evidence indicate that calcium deficiency is associated with cellular defects in many tissues and organs. Owing to the large in vivo gradient between ionized extra- and intracellular Ca2+ concentrations ([Ca2+]i), it is generally recognized that the prevailing circulating Ca2+ does not significantly affect resting cytosolic Ca2+. To probe the consequences of hypocalcemia on [Ca2+]i, a model of chronic hypocalcemia secondary to vitamin D (D) deficiency was used. Hepatocytes were isolated from livers of hypocalcemic D-deficient, of normocalcemic D3-repleted, or of normal control rats presenting serum Ca2+ of 0.78 +/- 0.02, 1.24 +/- 0.03, or 1.25 +/- 0.01 mM, respectively (P < 0.0001). [Ca2+]i was measured in cell couplets using the fluorescent probe Fura-2. Hepatocytes of normocalcemic D3-repleted and of normal controls exhibited similar [Ca2+]i of 227 +/- 10 and 242 +/- 9 nM, respectively (NS), whereas those of hypocalcemic rats had significantly lower resting [Ca2+]i (172 +/- 10 nM; P < 0.0003). Stimulation of hepatocytes with the alpha 1-adrenoreceptor agonist phenylephrine illicited increases in cytosolic Ca2+ leading to similar [Ca2+]i and phosphorylase a (a Ca(2+)-dependent enzyme) activity in all groups but in contrast to normocalcemia, low extracellular Ca2+ was often accompanied by a rapid decay in the sustained phase of the [Ca2+]i response. When stimulated with the powerful hepatic mitogen epidermal growth factor (EGF), hepatocytes isolated from hypocalcemic rat livers responded with a blunted maximal [Ca2+]i of 237.6 +/- 18.7 compared with 605.2 +/- 89.9 nM (P < 0.0001) for their normal counterparts, while the EGF-mediated DNA synthesis response was reduced by 50% by the hypocalcemic condition (P < 0.03). Further studies on the possible mechanisms involved in the perturbed [Ca2+]i homeostasis associated with chronic hypocalcemia revealed the presence of an unchanged plasma membrane Ca2+ ATPase but of a significant decrease in agonist-stimulated Ca2+ entry as indicated using Mn2+ as surrogate ion (P < 0.03). Our data, thus indicate that, in rat hepatocytes, the in vivo calcium status significantly affects resting [Ca2+]i, and from this we raise the hypothesis that this lower than normal [Ca2+]i may be linked, in calcium disorders, to inappropriate cell responses mediated through the calcium signaling pathway as illustrated by the response to phenylephrine and EGF.

摘要

多条证据表明,钙缺乏与许多组织和器官中的细胞缺陷有关。由于细胞外和细胞内游离钙离子浓度([Ca2+]i)在体内存在很大梯度,人们普遍认为,循环中的钙离子一般不会显著影响静息状态下的胞质钙离子浓度。为了探究低钙血症对[Ca2+]i的影响,我们采用了维生素D(D)缺乏继发的慢性低钙血症模型。从低钙血症D缺乏、正常血钙D3补充或正常对照大鼠的肝脏中分离肝细胞,其血清钙离子浓度分别为0.78±0.02、1.24±0.03或1.25±0.01 mM(P<0.0001)。使用荧光探针Fura-2在细胞偶联物中测量[Ca2+]i。正常血钙D3补充组和正常对照组的肝细胞[Ca2+]i分别为227±10和242±9 nM(无显著性差异),而低钙血症大鼠的肝细胞静息[Ca2+]i显著降低(172±10 nM;P<0.0003)。用α1肾上腺素能受体激动剂去氧肾上腺素刺激肝细胞,可引起胞质钙离子浓度升高,所有组的[Ca2+]i和磷酸化酶a(一种Ca(2+)依赖性酶)活性相似,但与正常血钙情况不同的是,低细胞外钙离子浓度常伴随[Ca2+]i反应的持续期快速衰减。当用强大的肝有丝分裂原表皮生长因子(EGF)刺激时,从低钙血症大鼠肝脏分离的肝细胞最大[Ca2+]i反应迟钝,为237.6±18.7,而正常对照肝细胞为605.2±89.9 nM(P<0.0001),同时低钙血症状态使EGF介导的DNA合成反应降低了50%(P<0.03)。对与慢性低钙血症相关的[Ca2+]i稳态紊乱的可能机制进行的进一步研究表明,质膜Ca2+ ATP酶活性未变,但以Mn2+作为替代离子时,激动剂刺激的Ca2+内流显著减少(P<0.03)。因此,我们的数据表明,在大鼠肝细胞中,体内钙状态显著影响静息[Ca2+]i,据此我们提出假说,在钙紊乱中,这种低于正常的[Ca2+]i可能与通过钙信号通路介导的不适当细胞反应有关,如对去氧肾上腺素和EGF的反应所示。

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