Roman-Campos D, Campos A C, Gioda C R, Campos P P, Medeiros M A A, Cruz J S
Laboratório de Membranas Excitáveis e de Biologia Cardiovascular, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, 31970-901, Belo Horizonte-MG, Brazil.
Life Sci. 2009 Jun 5;84(23-24):817-24. doi: 10.1016/j.lfs.2009.03.011. Epub 2009 Apr 2.
Thiamine is an important cofactor present in many biochemical reactions, and its deprivation can lead to heart dysfunction. Little is known about the influence of thiamine deprivation on the electrophysiological behavior of the isolated heart cells and information about thiamine deficiency in heart morphology is controversial. Thus, we decided to investigate the major repolarizing conductances and their influence in the action potential (AP) waveform as well as the changes in the heart structure in a set of thiamine deficiency in rats.
Using the patch-clamp technique, we investigated inward (I(K1)) and outward K(+) currents (I(to)), T-type and L-type Ca(2+) currents and APs. To evaluate heart morphology we used hematoxylin and eosin in transversal heart sections.
Thiamine deficiency caused a marked decrease in left ventricle thickness, cardiomyocyte number, cell length and width, and membrane capacitance. When evaluating I(to) we did not find difference in current amplitude; however an acceleration of I(to) inactivation was observed. I(K1) showed a reduction in the amplitude and slope conductance, which implicated a less negative resting membrane potential in cardiac myocytes isolated from thiamine-deficient rats. We did not find any difference in L-type Ca(2+) current density. T-type Ca(2+) current was not observed. In addition, we did not observe significant changes in AP repolarization.
Based on our study we can conclude that thiamine deficiency causes heart hypotrophy and not heart hypertrophy. Moreover, we provided evidence that there is no major electrical remodeling during thiamine deficiency, a feature of heart failure models.
硫胺素是许多生化反应中存在的一种重要辅酶,其缺乏会导致心脏功能障碍。关于硫胺素缺乏对离体心脏细胞电生理行为的影响知之甚少,且关于心脏形态学中硫胺素缺乏的信息存在争议。因此,我们决定在一组硫胺素缺乏的大鼠中研究主要的复极电导及其对动作电位(AP)波形的影响以及心脏结构的变化。
我们使用膜片钳技术研究内向(I(K1))和外向钾离子电流(I(to))、T型和L型钙离子电流以及动作电位。为了评估心脏形态,我们在心脏横切面上使用苏木精和伊红染色。
硫胺素缺乏导致左心室厚度、心肌细胞数量、细胞长度和宽度以及膜电容显著降低。在评估I(to)时,我们未发现电流幅度有差异;然而,观察到I(to)失活加速。I(K1)的幅度和斜率电导降低,这意味着从硫胺素缺乏的大鼠分离的心肌细胞静息膜电位较不负值。我们未发现L型钙离子电流密度有任何差异。未观察到T型钙离子电流。此外,我们未观察到动作电位复极有显著变化。
基于我们的研究,我们可以得出结论,硫胺素缺乏会导致心脏萎缩而非肥大。此外,我们提供了证据表明在硫胺素缺乏期间不存在主要的电重构,而这是心力衰竭模型的一个特征。