微波介电法评价心力衰竭患者自适应机制紊乱

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia Pub Date : 2022-06-24 DOI:10.30837/rt.2022.2.209.20
N. Khmil, V. Kolesnikov, O. Altuhov
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引用次数: 0

摘要

压力适应机制的鉴别诊断是现代生物医学工程的研究领域之一,也是心脏病理疾病前诊断中最复杂的部分。心衰失适应的表现之一是破坏细胞内链“信号功能”的实现机制。在心脏的发病机制中考虑了腺苷酸环化酶系统和红细胞膜和心肌细胞β-肾上腺素能受体功能失衡的概念。采用微波介电法测量自由水介电常数γ-色散区,对心力衰竭患者红细胞介电常数ε՜进行了研究。在固定频率的微波射频产生(f = 37,7 GHz)下,通过特异性刺激剂、阻滞剂和调节剂检测红细胞膜的β-肾上腺素能复合物。对所得实验数据的解释是,生物调节剂与生物体系相互作用的过程伴随着相对自由水量的增加或减少,从而导致ε՜复介电常数实部发生变化。这使我们能够在分子水平上可视化信号细胞系统的破坏,这表现在ε՜参数的积分水化变化上。结果表明,高危人群(有扩张型和缺血性心肌病遗传易感性的患者)红细胞悬液介电常数的变化与健康供者红细胞样品介电参数的变化有显著性差异;有阻断β-肾上腺素能受体的倾向,肾上腺素、PGE2和cordanum共同作用,Δε՜= 0,009±0,008±10-12 F/m。应该注意的是,在高危人群中,腺苷酸环化酶系统功能改变和心力衰竭发展的先决条件的形成,伴随着扩张性和缺血性心肌病。微波介电法在扩张型和缺血性心肌病中通过红细胞膜腺苷酸环化酶系统评估适应机制违规的有效性。研究结果为将介电常数判据引入心力衰竭病种前诊断通用算法提供了依据。
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Evaluation of disorders of adaptive mechanisms in heart failure by microwave dielectrometry
Differential diagnosis of stress adaptive mechanisms is one of the areas of modern biomedical engineering and the most complex part of the pre-nosological diagnosis of cardiac pathology. One of the manifestations of disadaptation in heart failure is a violation of the mechanisms of realization of the intracellular chain "signal-function". The concept of imbalance in the functioning of the adenylate cyclase system and β-adrenergic receptors of the erythrocytes membrane and cardiomyocytes is considered in the pathogenesis of the heart. The study of the dielectric constant (ε՜) of erythrocytes of patients with heart failure was performed using an instrument-recording complex based on microwave dielectrometry of the γ-dispersion region of free water dielectric permittivity. Testing of the β-adrenergic complex of the erythrocyte membrane by specific stimulators, blockers, and modulators was implemented at a fixed frequency of microwave radiofrequency generation (f = 37,7 GHz). Interpretation of the obtained experimental data was that the process of interaction of bioregulators with the biological system is accompanied by an increase or decrease in the relative amount of free water, which leads to a change in the real part of ε՜ complex dielectric constant. This allowed us to visualize the violation of the signal cell system at the molecular level, which manifested itself in the change of integral hydration by ε՜ parameter. It was shown that the change in the dielectric constant of the erythrocyte suspension at risk (patients with hereditary predisposition to dilated and ischemic cardiomyopathy) was significant relative to the dielectric parameters of erythrocyte samples from healthy donors; there was a tendency to block β-adrenergic receptors, with the combined action of adrenaline, PGE2 and cordanum, with Δε՜ = 0,009 ± 0,008 х 10-12 F/m. It should be noted the formation of preconditions for changes in the functioning of the adenylate cyclase system and the development of heart failure in the group at risk, is accompanied by dilated and ischemic cardiomyopathy. The effectiveness of the microwave dielectrometry method for the assessment of violations of adaptation mechanisms through the adenylate cyclase system of the erythrocyte membrane in dilated and ischemic forms of cardiomyopathies is shown. The results of the study are the basis for the introduction of the dielectric constant criterion in the general algorithm of pre-nosological diagnosis of heart failure.
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Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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