LEVEL OF MEMBRANE-BOUND HEMOGLOBIN AND RED-CELL MEMBRANE PROTEINS IN PATIENTS WITH ESSENTIAL HYPERTENSION COMPLICATED AND NOT COMPLICATED WITH METABOLIC SYNDROME
Author(s) -
Горохова,
В. Г. Горохова,
Корякина,
L. B. Koryakina,
Бабушкина,
И. В. Бабушкина,
Сергеева,
Анна Сергеева,
Ekaterina Kuznetsova,
Emma Kuznetsova,
Пивоваров,
Yuriy Pivovarov,
Андреева,
Andreeva En
Publication year - 2016
Publication title -
бюллетень восточно-сибирского научного центра сибирского отделения российской академии медицинских наук
Language(s) - English
Resource type - Journals
ISSN - 1811-0649
DOI - 10.12737/22960
Subject(s) - essential hypertension , hemoglobin , metabolic syndrome , membrane protein , medicine , membrane , red blood cell , endocrinology , biochemistry , biology , chemistry , blood pressure , obesity
We studied the effect of different levels of membrane-bound hemoglobin on the level of red-cell membrane proteins and also their interrelation in patients with essential hypertension with and without metabolic syndrome. It was found that high membrane-bound hemoglobin is closely related to the low level of high-density lipoproteins and high level of low-density lipoproteins in patients with essential hypertension complicated with metabolic syndrome. In patients with essential hypertension not complicated with metabolic syndrome high membrane-bound hemoglobin is related to the increased prothrombin time and decreased blood urea nitrogen. In patients with essential hypertension com-plicated with metabolic syndrome high membrane-bound hemoglobin significantly influences the level of membrane contractile proteins (actin, tropomiosine). In patients with essential hypertension without metabolic syndrome high membrane-bound hemoglobin is accompanied by the decrease of structural and integral membrane proteins levels (anion-transport protein and protein 4.1). As the result of quantitative changes in these proteins and change in their interrelations in patients with ssential hypertension complicated with metabolic syndrome more intensive disorders of structural and functional organization of red-cell membrane can appear.
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