Yedgar S, Reisfeld N
Department of Biochemistry, Hebrew University, Hadassah Medical School, Jerusalem, Israel.
Biorheology. 1990;27(3-4):581-8. doi: 10.3233/bir-1990-273-436.
Plasma viscosity is elevated in various pathological states, due to increased levels of protein and other macromolecules. The possibility that elevation of extracellular fluid viscosity (EFV) affects cellular and biochemical functions was examined in cultured liver cells and in red blood cells. The viscosity was modified by the addition of various macromolecules, which differ in their capacity to increase viscosity and in their chemical nature. It was found that secretion of lipoproteins and lysosomal enzymes by liver cells is inhibited as a function of the medium viscosity. Correspondingly, elevation of plasma viscosity of hyperlipidemic rats reduced lipoprotein levels. In search for the mechanism of this phenomenon we examined the effects of EFV on two cell membrane components which are involved in transmembrane processes: Gangliosides (GMs), and phospholipase A2 (PLA2). It was found that the rate of GMs degradation is decreased with increasing EFV. Of special interest was the finding that the activity of cell membrane PLA2, a key enzyme in secretory processes, is inhibited by increasing EFV. This phenomena was not confined to cell membrane PLA2, as we further found that erythrocyte hemolysis, induced by soluble snake venom PLA2, is inhibited as the EFV is increased. It is proposed that the extracellular fluid viscosity may play an important role in regulation of cellular and biochemical processes in general.
在各种病理状态下,由于蛋白质和其他大分子水平的升高,血浆粘度会升高。在培养的肝细胞和红细胞中研究了细胞外液粘度(EFV)升高影响细胞和生化功能的可能性。通过添加各种大分子来改变粘度,这些大分子在增加粘度的能力和化学性质上有所不同。发现肝细胞分泌脂蛋白和溶酶体酶受到培养基粘度的影响。相应地,高脂血症大鼠血浆粘度的升高降低了脂蛋白水平。为了寻找这种现象的机制,我们研究了EFV对参与跨膜过程的两种细胞膜成分的影响:神经节苷脂(GMs)和磷脂酶A2(PLA2)。发现随着EFV的增加,GMs的降解速率降低。特别有趣的是,发现作为分泌过程关键酶的细胞膜PLA2的活性受到EFV增加的抑制。这种现象并不局限于细胞膜PLA2,因为我们进一步发现,随着EFV的增加,可溶性蛇毒PLA2诱导的红细胞溶血受到抑制。有人提出,细胞外液粘度可能总体上在调节细胞和生化过程中起重要作用。