Mehta J R, Braund K G, Hegreberg G A, Thukral V
Neuromuscular Laboratories of Scott-Ritchey Research Program, College of Veterinary Medicine, Auburn University, AL 36849.
Neurochem Res. 1991 Feb;16(2):129-35. doi: 10.1007/BF00965700.
Erythrocyte membranes and their liposomes were prepared from clinically normal dogs and Labrador retrievers with hereditary muscular dystrophy. The "static" and "dynamic" components of fluidity of each membrane were then assessed by steady-state fluorescence polarization techniques using limiting hindered fluorescence anisotropy and order parameter values of 1,6-diphenyl-1,3,5-hexatriene (DPH) and fluorescence anisotropy values of DL-2-(9-anthroyl)-stearic acid and DL-12-(9-anthroyl)-stearic acid, respectively. Membrane lipids were extracted and analyzed by thin-layer chromatography and gas chromatography. The results of these studies demonstrated that the lipid fluidity of erythrocyte membranes, and their liposomes, prepared from dystrophic dogs were found to possess significantly lower "static and dynamic components of fluidity" than control counterparts. Analysis of the composition of membranes from dystrophic dogs revealed a higher ratio of saturated fatty acyl chain/unsaturated chains (w/w) and lower double-bond index. Alterations in the fatty acid composition such as decrease in levels of linoleic (18:2) and arachidonic (20:4) acids and increase in palmitic (16:0) and stearic (18:0) acids were also observed in the membranes of dystrophic animals. These associated fatty acyl alterations could explain, at least in part, the differences in membrane fluidity between dystrophic and control dogs.
红细胞膜及其脂质体取自临床正常的犬类和患有遗传性肌肉萎缩症的拉布拉多寻回犬。然后,使用1,6 - 二苯基 - 1,3,5 - 己三烯(DPH)的极限受阻荧光各向异性和序参数值以及DL - 2 -(9 - 蒽基)- 硬脂酸和DL - 12 -(9 - 蒽基)- 硬脂酸的荧光各向异性值,通过稳态荧光偏振技术评估每种膜流动性的“静态”和“动态”成分。提取膜脂质并通过薄层色谱法和气相色谱法进行分析。这些研究结果表明,从患有肌肉萎缩症的犬类制备的红细胞膜及其脂质体的脂质流动性,与对照相比,其“流动性的静态和动态成分”显著更低。对患有肌肉萎缩症的犬类的膜成分分析显示,饱和脂肪酰链/不饱和链的比例(w/w)更高,双键指数更低。在患有肌肉萎缩症的动物的膜中还观察到脂肪酸组成的变化,如亚油酸(18:2)和花生四烯酸(20:4)水平降低,棕榈酸(16:0)和硬脂酸(18:0)水平升高。这些相关的脂肪酰基变化至少可以部分解释患有肌肉萎缩症的犬类和对照犬类之间膜流动性的差异。