[异丙肾上腺素对幼鼠肝细胞电动力学特性的影响]。

S Barni, G Gerzeli
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引用次数: 0

摘要

研究了高剂量异丙肾上腺素处理大鼠肝细胞各器官细胞膜电荷团密度的变化及唾液酸残基在遗传、结构和代谢水平上的作用。观察大鼠肝脏出生后的生长,这时会出现多倍体化的过程:已知这一时期的IPR处理会加速这一现象。IPR每天2次腹腔注射,剂量为2mg / 100g体重,疗程1周或2周。利用蔡司细胞电泳仪从分离肝细胞的电泳迁移模式评估电荷群密度。通过比较正常细胞和神经氨酸酶处理细胞的数据来评估唾液物质在细胞膜中的存在和重要性;在这种情况下,神经氨酸酶释放唾液酸会显著降低细胞的电泳迁移率。表面电荷密度普遍增加,主要是由于唾液酸部分,与IPR处理有关;这种效果在刺激结束后的较晚时间和接受两个疗程IPR治疗的动物中更为明显。本研究在细胞学水平上证明了膜唾液分泌成分在IPR处理诱导的整个事件序列中的作用,并导致有丝分裂刺激。此外,即使与细胞生长、分化和肥大有关,也应考虑到高电荷群密度的持久性。
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[Changes in the electrokinetic characteristics of hepatic cells in young rats after treatment with isoprenaline].

The changes of the charge group density on the cell membrane and the role of the sialic acid residues were studied in the liver cells of rats treated with high doses of isoprenaline in various organs with effects at genetic, structural and metabolic level. The postnatal growth of the rat liver was followed, when a process of polyploidization occurs: IPR treatment in this period is known to accelerate the phenomenon. IPR was injected twice a day intraperitoneally at the dose of 2 mg/100 g of body weight in one or two week courses. The charge group density was evaluated from the electrophoretic mobility pattern of isolated hepatocytes using the Zeiss cell electrophoresis apparatus. The presence and the importance of sialosubstances in the cell membrane was evaluated by comparing the data from normal cells with neuraminidase treated cells; in this situation, the release of sialic acid by neuraminidase produced significant reductions of the cellular electrophoretic mobility. A general increase of the surface charge density, mostly due to the sialic acid fraction, was demonstrated in association with the IPR treatment; this effect was more evident at later times after the end of the stimulation and in animals treated with two courses of IPR. This study evidenced the role of the membrane sialomucinic component during the whole sequence of events induced by IPR treatment at cytological level and leading, among other things, to a mitotic stimulation. In addition, the persistence of the high charge group density should be taken into account even in connection with cell growth, differentiation and hypertrophy.

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