首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Ultrastructure of rat initial collecting tubule. Effect of adrenal corticosteroid treatment.
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Ultrastructure of rat initial collecting tubule. Effect of adrenal corticosteroid treatment.

机译:大鼠初始收集小管的超微结构。肾上腺皮质激素治疗的效果。

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摘要

This study examines the effects of adrenalectomy and physiological replacement of mineralocorticoids and glucocorticoids on the cellular ultrastructure of the rat initial collecting tubule (late distal tubule). Animals were adrenalectomized (ADX) and for 10 d received by osmotic minipump either: vehicle, aldosterone (0.5 micrograms X 100 g-1 X d-1), aldosterone (2.0 micrograms X 100 g-1 X d-1), dexamethasone (1.2 micrograms X 100 g-1 X d-1), or aldosterone (0.5 micrograms X 100 g-1 X d-1) with dexamethasone (1.2 micrograms X 100 g-1 X d-1). Radioimmunoassay revealed that the low dose of aldosterone restored plasma aldosterone to control levels. The higher dose of aldosterone increased plasma levels by threefold. Morphometric techniques were used to measure membrane length of individual principal and intercalated cells in each condition. The basolateral membrane length of principal cells decreased by 35% in ADX animals. Low dose aldosterone replacement (0.5 micrograms X 100 g-1 X d-1) in ADX animals maintained membrane length at control values; at a higher level of aldosterone (2.0 micrograms X 100 g-1 X d-1) membrane length increased by 111% compared with control. Dexamethasone treatment, at a level that restored glomerular filtration rate to normal, had no effect on cellular ultrastructure. Combined aldosterone and dexamethasone replacement had no greater effect on basolateral membrane length than aldosterone alone. The length of the luminal membrane of the principal cell type was not affected by ADX or hormone treatment. Intercalated cell membrane length was not affected by ADX or hormone replacement. Thus, chronic aldosterone levels have an important, selective effect on the basolateral membrane of the principal cell. The correlation between these morphological results and the steroid hormone effects on renal electrolyte excretion, reported in the companion paper (15), suggests that basolateral membrane length is an important factor controlling the rate of sodium and potassium transport by the initial collecting tubule.
机译:这项研究检查了肾上腺切除术和盐皮质激素和糖皮质激素的生理替代对大鼠初始收集肾小管(晚期肾小管)细胞超微结构的影响。对动物进行肾上腺切除术(ADX),并通过渗透微型泵接受10 d:载剂,醛固酮(0.5微克X 100 g-1 X d-1),醛固酮(2.0微克X 100 g-1 X d-1),地塞米松( 1.2毫克X 100 g-1 X d-1)或醛固酮(0.5毫克X 100 g-1 X d-1)与地塞米松(1.2毫克X 100 g-1 X d-1)。放射免疫分析表明,低剂量的醛固酮可使血浆醛固酮恢复至对照水平。较高的醛固酮剂量可使血浆水平增加三倍。形态计量学技术用于测量每种条件下单个主细胞和插入细胞的膜长度。在ADX动物中,主要细胞的基底外侧膜长度减少了35%。在ADX动物中低剂量醛固酮替代(0.5微克X 100 g-1 X d-1)将膜长度维持在对照值;与对照组相比,在较高水平的醛固酮(2.0微克X 100 g-1 X d-1)下,膜长度增加了111%。地塞米松治疗的水平可使肾小球滤过率恢复正常,对细胞超微结构没有影响。醛固酮和地塞米松联合替代治疗对基底外侧膜长度的影响不比单独使用醛固酮更大。主要细胞类型的腔膜长度不受ADX或激素治疗的影响。插入的细胞膜长度不受ADX或激素替代的影响。因此,慢性醛固酮水平对主细胞的基底外侧膜具有重要的选择性作用。这些形态学结果与类固醇激素对肾电解质排泄的影响之间的相关性(在同行论文中有报道)(15)表明,基底外侧膜长度是控制初始收集肾小管转运钠和钾的速率的重要因素。

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