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在含有可通透和不可通透溶质的低渗和高渗溶液中,肾髓质细胞对容量的调节。

Volume adjustment by renal medullary cells in hypo- and hyperosmolal solutions containing permeant and impermeant solutes.

作者信息

Law R O

出版信息

J Physiol. 1975 May;247(1):55-70. doi: 10.1113/jphysiol.1975.sp010920.

Abstract
  1. The changes in the volumes of cells in slices (thickness 0-3-0-4 mm) of rat renal outer and inner medulla have been investigated during aerobic incubation for 20 min at 37 degrees C in Krebs phosphate-bicarbonate Ringer modified by the addition of urea or sucrose in order to produce a range of media hypo- and hyperosmolal with respect to the calculated tissue fluid osmolalities in these regions. 2. On the assumption that under these conditions the measured inulin space approximates to the true extracellular space (ECS), it was found that osmotic swelling or shrinkage of cells was not accompanied by any significant variation in the absolute size of the ECS. 3. Calculated cell volume changes in both regions were minimal when slices were incubated in urea-containing media iso-osmolal with tissue fluids in that region. In sucrose-containing media minimal cell volume changes occurred when media were hypo-osmolal in relation to tissue fluids by a factor of approximately 0-68. 4. In all except the most hypo-osmolal media studied, calculated cell volume changes (as percentage of initial volume) were linearly related to the reciprocal of the incubation media osmolalities. The points of interception of the regression lines on the cell volume axis were dependent upon both the region studied and the composition of the incubation medium (urea or sucrose). 5. These changes were accompanied by variations in slice solute concentrations. Slice [Na] was greatest, and slice [K] least, following incubation in those media producing the greatest percentage changes in cell volume. 6. The volume of distribution [14-C]sucrose within the inner medulla was 61-7 plus or minus 2-5 mul./100 mg wet weight of tissue (mean plus or minus S.E., n equals 6) after 10 min incubation. The increase to 70-8 plus or minus 4-2 mul./100 mg (n equals 6) after 100 min was not significant (0-1 greater than P greater than 0-05). The volume of distribution within the outer medulla rose markedly during this period, from 38-1 to 58-2 mul./100 mg.
摘要
  1. 研究了大鼠肾外髓和内髓厚度为0.3 - 0.4毫米切片中细胞体积的变化。切片在37℃下于有氧条件下孵育20分钟,所用的Krebs磷酸 - 碳酸氢盐林格液添加了尿素或蔗糖进行改良,以便制备出一系列相对于这些区域计算所得组织液渗透压而言为低渗和高渗的培养基。2. 在这些条件下,假设测得的菊粉空间近似于真正的细胞外空间(ECS),结果发现细胞的渗透性肿胀或收缩并未伴随ECS绝对大小的任何显著变化。3. 当切片在与该区域组织液等渗的含尿素培养基中孵育时,两个区域计算所得的细胞体积变化最小。在含蔗糖培养基中,当培养基相对于组织液为低渗,低渗系数约为0.68时,细胞体积变化最小。4. 在所有研究的培养基中,除了渗透压最低的那些,计算所得的细胞体积变化(以初始体积的百分比表示)与孵育培养基渗透压的倒数呈线性关系。回归线在细胞体积轴上的截距取决于所研究的区域以及孵育培养基的成分(尿素或蔗糖)。5. 这些变化伴随着切片溶质浓度的改变。在那些能使细胞体积产生最大百分比变化的培养基中孵育后,切片中的[Na]最高,而[K]最低。6. 在内髓中,[14 - C]蔗糖孵育10分钟后的分布体积为61.7±2.5微升/100毫克湿重组织(平均值±标准误,n = 6)。孵育100分钟后增加到70.8±4.2微升/100毫克(n = 6),差异不显著(0.1>P>0.05)。在此期间,外髓中的分布体积显著增加,从38.1微升/100毫克增加到58.2微升/100毫克。

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