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用传统的双室法测量牛晶状体膜的特性。

The properties of bovine lens membranes measured by a conventional double-chamber method.

作者信息

Delamere N A, Duncan G

出版信息

J Physiol. 1979 Oct;295:241-9. doi: 10.1113/jphysiol.1979.sp012965.

Abstract
  1. When the bovine lens was mounted in a divided chamber, an asymmetry potential of 4.3 mV (anterior face positive) was measured across the lens and values of 0.48 and 0.60 were obtained for P(Na)/P(K) of the anterior and posterior faces respectively.2. The half-times for the depolarization of the anterior and posterior face potentials on increasing the external K concentration were 20 and 14 min respectively compared to less than 2 min for the corresponding change determined previously from the totally immersed lens.3. The electrical resistance of the anterior surface was significantly smaller than that of the posterior and both resistances were much smaller than the value previously obtained from the bovine lens immersed in solution.4. The K permeability of the anterior surface, measured by (42)K efflux experiments, was greater than the value for the posterior surface and both were again very much higher than the value obtained for the totally immersed lens.5. The discrepancies between the present double-chamber preparation and the data obtained previously can be explained if it is assumed that the capsule provides a short-circuit pathway between the chamber port and the lens membranes. As the capsule is thicker at the anterior face, the short circuit there would be greater and this may explain many previously observed ;asymmetry' properties for the lens.
摘要
  1. 当将牛晶状体安装在分隔腔室中时,测得晶状体上的不对称电位为4.3 mV(前表面为正),前表面和后表面的P(Na)/P(K)值分别为0.48和0.60。

  2. 增加外部钾浓度时,前表面和后表面电位去极化的半衰期分别为20分钟和14分钟,而之前从完全浸没的晶状体确定的相应变化的半衰期小于2分钟。

  3. 前表面的电阻明显小于后表面的电阻,且两者的电阻都远小于之前从浸没在溶液中的牛晶状体获得的值。

  4. 通过(42)K外流实验测量,前表面的钾渗透率大于后表面的值,并且两者再次远高于从完全浸没的晶状体获得的值。

  5. 如果假设晶状体囊在腔室端口和晶状体膜之间提供了一条短路途径,那么当前双腔体制备与之前获得的数据之间的差异就可以得到解释。由于前表面的晶状体囊更厚,那里的短路会更大,这可能解释了许多之前观察到的晶状体的“不对称”特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/390f/1279042/a7adc8c0faaa/jphysiol00864-0248-a.jpg

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