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中华大蟾蜍单个卵母细胞中钠不均匀分布的放射自显影证明。

Autoradiographic demonstration of inhomogeneous distribution of sodium in single oocytes of Bufo bufo.

作者信息

Dick D A, John P N, Fry D J, Rogers A W

出版信息

J Physiol. 1970 Sep;210(2):305-19. doi: 10.1113/jphysiol.1970.sp009212.

Abstract
  1. Autoradiography of frozen cells labelled with (22)Na has been used to locate a sequestered fraction of internal Na in the oocyte which exchanges very slowly or not at all with external Li.2. Relative grain density in nucleus and cytoplasm, measured photometrically, was used as an indication of (22)Na distribution within the oocyte. In test experiments grain density fell to 50% within 19 mum of the edge of the section. Owing to the large diameter of the oocyte (> 600 mum) and its nucleus (> 200 mum), this resolution was adequate to determine cytoplasmic/nuclear (C/N) ratios of grain density.3. In oocytes fully loaded with (22)Na, the mean C/N ratio was 0.92 +/- 0.03 (n = 11). After 5 hr exchange in Li-substituted Na-free Ringer solution, the mean C/N ratio was 2.18 +/- 0.04 (n = 11). After 5 hr exchange in Ringer solution as a control, the mean C/N ratio was 1.39 +/- 0.18 (n = 7). The cytoplasm thus contained a fraction of (22)Na inexchangeable with Li, and more slowly exchangeable with Na than that in the nucleus.4. The non-Li-exchangeable fraction of internal Na thus revealed appeared to be quantitatively similar to that already demonstrated by studies of (22)Na fluxes and of internal Na activity by means of Na-sensitive micro-electrodes.
摘要
  1. 用(22)钠标记冷冻细胞的放射自显影术已被用于定位卵母细胞中内部钠的一个隔离部分,该部分与外部锂的交换非常缓慢或根本不交换。

  2. 通过光度测量法测得的细胞核和细胞质中的相对颗粒密度,被用作卵母细胞内(22)钠分布的指标。在测试实验中,颗粒密度在切片边缘19微米内降至50%。由于卵母细胞直径较大(>600微米)及其细胞核直径较大(>200微米),这种分辨率足以确定颗粒密度的细胞质/细胞核(C/N)比值。

  3. 在完全用(22)钠加载的卵母细胞中,平均C/N比值为0.92±0.03(n = 11)。在锂替代的无钠林格溶液中交换5小时后,平均C/N比值为2.18±0.04(n = 11)。作为对照,在林格溶液中交换5小时后,平均C/N比值为1.39±0.18(n = 7)。因此,细胞质中含有一部分与锂不可交换的(22)钠,并且与钠的交换比细胞核中的更慢。

  4. 由此揭示的内部钠的非锂可交换部分在数量上似乎与通过(22)钠通量研究和使用钠敏感微电极对内部钠活性的研究中已经证明的部分相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e8e/1395571/198871684988/jphysiol01044-0065-a.jpg

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