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小鼠心肌在个体发育过程中缝隙连接的形成与生长:一项冷冻蚀刻研究。

Formation and growth of gap junctions in mouse myocardium during ontogenesis: a freeze-cleave study.

作者信息

Gros D, Mocquard J P, Challice C E, Schrevel J

出版信息

J Cell Sci. 1978 Apr;30:45-61. doi: 10.1242/jcs.30.1.45.

Abstract

The freeze-cleave technique demonstrates the presence of gap junctions at early stages of mouse cardiac muscle ontogenesis. The formation and growth of these junctions were studied at 4 stages of development: 10, 14, 18 days post-coitum (dpc) and at the adult stage. The diverse aspects of the gap junctions are interpreted as different steps in their formation. The first indication of this formation seems to be the presence of linear arrays of 9-nm particles on PF faces. At one end of these arrays a small aggregate of particles appears which acts as nucleation site and grows by incorporating individual gap particles and/or linear arrays. Nexuses with arms and/or central particle-free zones would represent intermediate steps in the formation of junctions. The largest nexuses could be formed by fusion of smaller ones and/or by accretion of gap particles. Analysis of the size distribution of gap junctions shows their growth during their development. At 10 dpc the surface area (S) of nexuses ranges from 0.1 to 3 x 10(-2) micrometer2, at 14 dpc from 0.1 to 15 x 10(-2) micrometer2, at 18 dpc from 0.1 to 26 x 10(-2) micrometer2, and at the adult stage from 0.1 to 54 x 10(-2) micrometer2. The percentage of large nexuses (Sgreater than 0.5 x 10(-2) micrometer2) steadily increases from 10 dpc to the adult stage. Fixation by glutaraldehyde before glycerol infiltration does not induce any modification in the size distribution of adult heart gap junctions.

摘要

冷冻蚀刻技术显示在小鼠心肌发生的早期阶段存在缝隙连接。在发育的4个阶段研究了这些连接的形成和生长:交配后10、14、18天(dpc)以及成年阶段。缝隙连接的不同方面被解释为其形成过程中的不同步骤。这种形成的第一个迹象似乎是PF面上存在9纳米颗粒的线性阵列。在这些阵列的一端出现一小群颗粒,其作为成核位点,并通过并入单个缝隙颗粒和/或线性阵列而生长。带有臂和/或中央无颗粒区的连接体将代表连接形成的中间步骤。最大的连接体可以由较小的连接体融合和/或通过缝隙颗粒的积聚形成。对缝隙连接大小分布的分析显示它们在发育过程中生长。在10 dpc时,连接体的表面积(S)范围为0.1至3×10⁻² 平方微米,在14 dpc时为0.1至15×10⁻² 平方微米,在18 dpc时为0.1至26×10⁻² 平方微米,在成年阶段为0.1至54×10⁻² 平方微米。大连接体(S大于0.5×10⁻² 平方微米)的百分比从10 dpc到成年阶段稳步增加。在甘油浸润前用戊二醛固定不会引起成年心脏缝隙连接大小分布的任何改变。

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