首页> 美国卫生研究院文献>The Journal of Physiology >Transmural calcium fluxes and role of mucins as cellular calcium-transport vehicles in chicken trachea in vitro.
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Transmural calcium fluxes and role of mucins as cellular calcium-transport vehicles in chicken trachea in vitro.

机译:透壁钙通量和粘蛋白在鸡气管中作为细胞钙运输载体的作用。

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摘要

1. Transmural Ca2+ fluxes in tracheal tissue under physiological [Ca2+] conditions and the effect of altered serosal and luminal [Ca2+] on Ca2+ movements were investigated using chicken tracheal preparations in vitro. 2. In the presence of physiological [Ca2+] (1.8 mM), there was unidirectional Ca2+ flux with a small but steady uptake of Ca2+ from the serosal side into the submucosa followed by Ca2+ transport into the mucosa and then Ca2+ efflux into the tracheal lumen. The Ca2+ uptake by the tracheal tissue was via a diffusion process. There was no evidence of Ca2+ uptake via slow Ca2+ channels or Na+-Ca2+ exchange pathways. On the other hand, Ca2+ uptake from the lumen into the mucosa and Ca2+ efflux from the submucosa into the serosal side were almost negligible. 3. High serosal [Ca2+] (18.0 mM) and/or low luminal [Ca2+] (0.18 mM) increased significantly both Ca2+ uptake by the tissue from its serosal side and Ca2+ efflux into the lumen. Directional Ca2+ effect appeared to increase Ca2+ uptake via a diffusion process. 4. Transport of Ca2+ from the mucosa into the lumen comprised efflux of both filterable and mucin-bound forms of Ca2+. Under physiological [Ca2+] conditions, whilst initial efflux rates of both filterable and mucin-bound Ca2+ were almost equal, the net efflux of Ca2+ in mucin-bound form after 10 min was about 33% higher than that of filterable Ca2+. Similarly, the increase in Ca2+ efflux as a result of high serosal [Ca2+] involved a significant increase in the efflux of mucin-bound Ca2+ only, whereas the increased Ca2+ efflux as a result of low luminal [Ca2+] involved a significant increase in efflux of both filterable and mucin-bound Ca2+. 5. The transport of Ca2+ from the mucosa into the lumen in the form of mucin-bound Ca2+ appeared to play a significant role in the regulation of Ca2+ efflux from the tissue under increased Ca2+ influx or efflux conditions resulting from interventions with serosal and luminal [Ca2+]. 6. A concurrent stimulation of secretion of unique low molecular weight sulphate-rich components and high molecular weight mucin complexes with increased Ca2+ influx into and efflux from the tracheal tissue in response to high serosal and low luminal [Ca2+] allude to a plausible role of these secretory macromolecular mucin complexes as cellular Ca2+ transport vehicles.
机译:1.使用鸡气管体外制剂研究了在生理[Ca2 +]条件下气管组织中的透壁Ca2 +通量以及浆膜和腔内[Ca2 +]改变对Ca2 +运动的影响。 2.在存在生理性[Ca2 +](1.8 mM)的情况下,存在单向Ca2 +通量,Ca2 +从浆膜侧进入粘膜下层小而稳定地吸收,然后Ca2 +转运入粘膜,然后Ca2 +外排入气管腔。 。气管组织对钙的吸收是通过扩散过程。没有证据表明通过缓慢的Ca2 +通道或Na + -Ca2 +交换途径吸收Ca2 +。另一方面,从腔进入粘膜的Ca2 +吸收和从粘膜下层到浆膜侧的Ca2 +流出几乎可以忽略不计。 3.高浆膜[Ca2 +](18.0 mM)和/或低管腔[Ca2 +](0.18 mM)显着增加了组织从浆膜侧吸收Ca2 +和向腔内Ca2 +流出。定向Ca2 +效应似乎通过扩散过程增加了Ca2 +的吸收。 4.Ca 2+从粘膜向内腔的运输包括Ca 2+的可过滤形式和粘蛋白结合形式的外排。在生理[Ca2 +]条件下,虽然可过滤的和与粘蛋白结合的Ca2 +的初始流出率几乎相等,但10分钟后以粘蛋白结合的形式Ca2 +的净流出比可过滤的Ca2 +高约33%。同样,高浆膜[Ca2 +]引起的Ca2 +流出量的增加仅涉及粘蛋白结合的Ca2 +的流出量的显着增加,而低腔[Ca2 +]导致的Ca2 +流出量的增加涉及到流出量的显着增加可过滤的和粘蛋白结合的Ca2 +。 5. Ca2 +以粘蛋白结合的Ca2 +形式从黏膜进入腔内,在因浆膜和管腔介入而导致的Ca2 +内流或外流条件增加的情况下,在组织中Ca2 +外流的调节中起着重要作用[ Ca2 +]。 6.对高浆膜和低腔[Ca2 +]的响应同时刺激了独特的低分子量富含硫酸盐的成分和高分子量粘蛋白复合物的分泌,同时增加了Ca2 +流入气管组织和从气管组织流出,这暗示了可能的作用。这些分泌性大分子粘蛋白复合物作为细胞Ca2 +转运载体。

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