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实验条件下的外分泌胰腺。II. 类晶体结构的体外形成及其功能后果。

Exocrine pancreas under experimental conditions. II. In vitro formation of paracrystalline structures and its functional consequences.

作者信息

Metz J, Forssmann W G

出版信息

Cell Tissue Res. 1976 Oct 6;173(2):221-35. doi: 10.1007/BF00221377.

Abstract

The in vitro formation of paracrystalline structures after addition of high concentrations of amino acids to the incubation medium was investigated in pancreatic lobules and pancreatic homogenates. It could be shown that even in the homogenate, pCPA induced the formation of paracrystalline structures which exhibited the same ultrastructural arrangement as seen in the in vivo induced paracrystalline inclusions in the RER of the rat pancreas. In correlation with the morphological alterations, the functional consequences to the secretory process, i.e. amylase discharge,discharge of pulse-labeled proteins and incorporation of 3H-leucine into pancreatic proteins,were studied in pancreaticlobules. Two different approaches were used. Firstly, the effect of pCPA-pretreatment of rats and secondly, the effect of higher pCPA concentrations in the incubation medium on the secretory process in untreated pancreatic lobules were studied. A nonparallelism of inhibition of the three different steps of the secretory process depending, with respect to its extent,on time after pCPA-application (4-72 h) and on the concentration of pCPA (1-10(-5) to 1-10(-2) M) in the incubation medium was found. In addition to specific effects probably due to pCPA and to the paracrystalline inclusions, unspecific alterations, particularly accompanying degenerative processes after in vivo pretreatment, could be differentiated.

摘要

在胰腺小叶和胰腺匀浆中,研究了向孵育培养基中添加高浓度氨基酸后副晶状结构的体外形成情况。结果表明,即使在匀浆中,对氯苯丙氨酸(pCPA)也能诱导副晶状结构的形成,其超微结构排列与大鼠胰腺粗面内质网中体内诱导的副晶状内含物所见相同。与形态学改变相关,在胰腺小叶中研究了对分泌过程的功能影响,即淀粉酶释放、脉冲标记蛋白的释放以及3H-亮氨酸掺入胰腺蛋白。采用了两种不同的方法。首先,研究了对大鼠进行pCPA预处理的效果;其次,研究了在孵育培养基中较高浓度的pCPA对未处理的胰腺小叶分泌过程的影响。发现分泌过程的三个不同步骤的抑制作用不平行,其程度取决于pCPA应用后的时间(4 - 72小时)以及孵育培养基中pCPA的浓度(1×10⁻⁵至1×10⁻² M)。除了可能由pCPA和副晶状内含物引起的特异性影响外,还可以区分出非特异性改变,特别是体内预处理后伴随的退行性过程。

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