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使用蛋白酶抑制剂(FOY-305)对胰腺酶分泌进行全面和选择性抑制。

General and selective inhibition of pancreatic enzyme discharge using a proteinase inhibitor (FOY-305).

作者信息

Adler G, Rausch U, Weidenbach F, Arnold R, Kern H F

出版信息

Klin Wochenschr. 1984 May 2;62(9):406-11. doi: 10.1007/BF01742297.

Abstract

The guanidino acid esters (FOY, FOY-305) represent a new class of potent proteinase inhibitors and are thought to have a beneficial effect on the course of acute pancreatitis. Because of their structure and low molecular size they might enter cells and interfere with cellular processes. To test this possibility in the case of the exocrine pancreas a series of in vivo and in vitro studies was carried out to analyse intracellular transport and discharge of pancreatic enzymes in the presence of FOY-305. The infusion of FOY-305 to conscious rats led to a transient inhibition of protein and enzyme discharge from the cannulated pancreas accompanied by lower serum enzyme levels and increased enzyme content in the pancreas. An identical inhibition of discharge of newly synthesized proteins was observed in vitro in the presence of 1 microM FOY-305. The analysis of the release of individual enzymes using separation on two-dimensional gels showed a pronounced inhibition of mainly the release of acidic proteins. FOY-305 not only interfered with discharge of serine proteinases (trypsinogen, chymotrypsinogen, proelastase) but also with procarboxypeptidases and lipase. It was concluded that FOY-305 enters the acinar cell and due to an unspecific binding to acidic proteins interferes with the intracellular transport of individual enzyme proteins during their passage through the membrane-bound cellular compartments. This charge-dependent effect is independent of the inhibitory effect on enzymatic activity of serine proteinases.

摘要

胍基酸酯(FOY、FOY - 305)是一类新型强效蛋白酶抑制剂,被认为对急性胰腺炎病程具有有益作用。因其结构和低分子量,它们可能进入细胞并干扰细胞过程。为了在胰腺外分泌部验证这种可能性,开展了一系列体内和体外研究,以分析在FOY - 305存在情况下胰腺酶的细胞内转运和分泌情况。向清醒大鼠输注FOY - 305导致插管胰腺中蛋白质和酶的分泌出现短暂抑制,同时血清酶水平降低,胰腺中酶含量增加。在体外,当存在1微摩尔FOY - 305时,观察到新合成蛋白质的分泌受到同样抑制。使用二维凝胶分离对单个酶的释放进行分析表明,主要是酸性蛋白质的释放受到显著抑制。FOY - 305不仅干扰丝氨酸蛋白酶(胰蛋白酶原、糜蛋白酶原、弹性蛋白酶原)的分泌,还干扰羧肽酶原和脂肪酶的分泌。得出的结论是,FOY - 305进入腺泡细胞,由于与酸性蛋白质的非特异性结合,在单个酶蛋白通过膜结合细胞区室的过程中干扰其细胞内转运。这种电荷依赖性效应独立于对丝氨酸蛋白酶酶活性的抑制作用。

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