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生长抑素28与人消化间期肠道运动及胰腺分泌的耦联

Somatostatin 28 and coupling of human interdigestive intestinal motility and pancreatic secretion.

作者信息

von der Ohe M, Layer P, Wollny C, Ensinck J W, Peeters T L, Beglinger C, Goebell H

机构信息

Department of Medicine, University of Essen, Germany.

出版信息

Gastroenterology. 1992 Sep;103(3):974-81. doi: 10.1016/0016-5085(92)90031-s.

Abstract

To determine the effects of small increases in somatostatin 28 plasma concentrations on human interdigestive gastrointestinal motility and pancreatic secretion, six fasting volunteers were intubated with gastroduodenal multilumen tubes and motility and pancreatic enzyme secretion were measured. Subjects received intravenous NaCl and somatostatin 28 at 11 and 44 pmol.kg-1.h-1 for 120 minutes or at least one interdigestive cycle. The two doses increased plasma somatostatin 28 levels within the physiological or into the supraphysiological range, respectively. Somatostatin 28 at 11 and 44 pmol.kg-1.h-1 decreased the length of the interdigestive motility cycle by 50% and 67% compared with controls, respectively (both P less than 0.002). Propagation velocity of the migrating motor complex (P less than 0.01) and plasma motilin were decreased (P less than 0.01). The smaller and larger dose decreased pancreatic enzyme outputs by 50% and 65%, respectively (P less than 0.005), but with the smaller dose, phase III-associated enzyme outputs were greater than phase I outputs. These findings suggest that small changes in somatostatin 28 plasma concentrations modulate human interdigestive motility and pancreatic enzyme output while coupling of motor and secretory events is preserved.

摘要

为了确定生长抑素28血浆浓度的小幅升高对人体消化间期胃肠动力和胰腺分泌的影响,6名空腹志愿者经胃十二指肠多腔管插管,并测量其动力和胰腺酶分泌。受试者在晚上11点和晚上11点分别接受静脉注射氯化钠和生长抑素28,剂量为11和44 pmol·kg-1·h-1,持续120分钟或至少一个消化间期。这两个剂量分别使血浆生长抑素28水平升高至生理范围或超生理范围。与对照组相比,11和44 pmol·kg-1·h-1的生长抑素28分别使消化间期动力周期长度缩短了50%和67%(P均小于0.002)。移行性运动复合波的传播速度(P小于0.01)和血浆胃动素水平降低(P小于0.01)。较小剂量和较大剂量分别使胰腺酶分泌量降低了50%和65%(P小于0.005),但较小剂量时,与第三相相关的酶分泌量大于第一相。这些发现表明,生长抑素28血浆浓度的微小变化可调节人体消化间期动力和胰腺酶分泌,同时运动和分泌事件的耦合得以保留。

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