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氨对体内和体外胰腺酶分泌的影响。

The effects of ammonia on pancreatic enzyme secretion in vivo and in vitro.

作者信息

Jaworek J, Bilski J, Jachimczak B, Cieszkowski M, Kot M, Bielański W, Konturek S J

机构信息

Chair of Physiology University School of Medicine Jagiellonian University, Kraków, Poland.

出版信息

J Physiol Pharmacol. 2000 Jun;51(2):315-32.

Abstract

BACKGROUND

Recent studies clearly demonstrate that Helicobacter pylori (H. pylori) infection of the stomach causes persistent elevation of ammonia (NH3) in gastric juice leading to hypergastrinemia and enhanced pancreatic enzyme secretion.

METHODS

The aim of this study is to evaluate the influence of NH4OH on plasma gastrin level and exocrine pancreatic secretion in vivo in conscious dogs equipped with chronic pancreatic fistulas and on secretory activity of in vitro isolated acini obtained from the rat pancreas by collagenase digestion. The effects of NH4OH on amylase release from pancreatic acini were compared with those produced by simple alkalization of these acini with NaOH.

RESULTS

NH4OH given intraduodenally (i.d.) in increasing concentrations (0.5, 1.0, 2.0, 4.0, or 8.0 mM/L) resulted in an increase of pancreatic protein output, reaching respectively 9%, 10%, 19%, 16% and 17% of caerulein maximum in these animals and in a marked increase in plasma gastrin level. NH4OH (8 x 0 mM/L, i.d.) given during intravenous (i.v.) infusion of secretin (50 pmol/kg-h) and cholecystokinin (50 pmol/kg-h) reduced the HCO3 and protein outputs by 35% and 37% respectively, as compared to control obtained with infusion of secretin plus cholecystokinin alone. When pancreatic secretion was stimulated by ordinary feeding the same amount of NH4OH administered i.d. decreased the HCO3- and protein responses by 78% and 47% respectively, and had no significant effect on postprandial plasma gastrin. In isolated pancreatic acini, increasing concentrations of NH4OH (10(-7)-10(-4) M) produced a concentration-dependent stimulation of amylase release, reaching about 43% of caerulein-induced maximum. When various concentrations of NH4OH were added to submaximal concentration of caerulein (10(-12) M) or urecholine (10(-5) M), the enzyme secretion was reduced at a dose 10(-5) M of NH4OH by 38% or 40%, respectively. Simple alkalization with NaOH of the incubation medium up to pH 8.5 markedly stimulated basal amylase secretion from isolated pancreatic acini, whereas the secretory response of these acini to pancreatic secretagogues was significantly diminished by about 30%. LDH release into the incubation medium was not significantly changed in all tests indicating that NH4OH did not produce any apparent damage of pancreatic acini and this was confirmed by histological examination of these acini.

CONCLUSIONS

  1. NH4OH affects basal and stimulated pancreatic secretion. 2. The excessive release of gastrin may be responsible for the stimulation of basal pancreatic enzyme secretion in conscious animals, and 3. The inhibitory effects of NH4OH on stimulated secretion might be mediated, at least in part, by its direct action on the isolated pancreatic acini possibly due to the alkalization of these acini.
摘要

背景

近期研究清楚地表明,胃幽门螺杆菌(H. pylori)感染会导致胃液中氨(NH3)持续升高,进而引发高胃泌素血症并增强胰腺酶分泌。

方法

本研究旨在评估氢氧化铵(NH4OH)对清醒的、配备慢性胰瘘的犬体内血浆胃泌素水平和胰腺外分泌的影响,以及对通过胶原酶消化从大鼠胰腺获得的体外分离腺泡分泌活性的影响。将NH4OH对胰腺腺泡淀粉酶释放的影响与用氢氧化钠对这些腺泡进行简单碱化所产生的影响进行比较。

结果

十二指肠内(i.d.)给予浓度递增的NH4OH(0.5、1.0、2.0、4.0或8.0 mM/L)会导致胰腺蛋白输出增加,在这些动物中分别达到蛙皮素最大值的9%、10%、19%、16%和17%,并且血浆胃泌素水平显著升高。在静脉内(i.v.)输注促胰液素(50 pmol/kg - h)和胆囊收缩素(50 pmol/kg - h)期间十二指肠内给予NH4OH(8×0 mM/L),与单独输注促胰液素加胆囊收缩素相比,HCO3和蛋白输出分别降低了35%和37%。当通过普通喂食刺激胰腺分泌时,十二指肠内给予相同量的NH4OH使HCO3 - 和蛋白反应分别降低了78%和47%,并且对餐后血浆胃泌素没有显著影响。在分离的胰腺腺泡中,浓度递增的NH4OH(10(-7)-10(-4) M)产生了浓度依赖性的淀粉酶释放刺激,达到蛙皮素诱导最大值的约43%。当将不同浓度的NH4OH添加到次最大浓度的蛙皮素(10(-12) M)或乌拉胆碱(10(-5) M)中时,在NH4OH剂量为10(-5) M时,酶分泌分别降低了38%或40%。用氢氧化钠将孵育培养基简单碱化至pH 8.5可显著刺激分离的胰腺腺泡的基础淀粉酶分泌,而这些腺泡对胰腺促分泌剂的分泌反应显著降低了约30%。在所有测试中,乳酸脱氢酶(LDH)释放到孵育培养基中没有显著变化,表明NH4OH没有对胰腺腺泡产生任何明显损伤,并且这些腺泡的组织学检查证实了这一点。

结论

  1. NH4OH影响基础和刺激后的胰腺分泌。2. 胃泌素的过度释放可能是清醒动物基础胰腺酶分泌受刺激的原因,并且3. NH4OH对刺激分泌的抑制作用可能至少部分是由其对分离的胰腺腺泡的直接作用介导的,这可能是由于这些腺泡的碱化所致。

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