期刊文献+

Gastric mucosal damage in water immersion stress:Mechanism and prevention with GHRP-6 被引量:8

Gastric mucosal damage in water immersion stress:Mechanism and prevention with GHRP-6
下载PDF
导出
摘要 AIM:To investigate the mechanism of gastric mucosal demage induced by water immersion restraint stress(WRS) and its prevention by growth hormone releasing peptide-6(GHRP-6).METHODS:Male Wistar rats were subjected to conscious or unconscious(anesthetized) WRS,simple restraint(SR),free swimming(FS),non-water fluid immersion,immersion without water contact,or rats were placed in a cage surrounded by sand.To explore the sensitivity structures that influence the stress reaction besides skin stimuli,a group the rats had their eyes occluded.Cervical bilateral trunk vagotomy or atropine injection was performed in some rats to assess the parasympathetic role in mucosal damage.Gastric mucosal lesions,acid output and heart rate variability were measured.Plasma renin,endothelin-1 and thromboxane B2 and gastric heat shock protein 70 were also assayed.GHRP-6 was injected [intraperitoneal(IP) or intracerebroventricular(ICV)] 2 h before the onset of stress to observe its potential prevention of the mucosal lesion.RESULTS:WRS for 6 h induced serious gastric mucosal lesion [lesion area,WRS 81.8 ± 6.4 mm 2 vs normal control 0.0 ± 0.0 mm 2,P < 0.01],decreased the heart rate,and increased the heart rate variability and gastric acid secretion,suggesting an increase in vagal nervecarrying stimuli.The mucosal injury was inversely correlated with water temperature(lesion area,WRS at 35 ℃ 56.4 ± 5.2 mm 2 vs WRS at 23 ℃ 81.8 ± 6.4 mm 2,P < 0.01) and was consciousness-dependent.The injury could not be prevented by eye occlusion,but could be prevented by avoiding contact of the rat body with the water by dressing it in an impermeable plastic suit.When water was replaced by vegetable oil or liquid paraffin,there were gastric lesions in the same grade of water immersion.When rat were placed in a cage surrounded by sand,there were no gastric lesions.All these data point to a remarkable importance of cutenuous information transmitted to the high neural center that by vagal nerves reaching the gastric mucosa.FS alone also induced serious gastric injury,but SR could not induce gastric injury.Bilateral vagotomy or atropine prevented the WRS-induced mucosal lesion,indicating that increased outflow from the vagal center is a decisive factor in WRS-induced gastric injury.The mucosal lesions were prevented by prior injection of GHRP-6 via IP did,but not via ICV,suggesting that the protection is peripheral,although a sudden injection is not equivalent to a physiological release and uptake,which eventually may affect the vagal center.CONCLUSION:From the central nervous system,vagal nerves carry the cutaneous stimuli brought about by the immersion restraint,an experimental model for inducing acute gastric erosions.GHRP-6 prevents the occurrence of these lesions. AIM:To investigate the mechanism of gastric mucosal demage induced by water immersion restraint stress(WRS) and its prevention by growth hormone releasing peptide-6(GHRP-6).METHODS:Male Wistar rats were subjected to conscious or unconscious(anesthetized) WRS,simple restraint(SR),free swimming(FS),non-water fluid immersion,immersion without water contact,or rats were placed in a cage surrounded by sand.To explore the sensitivity structures that influence the stress reaction besides skin stimuli,a group the rats had their eyes occluded.Cervical bilateral trunk vagotomy or atropine injection was performed in some rats to assess the parasympathetic role in mucosal damage.Gastric mucosal lesions,acid output and heart rate variability were measured.Plasma renin,endothelin-1 and thromboxane B2 and gastric heat shock protein 70 were also assayed.GHRP-6 was injected [intraperitoneal(IP) or intracerebroventricular(ICV)] 2 h before the onset of stress to observe its potential prevention of the mucosal lesion.RESULTS:WRS for 6 h induced serious gastric mucosal lesion [lesion area,WRS 81.8 ± 6.4 mm 2 vs normal control 0.0 ± 0.0 mm 2,P 〈 0.01],decreased the heart rate,and increased the heart rate variability and gastric acid secretion,suggesting an increase in vagal nervecarrying stimuli.The mucosal injury was inversely correlated with water temperature(lesion area,WRS at 35 ℃ 56.4 ± 5.2 mm 2 vs WRS at 23 ℃ 81.8 ± 6.4 mm 2,P 〈 0.01) and was consciousness-dependent.The injury could not be prevented by eye occlusion,but could be prevented by avoiding contact of the rat body with the water by dressing it in an impermeable plastic suit.When water was replaced by vegetable oil or liquid paraffin,there were gastric lesions in the same grade of water immersion.When rat were placed in a cage surrounded by sand,there were no gastric lesions.All these data point to a remarkable importance of cutenuous information transmitted to the high neural center that by vagal nerves reaching the gastric mucosa.FS alone also induced serious gastric injury,but SR could not induce gastric injury.Bilateral vagotomy or atropine prevented the WRS-induced mucosal lesion,indicating that increased outflow from the vagal center is a decisive factor in WRS-induced gastric injury.The mucosal lesions were prevented by prior injection of GHRP-6 via IP did,but not via ICV,suggesting that the protection is peripheral,although a sudden injection is not equivalent to a physiological release and uptake,which eventually may affect the vagal center.CONCLUSION:From the central nervous system,vagal nerves carry the cutaneous stimuli brought about by the immersion restraint,an experimental model for inducing acute gastric erosions.GHRP-6 prevents the occurrence of these lesions.
出处 《World Journal of Gastroenterology》 SCIE CAS CSCD 2012年第24期3145-3155,共11页 世界胃肠病学杂志(英文版)
基金 Supported by National Natural Science Foundation of China, No.81071072,No.31171088(to Cao JM) and No.81000060(to Gao X)
关键词 Growth substances Gastric ulcer STRESS Be-havior and emotions Autonomic nerve Heart rate vari-ability 胃粘膜损伤 浸水 浸泡 预防 Wistar大鼠 侧脑室注射 束缚应激 迷走神经
  • 相关文献

参考文献2

二级参考文献34

  • 1[3]Patterson D,Abell T,Rothstein R,Koch K,Barnett J.A double-blind multicenter comparison of domperidone and metoclopramide in the treatment of diabetic patients with symptoms of gastroparesis.Am J Gastroenterol 1999; 94:1230-1234
  • 2[4]Tack J,Janssens J,Vantrappen G,Peeters T,Annese V,Depoortere I,Muls E,Bouillon R.Effect of erythromycin on gastric motility in controls and in diabetic gastroparesis.Gastroenterology 1992; 103:72-79
  • 3[5]Ewing DJ,Clarke BF.Autonomic neuropathy:its diagnosis and prognosis.Clin Endocrinol Metab 1986; 15:855-888
  • 4[6]Balaji NS,Crookes PF,Banki F,Hagen JA,Ardill JE,DeMeester TR.A safe and noninvasive test for vagal integrity revisited.Arch Surg 2002; 137:954-958; discussion 958-959
  • 5[7]Kojima M,Hosoda H,Date Y,Nakazato M,Matsuo H,Kangawa K.Ghrelin is a growth-hormone-releasing acylated peptide from stomach.Nature 1999; 402:656-660
  • 6[8]Davenport AP,Bonner TI,Foord SM,Harmar AJ,Neubig RR,Pin JP,Spedding M,Kojima M,Kangawa K.International Union of Pharmacology.LVI.Ghrelin receptor nomenclature,distribution,and function.Pharmacol Rev 2005; 57:541-546
  • 7[9]Howard AD,Feighner SD,Cully DF,Arena JP,Liberator PA,Rosenblum CI,Hamelin M,Hreniuk DL,Palyha OC,Anderson J,Paress PS,Diaz C,Chou M,.Liu KK,N4cKee KK,Pong SS,Chaung LY,Elbrecht A,Dashkevicz M,Heavens R,Rigby M,Sirinathsinghji DJ,Dean DC,Melillo DG,Patchett AA,Nargund R,Griffin PR,DeMartino JA,Gupta SK,Schaeffer JM,Smith RG,Van der Ploeg LH.A receptor in pituitary and hypothalamus that functions in growth hormone release.Science 1996; 273:974-977
  • 8[10]Nishi Y,Isomoto H,Ueno H,Ohnita K,Wen CY,Takeshima F,Mishima R,Nakazato M,Kohno S.Plasma leptin and ghrelin concentrations in patients with Crohn's disease.World J Gastroentero12005; 11:7314-7317
  • 9[11]Dass NB,Munonyara M,Bassil AK,Hervieu GJ,Osbourne S,Corcoran S,Morgan M,Sanger GJ.Grow-th hormone secretagogue receptors in rat and human gastrointestinal tract and the effects of ghrelin.Neuroscience 2003; 120:443-453
  • 10[12]Date Y,Kojima M,Hosoda H,Sawaguchi A,Mondal MS,Suganuma T,Matsukura S,Kangawa K,Nakazato M-Ghrelin,a novel growth hormone-releasing acylated pepfide,is synthesized in a distinct endocrine cell type in the gastrointestinal tracts of rats and humans.Endocrinology 2000; 141:4255-4261

共引文献23

同被引文献34

引证文献8

二级引证文献24

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部