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Biomedical subjects

Taiji Yamaguchi

Publications and source records attributed to Taiji Yamaguchi.

11 recordsLinked to original sources

Role of eNOS-derived NO in the postischemic anti-inflammatory effects of antecedent ethanol ingestion in murine small intestine.

Ingestion of low levels of ethanol 24 h before [ethanol preconditioning (EPC)] ischemia and reperfusion (I/R) prevents postischemic leukocyte rolling (LR) and adhesion (LA), effects that were abolished by adenosine A(2) receptor (ADO-A(2)R) antagonists or nitric oxide (NO) synthase (NOS) inhibitors. The aims of this study were to determine whether NO derived from endothelial NOS (eNOS) during the period of ethanol exposure triggered entrance into this preconditioned state and whether these events were initiated by an ADO-A(2)R-dependent mechanism. Ethanol or distilled water vehicle was administered to C57BL/6J [wild type (WT)] or eNOS-deficient (eNOS-/-) mice by gavage. Twenty-four hours later, the superior mesenteric artery was occluded for 45 min. LR and LA were quantified by intravital microscopy after 30 and 60 min of reperfusion. I/R increased LR and LA in WT mice, effects that were abolished by EPC or NO donor preconditioning (NO-PC). NO-PC was not attenuated by coincident administration of an ADO-A(2)R antagonist. I/R increased LR and LA in eNOS-/- mice to levels comparable with those noted in WT animals. However, EPC only slightly attenuated postischemic LR and LA, whereas NO-PC remained effective as a preconditioning stimulus in eNOS-/- mice. Preconditioning with an ADO-A(2)R agonist (which we previously demonstrated prevents I/R-induced LR and LA in WT animals) failed to attenuate these postischemic adhesive responses in eNOS-/- mice. Our results indicate that EPC is triggered by NO formed secondary to ADO-A(2)R-dependent eNOS activation during the period of ethanol exposure 24 h before I/R.

Animals↗

Successful portal-systemic shunt occlusion with balloon-occluded retrograde transvenous obliteration for portosystemic encephalopathy without liver cirrhosis.

A 68-year-old woman was admitted to the authors' hospital for hepatic encephalopathy. Her laboratory data and computed tomography findings were not suggestive of liver cirrhosis. Superior mesenteric angiography revealed an extrahepatic portal-systemic shunt with a main cause of hepatic encephalopathy. Despite treatment with branched-chain amino acid, lactulose, and kanamycin, hyperammonemia was prolonged, and the portal-systemic shunt was therefore treated with balloon-occluded retrograde transvenous obliteration. After the procedure, hyperammonemia was improved, and there were no signs of recurrent portal-systemic encephalopathy.

Aged↗

Role of calcitonin gene-related peptide in the postischemic anti-inflammatory effects of antecedent ethanol ingestion.

The aim of this study was to determine the role of calcitonin gene-related peptide (CGRP) in the postischemic anti-inflammatory effects of antecedent ethanol ingestion. Ethanol was administered to wild-type C57BL/6 mice on day 1 as a bolus by gavage at a dose that produces a peak plasma ethanol of 45 mg/dl 30 min after administration. Twenty-four hours later (day 2), the superior mesenteric artery was occluded for 45 min followed by 70 min of reperfusion (I/R). Intravital fluorescence microscopy was used to quantify the numbers of rolling (LR) and adherent (LA) leukocytes labeled with carboxyfluorescein diacetate succinimidyl ester in postcapillary venules of the small intestine. I/R increased LR and LA, effects that were prevented by antecedent ethanol. The postischemic anti-inflammatory effects of ethanol consumption were abolished by administration of a specific CGRP receptor antagonist [CGRP-(8-37)] or after sensory nerve neurotransmitter depletion using capsaicin administered 4 days before ethanol ingestion, which initially induces rapid release of CGRP from sensory nerves, thereby depleting stored neuropeptide. Administration of exogenous CGRP or induction of endogenous CGRP release by treatment with capsaicin 24 h before I/R mimicked the postischemic anti-inflammatory effects of antecedent ethanol ingestion. Preconditioning with capsaicin 24 h before I/R was prevented by coincident treatment with CGRP-(8-37), while exogenous CGRP induced an anti-inflammatory phenotype in mice depleted of CGRP by capsaicin administration 4 days earlier. Our results indicate that the effect of antecedent ethanol ingestion to prevent postischemic LR and LA is initiated by a CGRP-dependent mechanism.

Animals↗

Antecedent ethanol ingestion prevents postischemic leukocyte adhesion and P-selectin expression by a protein kinase C-dependent mechanism.

The aim of this study was to determine whether protein kinase C (PKC) contributed to the effects of ethanol ingestion to prevent P-selectin expression, leukocyte rolling (LR), and stationary leukocyte adhesion (LA) induced by subjecting the small bowel to ischemia and reperfusion (I/R) 24 hr later. I/R increased P-selectin expression, LR, and LA, effects that were largely abolished by antecedent ethanol consumption. Exposing the bowel to a specific but nonisoform-selective PKC inhibitor (chelerythrine or bisindolylmaleimide I) during the period of ethanol exposure did not alter the anti-inflammatory effects induced by ethanol ingestion 24 hr prior to I/R. Go-6976, a PKC inhibitor that exhibits a high degree of selectivity for the calcium-dependent PKC isoforms, markedly reduced the effectiveness of antecedent ethanol exposure to abrogate these postischemic inflammatory responses. Our data indicate that antecedent ethanol exposure prevents postischemic P-selectin expression, LR, and LA by a mechanism that involves activation of calcium-dependent PKC isotypes.

Alcohol Drinking↗

Cytokine-induced neutrophil accumulation in the pathogenesis of acute reflux esophagitis in rats.

Although recent reports indicate an increasing incidence of patients with reflux esophagitis, its pathomechanism remains unclear. Cytokines and neutrophils, the latter of which produce reactive oxygen species (ROS), have been implicated in the formation of gastrointestinal diseases. This study investigated the roles of neutrophils, ROS, and cytokines in the pathogenesis of experimental reflux esophagitis. Esophagitis was induced in male Wistar rats by ligation at both the limiting ridge of the stomach and lower portion of the duodenum. The esophagus was then removed, and the lesion index, wet weight, thiobarbituric acid-reactive substances (an index of lipid peroxidation), myeloperoxidase activity (an index of neutrophil accumulation), tumor necrosis factor-alpha (TNF-alpha), and cytokine-induced neutrophil chemoattractant (CINC)-1 in the esophageal mucosa were estimated, and a histological study (hematoxylin-and-eosin staining) was performed. The mRNA expression of TNF-alpha and CINC-1 was analyzed. Anti-neutrophil serum (ANS) was injected intraperitoneally prior to the induction of esophagitis, and inflammatory markers were estimated as described above. The values of all markers increased, and the histological study revealed neutrophil infiltration and edema in mucosa and submucosa at both 12 and 18 h after induction. However, the mRNA expression of both cytokines was observed earlier at 3 and 6 h after induction. ANS inhibited the increases in all inflammatory markers. These results indicate that ROS and lipid peroxidation mainly derived from neutrophils, which are stimulated and mobilized by TNF-alpha and CINC-1, are implicated in the pathogenesis of esophageal inflammation induced by the reflux of gastroduodenal contents.

Animals↗

Antecedent ethanol ingestion prevents postischemic microvascular dysfunction.

Prolonged ischemia followed by reperfusion (I/R) results in impaired endothelial cell function in all segments of the microvasculature. Moreover, microcirculatory dysfunction plays a major role in the genesis of the reperfusion component of total tissue injury in I/R. Thus, preservation of endothelial function is an important therapeutic goal for ameliorating injury in tissues subjected to I/R. An accumulating body of evidence indicates that low to moderate ethanol consumption produces an adaptive transformation to a protected phenotype in both microvascular endothelium and parenchymal cells such that they are rendered resistant to the pathologic effects of I/R. The purpose of this review is to summarize our current understanding of the signaling pathways underlying the development of the preconditioned state induced by antecedent ethanol in arteriolar, capillary, and venular endothelium. In addition, we will highlight understudied areas with regard to microvascular protection afforded by antecedent ethanol in the hopes that this will stimulate investigation of its underlying mechanisms. Understanding these signaling pathways may provide a mechanistic rationale for the development of novel treatment interventions that target both the microcirculatory and parenchymal sequelae to I/R, thereby maximizing the therapeutic potential of the protected phenotypes produced by pharmacologic preconditioning.

Journal Article↗

Antecedent ethanol ingestion prevents postischemic P-selectin expression in murine small intestine.

OBJECTIVE: Ethanol ingestion 24 h prior to ischemia and reperfusion (I/R) prevents postischemic leukocyte rolling and adhesion in postcapillary venules of the small bowel. Since I/R-induced leukocyte rolling is critically dependent on the expression of P-selectin by endothelial cells lining postcapillary venules, the authors hypothesized that antecedent ethanol consumption would attenuate postischemic expression of this adhesive ligand. METHODS: To address this postulate, P-selectin expression was evaluated using a dual radiolabeled monoclonal antibody technique in the jejunum of mice that received either distilled water vehicle or ethanol by gavage (dose) on day 1 and then were subjected to sham I/R (nonischemic controls) or I/R (20 min ischemia/60 min reperfusion) 24 h later. RESULTS: I/R was associated with a 2-fold increase in P-selectin expression relative to nonischemic controls, an effect that was largely abolished by antecedent ethanol ingestion. Exposing the bowel to adenosine deaminase or adenosine A2 receptor antagonists (DMPX or ZM241385), an NO synthase inhibitor (L-NIO) or an NO scavenger (PTIO), or an antioxidant (mercaptoproprionyl glycine) during the period of ethanol exposure on day 1 prevented the beneficial effect of ethanol to limit I/R-induced P-selectin expression, on day 2. CONCLUSIONS: The data indicate that antecedent ethanol exposure prevents postischemic P-selectin expression on day 2 by a mechanism that is triggered by adenosine A2 receptor activation and the formation of nitric oxide (NO) and reactive oxygen species (ROS) during the period of ethanol exposure on day 1.

Animals↗

Late preconditioning by ethanol is initiated via an oxidant-dependent signaling pathway.

Ingestion of alcoholic beverages at low to moderate levels 24 h prior to ischemia and reperfusion (I/R) prevents postischemic leukocyte/endothelial cell adhesive interactions, a phenomenon referred to as late ethanol preconditioning (EtOH-PC). The aim of this study was to determine whether oxidants act as initiators of late EtOH-PC. Ethanol was instilled into the stomachs of C57BL/6 mice as a bolus by gavage at a dose that produced a peak plasma concentration of 45 mg/dl 30 min after administration and returned to control levels 60 min after ingestion. Twenty four hours later, the superior mesenteric artery was occluded for 45 min followed by 70 min of reperfusion. The numbers of rolling and firmly adherent leukocytes were quantified in postcapillary venules of the small intestine in sham animals (no EtOH-PC, no I/R), in mice subjected to I/R alone or EtOH-PC + I/R, and in animals treated with Mn-TBAP (a cell-permeant superoxide dismutase mimetic), oxypurinol (a XO inhibitor), the NAD(P)H oxidase inhibitors PR-39 or apocynin, or oxypurinol plus PR39 during the period of EtOH-PC on Day 1 followed by I/R on Day 2. In separate groups of mice, oxypurinol or apocynin were also administered 1 h after ethanol ingestion on Day 1, with induction of I/R 24 h later. I/R induced marked increases in leukocyte rolling and adherence, effects that were completely prevented by EtOH-PC. Coincident treatment with Mn-TBAP, oxypurinol, PR-39, apocynin, or oxypurinol plus PR-39 with ethanol attenuated these anti-inflammatory actions of EtOH-PC. However, administration of oxypurinol or apocynin 1 h after ethanol ingestion failed to prevent these protective effects of EtOH-PC. Our results indicate that reactive oxygen species formed during the period of ethanol exposure on Day 1 trigger the development of an anti-inflammatory phenotype that renders the small bowel resistant to the proadhesive effects of I/R 24 h later.

Animals↗

Enhanced intestinal inflammation induced by dextran sulfate sodium in tumor necrosis factor-alpha deficient mice.

BACKGROUND AND AIMS: Tumor necrosis factor-alpha (TNF-alpha) is a potent pro-inflammatory cytokine thought to be involved in the pathogenesis of inflammatory bowel disease. To further define the role of TNF-alpha in intestinal inflammation, we studied the effects of dextran sulfate sodium (DSS) administration in mice with targeted deletions of TNF-alpha gene. METHODS: Acute colitis was induced in female TNF-alpha-/- and TNF-alpha+/+ mice by administering 4.5% DSS orally in drinking water for seven days. The colonic mucosal injury and inflammation was evaluated based on body weight changes, total colon length, luminal hemoglobin, and histological findings. Colonic mRNA expression for inducible nitric oxide synthase (iNOS), TNF-alpha, interferon-gamma (IFN-gamma) and interleukin-4 (IL-4) were measured by reverse transcription polymerase chain reaction (RT-PCR), and nuclear factor kappaB (NF-kappaB) activation was evaluated by electrophoretic mobility shift assay. RESULTS: In each assessment, colonic injury was significantly aggravated in DSS-treated TNF-alpha-/- mice compared with DSS-treated TNF-alpha+/+ mice. The survival rate of TNF-alpha-/- mice on day seven was 40%; in contrast, all TNF-alpha+/+ mice were alive. Histological study also showed an enhanced infiltration of inflammatory cells, especially neutrophils, and mucosal cell disruption in DSS-treated TNF-alpha-/- mice compared with DSS-treated TNF-alpha+/+ mice. On day seven, mRNA levels of IFN-gamma and IL-4 in the colons of TNF-alpha-/- mice were faint or not detected; in contrast, those of TNF-alpha+/+ mice were detected. Although the expression of iNOS mRNA and luminal nitrite levels were similarly increased in both mice on day seven, this induction was delayed in TNF-alpha-/- mice during the early phase. The degree of NF-kappaB binding activity seemed to be similar between the two types of mice on day seven. CONCLUSION: DSS-induced inflammation is significantly enhanced in TNF-alpha-/- mice compared to TNF-alpha+/+ mice. These data suggest that persistent and marked blockage of TNF-alpha bioactivity may provide a detrimental effect on acute intestinal inflammation.

Acute Disease↗

Ischemic preconditioning prevents postischemic arteriolar, capillary, and postcapillary venular dysfunction: signaling pathways mediating the adaptive metamorphosis to a protected phenotype in preconditioned endothelium.

Prolonged ischemia followed by reperfusion (I/R) results in impaired endothelial cell function in all segments of the microvasculature. Moreover, endothelial dysfunction plays a major role in the genesis of the reperfusion component of total tissue injury in I/R. Thus, preservation of endothelial function is an important therapeutic goal for ameliorating injury in tissues subjected to I/R. An accumulating body of evidence indicates that both microvascular endothelium and parenchymal cells can be rendered resistant to the pathological effects of I/R by antecedent exposure to brief periods of ischemia, a phenomenon referred to as ischemic preconditioning (IPC). Although the mechanisms underlying the microvascular effects of preconditioning have been far less extensively studied, work conducted to date indicates that there are fundamental differences in the signaling pathways that underlie the adaptive transformation to a protected or defensive phenotype in the endothelium compared to those that contribute to the development of a preconditioned state in parenchymal cells. Thus, the purposes of this review are to summarize our current understanding of the mechanisms whereby IPC induces the adaptive transformation to a protected or defensive phenotype in parenchymal cells and to compare and contrast this with the signaling pathways that invoke a preconditioned state in arteriolar, capillary, and venular endothelium. In addition, we highlight understudied areas with regard to microvascular protection afforded by antecedent ischemia in the hopes that this will stimulate investigation of the underlying mechanisms. Understanding these signaling pathways may provide a mechanistic rationale for the development of novel treatment interventions that target both the microcirculatory and parenchymal sequelae to I/R, thereby maximizing the therapeutic potential of the protected phenotypes produced by pharmacological preconditioning.

Adaptation, Physiological↗

Preconditioning with ethanol prevents postischemic leukocyte-endothelial cell adhesive interactions.

Long-term ethanol consumption at low to moderate levels exerts cardioprotective effects in the setting of ischemia and reperfusion (I/R). The aims of this study were to determine whether 1) a single orally administered dose of ethanol [ethanol preconditioning (EtOH-PC)] would induce a biphasic temporal pattern of protection (early and late phases) against the inflammatory responses to I/R and 2) adenosine and nitric oxide (NO) act as initiators of the late phase of protection. Ethanol was administered as a bolus to C57BL/6 mice at a dose that achieved a peak plasma concentration of ~45 mg/dl 30 min after gavage and returned to control levels within 60 min of alcohol ingestion. The superior mesenteric artery was occluded for 45 min followed by 60 min of reperfusion beginning 10 min or 1, 2, 3, 4, or 24 h after ethanol ingestion, and the numbers of fluorescently labeled rolling and firmly adherent (stationary) leukocytes in single postcapillary venules of the small intestine were quantified using intravital microscopic approaches. I/R induced marked increases in leukocyte rolling and adhesion, effects that were attenuated by EtOH-PC 2-3 h before I/R (early phase), absent when assessed after 10 min, 1 h, and 4 h of ethanol ingestion, with an even more powerful late phase of protection reemerging when I/R was induced 24 h later. The anti-inflammatory effects of late EtOH-PC were abolished by treatment with adenosine deaminase, an adenosine A(2) (but not A(1)) receptor antagonist, or a NO synthase (NOS) inhibitor during the period of EtOH-PC. Preconditioning with an adenosine A(2) (but not an A(1)) receptor agonist in lieu of ethanol 24 h before I/R mimicked the protective actions of late phase EtOH-PC. Like EtOH-PC, the effect of preconditioning with an adenosine A(2) receptor agonist was abrogated by coincident NOS inhibition. These findings suggest that EtOH-PC induces a biphasic temporal pattern of protection against the proinflammatory effects of I/R. In addition, our observations are consistent with the hypothesis that the late phase of EtOH-PC is triggered by NO formed secondary to adenosine A(2) receptor-dependent activation of NOS during the period of ethanol exposure.

Adenosine↗