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Biomedical subjects

Y Ouchi

Publications and source records attributed to Y Ouchi.

At least 127 records · Page 7Linked to original sources

Correlation between flow-mediated vasodilatation of the brachial artery and intima-media thickness in the carotid artery in men.

Endothelial dysfunction has been reported to be the initial step in atherosclerosis. A noninvasive technique that uses ultrasound to measure the intima-media thickness of the carotid artery has been applied to evaluate localized atherosclerosis. This study was undertaken to elucidate whether endothelial dysfunction in the brachial artery is related to the intima-media thickness of the carotid artery. Thirty-four men with atherosclerosis (mean+/-SE age 61+/-2 years) and 33 age-matched men without clinical atherosclerosis were examined. The intima-media thickness and plaque formation of the common carotid artery were assessed by B-mode ultrasonography. We also noninvasively measured brachial artery diameter by the same ultrasound machine when the subjects were at rest, during reactive hyperemia, which causes endothelium-dependent vasodilatation, and after sublingual administration of nitroglycerin, which causes endothelium-independent vasodilatation. The atherosclerosis group had a significantly greater intima-media thickness of the common carotid artery than did the control group (1. 02+/-0.04 versus 0.91+/-0.03 mm, P<0.05). The flow-mediated diameter (FMD) increase (percent FMD=DeltaD/D x 100) in the atherosclerosis group was significantly smaller than that in the control group (2. 8+/-0.4% versus 5.1+/-0.6%, P<0.01). A significant negative correlation between the intima-media thickness of the carotid artery and percent FMD was found in all of the subjects. On multiple regression analysis, percent FMD showed a significant negative correlation with the intima-media thickness of the common carotid artery. These findings support the concept that endothelial dysfunction is significantly related to atherogenesis.

Arteriosclerosis↗

Platelet-activating factor mediates acid-induced lung injury in genetically engineered mice.

Adult respiratory distress syndrome (ARDS) is an acute lung injury of high mortality rate, and the molecular mechanisms underlying it are poorly understood. Acid aspiration-induced lung injury is one of the most common causes of ARDS, characterized by an increase in lung permeability, enhanced polymorphonuclear neutrophil (PMN) sequestration, and respiratory failure. Here, we investigated the role of platelet-activating factor (PAF) and the PAF receptor (PAFR) gene in a murine model of acid aspiration-induced lung injury. Overexpression of the PAFR gene in transgenic mice enhanced lung injury, pulmonary edema, and deterioration of gas exchange caused by HCl aspiration. Conversely, mice carrying a targeted disruption of the PAFR gene experienced significantly less acid-induced injury, edema, and respiratory failure. Nevertheless, the efficiency of PMN sequestration in response to acid aspiration was unaffected by differences in PAFR expression level. The current observations suggest that PAF is involved in the pathogenesis of acute lung injury caused by acid aspiration. Thus, inhibition of this pathway might provide a novel therapeutic approach to acute lung injury, for which no specific pharmaceutical agents are currently available.

Animals↗

ICAM-1 mediates lung leukocyte recruitment but not pulmonary fibrosis in a murine model of bleomycin-induced lung injury.

Bleomycin-induced lung injury has been extensively used as a model of interstitial pneumonia and pulmonary fibrosis. Intercellular adhesion molecule (ICAM)-1 is a ligand for lymphocyte function-associated antigen (LFA)-1alpha and has been shown to be required for leukocyte migration into inflamed areas. The purpose of this report was to investigate the role of the ICAM-1/LFA-1alpha pathway in a murine model of bleomycin-induced lung injury. Animals received 75 mg x kg(-1) bleomycin (BLM) i.v. followed by treatment with phosphate-buffered saline (BLM group), anti-ICAM-1 and LFA-1alpha monoclonal antibodies (mAb) (BLM+mAb group). Inflammatory cell counts of bronchoalveolar lavage (BAL) fluid, hydroxyproline content and histological findings were compared between these groups. In the BLM group, significant increases in total cell count, macrophage count and neutrophil count of BAL fluid were observed on days 7 and 14. In the BLM+mAb group, bleomycin-induced accumulation of neutrophils was significantly reduced on days 7 and 14 (p<0.01). However, the administration of mAb to ICAM-1 and LFA-1alpha did not decrease the lung hydroxyproline content or the histopathological fibrosis grading score, indicating that the antagonism of ICAM-I and LFA-1alpha did not attenuate bleomycin-induced pulmonary fibrosis. This study suggests that the intercellular adhesion molecule-1/lymphocyte function-associated antigen-1alpha pathway mediates the accumulation of inflammatory cells in the injured lung caused by bleomycin; however, other mechanisms are important for the subsequent development of pulmonary fibrosis.

Animals↗

Hydrogen peroxide-induced apoptosis and necrosis in human lung fibroblasts: protective roles of glutathione.

Although reactive oxygen species (ROS)-related cell damage has been implicated in pathogenesis of fibrogenetic pulmonary disorders, features of ROS-mediated cell death in human lung fibroblasts are not completely understood. We therefore examined the effects of hydrogen peroxide (H2O2) on cell growth kinetics in human lung fibroblasts (HFL-1 cells) and tested the roles of antioxidants on the H2O2-induced cell death (i.e., necrosis and apoptosis) in HFL-1 cells. We found that the relatively low concentrations of H2O2 ranging from 10 microM to 100 microM induced predominantly apoptosis, whereas higher concentration of H2O2 ranging 1 mM-10 mM induced predominantly necrosis in HFL-1 cells. Extracellular supplementation of glutathione (GSH) in culture media significantly abolished the H2O2-induced cell death, whereas GSH-depleted cells by pretreatment with buthionine sulfoxime (BSO) were likely to undergo cell death caused by a lower concentration of H2O2 than normal HFL-1 cells without BSO treatment. These results indicate that H2O2 induces both necrosis and apoptosis of human lung fibroblasts at least in part through the action of ROS and that modulation of the ROS production inside and outside of cells may influence the cell survival during oxidative insults.

Antidotes↗

Recombinant E1-deleted adenoviral vectors induce apoptosis in a rat airway epithelial mucous goblet cell line.

Replication-defective adenoviruses (Ad) are used as vectors for delivering therapeutic genes to human airway cells. We examined whether E1-deleted Ad vectors (Ad5-CMV-LacZ) had effects on cell kinetics in SPOC1 cells, which is a rat airway epithelial mucous goblet cell line. There was a vector multiplicity of infection (moi)-dependent increase of the transduction efficiency of the LacZ reporter gene in SPOC cells. Cell proliferation was inhibited in the vector-infected cells compared with that in vehicle-exposed cells. However, increased cell death was observed in the vector-infected cells with a higher moi. The morphology of vector-exposed cells revealed apoptotic features including nuclear condensation and a fragmented nucleus. These results indicate that higher moi of vectors allows the cells to achieve higher gene transfer, but also induce apoptosis of infected cells. Minimizing the induction of apoptosis of vector-infected cells may be an important strategy for the prolongation of transduction efficiency of Ad vectors in airway epithelial mucous goblet cells.

Adenoviridae↗

Impaired swallowing reflex in patients with obstructive sleep apnea syndrome.

BACKGROUND: The swallowing reflex is well coordinated with breathing patterns in normal humans. However, patients with obstructive sleep apnea syndrome (OSAS) may have a swallowing disorder that reflects the abnormal function of nerves and muscles in the suprapharynx. OBJECTIVE: To examine the relationship between the swallowing function and sleep-disordered breathing in patients with OSAS. PARTICIPANTS: Twenty patients with OSAS with a mean (+/-SD) age of 53.4+/-8.9 years old, and 20 age-matched control subjects with a mean age of 51.4+/-9.1 years old. METHODS: OSAS was diagnosed using the recordings of overnight polysomnography. The swallowing function in the subject was tested using a swallowing provocation test. The swallowing reflex was determined according to the following criteria: latent time (LT), the time following a bolus injection of distilled water at the suprapharynx to the onset of swallowing; inspiratory suppression time (IST), the time from the termination of swallowing to the next onset of inspiration; and threshold volume, the minimum volume of water (range, 0.4 to 2 mL) that could evoke the swallowing response. RESULTS: Whereas the LT values in patients with OSAS were larger than the LT values in the control subjects, the IST values (which may reflect the switching mechanism from deglutition apnea to breathing) were actually shorter. In addition, a greater bolus volume was necessary to elicit swallowing in patients with OSAS than was necessary in the control subjects. CONCLUSION: Patients with OSAS are likely to exhibit an impaired swallowing reflex, probably due to the perturbed neural and muscular function of the upper airways.

Case-Control Studies↗

Influence of age on diurnal variability in measurements of spirometric indices and respiratory pressures.

We evaluated variations in spirometric indices (i.e., forced vital capacity [FVC], peak expiratory flow [PEF], and forced expiratory volume in 1 sec [FEV1]) and static respiratory muscle pressures (i.e., maximum static inspiratory pressure [PImax] and maximum static expiratory pressure [PEmax]) within a span of 12 hr in 60 healthy elderly subjects, 60 young subjects, and 30 Chronic Obstructive Pulmonary disease (COPD) patients. There were no differences among data of FVC, PEF, FEV1, PImax, and PEmax on three separate occasions within a day in the elderly or the young. The mean coefficient of variation (CV) values of PEF and PImax on three occasions were 3.0 +/- 0.3% and 4.2 +/- 0.4% in the elderly, and 2.4 +/- 0.2% and 3.7 +/- 0.3% in the young, respectively. No subjects had more than 9% CV on each measurement in the study, suggesting that there is nosignificant daytime variation in measurement of expiratory flow and respiratory pressures in young and elderly people. However, FVC, PEF FEV1, and PImax values in the morning were smaller than those measured at the other two occasions in COPD patients. The results indicate that COPD affects diurnal variation in pulmonary function, but age alone has little impact on diurnal variation.

Adult↗

Effects of angiotensin-converting enzyme (ACE) inhibitors on oxygen radical production and generation by murine lung alveolar macrophages.

We examined the effect of angiotensin-converting enzyme (ACE) inhibitors on oxygen radical production before and generation after phorbol-myristate acetate (PMA) stimulation of lung alveolar macrophages. Lung free cells, predominantly pulmonary alveolar macrophages, were obtained from Fischer 344 rats and guinea pigs using bronchoalveolar lavage. The oxygen radicals produced by pulmonary alveolar macrophages with or without stimulation of PMA were measured by lucigenin-dependent chemiluminescence method using a photon counter, Lumat 9501 (Berthold, Germany). Alacepril, an ACE inhibitor with SH-group, inhibited the oxygen radical production and generation by lung alveolar macrophages harvested from both rats and guinea pigs in a dose-dependent fashion. Approximately 0.3 mM of alacepril inhibited 50% of oxygen radical production of lung alveolar macrophages in both rats and guinea pigs, whereas a higher concentration (1-5 mM) of lisinopril, an ACE inhibitor without SH-group, was necessary to inhibit 50% of oxygen radical production of lung alveolar macrophages in the animals. These results suggest that an ACE inhibitor with SH-group acts as an antioxidant in murine lungs and the treatment with the ACE inhibitor may reduce oxidant stress in hypertensive patients with asthma.

Angiotensin-Converting Enzyme Inhibitors↗

[An elderly case with pseudogout exacerbated by the administration of granulocyte-colony stimulating factor during drug-induced granulocytopenia].

A 82-year-old woman was admitted because of dehydration and chronic renal failure. Although her renal function was improved by hydration, granulocytopenia (granulocyte number 645/mm3) occurred. Treatment with a relatively high dose of H2 blocker for one month before admission may have caused the granulocytopenia. To prevent possible infection in the patient, we administered 75 g of granulocyte-colony stimulating factor (G-CSF) for 5 consecutive days but 4 days after commencement of administration of G-CSF, pain in both knee joints suddenly appeared. Synovial fluid aspiration revealed granulocytosis (10,400/mm3) and deposition of calcium pyrophosphate dihydrate in the knee joints. The level of G-CSF in the synovial fluid was increased in the joints (700 pg/ml), compared with the serum concentration (62 pg/ml). Furthermore, the concentrations of interleukin-6 and interleukin-8 were markedly increased in the synovial fluid. The results indicated that her pseudogout exacerbation by G-CSF was at least in part explained by the increased production of cytokines in the knee joints. Because the prevalence of pseudogout and gout is overwhelming in the elderly, the possibility of GCSF induced exacerbation of joint pain should be carefully considered in elderly patients.

Aged↗