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Biomedical subjects

Michiko Mori

Publications and source records attributed to Michiko Mori.

3 recordsLinked to original sources

The evaluation of problem-based learning (PBL) for three years.

PBL was evaluated in the course of nursing education for three years as problem solution, self-learning, integrated learning, and communication skills. The students who entered this school in 2000-2002 were examined. The students themselves evaluated each session and tutor, with the same evaluation format. In the three groups, the grand mean of the self-evaluation in each school year was elevated year-to-year (p < .001), while that of evaluated elements significantly increased (p < .001). Self-evaluation of communication skills became the highest. The usefulness of PBL is supported by using the evaluation scale the appropriate problems, and tutoring capabilities.

Education, Nursing↗

Suppression by 17beta-estradiol of monocyte adhesion to vascular endothelial cells is mediated by estrogen receptors.

Several observational studies have shown that estrogen replacement therapy decreases cardiovascular mortality and morbidity in postmenopausal women. However, The Women's Health Initiative (WHI) study has found that women receiving estrogen plus progestin had a significantly higher risk of breast cancer, coronary heart disease, stroke, and pulmonary embolus. In the present study, we examined whether estrogen prevents mechanisms that relate to plaque formation by inhibiting monocyte adhesion to endothelial cells. ECV304 cells, an endothelial cell line that normally expresses minimal estrogen receptor (ER)alpha, were transfected with an ERalpha expression plasmid. Treatment with tumor necrosis factor (TNF)-alpha increased expression of vascular cell adhesion molecule (VCAM)-1 mRNA, activation of nuclear factor-kappaB (NF-kappaB), and U937 cell adhesion in ECV304 cells. These effects of TNF-alpha were not significantly inhibited by pretreatment of native ECV304 cells with 17beta-estradiol (E(2)). In ECV304 cells overexpressing ERalpha, E(2) significantly inhibited the effects of TNF-alpha on NF-kappaB activation, VCAM-1 expression, and U937 cell adhesion. These findings suggest E(2) suppresses inflammatory cell adhesion to vascular endothelial cells that possess functional estrogen receptors. The mechanism of suppression may involve inhibition of NF-kappaB-mediated up-regulation of VCAM-1 expression induced by atherogenic stimuli. E(2) may prevent plaque formation, as first stage of atheroscrelosis through inhibiting adhesion monocytes to endothelial cell. Actions of estrogen replacement therapy can be assessed in terms of densities of functional ERalpha.

Cell Adhesion↗

Levels of lipoprotein(a) in normal and compromised pregnancy.

OBJECTIVE: To study maternal lipoprotein(a) levels in normal pregnancy and in pregnancy with evidence of vascular disease in the maternal uteroplacental circulation defined by Doppler ultrasound study. SAMPLES: Maternal venous blood was collected from 75 normal pregnant women and 68 pregnant women with evidence of potential uteroplacental vascular disease identified by Doppler ultrasound study. METHODS: Plasma lipoprotein(a) levels in maternal blood were measured using an enzyme-liked immunosorbent assay method. MAIN OUTCOME MEASURES: Plasma lipoprotein(a) levels and pregnancy outcome were examined. RESULTS: None of the normal group had lipoprotein(a) levels greater than 30 mg/dl, a cutoff level which has been associated with increased risk of atherosclerosis. 28 of the 68 women with uteroplacental insufficiency had lipoprotein(a) levels greater than this cutoff level. In this group there was a statistically significant higher prevalence of preeclampsia in comparison with women with a normal lipoprotein(a) level (p < 0.001). The lipoprotein(a) level was significantly higher in severe (n = 13, median 60.5 mg/dl, P < 0.001] than in mild preeclampsia (n = 5, median 34 mg/dl). Those with high levels (> 30 mg/dl) exhibited significantly more adverse indices of fetal outcome. CONCLUSION: This study has demonstrated that high levels of lipoprotein(a) interfere with uteroplacental circulation and play a role in the pathophysiology of preeclampsia. Lipoprotein(a) concentrations are associated with the severity of the disease. We suggest that high levels of lipoprotein(a) might affect the placenta and fetus.

Adult↗