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Biomedical subjects

Yoshifumi Miyazaki

Publications and source records attributed to Yoshifumi Miyazaki.

5 recordsLinked to original sources

Phytoncides (wood essential oils) induce human natural killer cell activity.

To explore the effect of forest bathing on the human immune system, we investigated the effect of phytoncides (wood essential oils) on natural killer (NK) activity and the expression of perforin, granzyme A and granulysin in human NK cells. We used NK-92MI cell, an interleukin-2 independent human NK cell line derived from the NK-92 cell, in the present study. NK-92MI cells express the CD56 surface marker, perforin, granzyme A, and granulysin by flow cytometry and are highly cytotoxic to K562 cells in chromium release assay. Phytoncides significantly increase cytolytic activity of NK-92MI cells in a dose-dependent manner and significantly increase the expression of perforin, granzyme A, and granulysin in the NK-92MI cells. Phytoncides also partially, but significantly, restore the decreased human NK activity and the decreased perforin, granzyme A, and granulysin expression in NK-92MI cells induced by dimethyl 2,2-dichlorovinyl phosphate (DDVP), an organophosphorus pesticide. Pretreatment with phytoncides partially prevents DDVP-induced inhibition of NK activity. Taken together, these data indicate that phytoncides significantly enhance human NK activity and this effect is at least partially mediated by induction of intracellular perforin, granzyme A, and granulysin.

Antigens, Differentiation↗

A tentative proposal on physiological polymorphism and its experimental approaches.

The purpose of this paper is to propose a tentative concept of physiological polymorphism and experimental approaches to it. We think that the concept of physiological polymorphism is to categorize the diversified phenomena into various types with statistical methods and to explain the differences among the categorized types from the viewpoint of their physiological mechanisms. Furthermore, it is necessary to take into consideration the fact that physiological polymorphism is observed as a phenotype, and the phenotype results from a genotype modified by culture and environment. As an experimental approach, we studied the effects of gustatory stimulation by chocolate on the activities of the prefrontal area and found that the activities were increased in some cases and decreased in other cases. Therefore, to begin with, when we divided them into an "increasing group" and a "decreasing group," we found that the increasing group had many subjects of Type B and High anxiety, and the decreasing group had many subjects of Type A and Normal anxiety. By the chi-square test for independence, it was found that the ratio of "increase" and "decrease" was related to the trait anxiety and type A personality, respectively. Next, we divided the activities of the prefrontal area into Type A and Type B, as well as a high anxiety group and a low anxiety group. As a result, the Type B and high anxiety groups showed significantly increased activities, while the Type A and normal anxiety groups showed no changes in their activities. Consequently, this data enabled us to explain the difference in activities of the prefrontal area from the viewpoint of personality characteristics. To conclude, we were able to categorize diversified changes in the prefrontal area into certain types when a gustatory stimulus was applied, and to explain them by using personality characteristics (State Trait Anxiety Inventory, Type A behavioral pattern) that are commonly known for their reflection of genotypes.

Anxiety↗

Measurement of absolute hemoglobin concentrations of prefrontal region by near-infrared time-resolved spectroscopy: examples of experiments and prospects.

Near-infrared time-resolve spectroscopy (TRS) is an emerging method which enables the absolute hemoglobin concentration in tissue to be evaluated. In the present paper, two experiments measuring the absolute hemoglobin concentrations in the prefrontal region to estimate the local cerebral activity will be demonstrated. The results of the studies were as follows: 1) There were significant differences in the absolute hemoglobin concentrations between the groups with different traits in personalities such as anxiety, or type A behavior pattern. 2) TRS was found to be applicable to field experiments. It was revealed that in a forest environment, the activity in the prefrontal region was calmer than in a city environment. This method will provide useful information on the absolute hemoglobin concentrations and contribute to making physiological polymorphisms clear.

Adult↗

Effects of sounds generated by a dental turbine and a stream on regional cerebral blood flow and cardiovascular responses.

Effects of sound generated by a dental turbine and a small stream (murmur) and the effects of no sound (null, control) on heart rate, systolic and diastolic blood pressure, and hemodynamic changes (oxygenated, deoxygenated, and total hemoglobin concentrations) in the frontal cortex were measured in 18 young volunteers. Questionnaires completed by the volunteers were also evaluated. Near-infrared spectroscopy and the Finapres technique were employed to measure hemodynamic and vascular responses, respectively. The subjects assessed the murmur, null, and turbine sounds as "pleasant," "natural," and "unpleasant," respectively. Blood pressures changed in response to the murmur, null, and turbine sound stimuli as expected: lower than the control level, unchanged, and higher than the control level, respectively. Mean blood pressure values tended to increase gradually over the recording time even during the null sound stimulation, possibly because of the recording environment. Oxygenated hemoglobin concentrations decreased drastically in response to the dental turbine sound, while deoxygenated hemoglobin concentrations remained unchanged and thus total hemoglobin concentrations decreased (due to the decreased oxygenated hemoglobin concentrations). Hemodynamic responses to the murmuring sound and the null sound were slight or unchanged, respectively. Surprisingly, heart rate measurements remained fairly stable in response to the stimulatory noises. In conclusion, we demonstrate here that sound generated by a dental turbine may affect cerebral blood flow and metabolism as well as autonomic responses.

Acoustic Stimulation↗