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Yoshiaki Kawasaki

Publications and source records attributed to Yoshiaki Kawasaki.

4 recordsLinked to original sources

The alteration of odor-induced c-Fos immunoreactivity in the rat olfactory bulb after olfactory nerve transection.

We used the rats in which one olfactory nerve had been transected and observed the odor (Propionic acid) -induced c-Fos immunoreactivity in the bulb at different times (2, 4, 8 weeks) after nerve transection. The exposure to odor produced a strong cluster of c-Fos positive cells in the mediodorsal region of the intact bulb. On the other hand, the transected bulb showed much less reactivity 2 weeks after neurectomy; however, a large number of positive cells were observed in the whole of the bulb from 4 weeks after neurectomy. Furthermore, we measured the levels of mRNA for tyrosine hydroxylase (TH), which was the marker of odor-induced olfactory nerve activity in the bulb, by using real-time PCR. The level of TH mRNA decreased on the transected side at 2 weeks but recovered to the level of the contralateral side at 4 weeks after neurectomy. We firstly demonstrated that projection mapping of odor receptors was altered after olfactory nerve transection by using an immunohistochemical method.

Animals↗

Electron paramagnetic resonance: a new techniquein skin research.

BACKGROUND/AIM: Electron paramagnetic resonance (EPR) spectra of nitroxide spin probes have been used for studying biological membranes and chemical-membrane interaction. We have investigated the influence of surfactants on the intercellular lipid structure of cadaver stratum corneum and the possibility of EPR spectral measurements on the stripped stratum corneum utilizing cyanoacrylate resin, which might reflect the actual skin lipid conditions. CONCLUSION: EPR spectra are useful in evaluating the fluidity measurement of stratum corneum of cadaver skin and stripped stratum corneum.

Journal Article↗

Electron paramagnetic resonance study utilizing stripping method on normal human stratum corneum.

BACKGROUND/AIM: Electron paramagnetic resonance (EPR) spectra of nitroxide spin probes are useful for studying biological membranes, and chemical-membrane interaction. The objective of this study was to assess the fluidity of stripped stratum corneum (SC) of normal human skin with EPR. METHODS: We quantified the fluidity of stripped SC (S-SC) by a single stripping with cyanoacrylate onto quartz glass, cover glass or transparent film. Spectra were compared with those of the SC of cadaver skin (C-SC). RESULTS: All S-SC spectra were similar to those of C-SC. There were no statistical differences in the order parameters S between C-SC and those on quartz cell and cover glass, but those of transparent film were significantly higher. Spectra after a month storage at room temperature at 5 degrees C and at -20 degrees C were unchanged. The order parameter S had decreased after a 3-month storage in all conditions. CONCLUSION: This method is useful for the evaluation of the fluidity measurement utilizing EPR spectra of S-SC.

Journal Article↗