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T Kiyoshi

Publications and source records attributed to T Kiyoshi.

2 recordsLinked to original sources

Macromolecular crystallization in microgravity generated by a superconducting magnet.

About 30% of the protein crystals grown in space yield better X-ray diffraction data than the best crystals grown on the earth. The microgravity environments provided by the application of an upward magnetic force constitute excellent candidates for simulating the microgravity conditions in space. Here, we describe a method to control effective gravity and formation of protein crystals in various levels of effective gravity. Since 2002, the stable and long-time durable microgravity generated by a convenient type of superconducting magnet has been available for protein crystal growth. For the first time, protein crystals, orthorhombic lysozyme, were grown at microgravity on the earth, and it was proved that this microgravity improved the crystal quality effectively and reproducibly. The present method always accompanies a strong magnetic field, and the magnetic field itself seems to improve crystal quality. Microgravity is not always effective for improving crystal quality. When we applied this microgravity to the formation of cubic porcine insulin and tetragonal lysozyme crystals, we observed no dependence of effective gravity on crystal quality. Thus, this kind of test will be useful for selecting promising proteins prior to the space experiments. Finally, the microgravity generated by the magnet is compared with that in space, considering the cost, the quality of microgravity, experimental convenience, etc., and the future use of this microgravity for macromolecular crystal growth is discussed.

Animals↗

[Changes in bronchoalveolar cell profiles of asthma patients induced by long-term glucocorticoid therapy].

Effects of long-term glucocorticoid therapy on airway inflammatory cells were examined in 40 patients with bronchial asthma. 1. The dose of glucocorticoids required by asthmatic patients tended to increase and the level of serum cortisol tended to decrease with prolongation of the period of glucocorticoid therapy. 2. The proportion and number of lymphocytes in bronchoalveolar lavage (BAL) fluid decreased with prolongation of the period of glucocorticoid therapy. The proportion of BAL lymphocytes in asthmatic patients treated with glucocorticoids for more than 5 years was significantly lower than that in those treated for less than 4.9 years. 3. The proportion and number of BAL neutrophils increased with prolongation of the period of glucocorticoid therapy and the proportion of BAL neutrophils in patients treated with glucocorticoids for more than 10 years was significantly higher compared with those treated for less than 9.9 years. These findings indicate that long-term glucocorticoid therapy induces changes in airway inflammatory cell profiles, with a decrease in the number of lymphocytes and increase in the number of neutrophils.

Adult↗