25 research outputs found

    Sex-inducing effects toward planarians widely present among parasitic flatworms

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    Summary Various parasitic flatworms infect vertebrates for sexual reproduction, often causing devastating diseases in their hosts. Consequently, flatworms are of great socioeconomic and biomedical importance. Although the cessation of parasitic flatworm sexual reproduction is a major target of anti-parasitic drug design, little is known regarding bioactive compounds controlling flatworm sexual maturation. Using the planarian Dugesia ryukyuensis, we observed that sex-inducing substances found in planarians are also widespread in parasitic flatworms, such as monogeneans and flukes (but not in tapeworms). Reverse-phase HPLC analysis revealed the sex-inducing substance(s) eluting around the tryptophan retention time in the fluke Calicophoron calicophorum, consistent with previous studies on the planarian Bipalium nobile, suggesting that the substance(s) is likely conserved among flatworms. Moreover, six of the 18 ovary-inducing substances identified via transcriptome and metabolome analyses are involved in purine metabolism. Our findings provide a basis for understanding and modifying the life cycles of various parasitic flatworms.journal articl

    Cryopreservation of Biomaterials and Foods

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    Some Biological Hints on the Control of Heat and Mass Transfer

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    The Study of Micro-Closed-Loop Heat Transport Tube : Effects of Tube Diameter

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    Study on Designing a Process of Cryopreserving Bio-material

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    本稿は生体の凍結保存プロセスの設計法について, 熱物質輸送の立場から考察した研究の紹介である. 凍結保存プロセスは凍結過程と, それに先立つ前処理過程に分けられる. 前処理過程においては, 凍結によってもたらされる損傷を避けるため, 凍害防御剤水溶液に生体を浸漬させるが, 生体中の細胞が高い浸透圧に曝されるのを避けるため, 凍害防御剤水溶液の濃度は細胞の最小体積分率と体積緩和時間により決められたプロセスで徐々に高められて目的濃度に到る必要がある. 一方, 凍結過程では冷却速度と凍害防御剤水溶液の濃度を, 凍結に伴う力学的損傷と高浸透圧による細胞の過濃縮を避ける様に決定する必要がある.小特集 バイオテクノロジ

    Hypotonic Activation of the Myo-Inositol Transporter SLC5A3 in HEK293 Cells Probed by Cell Volumetry, Confocal and Super-Resolution Microscopy

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    Swelling-activated pathways for myo-inositol, one of the most abundant organic osmolytes in mammalian cells, have not yet been identified. The present study explores the SLC5A3 protein as a possible transporter of myo-inositol in hyponically swollen HEK293 cells. To address this issue, we examined the relationship between the hypotonicity-induced changes in plasma membrane permeability to myo-inositol Pino [m/s] and expression/localization of SLC5A3. Pino values were determined by cell volumetry over a wide tonicity range (100–275 mOsm) in myo-inositol-substituted solutions. While being negligible under mild hypotonicity (200–275 mOsm), Pino grew rapidly at osmolalities below 200 mOsm to reach a maximum of ∼3 nm/s at 100–125 mOsm, as indicated by fast cell swelling due to myo-inositol influx. The increase in Pino resulted most likely from the hypotonicity-mediated incorporation of cytosolic SLC5A3 into the plasma membrane, as revealed by confocal fluorescence microscopy of cells expressing EGFP-tagged SLC5A3 and super-resolution imaging of immunostained SLC5A3 by direct stochastic optical reconstruction microscopy (dSTORM). dSTORM in hypotonic cells revealed a surface density of membrane-associated SLC5A3 proteins of 200–2000 localizations/μm2. Assuming SLC5A3 to be the major path for myo-inositol, a turnover rate of 80–800 myo-inositol molecules per second for a single transporter protein was estimated from combined volumetric and dSTORM data. Hypotonic stress also caused a significant upregulation of SLC5A3 gene expression as detected by semiquantitative RT-PCR and Western blot analysis. In summary, our data provide first evidence for swelling-mediated activation of SLC5A3 thus suggesting a functional role of this transporter in hypotonic volume regulation of mammalian cells

    The Study of Micro-Flexible-bubble-driven heat-transport tubes (MF-BD-HTTs)

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    The Application of Dielectricloss on Cryopreservation of Biomaterials

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