Publications by authors named "Wataru Masuda"

Sex differences exist in the commensal microbiota that impact on multiple physiological processes in the host. Here, we examined the mechanism by which the sex differences are formed. In addition to the epithelial ductal cell, the acinar cell mass in the submandibular gland was associated with androgen-androgen receptor (AR) signaling.

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Article Synopsis
  • - Notch signaling is a crucial communication method between cells that influences how they develop and differentiate, relying on receptor-ligand interactions on cell surfaces.
  • - The study finds that overexpression of a protein called TM2D3, similar to a Drosophila protein, activates Notch1 by binding to it and enhancing its presence on the cell surface.
  • - Without TM2D3, Notch1 and Notch2 levels drop on the cell surface, leading to deficiencies in cell signaling and endocytosis in developing Drosophila embryos.
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An 81-year-old female visited a local hospital with complaints of anal pain. A tumor was found on the right side of her anus, and the histopathological diagnosis was a non-epithelial malignant tumor. Therefore, the patient was referred to our hospital.

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Primitive myxoid mesenchymal tumor of infancy (PMMTI) is a rare soft tissue sarcoma in childhood. We present the case of a newborn male who experienced a severe hemorrhage in utero from the tumor on the scalp. He died at the age of 24 hours owing to hemorrhagic shock.

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Here, we report a case of living donor liver transplantation (LDLT) complicated with severe acute antibody-mediated rejection (aAMR), although desensitization was performed for preformed donor-specific anti-human leukocyte antigen antibody (DSA). LDLT was performed in a 59-year-old woman with alcoholic cirrhosis with a graft from her 60-year-old husband as a living donor. She had reproductive history of 4 gravidity and parity with her husband.

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Notch signaling plays crucial roles in the control of cell fate and physiology through local cell-cell interactions. The core processes of Notch signal transduction are well established, but the mechanisms that fine-tune the pathway in various developmental and post-developmental contexts are less clear. Drosophila almondex, which encodes an evolutionarily conserved double-pass transmembrane protein, was identified in the 1970s as a maternal-effect gene that regulates Notch signaling in certain contexts, but its mechanistic function remains obscure.

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Objective: This study was designed to investigate the mechanism of salivary dysfunction in an experimental periodontitis rat model and to examine the improvements in salivary secretion following treatment of the experimental periodontitis.

Methods: In the experimental periodontitis rat model, which included a unilateral ligature for 4 weeks around the second upper molar, several salivary functions were investigated. Changes in the salivary function were evaluated 4 weeks after removal of the ligature in some rats.

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Mechanical unloading, such as in a microgravity environment in space or during bed rest (for patients who require prolonged bed rest), leads to a decrease in bone mass because of the suppression of bone formation and the stimulation of bone resorption. To address the challenges presented by a prolonged stay in space and the forthcoming era of a super-aged society, it will be important to prevent the bone loss caused by prolonged mechanical unloading. Nuclear factor κB (NF-κB) transcription factors are activated by mechanical loading and inflammatory cytokines.

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CD38 is a 42-45 kDa transmembrane glycoprotein that exhibits ADP-ribosyl cyclase enzyme activity. In the rat, we have previously reported strong ADP-ribosyl cyclase activity in the sublingual salivary gland (Masuda W. and Noguchi T.

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Ca(2+) release through inositol 1,4,5-trisphosphate receptors (InsP(3)R) can be modulated by numerous factors, including input from other signal transduction cascades. These events shape the spatio-temporal characteristics of the Ca(2+) signal and provide fidelity essential for the appropriate activation of effectors. In this study, we investigate the regulation of Ca(2+) release via InsP(3)R following activation of cyclic nucleotide-dependent kinases in the presence and absence of expression of a binding partner InsP(3)R-associated cGMP kinase substrate (IRAG).

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There are few data available regarding the differences in intracellular Ca2+ responses of parotid acinar and ductal cells. This study investigated the Ca2+ mobilization that was induced by the chemical stimulation of acinar and ductal cells from rat parotid glands. In fura-2 loaded parotid cells, carbachol increased the intracellular Ca2+ concentration ([Ca2+](i)) to a greater extent in the acinar cells than in the ductal cells, but noradrenaline increased the [Ca2+](i) in the ductal cells more than in the acinar cells.

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Objective: We have recently reported that unstimulated whole saliva flow rates (UWSFR) correlate positively with salivary gland sizes and body profiles of weight and body mass indices. In the present study, the correlations of chewing-stimulated whole saliva flow rates (CWSFR) with salivary gland sizes and the body profiles were investigated, and the results were compared with those of UWSFR.

Design: Saliva samples were collected from 24 healthy young males and 26 females by the spitting method while chewing paraffin and the CWSFRs were measured.

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Objective: The aim of this study was to examine the relationships between gland sizes and the flow rate and composition of the unstimulated whole saliva in humans.

Design: In 28 healthy young adults, the sizes of the three major salivary glands were estimated by use of a magnetic resonance (MR) imaging technique. Unstimulated whole saliva was collected for 5 min by the spitting method, and the flow rate and the concentrations of total protein, Na(+) and K(+) and pH were measured.

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Free D-aspartic acid (D-Asp) has been reported to occur in a wide variety of tissues and cells, exclusively in central nervous system and endocrine tissues. In this manuscript, we demonstrate that large amounts of D-Asp are present in the exocrine tissue, salivary glands. In adult male rats, D-Asp concentrations in parotid and submandibular gland were 212+/-68 and 233+/-34 nmol/g wet weight, respectively, and were low (38+/-20 nmol/g wet weight) in sublingual gland.

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The molecular regulatory mechanisms and the characterization of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) in hypoxia were studied in a mouse brain capillary endothelial cell line, MBEC4. Activation of GAPDH gene expression by hypoxia was suppressed by an intracellular Ca(2+) chelator and inhibited by a non-selective cation channel blocker or a Na(+)/Ca(2+) exchanger (NCX) blocker. Sequencing of reverse transcription-PCR products demonstrated that MBEC4 expressed an mRNA encoding NCX3, which functions even under cellular ATP-depleted conditions, in addition to mRNAs encoding NCX1 and NCX2.

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In tooth dentine, owing to its slow metabolism after its formation, racemized and transformed D-aspartic acid remains in the tissue and accumulates with age. However, no dentinal proteins which contain D-aspartic acid have been identified. In this study, a non-collagenous phosphoprotein was purified from bovine dentine.

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