Publications by authors named "A M Sakashita"

This study sought to explore the unmet palliative care needs of patients diagnosed with Stage B chronic heart failure (CHF) according to the American Heart Association (AHA) and American College of Cardiology (ACC) classifications. We conducted this cross-sectional study between June 1 and August 31, 2020, at Kobe University Hospital. Patients were asked to complete the Integrated Palliative care Outcome Scale (IPOS) along with a customized questionnaire developed by a multidisciplinary team.

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Glial cells missing 2 (GCM2) has been identified as an essential factor for parathyroid differentiation, and GCM2 silencing in parathyroid cells decreases calcium-sensing receptor (CaSR) expression. However, the role of GCM2 in parathyroid differentiation from induced pluripotent stem cells (iPSCs) is unclear. Here, we investigated the role of GCM2 in parathyroid differentiation from iPSCs using the Tet-On 3 G system.

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Interstitial lung disease (ILD) is a serious complication of connective tissue diseases (CTDs). The heterogeneity of ILDs reflects differences in pathogenesis among diseases. This study aimed to clarify the characteristics of CTD-ILDs via a detailed analysis of the bronchoalveolar lavage fluid (BALF) and blood immune cells.

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Background: The number of patients with heart failure (HF) is rapidly increasing as palliative care is being integrated into HF management and the need for a nursing workforce to meet these demands grows. To address this, we have developed a Web-based educational program on primary palliative care for HF among general registered nurses caring for patients with HF in Japan.

Objective: The aim of this study was to evaluate the program's effectiveness on nurse-reported palliative care practice, difficulty, and knowledge.

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Once fertilized, mouse zygotes rapidly proceed to zygotic genome activation (ZGA), during which long terminal repeats (LTRs) of murine endogenous retroviruses with leucine tRNA primer (MERVL) are activated by a conserved homeodomain-containing transcription factor, DUX. However, -knockout embryos produce fertile mice, suggesting that ZGA is redundantly driven by an unknown factor(s). Here, we present multiple lines of evidence that the multicopy homeobox gene, , encodes a transcription factor that is highly expressed in mouse two-cell embryos and redundantly drives ZGA.

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