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    D

    Diabetes Care Center

    EST. 1998
    152论文总数
    4,489引用总数

    论文量&引用量时间轴

    机构学者

    排序
    Allen B. King
    Allen B. King
    Dept Endocrinol, Diabet Care Ctr
    论文:16引用:0H-index:0
    Chawla Manoj
    Chawla Manoj
    Dept Endocrinol, SL Raheja Hosp
    论文:14引用:0H-index:0
    Banshi Saboo
    Banshi Saboo
    Department of Diabetology, Dia Care Diabetes Care Centre
    论文:10引用:0H-index:0
    Hideaki Jinnouchi
    Hideaki Jinnouchi
    Jinnouchi Hospital
    论文:7引用:0H-index:0
    M. Chawla
    M. Chawla
    LINA Diabet Care Ctr
    论文:7引用:0H-index:0
    Kesavadev Jothydev
    Kesavadev Jothydev
    Jothydev's Diabetes &Research Centre, Trivandrum 695032, India.;Jothydev's Diabetes & Research Centre
    论文:6引用:0H-index:0
    V. Mohan
    V. Mohan
    Dr. Mohan's Diabetes Specialities Centre;Division of Metabolic & Vascular Health, Warwick Medical School, University of Warwick;Department of Biotechnology, Indian Institute of Technology Madras
    论文:5引用:0H-index:0
    Prashant P Joshi
    Prashant P Joshi
    All India Institute of Medical Science
    论文:4引用:0H-index:0
    R. M. Anjana
    R. M. Anjana
    Dr. Mohan’s Diabetes Specialities Centre;Madras Diabetes Research Foundation
    论文:4引用:0H-index:0

    论文(152)

    年份
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    止
    排序
    1The Need for Medical Device Batteries to Be Designed to Be Removable.
    Derek Brandt, David C Klonoff,Lutz Heinemann
    2026Journal of diabetes science and technology(2026)
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    2One Size Does Not Fit All: the Need for Sex-Specific Precision Medicine in Diabetes Technology.
    Stefanie Hossmann,Susanne Tan,Julia K Mader,David C Klonoff, Dawn Adams, Hanne Ballhausen,Lia Bally, Maria L Balmer, Vincent Braunack-Mayer,Anne Bonhoure, David Burren,Charlotte K Boughton,

    Incorporating sex-specific factors in diabetes research and treatment is essential for advancing precision medicine. There are critical gaps in understanding and applying sex-related differences. Female-specific diabetes pathophysiology manifests in three major areas: life cycle phases (including puberty, pregnancy, and menopause), lifestyle factors (such as responses to nutrition and physical activity), and insulin pharmacology. These elements significantly affect insulin sensitivity and glycemic control in women, yet are frequently underrepresented or ignored in both research and clinical practice. Greater research and clinical focus across these domains is needed to better understand and address sex-based differences in diabetes. Identifying and filling evidence gaps will support more systematic and effective care.

    2025Journal of diabetes science and technology(2025)引用:3
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    3Compliance with FDA Icgm Special Controls is Dependent on Study Design and Procedures.
    Manuel Eichenlaub,Delia Waldenmaier,Stefan Pleus,Cornelia Haug,Derek Brandt,Guido Freckmann
    2025Journal of diabetes science and technology(2025)引用:2
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    4Pharmacologic Inhibition of IRE1α-dependent Decay Protects Alveolar Epithelial Identity and Prevents Pulmonary Fibrosis in Mice.
    Vincent C Auyeung, Tavienne L Steinberg, Alina Olivier, Luka Suzuki, Mary E Moreno, Imran S Khan, Michael S Downey,Maike Thamsen, Lu Guo,Dustin J Maly,Bradley J Backes,Dean Sheppard,

    Stress-induced epithelial plasticity is central to lung regeneration, fibrosis, and malignancy, but how cellular stress leads to differentiation is incompletely understood. Here, we found a central role for IRE1α, a conserved mediator of the unfolded protein response (UPR), in stimulating the plasticity of alveolar type 2 (AT2) cells. In single-cell RNA-seq, IRE1α activity was associated with loss of AT2 identity and progression toward a damage-associated transitional state unique to fibrosis. AT2 plasticity required destructive regulated IRE1α-dependent decay (RIDD), which we demonstrated by deploying PAIR2, a kinase modulator that inhibits RIDD while preserving IRE1α's adaptive XBP1 mRNA splicing activity. In vivo, selective inhibition of RIDD with PAIR2 reduced AT2 differentiation into profibrotic transitional cells and protected mice from bleomycin-induced pulmonary fibrosis. Mechanistically, we identified the Fgfr2 mRNA as a direct and regulated substrate for IRE1α's RNase in primary AT2 cells and in a biochemically reconstituted cell-free system. Loss of Fgf signaling caused AT2 differentiation, while gain of signaling protected cells from IRE1α-induced differentiation. We propose that IRE1α downregulates Fgf signaling through RIDD, provoking loss of AT2 identity and differentiation towards a profibrotic phenotype. Thus, IRE1α's RIDD activity emerges as a novel target for treatment of pulmonary fibrosis and potentially other diseases driven by aberrant epithelial cell plasticity.

    2025The Journal of clinical investigation(2025)引用:1
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    5ARTIFICIAL INTELLIGENCE (AI) IN DIABETES CLINIC: EXPANDING HORIZONS
    Rakesh Parikh,Banshi Saboo,Amit Gupta,Jothydev Kesavadev,Manoj Chawla, Mithun Bhartia
    2025DIABETES TECHNOLOGY & THERAPEUTICS(2025)
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    合作机构(100)

    诺和诺德合作论文 9
    熊本大学合作论文 7
    利默里克大学合作论文 4
    Madras Diabetes Research Foundation合作论文 4
    Apollo KH Hospital合作论文 3
    印度医学研究理事会合作论文 3
    Nara Medical University合作论文 3
    Universidad del Noreste合作论文 3
    Lilavati Hospital and Research Centre合作论文 3
    Postgraduate Institute of Medical Education and Research合作论文 2

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