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Showing 1–8 of 8 results
Advanced filters: Author: Michele L. Tuttle Clear advanced filters
    • George W. KIing
    • William C. Evans
    • Greg Tanyileke
    Research
    Nature
    Volume: 368, P: 405-406
  • SARS-CoV-2 variants have accumulated multiple defining mutations within their spike glycoproteins. Here, the authors report a structural basis for broad neutralization of several variants by a heavy chain antibody fragment and provide a mutational analysis focusing on antibody evasion, receptor engagement, and spike protein structure.

    • Dhiraj Mannar
    • James W. Saville
    • Sriram Subramaniam
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-12
  • Comprehensive integration of gene expression with epigenetic features is needed to understand the transition of kidney cells from health to injury. Here, the authors integrate dual single nucleus RNA expression and chromatin accessibility, DNA methylation, and histone modifications to decipher the chromatin landscape of the kidney in reference and adaptive injury cell states, identifying a transcription factor network of ELF3, KLF6, and KLF10 which regulates adaptive repair and maladaptive failed repair.

    • Debora L. Gisch
    • Michelle Brennan
    • Michael T. Eadon
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-21
  • A high-resolution kidney cellular atlas of 51 main cell types, including rare and previously undescribed cell populations, represents a comprehensive benchmark of cellular states, neighbourhoods, outcome-associated signatures and publicly available interactive visualizations.

    • Blue B. Lake
    • Rajasree Menon
    • Sanjay Jain
    ResearchOpen Access
    Nature
    Volume: 619, P: 585-594
  • This participant-level pooled analysis of the three phase 3 trials that have tested the non-steroidal mineralocorticoid receptor antagonist finerenone in patients with heart failure and chronic kidney disease with type 2 diabetes provides an integrated view of the mortality, cardiovascular and renal effects of this treatment.

    • Muthiah Vaduganathan
    • Gerasimos Filippatos
    • Scott D. Solomon
    ResearchOpen Access
    Nature Medicine
    Volume: 30, P: 3758-3764
  • Tissue cytometry is a promising new microscopy technique that can be used to enumerate and characterize each cell in a tissue. Here the authors describe a complete and accessible pipeline, including methods of sample preparation, microscopy, image analysis, and data analysis for large-scale three-dimensional tissue cytometry of human kidney tissues.

    • Michael J. Ferkowicz
    • Seth Winfree
    • Francis Perry Wilson
    Research
    Laboratory Investigation
    Volume: 101, P: 661-676