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Biology and Biochemistry

D-Index
65
Citations
18054
World Ranking
9039
National Ranking
4019

Overview

Daniel J. Garry is affiliated with the University of Minnesota in the United States. Their research spans multiple fields, primarily focused on biochemistry, genetics, molecular biology, and medicine. Among the subfields in which they have published are molecular biology, surgery, cardiology and cardiovascular medicine, genetics, and biomedical engineering.

Their work encompasses various topics that include congenital heart defects research, pluripotent stem cells research, CRISPR and genetic engineering, tissue engineering and regenerative medicine, genomics and chromatin dynamics, single-cell and spatial transcriptomics, and muscle physiology and disorders.

Notable recent papers authored or co-authored by Daniel J. Garry include:

  • Phages and their satellites encode hotspots of antiviral systems (2022, Cell Host & Microbe)
  • Generation of human endothelium in pig embryos deficient in ETV2 (2020, Nature Biotechnology)
  • Basic and Translational Research in Cardiac Repair and Regeneration (2021, Journal of the American College of Cardiology)
  • ETV2 functions as a pioneer factor to regulate and reprogram the endothelial lineage (2022, Nature Cell Biology)
  • Benchmarked approaches for reconstruction of in vitro cell lineages and in silico models of C. elegans and M. musculus developmental trees (2021, Cell Systems)

Frequent co-authors collaborating with Daniel J. Garry include Mary G. Garry, Wuming Gong, Satyabrata Das, Jianyi Zhang, and Javier E. Sierra-Pagán. These collaborations have produced a significant volume of research output across related areas of study.

Their research has been published extensively in several scientific journals, with numerous publications appearing in:

  • Circulation
  • Circulation Research
  • The Journal of Heart and Lung Transplantation
  • Journal of Cardiac Failure
  • Methodist DeBakey Cardiovascular Journal

Best Publications

  • Cardiac progenitor cells from adult myocardium: Homing, differentiation, and fusion after infarction

    Hidemasa Oh;Steven B. Bradfute;Teresa D. Gallardo;Teruya Nakamura

  • Myogenic satellite cells: physiology to molecular biology.

    Thomas J. Hawke;Daniel J. Garry

  • Persistent expression of the ATP-binding cassette transporter, Abcg2, identifies cardiac SP cells in the developing and adult heart.

    Cindy M. Martin;Annette P. Meeson;Scott M. Robertson;Thomas J. Hawke

  • Gastrointestinal bleeding rates in recipients of nonpulsatile and pulsatile left ventricular assist devices

    Sheri Crow;Ranjit John;Andrew Boyle;Sara Shumway

  • Muscle stem cells in development, regeneration, and disease

    Xiaozhong Shi;Daniel J. Garry

  • Myoglobin: an essential hemoprotein in striated muscle

    George A. Ordway;Daniel J. Garry

  • LXRs regulate the balance between fat storage and oxidation.

    Nada Y. Kalaany;Karine C. Gauthier;Ann Marie Zavacki;Pradeep P.A. Mammen

  • Dystrophin-Deficient Cardiomyopathy

    Forum Kamdar;Daniel J. Garry

  • Mice without myoglobin

    Daniel J. Garry;George A. Ordway;John N. Lorenz;Nina B. Radford

  • Transcriptional profiling and regulation of the extracellular matrix during muscle regeneration.

    Sean C. Goetsch;Thomas J. Hawke;Teresa D. Gallardo;James A. Richardson

  • DrImpute: imputing dropout events in single cell RNA sequencing data.

    Wuming Gong;Il Youp Kwak;Pruthvi Pota;Naoko Koyano-Nakagawa

  • Nkx2-5 transactivates the Ets-related protein 71 gene and specifies an endothelial/endocardial fate in the developing embryo.

    Anwarul Ferdous;Arianna Caprioli;Michelina Iacovino;Cindy M. Martin;Cindy M. Martin

  • Acquisition of a quantitative, stoichiometrically conserved ratiometric marker of maturation status in stem cell-derived cardiac myocytes

    Fikru B. Bedada;Sunny S K Chan;Stefania K. Metzger;Liying Zhang

  • Myogenic stem cell function is impaired in mice lacking the forkhead/winged helix protein MNF

    Daniel J. Garry;Annette Meeson;Joel Elterman;Yuhe Zhao

  • A Common Progenitor at the Heart of Development

    Daniel J. Garry;Eric N. Olson

  • Oxidative Stress Regulates Left Ventricular PDE5 Expression in the Failing Heart

    Zhongbing Lu;Xin Xu;Xinli Hu;Sangjin Lee

  • Mesp1 patterns mesoderm into cardiac, hematopoietic, or skeletal myogenic progenitors in a context-dependent manner

    Sunny Sun Kin Chan;Xiaozhong Shi;Akira Toyama;Robert W. Arpke

  • Persistent Expression of MNF Identifies Myogenic Stem Cells in Postnatal Muscles

    Daniel J. Garry;Quan Yang;Rhonda S Bassel-Duby;R. Sanders Williams

  • Lineage Reprogramming of Fibroblasts into Proliferative Induced Cardiac Progenitor Cells by Defined Factors.

    Pratik A. Lalit;Max R. Salick;Max R. Salick;Daryl O. Nelson;Jayne M. Squirrell

  • Commentary Myoglobin: an essential hemoprotein in striated muscle

    George A. Ordway;Daniel J. Garry

Frequent Co-Authors

Michael Kyba
Michael Kyba University of Minnesota
Eric N. Olson
Eric N. Olson The University of Texas Southwestern Medical Center
R. Sanders Williams
R. Sanders Williams Duke University
James A. Richardson
James A. Richardson The University of Texas Southwestern Medical Center
Timothy J. Kamp
Timothy J. Kamp University of Wisconsin–Madison
Richard P. Harvey
Richard P. Harvey Victor Chang Cardiac Research Institute
Yasuhiko Kawakami
Yasuhiko Kawakami University of Minnesota
Wei Pan
Wei Pan University of Minnesota
John M. Shelton
John M. Shelton The University of Texas Southwestern Medical Center
James A. Thomson
James A. Thomson University of California, Santa Barbara

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