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Biology and Biochemistry

D-Index
55
Citations
10133
World Ranking
15130
National Ranking
6324

Overview

Stephen M. Vogel is affiliated with the University of Illinois at Chicago in the United States. Their research is positioned within the fields of Biochemistry, Genetics and Molecular Biology, and Medicine. More specifically, their work spans subfields such as Cancer Research, Molecular Biology, Hematology, Surgery, and Cell Biology.

The scientist's research topics cover several areas, including:

  • Blood Coagulation and Thrombosis Mechanisms
  • Protease and Inhibitor Mechanisms
  • Cardiovascular, Neuropeptides, and Oxidative Stress Research
  • Caveolin-1 and cellular processes
  • Lipid metabolism and disorders
  • Cancer-related molecular mechanisms research
  • S100 Proteins and Annexins

Stephen M. Vogel has contributed to a number of publications with notable recent papers such as:

  • Phospholipase D2 restores endothelial barrier function by promoting PTPN14-mediated VE-cadherin dephosphorylation, 2020, Journal of Biological Chemistry
  • EphB1 interaction with caveolin-1 in endothelial cells modulates caveolae biogenesis, 2020, Molecular Biology of the Cell
  • TAK1 is essential for endothelial barrier maintenance and repair after lung vascular injury, 2022, Molecular Biology of the Cell
  • Caspase-11-mediated endothelial pyroptosis underlies endotoxemia-induced lung injury, 2020, UNC Libraries

Frequent coauthors collaborating with Stephen M. Vogel include:

  • Asrar B. Malik
  • Richard D. Minshall
  • Chinnaswamy Tiruppathì
  • Sushil Chandra Regmi
  • Jalees Rehman

The main venues for their publications are:

  • Molecular Biology of the Cell
  • Journal of Biological Chemistry
  • UNC Libraries

Best Publications

  • Impairment of Store-Operated Ca2+ Entry in TRPC4-/- Mice Interferes With Increase in Lung Microvascular Permeability

    Chinnaswamy Tiruppathi;Marc Freichel;Stephen M. Vogel;Biman C. Paria

  • Role of Ca2+ signaling in the regulation of endothelial permeability.

    Chinnaswamy Tiruppathi;Richard D. Minshall;Biman C. Paria;Stephen M. Vogel

  • Caspase-11–mediated endothelial pyroptosis underlies endotoxemia-induced lung injury

    Kwong Tai Cheng;Shiqin Xiong;Zhiming Ye;Zhiming Ye;Zhigang Hong

  • Endothelial Cell-Surface Gp60 Activates Vesicle Formation and Trafficking via Gi-Coupled Src Kinase Signaling Pathway

    Richard D. Minshall;Chinnaswamy Tiruppathi;Stephen M. Vogel;Walter D. Niles

  • Quantitative analysis of albumin uptake and transport in the rat microvessel endothelial monolayer.

    Theresa A. John;Stephen M. Vogel;Chinnaswamy Tiruppathi;Asrar B. Malik

  • Ca2+ Signaling, TRP Channels, and Endothelial Permeability

    Chinnaswamy Tiruppathi;Gias U. Ahmmed;Stephen M. Vogel;Asrar B. Malik

  • Role of TRPM2 Channel in Mediating H2O2-Induced Ca2+ Entry and Endothelial Hyperpermeability

    Claudie M. Hecquet;Gias U. Ahmmed;Stephen M. Vogel;Asrar B. Malik

  • Caveolin-1 Regulates NF-κB Activation and Lung Inflammatory Response to Sepsis Induced by Lipopolysaccharide

    Sean Garrean;Xiao Pei Gao;Victor Brovkovych;Jun Shimizu

  • The redox-sensitive cation channel TRPM2 modulates phagocyte ROS production and inflammation

    Anke Di;Xiao Pei Gao;Feng Qian;Takeshi Kawamura

  • Vesicle formation and trafficking in endothelial cells and regulation of endothelial barrier function.

    Richard D. Minshall;Chinnaswamy Tiruppathi;Stephen M. Vogel;Asrar B. Malik

  • TLR4 activation of TRPC6-dependent calcium signaling mediates endotoxin-induced lung vascular permeability and inflammation

    Mohammad Tauseef;Nebojsa Knezevic;Koteswara R. Chava;Monica Smith

  • Tumor necrosis factor-α-induced TRPC1 expression amplifies store-operated Ca2+ influx and endothelial permeability

    Biman C. Paria;Stephen M. Vogel;Gias U. Ahmmed;Setara Alamgir

  • Albumin uptake and transcytosis in endothelial cells in vivo induced by albumin-binding protein.

    Stephen M. Vogel;Richard D. Minshall;Milena Pilipović;Chinnaswamy Tiruppathi

  • Activation of Sphingosine Kinase-1 Reverses the Increase in Lung Vascular Permeability Through Sphingosine-1-Phosphate Receptor Signaling in Endothelial Cells

    Mohammad Tauseef;Vidisha Kini;Nebojsa Knezevic;Melissa Brannan

  • Protein kinase Cα phosphorylates the TRPC1 channel and regulates store-operated Ca2+ entry in endothelial cells.

    Gias U. Ahmmed;Dolly Mehta;Stephen Vogel;Michael Holinstat

  • Albumin mediates the transcytosis of myeloperoxidase by means of caveolae in endothelial cells

    Chinnaswamy Tiruppathi;Tabassum Naqvi;Yubin Wu;Stephen M. Vogel

  • Cdc42 Regulates the Restoration of Endothelial Barrier Function

    Panos Kouklis;Maria Konstantoulaki;Stephen Vogel;Michael Broman

  • Abrogation of thrombin-induced increase in pulmonary microvascular permeability in PAR-1 knockout mice

    Stephen M. Vogel;Xiaopei Gao;Dolly Mehta;Richard D. Ye

  • Intercellular adhesion molecule-1-dependent neutrophil adhesion to endothelial cells induces caveolae-mediated pulmonary vascular hyperpermeability

    Guochang Hu;Stephen M. Vogel;David E. Schwartz;Asrar B. Malik

  • Novel Mechanism of Endothelial Nitric Oxide Synthase Activation Mediated by Caveolae Internalization in Endothelial Cells

    Nikolaos A. Maniatis;Viktor Brovkovych;Scott E. Allen;Theresa A. John

Frequent Co-Authors

Asrar B. Malik
Asrar B. Malik University of Illinois at Chicago
Richard D. Minshall
Richard D. Minshall University of Illinois at Chicago
Chinnaswamy Tiruppathi
Chinnaswamy Tiruppathi University of Illinois at Chicago
Dolly Mehta
Dolly Mehta University of Illinois at Chicago
Richard D. Ye
Richard D. Ye Chinese University of Hong Kong, Shenzhen
Jalees Rehman
Jalees Rehman University of Illinois at Chicago
Randal A. Skidgel
Randal A. Skidgel University of Illinois at Chicago
Mark Henkemeyer
Mark Henkemeyer The University of Texas Southwestern Medical Center
Xiaoping Du
Xiaoping Du University of Illinois at Chicago
Dirk Schlüter
Dirk Schlüter Otto-von-Guericke University Magdeburg

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