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Paul Hiebert

Showing results (11-20 of 21) with videos related to

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Matrix Biology : Journal of the International Society for Matrix Biology|November 11, 2022
Activation of Nrf2 in fibroblasts promotes a skin aging phenotype via an Nrf2-miRNA-collagen axisPaul Hiebert, Anastasiya Martyts, Jonas Schwestermann, et al.
European Journal of Immunology|April 20, 2020
Comprehensive characterization of myeloid cells during wound healing in healthy and healing-impaired diabetic miceNatasha Joshi, Lea Pohlmeier, Maya Ben-Yehuda Greenwald, et al.
Acta Biomaterialia|July 18, 2025
Characterization of murine excisional wounds based on atomic force microscopy indentationHåvar Johan Junker, Adam Wahlsten, Raoul Hopf, et al.
The Journal of Investigative Dermatology|June 30, 2020
A Dual-Acting Nitric Oxide Donor and Phosphodiesterase 5 Inhibitor Promotes Wound Healing in Normal Mice and Mice with DiabetesMaya Ben-Yehuda Greenwald, Carlotta Tacconi, Marko Jukic, et al.
Communications Biology|August 3, 2024
Hydrostatic pressure drives sprouting angiogenesis via adherens junction remodelling and YAP signallingDunja Alexandra Al-Nuaimi, Dominic Rütsche, Asra Abukar, et al.
Acta Biomaterialia|July 15, 2024
Biomechanical and biochemical changes in murine skin during development and agingAnastasiya Martyts, David Sachs, Paul Hiebert, et al.
Pharmaceutics|November 11, 2022
Topical Wound Treatment with a Nitric Oxide-Releasing PDE5 Inhibitor Formulation Enhances Blood Perfusion and Promotes Healing in MiceMaya Ben-Yehuda Greenwald, Yu-Hang Liu, Weiye Li, et al.
Computers in Biology and Medicine|March 19, 2025
Complex wound analysis using AIConnor J Robinson, Bruce Dickie, Claudia Lindner, et al.
The Journal of Investigative Dermatology|September 15, 2022
Quantitative Proteomics Identifies Reduced NRF2 Activity and Mitochondrial Dysfunction in Atopic DermatitisMichael Koch, Tobias Kockmann, Elke Rodriguez, et al.
Developmental Cell|July 18, 2018
Nrf2-Mediated Fibroblast Reprogramming Drives Cellular Senescence by Targeting the MatrisomePaul Hiebert, Mateusz S Wietecha, Michael Cangkrama, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
Matrix Biology : Journal of the International Society for Matrix Biology|November 11, 2022
Activation of Nrf2 in fibroblasts promotes a skin aging phenotype via an Nrf2-miRNA-collagen axisPaul Hiebert, Anastasiya Martyts, Jonas Schwestermann, et al.
European Journal of Immunology|April 20, 2020
Comprehensive characterization of myeloid cells during wound healing in healthy and healing-impaired diabetic miceNatasha Joshi, Lea Pohlmeier, Maya Ben-Yehuda Greenwald, et al.
Acta Biomaterialia|July 18, 2025
Characterization of murine excisional wounds based on atomic force microscopy indentationHåvar Johan Junker, Adam Wahlsten, Raoul Hopf, et al.
The Journal of Investigative Dermatology|June 30, 2020
A Dual-Acting Nitric Oxide Donor and Phosphodiesterase 5 Inhibitor Promotes Wound Healing in Normal Mice and Mice with DiabetesMaya Ben-Yehuda Greenwald, Carlotta Tacconi, Marko Jukic, et al.
Communications Biology|August 3, 2024
Hydrostatic pressure drives sprouting angiogenesis via adherens junction remodelling and YAP signallingDunja Alexandra Al-Nuaimi, Dominic Rütsche, Asra Abukar, et al.
Acta Biomaterialia|July 15, 2024
Biomechanical and biochemical changes in murine skin during development and agingAnastasiya Martyts, David Sachs, Paul Hiebert, et al.
Pharmaceutics|November 11, 2022
Topical Wound Treatment with a Nitric Oxide-Releasing PDE5 Inhibitor Formulation Enhances Blood Perfusion and Promotes Healing in MiceMaya Ben-Yehuda Greenwald, Yu-Hang Liu, Weiye Li, et al.
Computers in Biology and Medicine|March 19, 2025
Complex wound analysis using AIConnor J Robinson, Bruce Dickie, Claudia Lindner, et al.
The Journal of Investigative Dermatology|September 15, 2022
Quantitative Proteomics Identifies Reduced NRF2 Activity and Mitochondrial Dysfunction in Atopic DermatitisMichael Koch, Tobias Kockmann, Elke Rodriguez, et al.
Developmental Cell|July 18, 2018
Nrf2-Mediated Fibroblast Reprogramming Drives Cellular Senescence by Targeting the MatrisomePaul Hiebert, Mateusz S Wietecha, Michael Cangkrama, et al.
Pageof 3