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Tissue Engineering. Part A|April 13, 2018
Acceleration of Diabetic Wound Healing with PHD2- and miR-210-Targeting OligonucleotidesAnne Dallas, Artem Trotsyuk, Heini Ilves, et al.
STAR Protocols|December 16, 2022
Multiplexed evaluation of mouse wound tissue using oligonucleotide barcoding with single-cell RNA sequencingMichael Januszyk, Michelle Griffin, Shamik Mascharak, et al.
Cytotherapy|September 18, 2017
Ultrasound-assisted liposuction provides a source for functional adipose-derived stromal cellsDominik Duscher, Zeshaan N Maan, Anna Luan, et al.
Scientific Reports|July 25, 2020
Prophylactic treatment with transdermal deferoxamine mitigates radiation-induced skin fibrosisAbra H Shen, Mimi R Borrelli, Sandeep Adem, et al.
Frontiers in Physiology|October 30, 2024
Cancer and lymphatic marker FOXC2 drives wound healing and fibrotic tissue formationMaia B Granoski, Katharina S Fischer, William W Hahn, et al.
Plastic and Reconstructive Surgery|December 28, 2017
PHD-2 Suppression in Mesenchymal Stromal Cells Enhances Wound HealingSae Hee Ko, Allison C Nauta, Shane D Morrison, et al.
The Journal of Investigative Dermatology. Symposium Proceedings|October 31, 2006
Overview of the role for calreticulin in the enhancement of wound healing through multiple biological effectsLeslie I Gold, Mohammad Rahman, Keith M Blechman, et al.
Plastic and Reconstructive Surgery|May 9, 2014
A randomized controlled trial of the embrace advanced scar therapy device to reduce incisional scar formationMichael T Longaker, Rod J Rohrich, Lauren Greenberg, et al.
Tissue Engineering. Part A|May 16, 2024
Elevated Shear Stress Modulates Heterogenous Cellular Subpopulations to Induce Vascular RemodelingKatharina S Fischer, Dominic Henn, Eric T Zhao, et al.
Tissue Engineering. Part A|November 21, 2015
Enrichment of Adipose-Derived Stromal Cells for BMPR1A Facilitates Enhanced AdipogenesisElizabeth R Zielins, Kevin Paik, Ryan C Ransom, et al.
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