Fidgetin-Like 2: A Microtubule-Based Regulator of Wound Healing
Adenosine Triphosphatases
Wound Healing
Biopsy, Needle
Blotting, Western
Nuclear Proteins
Cell Biology
Dermatology
Real-Time Polymerase Chain Reaction
Biochemistry
Immunohistochemistry
Microtubules
Disease Models, Animal
Mice
Random Allocation
Cell Movement
ATPases Associated with Diverse Cellular Activities
Animals
Nanoparticles
Wounds and Injuries
RNA, Small Interfering
Molecular Biology
Microtubule-Associated Proteins
Cells, Cultured
DOI:
10.1038/jid.2015.94
Publication Date:
2015-03-10T15:13:04Z
AUTHORS (16)
ABSTRACT
Wound healing is a complex process driven largely by the migration of a variety of distinct cell types from the wound margin into the wound zone. In this study, we identify the previously uncharacterized microtubule-severing enzyme, Fidgetin-like 2 (FL2), as a fundamental regulator of cell migration that can be targeted in vivo using nanoparticle-encapsulated small interfering RNA (siRNA) to promote wound closure and regeneration. In vitro, depletion of FL2 from mammalian tissue culture cells results in a more than twofold increase in the rate of cell movement, in part due to a significant increase in directional motility. Immunofluorescence analyses indicate that FL2 normally localizes to the cell edge, importantly to the leading edge of polarized cells, where it regulates the organization and dynamics of the microtubule cytoskeleton. To clinically translate these findings, we utilized a nanoparticle-based siRNA delivery platform to locally deplete FL2 in both murine full-thickness excisional and burn wounds. Topical application of FL2 siRNA nanoparticles to either wound type results in a significant enhancement in the rate and quality of wound closure both clinically and histologically relative to controls. Taken together, these results identify FL2 as a promising therapeutic target to promote the regeneration and repair of cutaneous wounds.
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CITATIONS (57)
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