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A Novel In Vitro Wound Healing Assay to Evaluate Cell Migration
Published on: March 17, 2018
Accelerated Wound Border Closure Using a Microemulsion Containing Non-Inhibitory Recombinant α1-Antitrypsin
Alon Gimmon1, Lior Sherker1, Lena Kojukarov1
1Department of Clinical Biochemistry and Pharmacology, Faculty of Health Sciences, Ben-Gurion University of the Negev, Beer-Sheva 8410501, Israel.
Human alpha1-antitrypsin (hAAT) accelerates wound healing by enhancing epithelial cell migration and skin repair. Both native and protease-inhibition-lacking hAAT improved outcomes, regardless of protease inhibition.
Area of Science:
- Biochemistry
- Wound Healing Research
- Immunology
Background:
- Wound healing involves complex inflammatory and anti-inflammatory processes.
- Human alpha1-antitrypsin (hAAT) is a protective glycoprotein with anti-inflammatory properties that also enhances revascularization.
- The role of hAAT in wound healing is unclear due to its protease inhibition activity.
Purpose of the Study:
- To investigate the impact of recombinant wild-type hAAT (hAATWT) and protease-inhibition-lacking hAAT (hAATCP) on wound healing.
- To determine if hAAT's wound healing benefits are dependent on its protease inhibition function.
Main Methods:
- Epithelial cell gap closure assay to assess cell migration.
- Excisional skin injury model in vivo using a microemulsion for open wounds.
- Analysis of neutrophilic infiltration and gene expression of interleukin-1β and VEGF at 8 hours.
Main Results:
- Both hAATWT and hAATCP significantly accelerated epithelial gap closure and excisional wound closure, especially at early stages.
- Wounds treated with hAAT forms showed closed borders at 8 hours, unlike untreated wounds.
- hAATWT led to compartmentalized neutrophilic infiltration, while hAATCP resulted in widespread infiltration, similar to untreated wounds.
Conclusions:
- Human alpha1-antitrypsin (hAAT) enhances epithelial cell migration and improves in vivo wound healing outcomes independently of its protease inhibition activity.
- Both native and modified hAAT facilitate neutrophil infiltration, but only native hAAT organizes them into distinct tissue clusters.
- hAAT treatment modulated inflammatory (reduced IL-1β) and pro-angiogenic (increased VEGF) gene expression during wound healing.
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