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Oxidation-dependent effects of alpha-1 antitrypsin on wound healing and inflammation
by
Lewis, Eli C.
, Ogen-Shtern, Navit
, Cohen, Samuel
, Goldstein, Oron
, Halpern, Dor
, Sheffer, Lihie
, Pinto, Noam
, Anav, Yuval
, Farber, Idan
, Darawsha, Aya
, El-Saied, Sabri
, Silberstein, Eldad
in
631/45/2783
/ 692/699
/ A1-antitrypsin
/ A549 Cells
/ Administration, Cutaneous
/ alpha 1-Antitrypsin - administration & dosage
/ alpha 1-Antitrypsin - genetics
/ alpha 1-Antitrypsin - metabolism
/ Animals
/ Chronic obstructive pulmonary disease
/ Clinical trials
/ Elastase
/ Elastase inhibition
/ Epithelial cells
/ Epithelial gap closure
/ Female
/ Humanities and Social Sciences
/ Humans
/ Hydrogen peroxide
/ IL-1 receptor antagonist
/ Inflammation
/ Inflammation - drug therapy
/ Inflammation - genetics
/ Inflammation - pathology
/ Interleukin 1 receptor antagonist
/ Laboratory animals
/ Macrophage activation
/ Macrophages
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ multidisciplinary
/ Neutrophils
/ Nitric oxide
/ Nitric-oxide synthase
/ NRF2/ARE pathway
/ Oxidation
/ Oxidation-Reduction - drug effects
/ Oxidation-Reduction - radiation effects
/ Oxidative stress
/ Physiology
/ Potassium
/ Proteases
/ Radiation
/ RAW 264.7 Cells
/ Reactive oxygen species
/ Reactive Oxygen Species - metabolism
/ Science
/ Science (multidisciplinary)
/ Skin - drug effects
/ Skin - metabolism
/ Skin - pathology
/ Skin - radiation effects
/ Skin tests
/ Tissues
/ Transgenic mice
/ Wound healing
/ Wound Healing - drug effects
/ Wound Healing - genetics
/ Wound Healing - radiation effects
2025
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Oxidation-dependent effects of alpha-1 antitrypsin on wound healing and inflammation
by
Lewis, Eli C.
, Ogen-Shtern, Navit
, Cohen, Samuel
, Goldstein, Oron
, Halpern, Dor
, Sheffer, Lihie
, Pinto, Noam
, Anav, Yuval
, Farber, Idan
, Darawsha, Aya
, El-Saied, Sabri
, Silberstein, Eldad
in
631/45/2783
/ 692/699
/ A1-antitrypsin
/ A549 Cells
/ Administration, Cutaneous
/ alpha 1-Antitrypsin - administration & dosage
/ alpha 1-Antitrypsin - genetics
/ alpha 1-Antitrypsin - metabolism
/ Animals
/ Chronic obstructive pulmonary disease
/ Clinical trials
/ Elastase
/ Elastase inhibition
/ Epithelial cells
/ Epithelial gap closure
/ Female
/ Humanities and Social Sciences
/ Humans
/ Hydrogen peroxide
/ IL-1 receptor antagonist
/ Inflammation
/ Inflammation - drug therapy
/ Inflammation - genetics
/ Inflammation - pathology
/ Interleukin 1 receptor antagonist
/ Laboratory animals
/ Macrophage activation
/ Macrophages
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ multidisciplinary
/ Neutrophils
/ Nitric oxide
/ Nitric-oxide synthase
/ NRF2/ARE pathway
/ Oxidation
/ Oxidation-Reduction - drug effects
/ Oxidation-Reduction - radiation effects
/ Oxidative stress
/ Physiology
/ Potassium
/ Proteases
/ Radiation
/ RAW 264.7 Cells
/ Reactive oxygen species
/ Reactive Oxygen Species - metabolism
/ Science
/ Science (multidisciplinary)
/ Skin - drug effects
/ Skin - metabolism
/ Skin - pathology
/ Skin - radiation effects
/ Skin tests
/ Tissues
/ Transgenic mice
/ Wound healing
/ Wound Healing - drug effects
/ Wound Healing - genetics
/ Wound Healing - radiation effects
2025
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Oxidation-dependent effects of alpha-1 antitrypsin on wound healing and inflammation
by
Lewis, Eli C.
, Ogen-Shtern, Navit
, Cohen, Samuel
, Goldstein, Oron
, Halpern, Dor
, Sheffer, Lihie
, Pinto, Noam
, Anav, Yuval
, Farber, Idan
, Darawsha, Aya
, El-Saied, Sabri
, Silberstein, Eldad
in
631/45/2783
/ 692/699
/ A1-antitrypsin
/ A549 Cells
/ Administration, Cutaneous
/ alpha 1-Antitrypsin - administration & dosage
/ alpha 1-Antitrypsin - genetics
/ alpha 1-Antitrypsin - metabolism
/ Animals
/ Chronic obstructive pulmonary disease
/ Clinical trials
/ Elastase
/ Elastase inhibition
/ Epithelial cells
/ Epithelial gap closure
/ Female
/ Humanities and Social Sciences
/ Humans
/ Hydrogen peroxide
/ IL-1 receptor antagonist
/ Inflammation
/ Inflammation - drug therapy
/ Inflammation - genetics
/ Inflammation - pathology
/ Interleukin 1 receptor antagonist
/ Laboratory animals
/ Macrophage activation
/ Macrophages
/ Mice
/ Mice, Inbred C57BL
/ Mice, Transgenic
/ multidisciplinary
/ Neutrophils
/ Nitric oxide
/ Nitric-oxide synthase
/ NRF2/ARE pathway
/ Oxidation
/ Oxidation-Reduction - drug effects
/ Oxidation-Reduction - radiation effects
/ Oxidative stress
/ Physiology
/ Potassium
/ Proteases
/ Radiation
/ RAW 264.7 Cells
/ Reactive oxygen species
/ Reactive Oxygen Species - metabolism
/ Science
/ Science (multidisciplinary)
/ Skin - drug effects
/ Skin - metabolism
/ Skin - pathology
/ Skin - radiation effects
/ Skin tests
/ Tissues
/ Transgenic mice
/ Wound healing
/ Wound Healing - drug effects
/ Wound Healing - genetics
/ Wound Healing - radiation effects
2025
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Oxidation-dependent effects of alpha-1 antitrypsin on wound healing and inflammation
Journal Article
Oxidation-dependent effects of alpha-1 antitrypsin on wound healing and inflammation
2025
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Overview
Wound healing requires a delicate balance between cellular and molecular factors, all affected by reactive oxygen species (ROS). While ROS decontaminate, they also might lead to impaired wound healing, as evident in radiation-exposed skin and in venous insufficiency. Human alpha-1 antitrypsin (hAAT) is a circulating antiprotease that is anti-inflammatory and tissue-protective. Accordingly, tissue repair is enhanced in hAAT-rich conditions. hAAT undergoes oxidative modification in high-ROS environments, which alters its functional properties. While its antiprotease function is lost, the consequences of oxidation on its anti-inflammatory and tissue-protective properties are still under investigation. To explore this, excisional skin wound closure rates were first examined on irradiated skin and then tested using an iron-loading venous insufficiency model. The former was tested on hAAT transgenic mice, the latter on wild-type mice using topical clinical-grade hAAT. In-vitro, hAAT was oxidized using H
2
O
2
(0.5, 5 and 25 mM), then tested for elastase inhibition and added to an in-vitro A549 epithelial cell gap closure assay and a RAW 264.7 macrophage cell response assay. ROS levels, inflammatory responses and NRF2/ARE activation were determined. Results demonstrated wound closure was impaired in wild-type mice by both radiation and iron. In contrast, hAAT-transgenic mice exhibited accelerated wound closure in both normal and irradiated skin, and topical hAAT improved wound healing in the venous insufficiency model. hAAT
OX
lacked elastase inhibition across the three oxidation levels, yet highly oxidized hAAT (hAAT
OX 25mM
) impaired epithelial gap closure and weakly oxidized hAAT (hAAT
OX 0.5mM
) enhanced gap closure. All forms of hAAT
OX
elevated ROS in macrophages, as well as the expression of iNOS and catalase, IL-1β, TNFα and CXCL-1. Unexpectedly, the NRF2/ARE pathway was activated by hAAT
OX 25mM
and suppressed by hAAT
OX 0.5mM
, and hAAT
OX 0.5 mM
induced IL-1 receptor antagonist expression. In conclusion, oxidation levels of hAAT modify its effects on inflammation and tissue repair. While protease inhibition is lost, anti-inflammatory and repair attributes are maintained under low oxidative conditions, suggesting a molecular profile that is physiologically attuned to local signals. Considering its safety record, the study proposes that hAAT therapy is poised for trials in the context of defective tissue repair under oxidative conditions.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 692/699
/ alpha 1-Antitrypsin - administration & dosage
/ alpha 1-Antitrypsin - genetics
/ alpha 1-Antitrypsin - metabolism
/ Animals
/ Chronic obstructive pulmonary disease
/ Elastase
/ Female
/ Humanities and Social Sciences
/ Humans
/ Interleukin 1 receptor antagonist
/ Mice
/ Oxidation-Reduction - drug effects
/ Oxidation-Reduction - radiation effects
/ Reactive Oxygen Species - metabolism
/ Science
/ Tissues
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