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Apple Derived Exosomes Improve Collagen Type I Production and Decrease MMPs during Aging of the Skin through Downregulation of the NF-κB Pathway as Mode of Action
by
Trentini, Martina
, Zanotti, Federica
, Dal Monego, Simeone
, Zavan, Barbara
, Lovatti, Luca
, Zanolla, Ilaria
, Tiengo, Elena
, Licastro, Danilo
in
Aging
/ Analysis
/ Antioxidants
/ apple
/ Apples
/ Care and treatment
/ Chemokines
/ Collagen
/ Collagen (type I)
/ Collagen Type I - metabolism
/ Cytokines
/ Down-Regulation
/ Exosomes
/ Exosomes - metabolism
/ Extracellular matrix
/ Fibroblasts
/ Fruits
/ Gelatinase B
/ Health aspects
/ Hyaluronic acid
/ Hydrogels
/ Immune system
/ inflammageing
/ Inflammation
/ Investigations
/ Malus - metabolism
/ Matrix Metalloproteinases - metabolism
/ Metalloproteinase
/ Neutrophil collagenase
/ NF-kappa B - metabolism
/ NF-κB protein
/ Oxidative stress
/ Physiology
/ Polyphenols
/ Proteins
/ RNA sequencing
/ Scanning electron microscopy
/ Sequence analysis
/ Skin
/ Structural proteins
/ TLR4 protein
/ Toll-like receptors
/ wound healing
2022
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Apple Derived Exosomes Improve Collagen Type I Production and Decrease MMPs during Aging of the Skin through Downregulation of the NF-κB Pathway as Mode of Action
by
Trentini, Martina
, Zanotti, Federica
, Dal Monego, Simeone
, Zavan, Barbara
, Lovatti, Luca
, Zanolla, Ilaria
, Tiengo, Elena
, Licastro, Danilo
in
Aging
/ Analysis
/ Antioxidants
/ apple
/ Apples
/ Care and treatment
/ Chemokines
/ Collagen
/ Collagen (type I)
/ Collagen Type I - metabolism
/ Cytokines
/ Down-Regulation
/ Exosomes
/ Exosomes - metabolism
/ Extracellular matrix
/ Fibroblasts
/ Fruits
/ Gelatinase B
/ Health aspects
/ Hyaluronic acid
/ Hydrogels
/ Immune system
/ inflammageing
/ Inflammation
/ Investigations
/ Malus - metabolism
/ Matrix Metalloproteinases - metabolism
/ Metalloproteinase
/ Neutrophil collagenase
/ NF-kappa B - metabolism
/ NF-κB protein
/ Oxidative stress
/ Physiology
/ Polyphenols
/ Proteins
/ RNA sequencing
/ Scanning electron microscopy
/ Sequence analysis
/ Skin
/ Structural proteins
/ TLR4 protein
/ Toll-like receptors
/ wound healing
2022
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Apple Derived Exosomes Improve Collagen Type I Production and Decrease MMPs during Aging of the Skin through Downregulation of the NF-κB Pathway as Mode of Action
by
Trentini, Martina
, Zanotti, Federica
, Dal Monego, Simeone
, Zavan, Barbara
, Lovatti, Luca
, Zanolla, Ilaria
, Tiengo, Elena
, Licastro, Danilo
in
Aging
/ Analysis
/ Antioxidants
/ apple
/ Apples
/ Care and treatment
/ Chemokines
/ Collagen
/ Collagen (type I)
/ Collagen Type I - metabolism
/ Cytokines
/ Down-Regulation
/ Exosomes
/ Exosomes - metabolism
/ Extracellular matrix
/ Fibroblasts
/ Fruits
/ Gelatinase B
/ Health aspects
/ Hyaluronic acid
/ Hydrogels
/ Immune system
/ inflammageing
/ Inflammation
/ Investigations
/ Malus - metabolism
/ Matrix Metalloproteinases - metabolism
/ Metalloproteinase
/ Neutrophil collagenase
/ NF-kappa B - metabolism
/ NF-κB protein
/ Oxidative stress
/ Physiology
/ Polyphenols
/ Proteins
/ RNA sequencing
/ Scanning electron microscopy
/ Sequence analysis
/ Skin
/ Structural proteins
/ TLR4 protein
/ Toll-like receptors
/ wound healing
2022
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Apple Derived Exosomes Improve Collagen Type I Production and Decrease MMPs during Aging of the Skin through Downregulation of the NF-κB Pathway as Mode of Action
Journal Article
Apple Derived Exosomes Improve Collagen Type I Production and Decrease MMPs during Aging of the Skin through Downregulation of the NF-κB Pathway as Mode of Action
2022
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Overview
Skin ageing is strictly related to chronic inflammation of the derma and the decay of structural proteins of the extracellular matrix. Indeed, it has become common practice to refer to this phenomenon as inflammageing. Biotech innovation is always in search of new active principles that induce a youthful appearance. In this paper, apple-derived nanovesicles (ADNVs) were investigated as novel anti-inflammatory compounds, which are able to alter the extracellular matrix production of dermal fibroblasts. Total RNA sequencing analysis revealed that ADNVs negatively influence the activity of Toll-like Receptor 4 (TLR4), and, thus, downregulate the NF-κB pro-inflammatory pathway. ADNVs also reduce extracellular matrix degradation by increasing collagen synthesis (COL3A1, COL1A2, COL8A1 and COL6A1) and downregulating metalloproteinase production (MMP1, MMP8 and MMP9). Topical applications for skin regeneration were evaluated by the association of ADNVs with hyaluronic-acid-based hydrogel and patches.
Publisher
MDPI AG,MDPI
Subject
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