Atelocollagen Increases Collagen Synthesis by Promoting Glycine Transporter 1 in Aged Mouse Skin
Ателоколлаген увеличивает синтез коллагена за счёт повышения работы транспортерa глицина 1 в коже старых мышей
2025-12-07
SCID: 54.1/hdzdn7nw
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atelocollagenglycine transporter 1glycine uptakeoxidative stresstype I/III collagen
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Abstract (AI)
Aging results in decreased collagen synthesis and the disruption of extracellular matrix integrity, primarily due to increased oxidative stress. This study evaluated whether atelocollagen can restore collagen synthesis in aged skin by modulating glycine transporter 1 (GlyT1)-mediated glycine uptake, regulating oxidative stress, and influencing extracellular matrix remodeling factors in senescent human cells and the skin of older mice. Human dermal fibroblasts (HDFs) and aged mouse skin were treated with atelocollagen, with analyses of GlyT1 expression, glutathione and intracellular glycine concentrations, oxidative stress markers, nuclear factor-kappa-B (NF-κB) activity, matrix metalloproteinases (MMPs), SMAD proteins (SMADs) signaling, and collagen I/III. Treatment with GlyT1 inhibitors and glycine was tested. Atelocollagen significantly increased GlyT1 expression and intracellular glycine concentration, promoted glutathione synthesis, and reduced oxidative stress. These effects led to decreased NF-κB activity and MMP1/3/9 expression, increased SMAD2/3 phosphorylation, and upregulated type I/III collagen synthesis in senescent HDFs and aged mouse skin. All beneficial effects were blocked by GlyT1 inhibition and were generally superior to glycine alone. Histology showed increased collagen density and improved skin elasticity in atelocollagen-treated mice. In summary, atelocollagen enhances collagen synthesis and reduces oxidative stress in aged skin through GlyT1-dependent glycine transport, providing a potential strategy for skin rejuvenation.
Key Findings
1
Atelocollagen increases SMAD2/3 phosphorylation and upregulates type I and type III collagen synthesis in senescent HDFs and aged mouse skin.
2
Atelocollagen raises intracellular glycine concentration and promotes glutathione synthesis, thereby reducing oxidative stress.
3
Atelocollagen significantly increases GlyT1 (glycine transporter 1) expression in senescent human dermal fibroblasts and aged mouse skin.
4
Atelocollagen treatment decreases NF-κB activity and downregulates MMP1, MMP3, and MMP9 expression in senescent cells and aged skin.
5
Histology shows increased collagen density and improved skin elasticity in atelocollagen-treated aged mice.
6
The beneficial effects of atelocollagen are GlyT1-dependent and are blocked by GlyT1 inhibition, and atelocollagen effects are generally superior to glycine alone.
Research Object
Atelocollagen treatment of aged skin (senescent human dermal fibroblasts and aged mouse skin)
Research Subject
Restoration of collagen synthesis and reduction of oxidative stress via GlyT1-mediated glycine uptake, and downstream effects on glutathione, NF-κB activity, MMPs, SMAD2/3 signaling, and skin extracellular matrix remodeling
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2025-12-07
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