Chemical Composition of Hazelnut Skin Food Waste and Protective Role against Advanced Glycation End-Products (AGEs) Damage in THP-1-Derived Macrophages.
Ludovica SpagnuoloSusanna Della PostaChiara FanaliLaura DugoLaura De GaraPublished in: Molecules (Basel, Switzerland) (2023)
Glycation and the accumulation of advanced glycation end-products (AGEs) are known to occur during aging, diabetes and neurodegenerative diseases. Increased glucose or methylglyoxal (MGO) levels in the blood of diabetic patients result in increased AGEs. A diet rich in bioactive food compounds, like polyphenols, has a protective effect. The aim of this work is to evaluate the capacity of hazelnut skin polyphenolic extract to protect THP-1-macrophages from damage induced by AGEs. The main polyphenolic subclass was identified and quantified by means of HPLC/MS and the Folin-Ciocalteu method. AGEs derived from incubation of bovine serum albumin (BSA) and MGO were characterized by fluorescence. Cell viability measurement was performed to evaluate the cytotoxic effect of the polyphenolic extract in macrophages. Reactive oxygen species' (ROS) production was assessed by the H2-DCF-DA assay, the inflammatory response by real-time PCR for gene expression, and the ELISA assay for protein quantification. We have shown that the polyphenolic extract protected cell viability from damage induced by AGEs. After treatment with AGEs, macrophages expressed high levels of pro-inflammatory cytokines and ROS, whereas in co-treatment with polyphenol extract there was a reduction in either case. Our study suggests that hazelnut skin polyphenol-rich extracts have positive effects and could be further investigated for nutraceutical applications.
Keyphrases
- oxidative stress
- reactive oxygen species
- gene expression
- inflammatory response
- anti inflammatory
- dna damage
- ms ms
- type diabetes
- soft tissue
- dna methylation
- cell death
- mass spectrometry
- high throughput
- cardiovascular disease
- multiple sclerosis
- metabolic syndrome
- risk assessment
- weight loss
- physical activity
- lipopolysaccharide induced
- climate change
- toll like receptor
- simultaneous determination
- amino acid
- blood pressure