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Extraction and Purification of Polyphenols from Freeze-dried Berry Powder for the Treatment of Vascular Smooth Muscle Cells In Vitro
Published on: July 5, 2017
Grape polyphenols corrects ageing-related detriments in neutrophil functionality via modulation of specific molecular
Kelly S Petersen1, Jeanine L Marnewick2, Carine Smith3
1Department of Physiological Sciences, Stellenbosch University, Private Bag X1, Matieland, Stellenbosch, 7602, South Africa.
Abstract:
Oxidative stress and inflammation are intricately interlinked as aetiological factors in the context of ageing and chronic disease-related accelerated ageing. Previous research by our group has highlighted the anti-oxidant and anti-inflammatory potential of grape-derived polyphenols in the context of acute inflammation and oxidative stress. The aim here was to add to this by assessing efficacy of the treatment (acutely) to address ageing-associated cumulative pro-oxidant and pro-inflammatory changes in an in vitro model. Blood from young and aged humans was analysed for baseline oxidative stress and inflammatory status. Isolated neutrophils were acutely exposed to the polyphenol treatment in vitro. The chemokinetic capacity of treated and control neutrophils in response to fMLP was subsequently determined in a Dunn chamber, using live cell imaging. Neutrophils were also analysed for the expression of selected molecular markers associated with functional capacity and oxidative stress. Results indicate that the aged population had significantly worse oxidative stress and inflammatory profiles (higher plasma conjugated dienes and MPO) than young controls. Neutrophils isolated from both young and aged individuals had improved chemokinetic accuracy and capacity after in vitro polyphenol treatment. Additionally, increased shedding of CD16 and expression of CD66b suggested sites via which the polyphenol achieved improved neutrophil motility. We conclude that grape seed-derived polyphenols facilitated improved neutrophil functionality by acting on the molecular targets elucidated here.
Insights
Grape seed polyphenols enhance neutrophil function in aging individuals. This study shows these compounds improve neutrophil motility and target key molecular markers, offering potential for combating age-related inflammation and oxidative stress.
Area of Science:
- Gerontology and immunology research.
- Investigating cellular mechanisms of aging and inflammation.
Background:
- Oxidative stress and inflammation are key factors in aging and chronic diseases.
- Previous studies indicated grape polyphenols possess antioxidant and anti-inflammatory properties.
Purpose of the Study:
- To evaluate the efficacy of grape-derived polyphenols in addressing aging-associated oxidative stress and inflammation.
- To assess the impact of polyphenols on neutrophil function in vitro using blood from young and aged humans.
Main Methods:
- Analysis of baseline oxidative stress and inflammatory markers in blood from young and aged donors.
- In vitro exposure of isolated neutrophils to grape polyphenol treatment.
- Assessment of neutrophil chemokinetic capacity using live cell imaging and analysis of molecular markers (CD16, CD66b).
Main Results:
- Aged individuals exhibited higher levels of oxidative stress and inflammation (conjugated dienes, myeloperoxidase) compared to young controls.
- Polyphenol treatment improved neutrophil chemokinetic accuracy and capacity in both young and aged neutrophils.
- CD16 shedding and CD66b expression changes indicated polyphenol action on neutrophil motility pathways.
Conclusions:
- Grape seed-derived polyphenols can enhance neutrophil functionality.
- The study elucidates molecular targets through which polyphenols improve neutrophil motility, suggesting a role in mitigating age-related cellular dysfunction.
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