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Published on: August 13, 2015
Cocoa flavanols and platelet and leukocyte function: recent in vitro and ex vivo studies in healthy adults
Stan Heptinstall1, Jane May, Sue Fox
1Cardiovascular Medicine, University of Nottingham, UK. s.heptinstall@nottingham.ac.uk
Insights
Cocoa flavanols and other cocoa compounds inhibit platelet and leukocyte activity, suggesting a dietary approach to cardiovascular health. These findings were observed both in laboratory studies and after consumption of cocoa beverages by healthy adults.
Area of Science:
- Cardiovascular Health
- Dietary Components
- Platelet and Leukocyte Function
Background:
- Platelets and leukocytes are implicated in arterial thrombosis and inflammation.
- Previous in vitro studies showed flavanols inhibit platelet function.
- Limited research exists on cocoa flavanols' effects on leukocytes.
Purpose of the Study:
- To investigate the effects of cocoa flavanols on platelet and leukocyte function in vitro.
- To examine the ex vivo effects of consuming a flavanol-rich cocoa beverage on platelet and leukocyte function in healthy adults.
Main Methods:
- In vitro and ex vivo studies using cocoa flavanols and flavanol-rich cocoa beverages.
- Measurements included platelet aggregation, platelet-monocyte (P/M) and platelet-neutrophil (P/N) conjugate formation, and platelet/leukocyte activation markers (CD62P, CD11b).
- Stimuli included collagen and arachidonic acid.
Main Results:
- In vitro: Cocoa flavanols and metabolites inhibited platelet aggregation, P/M, P/N, and platelet activation, with effects similar to aspirin.
- In vitro: Flavanols inhibited monocyte and neutrophil activation, an effect not replicated by aspirin; 4'-O-methyl-epicatechin was notably effective.
- Ex vivo: Cocoa beverage consumption inhibited platelet aggregation, P/M, P/N, and collagen-induced platelet activation; inhibition of leukocyte activation may involve non-flavanol cocoa constituents.
Conclusions:
- Cocoa flavanols, their metabolites, and potentially other cocoa compounds modulate platelet and leukocyte activity in vitro and ex vivo.
- Consumption of certain cocoa products may offer a dietary strategy for cardiovascular health maintenance.
- Further research is warranted to elucidate the specific mechanisms and non-flavanol components involved.
Abstract:
There is growing interest in possible beneficial effects of specific dietary components on cardiovascular health. Platelets and leukocytes contribute to arterial thrombosis and to inflammatory processes. Previous studies performed in vitro have demonstrated inhibition of platelet function by (-)-epicatechin and (+)-catechin, flavan-3-ols (flavanols) that are present in several foods including some cocoas. Also, some modest inhibition of platelet function has been observed ex vivo after the consumption of flavanol-containing cocoa products by healthy adults. So far there are no reports of effects of cocoa flavanols on leukocytes. This paper summarizes 2 recent investigations. The first was a study of the effects of cocoa flavanols on platelet and leukocyte function in vitro. The second was a study of the effects of consumption of a flavanol-rich cocoa beverage by healthy adults on platelet and leukocyte function ex vivo. Measurements were made of platelet aggregation, platelet-monocyte conjugate formation (P/M), platelet-neutrophil conjugate formation (P/N), platelet activation (CD62P on monocytes and neutrophils), and leukocyte activation (CD11b on monocytes and neutrophils) in response to collagen and/or arachidonic acid. In the in vitro study several cocoa flavanols and their metabolites were shown to inhibit platelet aggregation, P/M, P/N, and platelet activation. Their effects were similar to those of aspirin and the effects of a cocoa flavanol and aspirin did not seem to be additive. There was also inhibition of monocyte and neutrophil activation by flavanols, but this was not replicated by aspirin. 4'-O-methyl-epicatechin, 1 of the known metabolites of the cocoa flavanol (-)-epicatechin, was consistently effective as an inhibitor of platelet and leukocyte activation. The consumption of a flavanol-rich cocoa beverage also resulted in significant inhibition of platelet aggregation, P/M and P/N, and platelet activation induced by collagen. The inhibitory effects were related to their flavanol content. There was also inhibition of monocyte and neutrophil activation, but here it was concluded that cocoa constituents other than flavanols may contribute to the inhibition that was observed. It can be concluded that cocoa flavanols, their metabolites and possibly other cocoa constituents can modulate the activity of platelets and leukocytes in vitro and ex vivo. The research suggests that the consumption of certain cocoa products may provide a dietary approach to maintaining or improving cardiovascular health.
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