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1.
Eur J Clin Nutr ; 65(6): 703-10, 2011 Jun.
Article in English | MEDLINE | ID: mdl-21407247

ABSTRACT

BACKGROUND/OBJECTIVE: Cardiovascular risk depends largely on paraoxonase (PON-1) and apolipoprotein A4 (APOA4) gene polymorphisms. To compare the effects of consumption of walnut-enriched meat versus low-fat meat (LM) on selected soluble adhesion molecules and leukotrienes (LTB4). SUBJECTS/METHODS: In all 22 subjects at increased cardiovascular risk were taken. It is a non-blinded, cross-over, placebo-controlled study. Two 5-week experimental periods separated by 4-6 week wash-out interval. Participants consumed walnut-enriched meat during one period and LM during the other. Diet characteristics, HDLc, Apo A1, paraoxonase, sVCAM-1, sICAM-1 and LTB4 were analysed. PON-1 55, PON-1 192 and APOA4 360 polymorphism effects were also assessed. RESULTS: Individuals consuming walnut-enriched meat displayed higher paraoxonase activity (P<0.001), lower levels of sICAM and aVCAM (P=0.046, P=0.012, respectively) and leukotriene B4 (P=0.044), and lower paraoxonase-1/HDLc and paraoxonase-1/Apo A1 ratios (both, P<0.001) than those consuming LM. Paraoxonase levels correlated negatively with those of sICAM (r=-0.471, P<0.01). Significant decreases (at least P<0.05) were observed in sICAM concentrations in PON-1 55LM+MM, PON-1 QQ192 and APOA4-2 carriers while decreases in sVCAM in QR+RR and APOA4-1 carriers were observed. Paraoxonase-1/HDLc and paraoxonase-1/Apo A1 ratios were significantly influenced by paraoxonase polymorphisms. CONCLUSIONS: Walnut-enriched meat appears as a functional meat as consumed in the framework of a mix diet lowered the concentration of some selected inflammatory chemoattractant biomarkers. This effect was largely influenced by PON-1 and Apo A4-360 polymorphisms.


Subject(s)
Apolipoproteins A/genetics , Aryldialkylphosphatase/genetics , Cardiovascular Diseases/genetics , Food, Fortified , Juglans , Meat , Polymorphism, Genetic , Apolipoprotein A-I/blood , Apolipoproteins A/blood , Aryldialkylphosphatase/blood , Cardiovascular Diseases/blood , Cardiovascular Diseases/prevention & control , Cell Adhesion Molecules/blood , Cholesterol, HDL/blood , Diet , Female , Humans , Inflammation Mediators/blood , Intercellular Adhesion Molecule-1/blood , Leukotriene B4/blood , Male , Middle Aged , Nuts , Plant Preparations/pharmacology , Risk Factors , Vascular Cell Adhesion Molecule-1/blood
2.
Nutr. hosp ; 25(5): 746-754, sept.-oct. 2010. tab
Article in English | IBECS | ID: ibc-97296

ABSTRACT

Background and aim: Low-fat meat (LM) has been considered adequate under a cardiovascular disease point of view. Meat enriched in walnut paste (WM) consumption produces beneficial antithrombogenic effects but with striking inter-individual variability that may be related to gene polymorphism. Variants in the APOA4 gene (APOA4) polymorphism are known to affect the cardiovascular risk. This study aimed to compare the effects of consumption of WM and LM on platelet aggregation, production of thromboxane A2 (TXA2) and prostacyclin I2 (PGI2), and the TXA2/PGI2 ratio in 22 volunteers with different APOA4 polymorphism. Subjects and Methods: Six volunteers carried the Gln allele (APOA4-2) while 16 were homozygous for the His allele (APOA4-1). Platelet aggregation, TXA2 (measured as TXB2), PGI2 (measured as 6-keto-PGF1α), and the thrombogenic ratio (TXB2/6-keto-PGF1α) were determined at baseline and at weeks 3 and 5 for the WM and LM dietary periods. Results: Platelet aggregation decreased significantly (P<0.05) more in APOA4-1 than in APOA4-2 volunteers at 3-wk WM period, while TXB2 levels dropped more in APOA4-2 than in APOA4-1 volunteers at 5-wk WM period. TXB2 levels and the TXB2/6-keto-PGF1α ratio decreased significantly more (P<0.05) after 5 wk treatment in APOA4-2 than in APOA4-1 carriers on the WM diet than on the LM counterpart. However, 6-keto-PGF1α levels increased more (P<0.05) in APOA4-1 than in APOA4-2 volunteers after the 5-wk WM period than after the 5-wk LM diet. Conclusions: Present results suggest that consumption of WM with respect to LM decrease the thrombogenic risk more in Gln carriers than in His/His (AU)


Antecedentes y objetivos: La carne con bajo contenido graso (LM) se considera adecuada bajo el punto de vista cardiovascular. La ingesta de carne enriquecida en pasta de nuez (WM), mejora los efectos antitrombogénicos con una variabilidad inter-individual que puede estar relacionada con el polimorfismo genético. Variaciones en los genes APOA4 (APOA4) del polimorfismo afectan el riesgo cardiovascular. Este estudio compara los efectos de la ingesta de WM y LM sobre la agregación plaquetaria, la producción de tromboxano A2 (TXA2) y prostaciclina I2 (PGI2), y el cociente TXA2/PGI2 ratio en 22 voluntarios con diferentes polimorfismos APOA4. Material y métodos: Seis voluntarios portaban el alelo Gln (APOA4-2) frente a los 16 homozigotos para el alelo His (APOA4-1). La agregación plaquetaria, el TXA2 (medido como TXB2), la PGI2 (medida como 6-keto-PGF1α), y el cociente trombogenético (TXB2/6-keto-PGF1α) se determinaron al comienzo y en las semanas 3 y 5 de los periodos de WM y LM. Resultados: La agregación plaquetaria disminuyó significativamente más (P <0.05) en los voluntarios APOA4-1 que en los APOA4-2 en la semana 3 del periodo WM. El descenso de los niveles de TXB2 fue mayor para los voluntarios APOA4-2 que para los APOA4-1 en la semana 5 del periodo WM. Después de 5 semanas con dieta WM, la concentración de TXB2 y el cociente TXB2/6-keto- PGF1α disminuyeron significativamente más (P<0.05) en los individuos APOA4-2 que en los APOA4-1 que con la dieta LM. Sin embargo, después de 5 semanas, la dieta WM con respecto a la LM incrementó más (P <0.05) los niveles de 6-keto-PGF1α en los voluntarios APOA4-1 que en los APOA4-2. Conclusiones: Estos resultados sugieren que la ingesta de WM en comparación d LM, disminuye más el riesgo trombogénico en los voluntarios portadores de Gln que en los que His/His (AU)


Subject(s)
Humans , Meat , Nuts/metabolism , Platelet Aggregation , Apolipoproteins A/analysis , Thrombosis/prevention & control , Functional Food/analysis , Food, Fortified , Diet, Fat-Restricted , Polymorphism, Genetic , Epoprostenol/analysis , Thromboxanes/analysis
3.
Nutr Hosp ; 25(5): 746-54, 2010.
Article in English | MEDLINE | ID: mdl-21336431

ABSTRACT

BACKGROUND AND AIM: Low-fat meat (LM) has been considered adequate under a cardiovascular disease point of view. Meat enriched in walnut paste (WM) consumption produces beneficial antithrombogenic effects but with striking inter-individual variability that may be related to gene polymorphism. Variants in the APOA4 gene (APOA4) polymorphism are known to affect the cardiovascular risk. This study aimed to compare the effects of consumption of WM and LM on platelet aggregation, production of thromboxane A2 (TXA2) and prostacyclin I2 (PGI2), and the TXA2/PGI2 ratio in 22 volunteers with different APOA4 polymorphism. SUBJECTS AND METHODS: Six volunteers carried the Gln allele (APOA4-2) while 16 were homozygous for the His allele (APOA4-1). Platelet aggregation, TXA2 (measured as TXB2), PGI2 (measured as 6-keto-PGF1α), and the thrombogenic ratio (TXB2/6-keto-PGF1α) were determined at baseline and at weeks 3 and 5 for the WM and LM dietary periods. RESULTS: Platelet aggregation decreased significantly (P<0.05) more in APOA4-1 than in APOA4-2 volunteers at 3-wk WM period, while TXB2 levels dropped more in APOA4-2 than in APOA4-1 volunteers at 5-wk WM period. TXB2 levels and the TXB2/6-keto-PGF1α ratio decreased significantly more (P<0.05) after 5 wk treatment in APOA4-2 than in APOA4-1 carriers on the WM diet than on the LM counterpart. However, 6-keto-PGF1α levels increased more (P<0.05) in APOA4-1 than in APOA4-2 volunteers after the 5-wk WM period than after the 5-wk LM diet. CONCLUSIONS: Present results suggest that consumption of WM with respect to LM decrease the thrombogenic risk more in Gln carriers than in His/His.


Subject(s)
Apolipoproteins A/genetics , Juglans , Meat , Platelet Aggregation/physiology , Thrombosis/blood , 6-Ketoprostaglandin F1 alpha/blood , Adult , Blood Pressure/physiology , Cross-Over Studies , DNA/genetics , DNA/isolation & purification , Diet , Energy Intake , Epoprostenol/blood , Female , Genotype , Humans , Male , Middle Aged , Polymorphism, Genetic , Thromboxane A2/blood , Thromboxane B2/blood
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