Literature DB >> 29079969

Coconut Products Improve Signs of Diet-Induced Metabolic Syndrome in Rats.

Sunil K Panchal1, Sharyn Carnahan2,3, Lindsay Brown2,3.   

Abstract

Increasing prevalence of obesity and metabolic syndrome warrants identification of potential therapeutic options for intervention. This study tested commercially available Virgin Coconut Oil and Coconut Nourish, as coconuts are rich sources of lauric and myristic acids. Male Wistar rats were fed either corn starch diet (C); high-carbohydrate, high-fat diet (H); high-carbohydrate, high-virgin coconut oil diet (HV); or high-carbohydrate, high-coconut Nourish diet (HN) for 16 weeks. Metabolic, liver, and cardiovascular health parameters were measured during and at the end of the study. Virgin coconut oil lowered body weight (C 386±8g, H 516±13g, HV 459±10g), blood glucose concentrations (C 4.2±0.1 mmol/L, H 5.4±0.2 mmol/L, HV 4.6±0.2 mmol/L), systolic blood pressure (C 127±5mmHg, H 149±4mmHg, HV 133±3mmHg,) and diastolic stiffness (C 25.0±1.7, H 31.4±1.2, HV 25.2±2.3,) with improved structure and function of the heart and liver. Coconut Nourish increased total body lean mass (C 255±10g, H 270±16g, HN 303±15g) and lowered plasma total cholesterol concentrations (C 1.6±0.2 mmol/L, H 1.7±0.1 mmol/L, HN 1.0±0.0 mmol/L), systolic blood pressure (C 127±5mmHg, H 149±4mmHg, HN 130±3mmHg) and diastolic stiffness (C 25.0±1.7, H 31.4±1.2, HN 26.5±1.0), improved structure and function of the heart and liver but increased plasma concentrations of triglycerides (C 0.3±0.1 mmol/L, H 1.1±0.4 mmol/L, HN 1.8±0.2 mmol/L) and non-esterified fatty acids (C 1.2±0.3 mmol/L, H 3.3±0.8 mmol/L, HN 5.6±0.4 mmol/L). Thus, the fiber and protein in coconut Nourish and the medium-chain saturated fatty acids in virgin coconut oil may improve cardiovascular and liver complications in obesity.

Entities:  

Keywords:  Coconut; Lauric acid; Metabolic syndrome; Obesity; Saturated fatty acids

Mesh:

Substances:

Year:  2017        PMID: 29079969     DOI: 10.1007/s11130-017-0643-0

Source DB:  PubMed          Journal:  Plant Foods Hum Nutr        ISSN: 0921-9668            Impact factor:   3.921


  33 in total

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Authors:  M Bagger; O Andersen; J B Nielsen; K R Ryttig
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4.  Differential oxidation of individual dietary fatty acids in humans.

Authors:  J P DeLany; M M Windhauser; C M Champagne; G A Bray
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5.  Coconut oil supplementation and physical exercise improves baroreflex sensitivity and oxidative stress in hypertensive rats.

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Review 9.  Cocos nucifera (L.) (Arecaceae): A phytochemical and pharmacological review.

Authors:  E B C Lima; C N S Sousa; L N Meneses; N C Ximenes; M A Santos Júnior; G S Vasconcelos; N B C Lima; M C A Patrocínio; D Macedo; S M M Vasconcelos
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Review 10.  Sucrose, high-fructose corn syrup, and fructose, their metabolism and potential health effects: what do we really know?

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5.  Changes in Metabolic Regulation and the Microbiota Composition after Supplementation with Different Fatty Acids in db/db Mice.

Authors:  Beatriz Elina Martínez-Carrillo; Talia Mondragón-Velásquez; Ninfa Ramírez-Durán; José Félix Aguirre-Garrido; Roxana Valdés-Ramos; Ana Laura Guadarrama-López; Arturo Castillo-Cardiel
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6.  Impaired mitochondrial medium-chain fatty acid oxidation drives periportal macrovesicular steatosis in sirtuin-5 knockout mice.

Authors:  Eric S Goetzman; Sivakama S Bharathi; Yuxun Zhang; Xue-Jun Zhao; Steven F Dobrowolski; Kevin Peasley; Sunder Sims-Lucas; Satdarshan P Monga
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