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Unveiling the molecular mechanisms: dietary phytosterols as guardians against cardiovascular diseases
by
Khalid, Asaad
, Iesa, Mohamed A. M.
, Bouyahya, Abdelhakim
, Abdalla, Ashraf N.
, El Kadri, Kawtar
, Tang, Siah Ying
, Bakrim, Saad
, El Omari, Nasreddine
, Goh, Bey Hing
in
absorption
/ Biomedical and Life Sciences
/ Bioorganic Chemistry
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cardiovascular system
/ Catalase
/ Cholesterol
/ cytokines
/ Diet
/ Dietary supplements
/ drugs
/ Ergosterol
/ Food Science
/ Glutathione
/ Heart diseases
/ Heme oxygenase (decyclizing)
/ Hydrogen peroxide
/ hydroperoxides
/ Hypercholesterolemia
/ Immune response
/ Immunosuppressive agents
/ Inflammation
/ Life Sciences
/ lipid composition
/ Lipid peroxidation
/ Lipids
/ Medicinal Chemistry
/ Molecular modelling
/ NF-κB protein
/ Nutritional protection
/ Pharmacology/Toxicology
/ Phytosterols
/ Plant Biochemistry
/ Plant Sciences
/ Review
/ Side effects
/ Signal transduction
/ Stat3 protein
/ Stigmasterol
/ Superoxide dismutase
/ β-sitosterol
2024
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Unveiling the molecular mechanisms: dietary phytosterols as guardians against cardiovascular diseases
by
Khalid, Asaad
, Iesa, Mohamed A. M.
, Bouyahya, Abdelhakim
, Abdalla, Ashraf N.
, El Kadri, Kawtar
, Tang, Siah Ying
, Bakrim, Saad
, El Omari, Nasreddine
, Goh, Bey Hing
in
absorption
/ Biomedical and Life Sciences
/ Bioorganic Chemistry
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cardiovascular system
/ Catalase
/ Cholesterol
/ cytokines
/ Diet
/ Dietary supplements
/ drugs
/ Ergosterol
/ Food Science
/ Glutathione
/ Heart diseases
/ Heme oxygenase (decyclizing)
/ Hydrogen peroxide
/ hydroperoxides
/ Hypercholesterolemia
/ Immune response
/ Immunosuppressive agents
/ Inflammation
/ Life Sciences
/ lipid composition
/ Lipid peroxidation
/ Lipids
/ Medicinal Chemistry
/ Molecular modelling
/ NF-κB protein
/ Nutritional protection
/ Pharmacology/Toxicology
/ Phytosterols
/ Plant Biochemistry
/ Plant Sciences
/ Review
/ Side effects
/ Signal transduction
/ Stat3 protein
/ Stigmasterol
/ Superoxide dismutase
/ β-sitosterol
2024
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Unveiling the molecular mechanisms: dietary phytosterols as guardians against cardiovascular diseases
by
Khalid, Asaad
, Iesa, Mohamed A. M.
, Bouyahya, Abdelhakim
, Abdalla, Ashraf N.
, El Kadri, Kawtar
, Tang, Siah Ying
, Bakrim, Saad
, El Omari, Nasreddine
, Goh, Bey Hing
in
absorption
/ Biomedical and Life Sciences
/ Bioorganic Chemistry
/ Cardiovascular disease
/ Cardiovascular diseases
/ Cardiovascular system
/ Catalase
/ Cholesterol
/ cytokines
/ Diet
/ Dietary supplements
/ drugs
/ Ergosterol
/ Food Science
/ Glutathione
/ Heart diseases
/ Heme oxygenase (decyclizing)
/ Hydrogen peroxide
/ hydroperoxides
/ Hypercholesterolemia
/ Immune response
/ Immunosuppressive agents
/ Inflammation
/ Life Sciences
/ lipid composition
/ Lipid peroxidation
/ Lipids
/ Medicinal Chemistry
/ Molecular modelling
/ NF-κB protein
/ Nutritional protection
/ Pharmacology/Toxicology
/ Phytosterols
/ Plant Biochemistry
/ Plant Sciences
/ Review
/ Side effects
/ Signal transduction
/ Stat3 protein
/ Stigmasterol
/ Superoxide dismutase
/ β-sitosterol
2024
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Unveiling the molecular mechanisms: dietary phytosterols as guardians against cardiovascular diseases
Journal Article
Unveiling the molecular mechanisms: dietary phytosterols as guardians against cardiovascular diseases
2024
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Overview
Until recently, the main pharmaceuticals used to control cholesterol and prevent cardiovascular disease (CVD) were statin-related drugs, known for their historical side effects. Therefore, there is growing interest in exploring alternatives, such as nutritional and dietary components, that could play a central role in CVD prevention. This review aims to provide a comprehensive understanding of how natural phytosterols found in various diets combat CVDs. We begin with a description of the overall approach, then we explore in detail the different direct and indirect mechanisms that contribute to reducing cardiovascular incidents. Phytosterols, including stigmasterol,
β
-sitosterol, ergosterol, and fucosterol, emerge as promising molecules within nutritional systems for protection against CVDs due to their beneficial effects at different levels through direct or indirect cellular, subcellular, and molecular mechanisms. Specifically, the mentioned phytosterols exhibit the ability to diminish the generation of various radicals, including hydroperoxides and hydrogen peroxide. They also promote the activation of antioxidant enzymes such as superoxide dismutase, catalase, and glutathione, while inhibiting lipid peroxidation through the activation of Nrf2 and Nrf2/heme oxygenase-1 (HO-1) signaling pathways. Additionally, they demonstrate a significant inhibitory capacity in the generation of pro-inflammatory cytokines, thus playing a crucial role in regulating the inflammatory/immune response by inhibiting the expression of proteins involved in cellular signaling pathways such as JAK3/STAT3 and NF-κB. Moreover, phytosterols play a key role in reducing cholesterol absorption and improving the lipid profile. These compounds can be used as dietary supplements or included in specific diets to aid control cholesterol levels, particularly in individuals suffering from hypercholesterolemia.
Graphical Abstract
Publisher
Springer Nature Singapore,Springer Nature B.V,SpringerOpen
Subject
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