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Novel Role of CETP in Macrophages: Reduction of Mitochondrial Oxidants Production and Modulation of Cell Immune-Metabolic Profile
by
Dorighello, Gabriel G.
, Santana, Monique F. M.
, Ridgway, Neale D.
, Oliveira, Helena C. F.
, Vercesi, Anibal E.
, Morari, Joseane
, Passarelli, Marisa
, Rentz, Thiago
, Assis, Leandro H. P.
in
aerobiosis
/ Anti-inflammatory agents
/ Arteriosclerosis
/ Atherogenesis
/ Atherosclerosis
/ Bone marrow
/ CETP
/ Cholesterol
/ Cholesteryl ester transfer protein
/ Experiments
/ Gene expression
/ genetically modified organisms
/ Glucose
/ High density lipoprotein
/ high density lipoprotein cholesterol
/ humans
/ Hydrogen peroxide
/ Inflammation
/ Inflammatory diseases
/ Laboratory animals
/ Lipoproteins
/ Low density lipoprotein
/ macrophage
/ Macrophages
/ Mitochondria
/ Oxidants
/ oxidation
/ Oxidative metabolism
/ Oxidative stress
/ Phagocytes
/ Phagocytosis
/ Physiological aspects
/ Plasma
/ risk
/ Sepsis
/ Structure-function relationships
/ superoxide anion
/ Superoxide anions
/ Transgenic animals
/ Transgenic mice
/ Tumor necrosis factor-α
2022
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Novel Role of CETP in Macrophages: Reduction of Mitochondrial Oxidants Production and Modulation of Cell Immune-Metabolic Profile
by
Dorighello, Gabriel G.
, Santana, Monique F. M.
, Ridgway, Neale D.
, Oliveira, Helena C. F.
, Vercesi, Anibal E.
, Morari, Joseane
, Passarelli, Marisa
, Rentz, Thiago
, Assis, Leandro H. P.
in
aerobiosis
/ Anti-inflammatory agents
/ Arteriosclerosis
/ Atherogenesis
/ Atherosclerosis
/ Bone marrow
/ CETP
/ Cholesterol
/ Cholesteryl ester transfer protein
/ Experiments
/ Gene expression
/ genetically modified organisms
/ Glucose
/ High density lipoprotein
/ high density lipoprotein cholesterol
/ humans
/ Hydrogen peroxide
/ Inflammation
/ Inflammatory diseases
/ Laboratory animals
/ Lipoproteins
/ Low density lipoprotein
/ macrophage
/ Macrophages
/ Mitochondria
/ Oxidants
/ oxidation
/ Oxidative metabolism
/ Oxidative stress
/ Phagocytes
/ Phagocytosis
/ Physiological aspects
/ Plasma
/ risk
/ Sepsis
/ Structure-function relationships
/ superoxide anion
/ Superoxide anions
/ Transgenic animals
/ Transgenic mice
/ Tumor necrosis factor-α
2022
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Novel Role of CETP in Macrophages: Reduction of Mitochondrial Oxidants Production and Modulation of Cell Immune-Metabolic Profile
by
Dorighello, Gabriel G.
, Santana, Monique F. M.
, Ridgway, Neale D.
, Oliveira, Helena C. F.
, Vercesi, Anibal E.
, Morari, Joseane
, Passarelli, Marisa
, Rentz, Thiago
, Assis, Leandro H. P.
in
aerobiosis
/ Anti-inflammatory agents
/ Arteriosclerosis
/ Atherogenesis
/ Atherosclerosis
/ Bone marrow
/ CETP
/ Cholesterol
/ Cholesteryl ester transfer protein
/ Experiments
/ Gene expression
/ genetically modified organisms
/ Glucose
/ High density lipoprotein
/ high density lipoprotein cholesterol
/ humans
/ Hydrogen peroxide
/ Inflammation
/ Inflammatory diseases
/ Laboratory animals
/ Lipoproteins
/ Low density lipoprotein
/ macrophage
/ Macrophages
/ Mitochondria
/ Oxidants
/ oxidation
/ Oxidative metabolism
/ Oxidative stress
/ Phagocytes
/ Phagocytosis
/ Physiological aspects
/ Plasma
/ risk
/ Sepsis
/ Structure-function relationships
/ superoxide anion
/ Superoxide anions
/ Transgenic animals
/ Transgenic mice
/ Tumor necrosis factor-α
2022
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Novel Role of CETP in Macrophages: Reduction of Mitochondrial Oxidants Production and Modulation of Cell Immune-Metabolic Profile
Journal Article
Novel Role of CETP in Macrophages: Reduction of Mitochondrial Oxidants Production and Modulation of Cell Immune-Metabolic Profile
2022
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Overview
Plasma cholesteryl ester transfer protein (CETP) activity diminishes HDL-cholesterol levels and thus may increase atherosclerosis risk. Experimental evidence suggests CETP may also exhibit anti-inflammatory properties, but local tissue-specific functions of CETP have not yet been clarified. Since oxidative stress and inflammation are major features of atherogenesis, we investigated whether CETP modulates macrophage oxidant production, inflammatory and metabolic profiles. Comparing macrophages from CETP-expressing transgenic mice and non-expressing littermates, we observed that CETP expression reduced mitochondrial superoxide anion production and H2O2 release, increased maximal mitochondrial respiration rates, and induced elongation of the mitochondrial network and expression of fusion-related genes (mitofusin-2 and OPA1). The expression of pro-inflammatory genes and phagocytic activity were diminished in CETP-expressing macrophages. In addition, CETP-expressing macrophages had less unesterified cholesterol under basal conditions and after exposure to oxidized LDL, as well as increased HDL-mediated cholesterol efflux. CETP knockdown in human THP1 cells increased unesterified cholesterol and abolished the effects on mitofusin-2 and TNFα. In summary, the expression of CETP in macrophages modulates mitochondrial structure and function to promote an intracellular antioxidant state and oxidative metabolism, attenuation of pro-inflammatory gene expression, reduced cholesterol accumulation, and phagocytosis. These localized functions of CETP may be relevant for the prevention of atherosclerosis and other inflammatory diseases.
Publisher
MDPI AG,MDPI
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