#docosahexaenoic-acid

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Conjugated linoleic acid or omega 3 fatty acids increase mitochondrial biosynthesis and metabolism in skeletal muscle cells
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Conjugated linoleic acid or omega 3 fatty acids increase mitochondrial biosynthesis and metabolism in skeletal muscle cells

Garcia-Smith Randi, Bisoffi Marco, Conn, Trujillo, Vaughan

Conjugated linoleic acid or omega 3 fatty acids increase mitochondrial biosynthesis and metabolism in skeletal muscle cells Alternate Text
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Conjugated linoleic acid or omega 3 fatty acids increase mitochondrial biosynthesis and metabolism in skeletal muscle cells

Garcia-Smith Randi, Bisoffi Marco, Conn, Trujillo, Vaughan

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10 pages

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Docosahexaenoic acid ameliorates palmitate-induced lipid accumulation and inflammation through repressing NLRC4 inflammasome activation in HepG2 cells
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Docosahexaenoic acid ameliorates palmitate-induced lipid accumulation and inflammation through repressing NLRC4 inflammasome activation in HepG2 cells

Luo Xiaoqin, Yang Yan, Shen Tianran, Tang Xilan, Xiao Yunjun, Zou Tangbin, Xia Min, Ling, Ling Wenhua

Docosahexaenoic acid ameliorates palmitate-induced lipid accumulation and inflammation through repressing NLRC4 inflammasome activation in HepG2 cells Alternate Text
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Docosahexaenoic acid ameliorates palmitate-induced lipid accumulation and inflammation through repressing NLRC4 inflammasome activation in HepG2 cells

Luo Xiaoqin, Yang Yan, Shen Tianran, Tang Xilan, Xiao Yunjun, Zou Tangbin, Xia Min, Ling, Ling Wenhua

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9 pages

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Dietary effects of arachidonate-rich fungal oil and fish oil on murine hepatic and hippocampal gene expression
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Dietary effects of arachidonate-rich fungal oil and fish oil on murine hepatic and hippocampal gene expression

Berger Alvin, Mutch, Roberts, Bruce

Dietary effects of arachidonate-rich fungal oil and fish oil on murine hepatic and hippocampal gene expression Alternate Text
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Dietary effects of arachidonate-rich fungal oil and fish oil on murine hepatic and hippocampal gene expression

Berger Alvin, Mutch, Roberts, Bruce

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23 pages

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The enteric bacterial metabolite propionic acid alters brain and plasma phospholipid molecular species: further development of a rodent model of autism spectrum disorders
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The enteric bacterial metabolite propionic acid alters brain and plasma phospholipid molecular species: further development of a rodent model of autism spectrum disorders

Thomas, Mepham, Tichenoff Lisa, Possmayer Fred, Liu Suya, Macfabe, Meeking

The enteric bacterial metabolite propionic acid alters brain and plasma phospholipid molecular species: further development of a rodent model of autism spectrum disorders Alternate Text
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The enteric bacterial metabolite propionic acid alters brain and plasma phospholipid molecular species: further development of a rodent model of autism spectrum disorders

Thomas, Mepham, Tichenoff Lisa, Possmayer Fred, Liu Suya, Macfabe, Meeking

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18 pages

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Tetradecylthioacetic acid inhibits proliferation of human SW620 colon cancer cells - gene expression profiling implies endoplasmic reticulum stress
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Tetradecylthioacetic acid inhibits proliferation of human SW620 colon cancer cells - gene expression profiling implies endoplasmic reticulum stress

Lundemo, Pettersen, Berge Kjetil, Berge, Schønberg

Tetradecylthioacetic acid inhibits proliferation of human SW620 colon cancer cells - gene expression profiling implies endoplasmic reticulum stress Alternate Text
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Tetradecylthioacetic acid inhibits proliferation of human SW620 colon cancer cells - gene expression profiling implies endoplasmic reticulum stress

Lundemo, Pettersen, Berge Kjetil, Berge, Schønberg

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12 pages

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