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About the LPI
Faculty and Staff
Our Research
Micronutrient Information
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Biblio
Found 57 results
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Smith, Anthony R
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Humans
Shay KPetersen
,
Moreau RF
,
Smith EJ
,
Smith AR
,
Hagen TM
. 2009.
Alpha-lipoic acid as a dietary supplement: molecular mechanisms and therapeutic potential.
.
Biochim Biophys Acta. 1790(10):1149-60.
Hypertension
Shay KPetersen
,
Moreau RF
,
Smith EJ
,
Smith AR
,
Hagen TM
. 2009.
Alpha-lipoic acid as a dietary supplement: molecular mechanisms and therapeutic potential.
.
Biochim Biophys Acta. 1790(10):1149-60.
In Vitro Techniques
Smith AR
,
Visioli F
,
Hagen TM
. 2006.
Plasma membrane-associated endothelial nitric oxide synthase and activity in aging rat aortic vascular endothelia markedly decline with age.
.
Arch Biochem Biophys. 454(1):100-5.
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Inflammation
Shay KPetersen
,
Moreau RF
,
Smith EJ
,
Smith AR
,
Hagen TM
. 2009.
Alpha-lipoic acid as a dietary supplement: molecular mechanisms and therapeutic potential.
.
Biochim Biophys Acta. 1790(10):1149-60.
Male
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Smith AR
,
Visioli F
,
Hagen TM
. 2006.
Plasma membrane-associated endothelial nitric oxide synthase and activity in aging rat aortic vascular endothelia markedly decline with age.
.
Arch Biochem Biophys. 454(1):100-5.
Models, Biological
Shay KPetersen
,
Moreau RF
,
Smith EJ
,
Smith AR
,
Hagen TM
. 2009.
Alpha-lipoic acid as a dietary supplement: molecular mechanisms and therapeutic potential.
.
Biochim Biophys Acta. 1790(10):1149-60.
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Molecular Structure
Shay KPetersen
,
Moreau RF
,
Smith EJ
,
Smith AR
,
Hagen TM
. 2009.
Alpha-lipoic acid as a dietary supplement: molecular mechanisms and therapeutic potential.
.
Biochim Biophys Acta. 1790(10):1149-60.
Myography
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
NADP
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Nitric Oxide
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Nitric Oxide Synthase
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Nitric Oxide Synthase Type III
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Smith AR
,
Visioli F
,
Hagen TM
. 2006.
Plasma membrane-associated endothelial nitric oxide synthase and activity in aging rat aortic vascular endothelia markedly decline with age.
.
Arch Biochem Biophys. 454(1):100-5.
Oxidation-Reduction
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Oxidative Stress
Smith AR
,
Visioli F
,
Hagen TM
. 2002.
Vitamin C matters: increased oxidative stress in cultured human aortic endothelial cells without supplemental ascorbic acid.
.
FASEB J. 16(9):1102-4.
Phosphoprotein Phosphatases
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Phosphorylation
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Protein Phosphatase 2
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Rats
Smith AR
,
Visioli F
,
Frei B
,
Hagen TM
. 2006.
Age-related changes in endothelial nitric oxide synthase phosphorylation and nitric oxide dependent vasodilation: evidence for a novel mechanism involving sphingomyelinase and ceramide-activated phosphatase 2A.
.
Aging Cell. 5(5):391-400.
Smith AR
,
Visioli F
,
Hagen TM
. 2006.
Plasma membrane-associated endothelial nitric oxide synthase and activity in aging rat aortic vascular endothelia markedly decline with age.
.
Arch Biochem Biophys. 454(1):100-5.
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