TY - JOUR
T1 - Lipoic acid
T2 - A novel therapeutic approach for multiple sclerosis and other chronic inflammatory diseases of the CNS
AU - Salinthone, Sonemany
AU - Yadav, Vijayshree
AU - Bourdette, Dennis N.
AU - Carr, Daniel W.
PY - 2008/6
Y1 - 2008/6
N2 - The naturally occurring antioxidant lipoic acid (LA) was first described as an essential cofactor for the conversion of pyruvate to Acetyl-CoA, a critical step in respiration. LA is now recognized as a compound that has many biological functions. Along with its reduced form dihydrolipoic acid (DHLA), LA reduces and recycles cellular antioxidants such as glutathione, and chelates zinc, copper and other transition metal ions in addition to heavy metals. LA can also act as a scavenger of reactive oxygen and nitrogen species. By acting as an insulin mimetic agent, LA stimulates glucose uptake in many different cell types and can also modulate insulin signaling. The p38 and ERK MAP kinase pathways, AKT and NFκB are all regulated by LA. In addition, LA activates the prostaglandin EP2 and EP4 receptors to stimulate the production of the small molecule cyclic adenosine 5′ monophosphate (cAMP). These diverse actions suggest that LA may be therapeutically effective in treating oxidative stress associated diseases. This review discusses the known biochemical properties of LA, its antioxidant properties, its ability to modulate signal transduction pathways, and the recent progress made in the utilization of LA as a therapeutic alternative for multiple sclerosis, Alzheimer's disease and diabetic neuropathy.
AB - The naturally occurring antioxidant lipoic acid (LA) was first described as an essential cofactor for the conversion of pyruvate to Acetyl-CoA, a critical step in respiration. LA is now recognized as a compound that has many biological functions. Along with its reduced form dihydrolipoic acid (DHLA), LA reduces and recycles cellular antioxidants such as glutathione, and chelates zinc, copper and other transition metal ions in addition to heavy metals. LA can also act as a scavenger of reactive oxygen and nitrogen species. By acting as an insulin mimetic agent, LA stimulates glucose uptake in many different cell types and can also modulate insulin signaling. The p38 and ERK MAP kinase pathways, AKT and NFκB are all regulated by LA. In addition, LA activates the prostaglandin EP2 and EP4 receptors to stimulate the production of the small molecule cyclic adenosine 5′ monophosphate (cAMP). These diverse actions suggest that LA may be therapeutically effective in treating oxidative stress associated diseases. This review discusses the known biochemical properties of LA, its antioxidant properties, its ability to modulate signal transduction pathways, and the recent progress made in the utilization of LA as a therapeutic alternative for multiple sclerosis, Alzheimer's disease and diabetic neuropathy.
KW - Alzheimer's disease
KW - Diabetic neuropathy
KW - Dihydrolipoic acid
KW - Lipoic acid
KW - Multiple sclerosis
KW - Oxidative stress
KW - Signal transduction
KW - Thioctic acid
UR - https://www.scopus.com/pages/publications/47249106357
UR - https://www.scopus.com/pages/publications/47249106357#tab=citedBy
U2 - 10.2174/187153008784534303
DO - 10.2174/187153008784534303
M3 - Review article
C2 - 18537699
AN - SCOPUS:47249106357
SN - 1871-5303
VL - 8
SP - 132
EP - 142
JO - Endocrine, Metabolic and Immune Disorders - Drug Targets
JF - Endocrine, Metabolic and Immune Disorders - Drug Targets
IS - 2
ER -