Olivamine10TM The Future of Healing

Olivamine10TM is based in cellular biology and epigenetics. Olivamine10TM is composed of small molecules that have undergone laboratory research, and the reported findings indicate they are involved in maintenance of healthy cells. Hydroxytyrosol and N-acetyl-L-Cysteine found in Olivamine10TM have been carefully researched within a university laboratory. Published reports show that both work within the cells to effectively remove free radicals and repair damage caused by oxidative stress.

Recent studies, funded by McCord Research at a major university, showed when cells were treated with hydroxytyrosol, an ingredient in Olivamine10, they lived longer in laboratory testing than cells that were not.



Ingredients:


  • Research funded by McCord Research at a major university showed hydroxytyrosol triggered a 5-fold increase the production of MnSOD in cells.
  • Research funded by McCord Research at a major university showed hydroxytyrosol effectively counteracts the cytotoxic effects of reactive oxygen species (ROS) cells.
  • Research funded by McCord Research at a major university showed damage due to oxidative stress, such as lipid peroxidation and alterations of cell permeability, could be prevented in tests performed on laboratory cells lines and that hydroxytyrosol exerted a protective effect against hydrogen peroxide (H2O2) induced oxidative hemolysis.
  • Research funded by McCord Research at a major university showed as an antioxidant, NAC is particularly effective against hydrogen peroxide (H2O2), which can be damaging to healthy tissue.
  • Research funded by McCord Research at a major university showed NAC-induced free radical signaling delays G0/G1 cell’s progression to S phase by regulating the cell cycle regulatory protein cyclin D1 and the free radical scavenging enzyme manganese superoxide dismutase (MnSOD).
  • Research funded by McCord Research at a major university showed treatment with NAC results in increased cellular glutathione levels which indicates a shift to a more reducing environment.
  • Research generally accepted within the scientific community states taurine acts as a direct antioxidant that scavenges and quenches oxygen free radicals intra-cellularly.
  • Research done on cells within the laboratory environment show evidence taurine blocks ROS-mediated cell death in laboratory cell lines.
  • Research done on cells within the laboratory environment show evidence taurine has beneficial effects include attenuation of lipid peroxidation, reduction of membrane permeability and inhibition of intracellular oxidation in different cells.
  • Research done on cells within the laboratory environment show evidence glycine protects adenosine triphosphate (ATP) depleted cells by lowering interactions with multimeric channel proteins.
  • Research done on cells within the laboratory environment show evidence glycine restores ATP and protects against unplanned cell death or necrosis.
  • Research done on cells within the laboratory environment show evidence proline is the only amino acid involved in the stimulation of DNA synthesis.
  • Without this amino acid, cells cannot replicate effectively.
  • A naturally occurring organic sulfur which supports the body’s ability to produce sulfur containing amino acids (NAC, methionine, cysteine and taurine).
  • Research done on cells within the laboratory environment show evidence MSM assists in the production of cellular glutathione.
  • Research done on cells within the laboratory environment show evidence MSM prevents oxidation of the blood-glutathione pool.
  • Research done on cells within the laboratory environment show evidence MSM is essential to the formation of healthy connective tissue.
  • Research generally accepted within the scientific community state pyridoxine is an essential cofactor in numerous enzymatic reactions.
  • Research generally accepted within the scientific community state pyridoxine is involved primarily in amino acid metabolism.
  • Research generally accepted within the scientific community state pyridoxine functions as an antioxidant by interacting with free radicals during oxidative stress.
  • Research generally accepted within the scientific community state nicacinamide generates ATP in the mitochondrial electron transport chain.
  • Research generally accepted within the scientific community states nicacinamide maintains DNA integrity.
  • Research generally accepted within the scientific community states nicacinamide prevents cellular injury by maintaining and preserving cellular membranes.
  • Research generally accepted within the scientific community states nicacinamide works with NAC to prevent the decline of intra-cellular glutathione levels.


1. Sarsour H., Ehab, et al. MnSOD Activity Regulates Hydroxytyrosol Induced Extension of Chronological Lifespan. University of Iowa. AGE Journal. 15 Feb 2011.
2. Manna C, Galletti P, Cucciolla V, et al. The protective effect of the olive oil polyphenol (3,4-dihydroxyphenyl) ethanol counteracts reactive oxygen metaboliteinduce cytotoxicity in Caco-2 cells. J Nutr.1997; 127:282-92.
3. Milei J, Ferreoar R, Lleesuy S, Forcada P, et al. Reduction of reperfusion injury with preoperative rapid intravenous infusion of taurine during myocardial revascularization. Amer Heart J 1992; 123:339-45.
4. Houck KA, Michalopoulos G. Proline is required for the stimulation of DNA synthesis in hepatocyte cultures by EFG. In Vitro Cell Dev Biol 1985; 21:121-4.
5. Bilski P, Li MT, Ehrenshaft M, et al. Vitamin B6 (pyridoxine) and its derivatives are ef_cient singlet oxygen quenchers and potential fungal antioxidants. Photochem and Photobiol 2000; 71:129-34.

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