摘要:
The nutrient mixture made up of vitamin, carotenoid, micronutrient, essential trace element, and plant extract was much more effective in proactively protecting the corneal cells (human) and retinal pigment endothelial cells (rat) against damaging effects of H2O2 and glycosylated proteins (AGE-BSA) compared to its individual components. A mixture is made up of vitamin A, vitamin C, vitamin E, Lycopene, lutein, marigold flower extract, a saffron extract, pine bark extract, grape seed extract, bilberry extract, lipoic acid, L-Arginine and zinc.
摘要:
A composition for treating Lyme disease caused by Borrelia Species, comprising a vitamin, a small fatty acid signaling molecule, an essential amino acid, a flavonoid, a plant extract and a mineral.
摘要:
Lyme disease caused by B. burgdorferi and B. garinii has been traditionally treated with antibiotics. However, to eradicate all three morphological forms of Borrelia species such as spirochetes, rounded bodies and biofilm more effective and safe treatment plan is required. In the instant application, Vitamins and Phytobiologicals have been tested for as a short term and long term treatment in vitro and on biofilm. The combination of tested compounds in form of Mix AO seems to be very beneficial in treating Lyme disease caused by B. burgdorferi and B. garinii.
摘要:
The nutrient mixture made up of vitamin, carotenoid, micronutrient, essential trace element, and plant extract was much more effective in proactively protecting the corneal cells (human) and retinal pigment endothelial cells (rat) against damaging effects of H2O2 and glycosylated proteins (AGE-BSA) compared to its individual components. A mixture is made up of vitamin A, vitamin C, vitamin E, Lycopene, lutein, marigold flower extract, a saffron extract, pine bark extract, grape seed extract, bilberry extract, lipoic acid, L-Arginine and zinc.
摘要:
A composition of a fatty acids, essential oils, plant extracts, phenols, and terpenoids and used for treating Lyme disease is disclosed. Compositions as a mix of ingredients was tested in various combinations and concentration against active (spirochetes), as well as persistent/latent forms, (knob-shaped/rounded-forms) and biofilm of the bacteria, i.e., Borrelia burgdorferi and Borrelia garinii. The results document pleiotropic effects of the tested combinations against all tested forms of Borrelia sp. and show their better efficacy than doxycycline—the current antibiotic treatment against Lyme disease.