Lithium-Oro supports traumatic brain injury & mental health.* Lithium is found throughout our atmosphere as one of the three original elements. The sun, stars, and meteorites burn brightly with the gleam of this highly reactive element. On Earth, lithium remains a major mineral component of granite rock and also lingers in significant amounts in seawater, mineral springs, and soils.
Lithium has also found its way into our cell phones, electric cars, and holiday fireworks. Every organ and tissue in the human body contains the mineral lithium, with particular importance in health, specifically brain health. Lithium is a high-dose drug accompanied by potentially severe and debilitating side effects. However, in low doses, lithium acts as a nutrient required for B12 and folate transport and uptake, neuromodulation, and the function of many biochemical processes in both humans and animals.
Since the 1970s, studies have shown lithium’s ability to stimulate stem cell proliferation. Recent studies have described its ability to up-regulate neurotrophins such as brain-derived neurotrophic factor (BDNF) and nerve growth factor (NGF), which are essential in neuronal function, plasticity, and repair.
With its newly described antioxidant and anti-inflammatory activity along with powerful neuroprotective effects, low-dose lithium therapy has largely unrealized potential to possibly prevent or treat a wide range of neurological disorders such as traumatic brain injury, Alzheimer’s, Parkinson’s, amyotrophic lateral sclerosis (ALS), chronic pain, mercury toxicity, depression/anxiety, alcoholism, and drug addiction. Research has shown lithium to support the brain’s natural detoxification process. It has shown potential as a neuroprotective agent against aluminum-induced oxidative stress and shows promise to protect the brain against free radical damage.
In animal models, lithium increased intracellular glutathione levels and reduced oxygen metabolite damage, suggesting that it selectively boosts glutathione-dependent enzymes to protect against free radical stress.