Benefits of Aceytl-L-Carnitine

Carnitine has no toxicity, teratogenicity, contraindications, or drug integrations. There are very few side effects associated with carnitine use, and no serious side effects have been reported (58, 64, 65). Some users report nausea or stimulation, but these tend to be transient and disappear with time (65). There are also many anecdotal reports of more vivid dreams.
Increasing Molecules Needed for Memory
ALCAR increases levels of nerve growth factor (NGF)–an important brain healing compound. In the central nervous system, nerve growth factor (NGF) protects cholinergic neurons. NGF helps increase levels of choline acetyltransferase (ChAT), which makes the valuable neurotransmitter acetylcholine. The aging process reduces both nerve growth factor levels and the ability of neurons to bind to this valuable cellular messenger. ALCAR ameliorates these age-related deficits, therefore demonstrating another way it naturally helps create more acetylcholine needed for neuronal transmission, learning, and recall. ALCAR has been found to optimize the response of the NMDA receptors and lessen their decline in number.
In summary, ALCAR has proven itself safe and effective in ameliorating the symptoms of cognitive loss in older adults, relieving depression, speeding stroke recovery, and slowing the progression of Alzheimer’s disease. What are now needed are prospective, randomized trials of ALCAR in subjects who take it from middle age onward to see if ALCAR can prevent the cognitive loss in healthy adults.


Other Benefits of Acetyl-L-Carnitine

Protects and Enhances Mitochondrial Function
Enhances Immune Function and IGF-1 levels
Protects against the loss and reduction in axonal transport of substance P
Reduces HPA axis hyperactivity
Increases hippocampal synaptic contact zones
Protects against stress-induced neuroendocrine changes
Enhances long-term memory
Increases learning capacity
Prevents age-related memory deterioration
Helps maintain a normal number of both axosomatic synapses and giant bouton vesicles
Increases membrane fluidity and counters the increase in membrane viscosity seen both in aging and in neuronal lipid peroxidation
Protects cell membranes from physical stress
Reduces lipofuscin accumulation in neurons
Helps neurons remain energetic by using alternate energy sources such as lipids and ketones
Increases the efficiency of neuronal transmission
Protects against ischemia/reperfusion induced cellular damage and lowers lactic acid levels and speeds recovery from ischemic events
Protects neuronal RNA from damage
Helps maintain cholinergic transmission between neurons
Protects against DNA breakage

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