Dual magnesium complex
The dual magnesium complex of magnesium malate and magnesium citrate offers two advantages for exercise: it combines two very readily available magnesium compounds with rapid absorption and their main areas of action. Magnesium malate for energy metabolism, nervous system and reduction of tiredness and fatigue; and magnesium citrate for muscles, energy metabolism, reduction of tiredness and fatigue and electrolyte balance.
Zinc & Bioactive B Vitamins
Zinc malate and the bioactive B vitamins B1, B5, B6 and folate are also included to provide additional support and extend the active profile. Zinc contributes to the protection of cells from oxidative stress, the normal metabolism of macronutrients and fatty acids as well as to protein synthesis and the maintenance of normal testosterone levels in the blood. Vitamin B1 thiamine contributes to energy metabolism, normal function of the nervous system and normal heart function. Vitamin B5 pantothenic acid contributes to energy metabolism, the normal synthesis and metabolism of steroid hormones, vitamin D and some neurotransmitters and the reduction of tiredness and fatigue. Vitamin B6 contributes to energy metabolism, the nervous system, normal protein and glycogen metabolism, normal red blood cell formation and the reduction of tiredness and fatigue. Folate contributes to normal amino acid synthesis, blood formation and to the reduction of tiredness and fatigue.
Amino Acids & Phytochemical Power
The perfect combination for relaxation after exercise: a rich variety of phytochemicals from ashwagandha, green oats and the amino acids glycine, L-theanine and GABA (gamma-aminobutyric acid). High-quality extracts of ashwagandha root as KSM-66® and green oat seeds (Avena sativa) combined with purely vegan amino acids.
Ashwagandha (Withania somnifera), also known as sleeping berry, contains withanolides - the most researched phytochemicals in ashwagandha to date - in its roots and leaves. They belong to the group of steroidal lactones and are similar in their chemical structure to steroid hormones.