Suppliers

FITOPLANCTON MARINO

FITOPLANCTON MARINO

TetraSOD®​ is a unique natural marine ingredient, grown under patented technology,  with a high indirect antioxidant capacity. The outcomes of both in vitro and in vivo research strongly suggest that TetraSOD®​ is a cellular health promoter, a statement based of the ability to: i) enhance antioxidant defenses for an adequate redox balance, ii) strengthen cell structure and integrity, iii) modulate cell response to stimuli, iv) modulate inflammatory and immune system state, and v) to protect DNA from damage. These positive effects at cellular are translated to physiological levels of individuals. In that way, TetraSOD®​ aids physical performance and recovery, increasing muscle strength and power.

Ultimately, TetraSOD®​ is much more than just SOD.

TetraSOD®​​ is a unique marine blend of five different plankton strains that has science backed bioactive actions for skin treatment.

Latest content from FITOPLANCTON MARINO

Bioactive supplement as an indirect antioxidant to support cellular health

Paid for and content provided by FITOPLANCTON MARINO

A unique marine ingredient to support cellular health

Maintaining cellular health can be challenging as factors like oxidative stress and uncontrolled inflammation can damage cells and reduce immune function. Is bioactive supplementation the answer?

Discover TetraSOD, a unique marine ingredient.

Paid for and content provided by FITOPLANCTON MARINO

Discover TetraSOD, a unique marine ingredient.

TetraSOD is a novel, natural marine microalgae (Tetraselmis chuii; T. chuii)-derived bioactive that influences antioxidant, hematologic and metabolic/bioenergetic systems. The closed photobioreactor production system leverages patent pending, metabolism...

Related resource

Immune response, Healthy aging and inflammation

Immune response, Healthy aging and inflammation

Content provided by FITOPLANCTON MARINO | 21-Jul-2020 | White Paper

Reactive oxygen species (ROS) are produced as a consequence of metabolic processes. When antioxidant capabilities are overwhelmed by the burden of ROS...