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Skin-protecting Dinucleotide Examined

It has become evident that stress is one of the major characteristics of our modern life, and shown in much data is that stress has a direct effect on skin health and ageing. Stress can come from pollution,

Among these stresses, UV is the primary concern in the fight against photoageing, since it damages collagen, elastin, melanocytes, and the skin’s barrier function, resulting in wrinkles, sagging, uneven skin tone, dark spots, and dry skin.

Consequently, developing active ingredients to help the skin fight ageing and stress has become a common point of interest in the cosmetics sector. GP4G,a cosmetic active ingredient obtained by biotechnology from Artemia, a plankton that lives in hypermineral lakes. When environmental conditions turn critical (stress), Artemia enters a state of dormancy, where it encapsulates and accumulates a vital molecule, Diaguanosine Tetraphosphate (GP4G), a principal source of phosphate bonds with high energetic potential used for DNA protection as well as energy storage.

When environmental conditions turn favourable again, Artemia “awakens” and re-hydrates, and different metabolic activities take place again. Ultimately, GP4G is transformed into adenosine triphosphate (ATP). GP4G provides Artemia with energy and protection for its survival and development.

The objective of this study was to demonstrate that GP4G applied to the skin provides tremendous effects by supplying energy, protecting DNA, protecting against UVB and ageing, and ensuring a general overall better condition of the skin.

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