USN | BCAA Syntho Stack

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BCAA SYNTHO STACK

  • 4000.0mg

    BCAAS

  • i

    INFO

The BCAAs, which comprise of the essential amino acids Leucine, Isoleucine and Valine, make up approximately one third of skeletal muscle in the human body. BCAA's (Branched Chain Amino Acids) are vital to the human body, in fact, they make up around a third of our skeletal muscle. The key Branched Chain Amino Acids that USN's BCAA Syntho Stack contains are, Leucine, Isoleucine, Valine and Alpha-Lipoic Acid.

   

   

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NUTRITIONAL INFORMATION, INGREDIENTS AND INSTRUCTIONS FOR USE

The nutrition facts and ingredients of only one variant of this product is displayed on this website. Slight variations might occur between flavours. Please consult your product label for relevant information.

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OPTIMISE TRAINING PERFORMANCE
The BCAAs, which comprise of the essential amino acids Leucine, Isoleucine and Valine, make up approximately one third of skeletal muscle in the human body. BCAA's (Branched Chain Amino Acids) are vital to the human body, in fact, they make up around a third of our skeletal muscle. The key Branched Chain Amino Acids that USN's BCAA Syntho Stack contains are, Leucine, Isoleucine, Valine and Alpha-Lipoic Acid.

 

KEY FACTS & FEATURES

Muscle Recovery

Supporting Muscle Recovery

Often known as the building blocks of protein, Branched Chain Amino Acids (BCAAs) are three critically important amino acids necessary for repairing muscle tissue and improving recovery, by actually minimising the amount of damage caused during exercise.
Stamina

Supporting Stamina and Endurance

Make the most out of every workout to reach your potential. This USN supplement has been formulated to support your stamina and endurance levels during physical activity and/or training so you can keep pushing your limits and breaking through training plateaus.
Increased Bioavailability

Increase Bioavailability

This USN Supplement has been developed for maximum effectiveness, the rate and degree of absorption into your body, or availability at the site of physiological activity has been optimised.