In metabolism, glycine serves as a building block for components of genetic material, heme (the iron-containing pigment of red blood cells), creatine (the energy carrier of skeletal muscle), glutathione (the body's major endogenous antioxidant), and collagen.
Because of its exceptional tensile strength, collagen provides stability and structure to bones, tendons, ligaments, and skin. To produce collagen, the body links glycine alternately with the amino acids proline and hydroxyproline into peptide chains containing up to 3,000 amino acids, which are subsequently assembled into collagen fibers. Glycine is small enough to fit into the tight turns of these chains, making it essential for the dense packing of the structure and its remarkable tensile strength. Collagen accounts for more than 30% of all proteins in the human body.
In the brain and spinal cord, glycine functions as an inhibitory neurotransmitter, meaning that it suppresses the transmission of nerve signals. In doing so, glycine reduces the activity of specific muscle cells. The toxin produced by the bacterium causing tetanus blocks glycine-mediated neurotransmission and is therefore responsible for the life-threatening muscle spasms characteristic of tetanus.
- Building block for essential biomolecules and neurotransmitters
- May improve sleep quality
- Has been shown in studies to increase glutathione levels
What Are the Benefits of Glycine Supplementation?
Because the body's own synthesis of glycine may become impaired with advancing age or certain health conditions, and because dietary intake is not always sufficient, glycine has been extensively investigated as a dietary supplement. Although the body synthesizes approximately 3 g of glycine per day, it requires at least three times that amount solely for the daily production of collagen.
Since glycine is a major building block of collagen, it is frequently used as a supplement to support the health of joints, tendons, and bones, as well as in anti-aging products intended to promote younger-looking skin. Indeed, clinical studies have demonstrated that supplementation with 10 g of glycine increases serum glycine concentrations to levels consistent with the theoretical requirements for a threefold increase in collagen synthesis.
A glycine deficiency has been associated with reduced glutathione synthesis. Consequently, inadequate glycine availability may expose the body to increased oxidative stress and contribute to premature biological aging. Experimental studies have shown that glycine supplementation can increase glutathione levels.
Several clinical studies have demonstrated improvements in sleep quality and cognitive performance following glycine supplementation. These effects are believed to result from glycine's function as a neurotransmitter acting on specific receptors within the brain. Positive effects were observed with single doses of 3–5 g of glycine taken before bedtime.
Glycine is approved as a food additive within the European Union. No maximum intake level has been established because no adverse health effects have been identified to date. In clinical studies, doses of up to 0.8 g per kilogram of body weight (64 g for an individual weighing 80 kg) were well tolerated. Nevertheless, consuming large amounts of glycine through supplementation may cause gastrointestinal side effects such as abdominal pain and nausea. For supplementation, single doses of 3–5 g are therefore generally recommended.
References
Further information and scientific studies on the active ingredient glycine can be found here.
Decreased Collagen Production in Chronologically Aged Skin
www.ncbi.nlm.nih.gov/pmc/articles/PMC1606623
High Glycine Concentration Increases Collagen Synthesis by Articular Chondrocytes In Vitro: Acute Glycine Deficiency Could Be an Important Cause of Osteoarthritis
www.ncbi.nlm.nih.gov/pmc/articles/PMC6153947
Assessment of Acute Adverse Events of High-Dose Glycine Ingestion in Human Volunteers
www.jstage.jst.go.jp/article/seikatsueisei/50/1/50_1_27/_article
Dietary Glycine Is Rate-Limiting for Glutathione Synthesis and May Have Broad Potential for Health Protection
www.pubmed.ncbi.nlm.nih.gov/29559876
Glycine Transporters and Synaptic Function
www.pubmed.ncbi.nlm.nih.gov/18798526
High-Dose Glycine Treatment of Refractory Obsessive-Compulsive Disorder and Body Dysmorphic Disorder Over a 5-Year Period
www.pubmed.ncbi.nlm.nih.gov/20182547
Urinary Excretion of 5-L-Oxoproline (Pyroglutamic Acid) Is Increased During Recovery from Severe Childhood Malnutrition and Responds to Supplemental Glycine
www.pubmed.ncbi.nlm.nih.gov/8914954