Hyaluronic acid is a protective substance found in the fluid surrounding joints. It forms a thick gel that lubricates and protects joints and is essential for joint mobility. It acts as a shock absorber, reducing friction, facilitating movement, and nourishing joints. As we age, our bodies produce less hyaluronic acid, leaving bones vulnerable due to the lack of substance to cushion and lubricate them, leading to friction, inflammation, pain, and potentially arthritis. Studies have shown that the hyaluronic acid content of osteoarthritic cartilage is significantly reduced, and hyaluronic acid supplementation reduces pain and improves mobility in patients with osteoarthritis.
Lysine and vitamin C are two nutrients whose role in the body is to aid in the formation of collagen and connective tissue. These tissues, along with hyaluronic acid, are necessary for the formation of the fluid that protects and lubricates joints. They also give skin its elasticity and help keep nails and hair strong and supple. Collagen is the fundamental building block of our tissues, which is important for wound healing and scarring, and for preventing wrinkles and sagging skin. Hyaluronic acid, lysine, and vitamin C each play a role in collagen production and promote healthy, youthful skin.
AOR's Lysine, Vitamin C, and Hyaluronic Acid combines these three nutrients in a unique formula for arthritis pain relief, improved mobility, and collagen support. Unlike many other hyaluronic acid products, AOR's Lysine, Vitamin C, and Hyaluronic Acid formula is completely vegan and free of wheat and corn.
AOR's Lysine, Vitamin C, and Hyaluronic Acid offers a unique and highly effective combination of natural ingredients to support and maintain healthy joint function. This product contains a superior vegetarian source of lower molecular weight, high-potency hyaluronic acid. This lower molecular weight means the molecules are smaller, making the product easier to absorb into the body. Vitamin C and lysine provide additional support for improved collagen formation and joint repair.