Jeunesse and DNA repair
Nutritional scientists have made breakthrough results in slowing this aging process by targeting cells during interphase. By enriching the cells with potent vitamins and minerals, cells are able to replicate in a healthier state and help maintain telomere length. And when telomeres are slower to deteriorate, this in turn delays the very aging process of cells.

AM & PM Essentials™ from Jeunesse are daily nutritional supplements scientifically formulated to target cell telomeres. Prolonging the lifespan of telomeres helps delay the aging process. In addition, AM Essentials™ release additional energy-enhancing nutrients selected to improve body functions that are active during the day. The nutrients give systems the vitamins and minerals needed at the cellular level for optimal function, including mental clarity and focus. PM Essentials send nutrients that are needed to give you a restful sleep and give your body essential vitamins and minerals needed for cell reparation that occurs during rest. Learn more about
AM & PM Essentials™.  To find out more or to order longevity products visit: www.pharmacyofnature.jeunesseglobal.com
Promote new cell growth
New cell growth is an essential part of life—it’s how we grow from child to adult. But as we age and our growing decelerates, so does the production of new cells. At the same time, our body’s cells themselves age and their functions begin to slow. When it comes to your skin, this can lead to a dull, sagging complexion on the outside and cells that can’t efficiently accept nutrients and remove toxins on the inside. Part of Y.E.S. The Jeunesse Youth Enhancement System uses DNA repair and antioxidant ingredients to improve cell performance and longevity. Our patent-pending Stem Cell Innovation helps generate new, vital skin cells in the first place.

THE SCIENCE OF

STEM CELLS

The science of stem cells
Dr. Nathan Newman, a world-renowned dermatologist and cosmetic surgeon, began searching for a topical treatment to help patients recovering from burns and severe injuries. Knowing that stem cells drive cell growth and regeneration, he isolated the stem cell growth factors that serve as the “language” communicating cellular activity. Although other scientists were using plant-based growth factors, Dr. Newman derived his growth factors from the stem cells of healthy adults, theorizing that cell communication in the same “language” would be more effective.

The power behind LUMINESCE™
The results were remarkable. And his 200+ growth factor complex is what you’ll experience in LUMINESCE™ products from Jeunesse. This potent growth factor complex is able to rejuvenate skin cells faster and at a molecular level. New cell production is stimulated, resulting in increased collagen and elastin for firmer skin tone. New cells also give your complexion a fuller appearance with a healthy, vibrant glow. With LUMINESCE™, skin appears younger, because at the cellular level, it literally is younger. 

Delay aging at the cellular level Every day, the cells in your body are replicating. The same process that develops a single egg into a human being is occurring constantly to renew your skin, hair, blood cells, and some internal organs.

On-going cell replication

If you think back to biology class, a cell replicates in two phases. During its first step, interphase, the cell gathers nutrients and begins to duplicate the DNA inside its nucleus. Then the cell splits into two, the mitosis phase. This very process is how you grow as a child. Even when we’re fully developed, cells continue to split. However, by the time we’re adults, our cells begin to show some wear and tear.

It’s sort of like using a copy machine. Your first copy of the original is sharp and clear. But if you continue to copy what comes out of the machine, the original image begins to deteriorate. The same principle applies to the DNA in our cells.

The role of telomeres
The ends of DNA strands are called “telomeres.” These telomeres are like protective caps on our genes, containing the essential chromosome information inside. Each time a cell replicates, a portion of the telomere wears away. This shortened telomere is duplicated during the next cell division, and becomes shorter again. Once a telomere has effectively worn away, the cell has reached “old age” and loses its ability to divide.

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