Overview
What Are Polynucleotide Injections?
Polynucleotide injections are regenerative aesthetic treatments designed to improve skin quality and stimulate tissue repair. They are often derived from purified salmon DNA and help stimulate collagen production, improve skin elasticity, and enhance skin hydration.
What Is Salmon DNA Skin Treatment?
Salmon DNA treatment refers to injectable polynucleotides obtained from salmon DNA. These molecules support cellular regeneration and help repair damaged skin while improving skin texture and elasticity.
What Are the Benefits of Polynucleotide Skin Treatments?
Polynucleotide injections may help:
- Stimulate collagen production
- Improve skin hydration
- Reduce fine lines
- Improve skin elasticity
- Support tissue regeneration
What Areas Can Be Treated with Polynucleotide Injections?
Common treatment areas include:
- Face
- Under eye area
- Neck
- Décolletage
- Hands
What Are Salmon DNA Injections Used For?
Salmon DNA injections are used for skin rejuvenation, improving skin quality, reducing fine lines, and treating delicate areas such as the under-eye region.
What Is Under Eye Polynucleotide Treatment?
Under eye polynucleotide injections are used to improve skin hydration and reduce fine lines around the eyes. They can also improve skin thickness and elasticity in the delicate periocular area.
What Is the Difference Between Skin Boosters and Polynucleotide Injections?
Skin boosters mainly focus on deep hydration using hyaluronic acid, while polynucleotide injections focus on tissue regeneration and collagen stimulation.
How Are Polynucleotide Injections Performed?
The procedure involves multiple small injections placed into the skin using fine needles or cannulas. The treatment typically takes about 20–30 minutes.
How Many Sessions Are Needed?
Many patients benefit from a series of treatments spaced a few weeks apart, followed by maintenance sessions.
Are Salmon DNA Injections Safe?
When performed by qualified physicians, polynucleotide injections are generally safe with minimal downtime.






