About
Polynucleotides stimulate the different cells to rejuvenate and can address many concerns including lax skin, pigmentation, scar tissue & collagen stimulation. Derived from Salmon sperm extract, the treatment came from stem cell regenerative medicine where it has been found to have high levels of DNA extract closely aligned to human DNA. This treatment can address concerns in different parts of the face and body that normally would have required a cocktail of treatments and products.
Polynucleotides are an innovative skincare procedure that harnesses the power of salmon DNA to rejuvenate and enhance the skin’s appearance. Derived from salmon roe, this treatment contains DNA molecules that closely resemble human DNA, making it highly compatible with the skin. When injected into the skin, it stimulates collagen production, improves skin elasticity, and promotes cell regeneration, resulting in smoother, firmer, and more youthful-looking skin. This natural and biocompatible treatment is suitable for individuals seeking to address signs of aging, such as fine lines, wrinkles, and loss of firmness, without resorting to invasive procedures or synthetic ingredients.
Apart from the results of botox, Polynucleotides can reduce fine lines, firm the skin, reduce pigmentation and remodel the skin. This is done using natural ingredients – not dermal fillers. The Polynucleotide treatment is perfect for those looking to rejuvenate their skin through collagen production. The treatment improves skin elasticity, reduces fine lines and wrinkles, creating firmer skin. The injection contains all natural ingredients and is highly compatible with the skin providing long-term results.
Treatment is ideal for individuals looking to achieve natural and long-lasting improvements in their skin’s appearance, texture, and overall health. It offers a safe, effective, and minimally invasive solution for addressing signs of aging and promoting skin rejuvenation.
Treatment
Results
FAQ
Polynucleotides is a skincare treatment that utilises DNA molecules extracted from salmon roe to rejuvenate and enhance the skin's appearance. When applied topically or injected into the skin, it stimulates collagen production, improves skin elasticity, and promotes cell regeneration, resulting in smoother, firmer, and more youthful-looking skin.
Polynucleotides treatment is suitable for individuals looking to improve overall skin quality, hydration, and firmness. It can benefit those with early signs of aging, mild to moderate skin laxity, or dry/dehydrated skin.
Polynucleotides treatment offers several benefits, including skin rejuvenation, improved hydration, increased firmness and elasticity, and reduction of fine lines and wrinkles. It provides natural-looking results with minimal downtime and is suitable for various skin types.
Polynucleotides treatment involves minimal discomfort, as it is administered using a very fine needle after applying numbing cream to enhance patient comfort. Some patients may experience mild swelling or bruising at the injection sites, which typically resolves within a few days.
Most patients undergo three initial treatment sessions, spaced approximately four weeks apart, to achieve optimal results with polynucleotides. Improvement in skin quality, hydration, and firmness is typically noticeable within a few weeks after the initial treatment, with continued enhancement over time.
Polynucleotides treatment involves minimal downtime, and most patients can resume their normal activities immediately after the procedure. Some mild swelling, redness, or bruising at the injection sites may occur but typically resolves within a few days.
The results of Polynucleotides treatment can last for up to six to twelve months, depending on individual factors such as age, skin condition, lifestyle, and metabolism. To maintain optimal results, maintenance treatments are usually recommended every six to twelve months.
Polynucleotides is generally considered safe, but some potential side effects may occur, including mild swelling, bruising, redness, or tenderness at the injection sites.
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