While face creams can go far in achieving a surface-level glow, ‘injectable moisturisers’ are taking your quest for radiant skin even deeper. Also known as skin boosters, they plump, nourish and hydrate your pores from within, giving you a noticeably rejuvenated look that’s instant and long-lasting.
Exosomes Rejuvenation Treatment
Rejuvenate skin and get a youthful glow with the power of Exosomes; a potent stem cell therapy that targets UV damage, acne scarring, fine lines and wrinkles. This injectable ‘tweakment’ is an aesthetic breakthrough that stimulates your natural stem cells, so skin-plumping, glow-boosting growth factors are released to achieve a vibrant look.
Here’s how it works…
What are Exosomes?
Exosomes are communicating vesicles that send signals around your body. Used as an injectable bio-stimulator, they tell your stem cells to produce new growth factors, which work to repair and regenerate stressed-out skin. They break down pigmentation and sun damage, enhance collagen production, repair damaged cells, and boost cell rejuvenation for revived radiance.
Treatment areas
At Mallucci, these Exosomes can be injected into any part of the face or body; all over or in targeted areas, depending on your personal skin goals. So, whether you’re looking to enhance your cheekbones, under-eyes, decolletage or arms and legs, Exosomes help you achieve a more youthful look, with results visible in just days.
Benefits of Exosomes
Exosomes increase your collagen levels by up to six-fold, and elevate elastin levels by up to 300%. In doing so, the non-invasive treatment is able to unlock a host of benefits. Here’s what they can do for your skin:
- Reduce dark spots and signs of UV damage.
- Break down acne scarring and hyperpigmentation.
- Improve brightness and hydration.
- Smooth fine lines and wrinkles.
- Make skin look fresher, brighter and more youthful.
Ready to book your treatment?
To find out more about Exosomes or book your consultation, reach out to us by calling 0203 915 7400 or fill out our online booking form.