Skip to content

Free Ground Shipping on Orders Over $75

Free Galvanic Wand on Orders Over $200 - ($80 Value!)

Au79Care

What You Need To Know About Adipose-Derived Stem Cell Exosomes

Adipose-derived stem cell exosomes are microscopic extracellular vesicles secreted by stem cells harvested from fatty tissue. These nano-sized biological messengers (typically 30-150 nanometers) contain powerful bioactive molecules including growth factors, cytokines, lipids, mRNAs and microRNAs that facilitate cellular communication and regeneration.

In skincare, these exosomes have gained significant attention for their remarkable properties:

Regenerative potential: Stimulates collagen and elastin production, enhancing skin elasticity and firmness

Anti-inflammatory effects: Helps calm irritation and reduce redness

Antioxidant protection: Defends against environmental damage and oxidative stress

Wound healing acceleration: Promotes tissue repair and faster recovery

Cell longevity support: Helps maintain healthy cellular function and metabolism

Unlike whole stem cells, exosomes can penetrate the skin barrier more effectively due to their small size, allowing for deeper delivery of their regenerative cargo. In our formulations, adipose-derived stem cell exosomes work as advanced anti-aging ingredients that address multiple signs of skin aging simultaneously.

These exosomes represent cutting-edge regenerative therapy when delivered via mesotherapy. They are powerful nanovesicles containing growth factors, cytokines and regulatory proteins that directly communicate with skin cells to accelerate healing, promote tissue regeneration and optimize cellular function. The mesotherapy delivery ensures these bioactive compounds reach target cells efficiently, where they stimulate fibroblast activity, enhance extracellular matrix production and activate skin's endogenous repair mechanisms, resulting in significant improvements in skin texture, firmness and volume while addressing concerns like wrinkles, scarring and skin laxity at their structural source.