Advanced Methods
Extracellular Vesicle Treatment
Extracellular Vesicles (EVs), also known as amniotic fluid-derived nanoparticles or exosomes, are tiny, naturally occurring particles that play a crucial role in cell-to-cell communication.
Laser Therapy
Traditional treatment yields traditional results
Extracellular Vesicles (EVs), also known as amniotic fluid-derived nanoparticles or exosomes, are tiny, naturally occurring particles that play a crucial role in cell-to-cell communication. They are rich in regenerative growth factors, cytokines, and ribonucleic acids, which are key to modulating immune response, reducing inflammation, and promoting tissue repair.
Our EVs can be used alone or in conjunction with other therapies.
The Science Behind EV Therapy
- Source: Our EVs are derived from amniotic fluid, an abundant source of bioactive molecules.
- Minimal Manipulation: We use a proprietary, patent-pending process to isolate these nanoparticles while preserving their bioactive potential.
- Regenerative Properties: EVs promote mitochondrial health and help restore cellular homeostasis, making them ideal for supporting overall tissue repair and regeneration.
Combining EVs with Activated Plasma
EV Therapy can be used in conjunction with VSELs to enhance the body's natural healing process. This combination:
- Enhances Cell-to-Cell Communication: EVs support and amplify the signaling capabilities of VSELs, leading to more efficient tissue repair.
- Accelerates Results: The synergy between EVs and VSELs promotes faster recovery and optimal outcomes, especially in regenerative treatments.
Why Choose Our EV Therapy?
- Highest Quality: Our EVs are derived from amniotic fluid, ensuring the most concentrated and highest count product on the market.
- Regulatory Compliance: Our products adhere to FDA and Center for Biologic Evaluation and Research (CBER) regulations, ensuring safety and efficacy.
- State-of-the-Art Processing: Our minimal manipulation process preserves the natural bioactive molecules for maximum therapeutic potential.
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