
Longevity · Light therapy
Feeding the cell, through light itself
Fatigue that settles in for no clear reason, skin that struggles to renew itself, recovery that lengthens with age. At the heart of every cell, the mitochondrion produces the energy that repairs and supports everything else. Certain wavelengths, from red to near infrared, restart that production at the source.
TheraLight 360 · Four calibrated wavelengths · Full body coverage
Our approach
Every tissue calls for its own wavelength.
- 01
Set
Four calibrated wavelengths, from deep red to near infrared (633, 810, 850 and 940 nanometres). Each reaches its own tissue depth, and activates distinct cellular targets.
- 02
Diffuse
Full body coverage, in the cabin. 12 to 15 minutes lying still, with no pressure and no heat. The light passes through the skin and reaches tissues several centimetres deep, with no invasive act at all.
- 03
Regenerate
At the heart of the mitochondria, the enzyme that governs cellular respiration absorbs those photons. Energy yield rises, and the cell recovers its capacity to repair and renew.
Under the right light, the cell finds its rhythm again.
Vanessa MarrapodiFounder of Skincare Agency Paris
The concept
When light reaches the mitochondrion, energy starts again.
In the 600 to 950 nanometre window, light passes through the skin and reaches cells in depth. At the heart of the mitochondrion, one precise enzyme, cytochrome c oxidase, captures those photons. It then releases a molecular brake on the respiratory chain. The cell produces more ATP, its energy currency. More repair, more regeneration, less inflammation.
Red, at the surface
At 633 nanometres, red light acts in the epidermis and the superficial dermis. It stimulates fibroblasts, supports the production of collagen and elastin, and calms redness. It is the wavelength of dermal quality.
Infrared, in depth
Between 810 and 940 nanometres, near infrared reaches muscles, joints and superficial organs. It meets the mitochondria of deep tissues, where whole body recovery is played out.
Our solutions
03 stepsFull body programme
Scheduled maintenance course
The light goes in. The energy starts again.
The method
Three planes of cellular action
Photobiomodulation acts simultaneously on three planes that reinforce one another session after session: cellular energy, tissue regeneration, and the quality of the biological rhythm.
Cellular energy
Every cell holds hundreds to thousands of mitochondria that produce the energy it needs to do everything: repair, grow, communicate, defend itself. With age and chronic inflammation, their yield declines, nitric oxide builds up and slows the respiratory chain. Light, at the right wavelength, releases that brake. ATP production (adenosine triphosphate) rises, background fatigue recedes, mental clarity returns.
Tissue regeneration
Under the epidermis, the fibroblasts of the dermis orchestrate the production of collagen and elastin. Red at 633 nanometres stimulates their activity directly. The dermal matrix densifies, the skin texture refines, scars calm down, hair regains density. The effect builds session after session, on the visible markers as much as on dermal quality in depth.
Recovery and rhythm
Near infrared works on three interconnected planes. It speeds up musculoskeletal recovery by reducing tissue inflammation. It modulates the regulation of cortisol and serotonin, which orchestrate the passage between waking and sleep. It restores circadian sensitivity to natural light. Nights deepen, aches clear faster, and the body regains a range of recovery that had been lost.
Elite Longevity programme
A 12 month approach, for those who want to go further
Quarterly assessments, adjusted protocols, personalised support. Longevity as a discipline, across the year, framed by our medical team.
Subject to evaluation
FAQ
Frequently asked questions
Photobiomodulation, sometimes called medical light therapy or red light therapy, uses precise wavelengths of visible red and near infrared (between 600 and 950 nanometres). Those waves pass through the skin and reach cells in depth. At the heart of the mitochondrion, an enzyme, cytochrome c oxidase, absorbs those photons and restarts the respiratory chain. The cell then produces more ATP, the molecule that serves as energy for all of its functions. It is a purely biological mechanism, with no heat, no ionising radiation and no ultraviolet.





