Technical Specifications: Passive Multi-layer Composite Gas Sustained-Release Patch System
I. Core Technology: Passive Topical Gas Therapy (TGT)
The world’s first Passive Topical Gas Therapy (TGT) utilizes a proprietary, patented "Solid-State Gas Source" multi-layer composite material.
Three Primary Technical Attributes:
-
Embedded Solid-State Gas Source: Precise sequestration of active gas precursors within specialized multi-layer composite structures.
-
Intelligent Activation: Gas release is automatically triggered in a controlled, quantitative manner upon contact with skin moisture or micro-exudates (applicable to intact skin/non-open wounds).
-
Sustained Release Profile: Maintains a stable release for 12–24 hours (extending up to 48–72 hours for fatigue relief), establishing a continuous therapeutic microenvironment.
II. Gaseous Synergistic Mechanism
Achieves molecular-level penetration to access the intracellular environment, directly addressing oxidative stress and pain:
-
Hydrogen (H2): Acts as a selective antioxidant "firefighter," neutralizing cytotoxic free radicals (ROS) and activating endogenous antioxidant systems to significantly alleviate neuropathic pain.
-
Oxygen (O2): Functions as the energy engine for tissue repair, stimulating ATP production and working synergistically with Hydrogen to accelerate healing processes.
III. Core Product Advantages (Ophthalmic Application)
-
Microenvironment Regulation: Upon application, the patch interacts with the ocular surface environment to form a controlled, therapeutic micro-environment around the eyes.
-
Extended Gas Delivery: Provides a continuous delivery of trace Hydrogen for up to 6–8 hours.
-
Non-Thermal Design: Operates with "Zero Heat Generation." It relies entirely on molecular gas activity for soothing effects rather than traditional thermal compression.
-
Therapeutic Soothing Mechanism: Utilizing Hydrogen molecular penetration to provide a "Spa-level" treatment for eye strain, dryness, soreness, and dark circles caused by prolonged screen time or sleep deprivation.
-
Superior Permeability: With a molecular mass of only 1 Dalton (1/500th of the skin’s permeability threshold), Hydrogen easily penetrates the eyelid skin—the thinnest in the human body (0.3–0.5mm)—to reach deep ocular tissues and lacrimal glands directly.
IV. Authority Certification & Scientific Endorsement
-
International Recognition: Awarded the Gold Medal at the 39th World Genius Convention (Japan, 2025).




