Cell Phototoxicity Irradiator LUYOR-3450
Designed for automated phototoxicity testing, the LUYOR-3450 enables precise in vitro evaluation of cosmetics, chemical raw materials, and other formulations with potential phototoxic risks.
Cytotoxicity is the action of chemical substances on the basic structure or physiological processes of cells, leading to cell survival, proliferation, and function disorders, causing adverse reactions, and even injury and death. The phototoxicity of cells means that certain chemicals are excited to an excited state under the irradiation of a light source of certain wavelengths. This excited state shows toxicity and kills cells or induces cell-specific changes.
Product Features
Complies with OECD, EU, and GB/T standards for in vitro 3T3 NRU phototoxicity testing, ensuring your experimental data meets international regulatory requirements
Superior Thermal Management: Maintaining irradiation chamber temperatures below 37°C to protect cultured cells from thermal damage during experiments
Built-in Precision Sensor: Monitors real-time radiation energy, eliminating the need for additional radiometers and ensuring precise dose control
Automated Operation: Programmable energy and time settings with automatic shutdown upon completion
Safety Protection: Safety interlock switch automatically shuts off UV output when the chamber door is opened, protecting operators and nearby personnel from accidental UV exposure
Ideal for high-throughput phototoxicity screening, photodynamic therapy research, and photosensitive drug evaluation
Applications
Cellular Phototoxicity: Ideal for photodynamic and photothermal therapy, and evaluation of cellular phototoxicity of photosensitive drugs
Photoinduced Drug Release: Use light to control photosensitive drugs to achieve controlled release of drugs.
Photo-curing: UV LED light can be used in photo-cured resin molding, photo-cured adhesives, photo-cured coatings, photo-cured inks, etc.
Photo-induced Deformation: Utilize photochemistry and photo-physical effects to develop new photo-induced deformation materials.
Optogenetics: Use light to control light-sensitive proteins to demonstrate cell activities.
High-throughput Photochemical Reactions: Ideal for photocatalyst development and screening of photochemical synthesis reaction conditions.
Technical Data
| Model | LUYOR-3450 |
| Light Source | 5 x 8 Watt UV lamps |
| Wavelength | Choose one from UVA and UVB |
| Operation Mode | Energy / Time / Preset Mode |
| Energy Mode | 0.025-99.99 J/cm2 |
| Time Mode | 0-599.5 minutes |
| Preset Mode | 9 preset values |
| Sensor | Built-in UV sensor for real-time detection of UV radiation energy. The sensor collects data 5 times per second, and the CPU calculates the remaining energy in real time. |
| Sensor Accuracy | ± 5% |
| Cooling | Dual fan cooling; internal temperature below 37 degrees. |
| Power Supply | 100/220V AC, 50/60 Hz |
| Interal Dimensions | 26 x 32 x 15 cm (10.2 x 12.6 x 5.9 in) |
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