- Phone
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Address
802, Door 1, Building 4, Huading New Area No.1 Industrial Park, Xiqing District, Tianjin City
Tianjin Debord Technology Co., Ltd
802, Door 1, Building 4, Huading New Area No.1 Industrial Park, Xiqing District, Tianjin City
Domestic replacement of Cultex cell exposure poisoning device
In the fields of inhalation toxicology, respiratory disease mechanism research, and drug safety evaluation,In vitro gas-liquid interface (ALI) exposure technology is becoming an important bridge connecting traditional in vitro experiments with in vivo animal modelsThis technology simulates the real physiological environment of human lungs by immersing the bottom of cells in culture medium and exposing the top to flowing airflow or aerosols, allowing researchers to evaluate the biological effects of air pollutants, cigarette smoke, nanoparticles, drug aerosols, and other substances at the cellular level.
Domestic replacement of Cultex cell exposure poisoning device
Overview of Four Products
| ACP3 | 3 |
Large size compatibility |
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| ACP6 | 6 |
Standard universal type |
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| ACP16 | 16 |
High throughput+concentration gradient |
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| Mister | 9 |
Specialized for atomization |
All four products share the following core technological advantages, which ensure the reliability and reproducibility of experimental results:
Radial symmetric distributed gas pathAll exposed cell compartments are distributed radially symmetrically, and aerosols are evenly distributed to each channel through the air inlet,Coefficient of variation of aerosol concentration and composition between channels: less than 5%
360 ° constant temperature and humidity controlConstant temperature of 37 ℃, temperature control accuracy ≤ 0.2 ℃ (Mistber ≤ 0.1 ℃), relative humidity ≥ 95%, simulating real respiratory environment
Independent liquid controlEach channel culture medium is independently supplied (0-10mL/min), supporting three modes: continuous, intermittent, and static
Fully automatic control softwareIntegrated airtightness testing, automatic addition and extraction of culture medium, experimental program editing, automatic cleaning and other functions
scalabilityCan be extended with QCM microbalance module for real-time monitoring of aerosol deposition quality
Widely applicable to various cell typesA549, HaCaT, CHO, Lk004, HFBE-21 and other commonly used cell lines can be used
Key Differences Comparison Table
| ACP3 | ACP6 | ACP16 | Mister | |
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| number of channels | 3 | 6 | 16 | 9 |
| Applicable incubators |
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culture chamber |
The cultivation chamber has a smaller volume, which saves more culture medium |
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Independent control of culture medium in the cultivation chamber |
Independent control of grouping of culture medium in the cultivation chamber |
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| Aerosol exposure mode |
Dynamic Flow |
Dynamic Flow | Dynamic Flow |
Static settlement |
| Core Features |
Each channel comes with a dilution inlet |
Standard Aerogen atomization system |
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| Aerosol flow control |
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| Temperature control accuracy | ≤0.1℃ | |||
| Typical application scenarios |
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