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Room 112, No. 71 Chengzhuang Road, Fengtai District, Beijing
Beijing Keyu Xingye Technology Development Co., Ltd
Room 112, No. 71 Chengzhuang Road, Fengtai District, Beijing
Bio SpaceX-3D Two Axis Three Dimensional Rotating Culture SystemThe universal two axis rotary culture system is a device used to simulate microgravity environments and can be used to study the behavior and effects of adherent cells in microgravity environments. The system has a dual axis rotation function and can simulate the microgravity environment generated by the Earth's rotation and revolution. It can be used for research in fields such as cell biology, biophysics, biochemistry, and biomedical sciences. The rotation speed and angle of the system can be adjusted to simulate different microgravity environments. In addition, the system also has temperature control and gas control functions, which can provide an environment suitable for cell growth.

Bio SpaceX-3D Two Axis Three Dimensional Rotating Culture SystemSystem composition:
-Controller: It is the control core of the system, which can accurately regulate the rotation speed, direction, time and other parameters of the rotating seat.
-Rotating seat: usually placed inside the incubator, used to carry cell culture containers and achieve three-dimensional rotation of the cell culture containers.
-Cell culture containers: There are various types of biological reaction containers, universal culture dishes, culture bottles, etc., which can be selected according to experimental needs.
Rotary microgravity three-dimensional cell culture systemProduct Features
-True dynamic cultivation: It can achieve dynamic cultivation of cells in three-dimensional space, making the interaction between cells and between cells and culture medium more complete.
-Low shear stress environment: During the rotation process, cells are subjected to lower shear forces, which reduces damage to cells and helps maintain their normal physiological functions and morphology.
-Adjustable parameters: Supports the adjustment of parameters such as rotational speed, steering, and microgravity simulation level to meet the requirements of different experiments for microgravity simulation level.
Application scenarios of TDCCS-3D microgravity 3D cell culture system
-Cell biology research: Investigating the changes in morphology, proliferation, differentiation, gene expression, and other aspects of cells under microgravity conditions, and revealing the adaptive mechanisms of cells under different gravity conditions.
-In the field of astrobiology, as an important ground simulation tool, it provides scientific basis and data support for actual space missions by understanding the possible reactions of cells in the space environment in advance.
-Drug development: Constructing cell culture models that are more in line with the in vivo environment for screening more effective drugs, studying the changes of disease-related cells under microgravity, and providing new ideas for disease diagnosis and treatment.
-Tissue engineering and regenerative medicine: promoting intercellular interactions and signal transmission, helping to construct cell culture models that are more in line with the in vivo environment, promoting tissue formation and functional recovery.