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Koyu Xingye TDCCS-3D Microgravity 3D Cell Culture System

NegotiableUpdate on 07/07
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Overview

On the path of exploring life sciences, traditional two-dimensional cell culture technology has been an important driving force for our progress, but with the deepening of research, its limitations have become increasingly apparent. Cells grow on a two-dimensional plane and cannot reproduce the complex three-dimensional environment inside the body. Experimental results often deviate from the real physiological state, which greatly limits the breakthrough speed of scientific research. Now, Beijing Keyu Xingye Technology Development Co., Ltd. has launched the revolutionary Keyu Xingye TDCCS-3D microgravity 3D cell culture system with profound technological accumulation and continuous innovation spirit, opening a new door to the mysteries of cells for researchers

Product Details

On the path of exploring life sciences, traditional two-dimensional cell culture technology has been an important driving force for our progress, but with the deepening of research, its limitations have become increasingly apparent. Cells grow on a two-dimensional plane and cannot reproduce the complex three-dimensional environment inside the body. Experimental results often deviate from the real physiological state, which greatly limits the breakthrough speed of scientific research. Now, Beijing Keyu Xingye Technology Development Co., Ltd. has launched a revolutionary 3D cell culture system with profound technological accumulation and continuous innovation spirit, opening a new door to the mysteries of cells for researchers.


Koyu Xingye TDCCS-3D Microgravity 3D Cell Culture SystemIntroduction:

1、 Core technology: Simulating microgravity to build an "ideal home" for cells

The Beijing Keyu Xingye 3D cell culture system adopts a tilted 45 ° rotating device to achieve three-dimensional rotation of the whole machine. This innovative design can effectively achieve low shear force during the cell culture process, allowing cells to be in a free floating state,Reduce shear forces and settlement effects caused by gravity, and accurately simulate microgravity environments. This environment is closer to the mechanical microenvironment in which cells are located in the body, allowing cells to grow, proliferate, and differentiate freely in three-dimensional space, forming structures similar to internal tissues, maintaining their original shape, polarity, and function. The interactions between cells and between cells and extracellular matrix are also closer to the real situation in the body.

Not only that, this system alsoWith the addition of the "Overweight" function, it is an intelligent 3D cell culture system that integrates both "Microgravity" and "Supergravity" modes. It can simulate microgravity environments between 10-3g and 0.9g, and provide simulation of hypergravity environments (such as 2g, 2.5g, 3g) as well as different gravity levels such as lunar gravity and Martian gravity. It can monitor the three-dimensional spatial gravity of the X-axis, Y-axis, and Z-axis, display gravity values in real time, with an accuracy of ± 0.001g, and meet the scientific research needs of multiple fields and levels. Whether it is basic biology research or space biology exploration, it can provide strong support.

科誉兴业TDCCS-3D微重力三维细胞培养系统



IIKoyu Xingye TDCCS-3D Microgravity 3D Cell Culture SystemSignificant advantage: multidimensional empowerment of scientific research

(1) More accurate simulation of physiological states

Compared with traditional two-dimensional culture, cells in the Koyu Xingye three-dimensional cell culture system can maintain gene expression profiles and drug response characteristics closer to the body. Neural stem cells cultured in this system can better form neurospheres and are closer to the original state of neural tissue in the body; Liver cells can form tight cell connections, better performing metabolic and detoxification functions. Pancreatic beta cells can secrete insulin more stably, closer to the secretion level under physiological conditions, providing a high fidelity cell model for various studies.


(2) Assist in deep cellular behavior research

It can be used for in-depth research on processes such as cell proliferation, differentiation, migration, apoptosis, as well as the mechanism of drug action on cells. For example, in tumor research, simulating the growth and metastasis process of tumor cells in vivo can help researchers clearly observe the invasion and metastasis mechanisms of tumor cells, providing key data support for overcoming cancer challenges.


(3) Improve drug development efficiency

In terms of drug screening and toxicology researchThe cultured cells are closer to the in vivo state, making the research results more accurate and reliable, and can better predict the efficacy and toxicity of drugs in vivo, greatly reducing the cost and risk of drug development. According to experimental data, using this system for drug screening can increase the accuracy of drug efficacy evaluation by 30% and effectively reduce the risk of clinical failure.


(4) Easy to operate and widely applicable

The system interface is simple and intuitive, even novice researchers can quickly get started. And it is suitable for multiple cell types, whether they are adherent cells, suspended cells or primary cells, they can grow well in this system, widely meeting different research directions and experimental needs.


3、 Diversified applications: blossoming and bearing fruit in multiple fields, promoting scientific research progress

(1) In the field of drug research and development

Becoming the engine of drug development, the tumor organoid model constructed by the system can simulate tumor heterogeneity and resistance mechanisms in anti-cancer drug screening, helping researchers quickly screen for more effective anti-cancer drugs; For cardiovascular disease drugs, the 3D myocardial cell culture module can accurately detect the effects of drugs on the electrophysiological characteristics of myocardial cells, accelerate the development process of new drugs, and enable more life-saving medicines to be developed faster.


(2) Regenerative Medicine and Tissue Engineering

Through the microgravity three-dimensional culture system, researchers can efficiently expand stem cells and induce their differentiation into specific tissue cells, providing sufficient and high-quality cell sources for tissue engineering. At present, successful in vitro regeneration of cartilage, skin and other tissues has been achievedPersonalized medicine brings new hope and is expected to solve more clinical tissue repair and replacement problems in the future.


3) Basic Biology Research

Injecting new vitality into basic biological research, it has the potential to investigate the behavioral mechanisms of cells in microgravity environmentsAdvantages, helping researchers to deeply analyze the impact of gravity on life activities, further explore the essence and mysteries of life, and lay a solid foundation for subsequent scientific breakthroughs.


As a professional manufacturer of 3D cell culture systems, Beijing Keyu Xingye has always taken it as its responsibility to promote the development of life sciences, providing services from research and development, production to after-salesOne stop service. If you are struggling with the difficulties of cell culture and eager to make breakthroughs in life science research, choosing the Beijing Keyu Xingye 3D Cell Culture System is choosing to work with cutting-edge technology and professional teams to open a new chapter in life science research together! Contact us now for exclusive discounts and professional technical consulting services. We look forward to creating brilliance with you!


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科誉兴业TDCCS-3D微重力三维细胞培养系统