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3D Suspension Cell Culture System

NegotiableUpdate on 05/06
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Overview

The 3D suspension cell culture system developed by Kilby Biotech simulates the three-dimensional microenvironment in vivo, enhances cell viability and maturity, reduces the risk of apoptosis, and is widely used in basic research, drug screening, and disease modeling. The system has advantages such as low shear stress and high diffusion, supporting long-term cultivation of multiple cell types, forming functional organoid structures, and assisting in stem cell research and personalized medical development. $r $n $r $n Source: Beijing Kilby Biotechnology Co., Ltd

Product Details


(1) Functional application

Developed and produced by Kilby Biotech3D Suspension Cell Culture SystemIt can enhance the vitality and maturity of cells, reduce the risk of apoptosis and necrosis, and help improve the efficiency and standardization of stem cells.

By simulating the three-dimensional microenvironment inside the body, providing growth conditions close to physiological states for cells, it demonstrates key application value in multiple fields.

In basic research, it can reproduce intercellular interactions and tissue architecture, helping to analyze mechanisms such as cell differentiation and signal transduction, such as observing the dynamic process of tumor cell invasion and metastasis.


In the field of drug development, this system can more accurately evaluate drug efficacy and toxicity, and is closer to in vivo reactions compared to traditional two-dimensional culture, improving screening reliability.


In terms of disease modeling, it can construct models of tumors, neurodegenerative diseases, etc., simulate pathological features, provide ideal tools for etiology research and treatment plan development, and promote the development of personalized medicine.


(2) Developed and produced by Beijing Kilby Biotechnology3D Suspension Cell Culture SystemPerformance characteristics

1. Mild low shear stress promotes the exchange of nutrients, gases, and metabolites


2. Swinging perfusion or microgravity rotation can be used in various ways to prevent suspended cells from settling and avoid cell damage


3. High diffusion environment, allowing cells to self assemble in 3D, promoting contact and communication between cells inside the spheroid during long-term cultivation, and producing functional organoid structures


4. Suitable for multiple cell types, whether from patient sources, primary, stem cells, or cell lines, making in vitro cell models more capable of simulating in vivo structure and function


(3) Application Cases

301 General Hospital, Institute of Zoology, Chinese Academy of Sciences/Beijing Institute of Stem Cell and Regenerative Medicine

3D悬浮细胞培养系统