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How to use polysilazane in the biomedical field

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In the important field of biomedical science, which is related to human health, polysilazane is gradually emerging and showing great potential for application.
A significant advantage of polysilazane is its good biocompatibility, which means that it will not trigger strong immune reactions or produce toxic effects in the body after entering, and can coexist harmoniously with human tissues. Based on this characteristic, it can be used to manufacture tissue engineering scaffolds. In tissue engineering, it is necessary to construct a three-dimensional scaffold structure to guide cell growth and tissue repair and reconstruction. Polysilazane scaffolds can be customized according to the needs of different tissues, such as precise control of parameters such as porosity and pore size, providing a suitable microenvironment for cell attachment, proliferation, and differentiation. For example, in bone tissue engineering, polysilazane scaffolds can simulate the microstructure of natural bone tissue, attract osteoblasts to grow on them, and over time, the scaffold can gradually degrade, making space for the generation of new bone tissue and promoting the repair of bone defects, bringing new treatment hope to patients with bone injuries caused by trauma, diseases, etc.
In addition, polysilazane also has positive application prospects in the manufacturing of artificial joints. Artificial joints need to work in the complex biomechanical environment of the human body for a long time. They not only need to have good wear resistance to cope with friction in daily activities, but also have good biocompatibility to avoid adverse reactions such as inflammation. Polysilazane materials can be made into artificial joint components with high hardness, low friction coefficient, and good biocompatibility through special formulas and processing techniques, such as acetabular cups, femoral heads, etc., to replace diseased or damaged human joints, help patients restore normal joint activity function, and improve their quality of life.
In the field of dental restoration, polysilazane is also highly regarded. Dental restoration materials need to have the characteristics of beauty, durability, and good fit with oral tissues. Polysilazane can be used to manufacture dental filling materials, dental crowns, and other restorations. It can tightly bond with tooth tissue and is not prone to loosening or falling off. Its good chemical stability can resist the effects of acidic and alkaline environments and bacterial growth in the oral cavity, maintaining the restoration effect for a long time and providing patients with a better and more durable dental treatment plan.

Room termperature curing polysilazane, pls check IOTA 9150, IOTA 9150K.       
High termperature curing polysilazane, pls check IOTA 9108IOTA 9118.  

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