The cell bank and laboratory where our cord-blood derived stem cells are developed prioritize meticulous management to ensure safe harvesting of minimally manipulated and potent cells. These facilities adhere to stringent quality control and testing protocols, maintaining the highest standards for safety, quality, and effectiveness in stem cell harvesting.
In the harvesting process of these vital stem cells for patient treatments, the laboratory employs an optimal method that balances quality, safety, flexibility, and cost-effectiveness, while also emphasizing the production of minimally manipulated and highly potent cells. A critical aspect of blood processing in any laboratory is preventing contamination. In this context, the chosen method, utilizing a closed system, is notably superior. This technique significantly reduces the risk of contamination transfer from external surfaces to the cord blood, thereby ensuring a higher standard of safety and purity in the stem cells provided.
The cell bank and laboratory where our cord-blood derived stem cells are developed prioritize meticulous management to ensure safe harvesting of minimally manipulated and potent cells. These facilities adhere to stringent quality control and testing protocols, maintaining the highest standards for safety, quality, and effectiveness in stem cell harvesting.
In the harvesting process of these vital stem cells for patient treatments, the laboratory employs an optimal method that balances quality, safety, flexibility, and cost-effectiveness, while also emphasizing the production of minimally manipulated and highly potent cells. A critical aspect of blood processing in any laboratory is preventing contamination. In this context, the chosen method, utilizing a closed system, is notably superior. This technique significantly reduces the risk of contamination transfer from external surfaces to the cord blood, thereby ensuring a higher standard of safety and purity in the stem cells provided.