In order to complete the complex process from somatic cells to reprogramming, Lambert Aix Biotech has developed a complete reprogramming tool - iPS reprogramming kit - to promote the conversion of human cells to iPS. This kit includes all the reagents required during the reprogramming process and can reprogram various types of somatic cells (cells from blood, urine, skin, amniotic fluid, etc.) into iPSCs. Due to the greatly simplified reprogramming steps of this reagent kit, it provides a convenient and efficient reprogramming method for researchers, and can quickly establish a reprogramming technology platform in the laboratory
Reprogramming refers to the transient overexpression of key reprogramming factors in human cells, causing them to enter the embryonic stem cell state, known as human induced pluripotent stem cell (iPS). Due to the ability of iPS cells to differentiate into multiple cell types, reproduce biological information of cell development, and reflect the occurrence and development process of human diseases, these cells can be widely used in basic research, drug development, establishment of stem cell banks, and cell therapy.
In order to complete the complex process from somatic cells to reprogramming, Lambert Aix Biotech has developed a complete reprogramming tool - iPS reprogramming kit, to promote the conversion of human cells to iPS. This kit includes all the reagents required during the reprogramming process and can reprogram various types of somatic cells (cells from blood, urine, skin, amniotic fluid, etc.) into iPS. Due to the greatly simplified reprogramming steps of this kit, it provides a convenient and efficient reprogramming method for researchers and enables the rapid establishment of reprogramming technology platforms in the laboratory.
For blood derived cells, we have also developed PBMC blood cell activation culture medium to help blood cells enter an optimal reprogramming state. Reprogramming medium is a serum-free medium that supports efficient reprogramming of cells without a feeder layer. The iPS clones generated during the reprogramming process can seamlessly transition to PGM1 stem cell culture medium for long-term cultivation and subsequent differentiation experiments.
Product Features
1. Significantly improve reprogramming efficiency and increase the number of iPS clones.
2. Quickly generate larger iPS like typical clones, facilitating the next step of subcloning experiments.
3. Using non integrated methods to reprogram iPS without genetic toxicity
4. Capable of reprogramming multiple somatic cells, suitable for various research fields
5. Easy, fast, and user-friendly.
Storage conditions:
Basic culture medium 2-8 ℃, additives -80~-20 ℃; Mix well at 2-8 ℃ and use within 2 weeks.
Reprogramming additive I is stored at -20 ℃, reprogramming additive II is stored at -80 ℃, and reprogramming additive III is stored at -20 ℃.
