α- MEM Medium, with L-glutamine, witnout ribonucleosides and deoxyribonucleosides
- Product Code: 55040
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Density: | Storage Condition: | 2-8 ℃, dark |
Product Description:
α-MEM Medium, supplemented with L-glutamine and without ribonucleosides and deoxyribonucleosides, is widely used in cell culture applications. It serves as a nutrient-rich environment for the growth and maintenance of various mammalian cells, particularly those requiring a defined and consistent medium. This formulation is ideal for culturing primary cells, fibroblasts, and other adherent cell types, supporting their proliferation and viability. The absence of ribonucleosides and deoxyribonucleosides makes it suitable for studies where these components might interfere, such as metabolic or genetic research. Additionally, it is commonly employed in virology, vaccine production, and biopharmaceutical manufacturing due to its ability to sustain high cell densities and productivity. Its versatility also extends to stem cell research, where it helps maintain undifferentiated states or supports differentiation protocols.
Product Specification:
Test | Specification |
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CELL CULTURE TEST | PASS |
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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500.000 | 10-20 days | ฿1,680.00 |
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α- MEM Medium, with L-glutamine, witnout ribonucleosides and deoxyribonucleosides
α-MEM Medium, supplemented with L-glutamine and without ribonucleosides and deoxyribonucleosides, is widely used in cell culture applications. It serves as a nutrient-rich environment for the growth and maintenance of various mammalian cells, particularly those requiring a defined and consistent medium. This formulation is ideal for culturing primary cells, fibroblasts, and other adherent cell types, supporting their proliferation and viability. The absence of ribonucleosides and deoxyribonucleosides makes it suitable for studies where these components might interfere, such as metabolic or genetic research. Additionally, it is commonly employed in virology, vaccine production, and biopharmaceutical manufacturing due to its ability to sustain high cell densities and productivity. Its versatility also extends to stem cell research, where it helps maintain undifferentiated states or supports differentiation protocols.
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