BAPTA-AM
95%
- Product Code: 98621
Alias:
Intracellular calcium fluorescent probe BAPTA,
CAS:
126150-97-8
Molecular Weight: | 764.6799999999999 g./mol | Molecular Formula: | C₃₄H₄₀N₂O₁₈ |
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EC Number: | MDL Number: | MFCD00036696 | |
Melting Point: | 86-90°C | Boiling Point: | |
Density: | Storage Condition: | -20°C |
Product Description:
BAPTA-AM is widely used in biological research as a cell-permeable calcium chelator. It effectively buffers intracellular calcium levels, making it valuable for studying calcium-dependent processes in cells. Researchers often use it to investigate the role of calcium signaling in cellular functions such as muscle contraction, neurotransmitter release, and apoptosis. Its ability to selectively chelate calcium without affecting other ions makes it a precise tool for manipulating intracellular calcium concentrations in experimental settings. Additionally, BAPTA-AM is employed in studies focusing on calcium's role in cell injury or death, providing insights into mechanisms of diseases like neurodegeneration or ischemia. Its application extends to pharmacology, where it helps evaluate the effects of drugs on calcium-mediated pathways.
Product Specification:
Test | Specification |
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PURITYHPLC | 95-100 |
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.025 | 10-20 days | ฿3,620.00 |
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0.100 | 10-20 days | ฿12,590.00 |
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BAPTA-AM
BAPTA-AM is widely used in biological research as a cell-permeable calcium chelator. It effectively buffers intracellular calcium levels, making it valuable for studying calcium-dependent processes in cells. Researchers often use it to investigate the role of calcium signaling in cellular functions such as muscle contraction, neurotransmitter release, and apoptosis. Its ability to selectively chelate calcium without affecting other ions makes it a precise tool for manipulating intracellular calcium concentrations in experimental settings. Additionally, BAPTA-AM is employed in studies focusing on calcium's role in cell injury or death, providing insights into mechanisms of diseases like neurodegeneration or ischemia. Its application extends to pharmacology, where it helps evaluate the effects of drugs on calcium-mediated pathways.
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