N-(4-Aminobutyl)-5-((3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl)pentanamide
95%
- Product Code: 54564
CAS:
151294-96-1
Molecular Weight: | 314.4468 g./mol | Molecular Formula: | C₁₄H₂₆N₄O₂S |
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EC Number: | MDL Number: | MFCD28397129 | |
Melting Point: | Boiling Point: | ||
Density: | Storage Condition: | room temperature |
Product Description:
N-(4-Aminobutyl)-5-((3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl)pentanamide is primarily utilized in biochemical research and pharmaceutical development. It plays a significant role in studying biotin-related pathways and interactions, as it is structurally related to biotin, a vital coenzyme in metabolic processes. This compound is often employed in the development of biotinylated probes and reagents, which are essential for various diagnostic and therapeutic applications. It is also used in the synthesis of biotin-conjugated molecules, aiding in the investigation of protein-ligand interactions and cellular processes. Additionally, its application extends to the field of targeted drug delivery, where it helps in designing systems that can specifically bind to biotin receptors on cells, enhancing the precision and efficacy of treatments.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.100 | 10-20 days | ฿4,464.00 |
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N-(4-Aminobutyl)-5-((3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl)pentanamide
N-(4-Aminobutyl)-5-((3aS,4S,6aR)-2-oxohexahydro-1H-thieno[3,4-d]imidazol-4-yl)pentanamide is primarily utilized in biochemical research and pharmaceutical development. It plays a significant role in studying biotin-related pathways and interactions, as it is structurally related to biotin, a vital coenzyme in metabolic processes. This compound is often employed in the development of biotinylated probes and reagents, which are essential for various diagnostic and therapeutic applications. It is also used in the synthesis of biotin-conjugated molecules, aiding in the investigation of protein-ligand interactions and cellular processes. Additionally, its application extends to the field of targeted drug delivery, where it helps in designing systems that can specifically bind to biotin receptors on cells, enhancing the precision and efficacy of treatments.
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