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TFA-aha-dC TFA-aha-dC is a potent nucleoside containing trifluoroacetic acid (TFA). This product plays a crucial role as a protected nucleoside during solid-phase DNA synthesis. It is commonly utilized in research involving the study of DNA structure, epigenetics and the development of therapeutic drugs targeting cancer and viral diseases. Molecular formula: C20H28F3N5O6. Mole weight: 491.46. BOC Sciences 3
N4-DMF-5-TFA-aha-dC N4-DMF-5-TFA-aha-dC, a modified nucleoside, boasts important clinical applications as an innovative technique in the biomedical research of DNA damage and repair mechanisms. It is highly sought after by oligonucleotide scholars who utilize its powerful capabilities in examining the effects of DNA adducts on DNA polymerases and helicases. Furthermore, the advantages of incorporating N4-DMF-5-TFA-aha-dC in targeted cancer therapy development cannot be discounted as it combats malignant mutations arising from DNA damage response pathways. Synonyms: 2'-Deoxy-N-[(dimethylamino)methylene]-5-[(1E)-3-oxo-3-({6-[(trifluoroacetyl)amino]hexyl}amino)-1-propen-1-yl]cytidine; Cytidine, 2'-deoxy-N-[(dimethylamino)methylene]-5-[(1E)-3-oxo-3-[[6-[(2,2,2-trifluoroacetyl)amino]hexyl]amino]-1-propen-1-yl]-. Grades: ≥97% by HPLC. Molecular formula: C23H33F3N6O6. Mole weight: 546.54. BOC Sciences 3
5-TFA-aha-2'-Deoxycytidine 5-TFA-aha-2'-Deoxycytidine, a synthetic nucleoside analog with potential therapeutic properties against multiple cancer types including breast, lung, and pancreatic cancer, works by incorporating into the DNA strands of cancer cells resulting in the inhibition of cellular replication and ultimately, cell death. Its effective application in combatting cancer renders it an intriguing area of study towards developing novel cancer treatments. Synonyms: TFA-aha-dC; 5-TFA-aha-dC. Grades: ≥98% by HPLC. Molecular formula: C20H28F3N5O6. Mole weight: 491.46. BOC Sciences 3

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