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5714-08-9

3,3',5'-Triiodo-D-thyronine

Catalog#: AR00EFE7  |   CAS#: 5714-08-9  |   MDL#: MFCD00063052  |   MF: C15H12I3NO4  |   MW: 650.9735

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Catalog Number AR00EFE7
Chemical Name 3,3',5'-Triiodo-D-thyronine
CAS Number 5714-08-9
Molecular Formula C15H12I3NO4
Molecular Weight 650.9735
MDL Number MFCD00063052
SMILES OC(=O)[C@@H](Cc1cc(I)c(c(c1)I)Oc1ccc(c(c1)I)O)N

D-Triiodothyronine, also known as T3, plays a critical role in chemical synthesis as a powerful thyroid hormone. Its application in chemical synthesis encompasses various research and industrial processes, making it a valuable tool in the field of chemistry.One significant application of D-Triiodothyronine in chemical synthesis is its use as a catalyst in organic reactions. T3 has been employed in promoting reactions such as the formation of carbon-carbon bonds and the functionalization of organic molecules. Its ability to enhance reaction rates and selectivity make it a versatile catalyst in the synthesis of complex organic compounds.Furthermore, D-Triiodothyronine is utilized in the synthesis of pharmaceuticals and medical research. Its role in modulating metabolic processes and cellular functions makes it an essential component in the production of drugs targeting metabolic disorders, thyroid diseases, and other health conditions. The incorporation of T3 in pharmaceutical synthesis allows for the development of effective treatments with specific biological activities.Moreover, D-Triiodothyronine serves as a key reagent in biochemical studies and protein research. Its impact on gene expression, metabolism, and cellular signaling pathways enables scientists to investigate the underlying mechanisms of various biological processes. By using T3 in chemical synthesis, researchers can elucidate the interactions between thyroid hormones and biological systems, leading to advancements in molecular biology and biochemistry.
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