110272-02-1Relevant articles and documents
Spermexatin and Spermexatol: New Synthetic Spermidine-Based Siderophore Analogues
Sharma, Sushil K.,Miller, Marvin J.,Payne, Shelley M.
, p. 357 - 367 (2007/10/02)
Syntheses of hexanediamine-based dihydroxamate (Hexamate), spermidine-based trihydroxamate (Spermexatins), and spermidine-based mixed siderophore analogues (Spermexatols) are described.Key intermediates include the N-hydroxysuccinimide esters of various hydroxamic acids, e.g., malonohydroxamate, succinohydroxamate, and glutarohydroxamate.These intermediates were synthesized, characterized, and incorporated as the ligating chains on spermidine.Also, mixed iron chelating compounds (Spermexatols) with both catechol and hydroxamic acid side chains were synthesized.Thereagent carbobenzoxyimidazole was employed to distinguish between the primary and secondary amino groups of spermidine.The ability of these iron chelators to stimulate microbial growth is also described.
Reactions of α-Hydroxy Carbonyl Compounds with Azodicarboxylates and Triphenylphosphine: Synthesis of α-N-Hydroxy Amino Acid Derivatives
Kolasa, Teodozyj,Miller, Marvin J.
, p. 4978 - 4984 (2007/10/02)
Reaction of aliphatic α-hydroxy esters with azodicarboxylates and triphenylphosphine in the presence of either CbzNHOCH2Ph or trOCNHOCH2Ph provides a direct route to protected α-N-hydroxy amino acids.Similar reactions with aromatic α-hydroxy carbonyl compounds and derivatives result in predominate oxidation to the corresponding α-oxo carbonyl derivatives.