100305-95-1Relevant academic research and scientific papers
SN-Donor methylthioanilines and copper(II) complexes: Synthesis, spectral properties, and in vitro antimicrobial activity
Olalekan, Temitope E.,Ogunlaja, Adeniyi S.,Watkins, Gareth M.
, (2019/04/25)
Methylthioanilines, a series of sulfur-nitrogen donor ligands substituted with OCH3, CH3, Cl, and Br, and their copper(II) complexes have been synthesized and characterized by 1H and 13C NMR, elemental analysis, FTIR, UV-Vis and EPR spectra, molar conductance, and magnetic susceptibility measurements. The NMR spectra of the ligands revealed that the para/ortho protons and para carbon were sensitive to the electronic effect of substituents. The CHNS analysis presented CuLCl2 (L = OCH3, CH3, Cl) and CuL2Cl2 (L = Br) stoichiometries for the copper complexes. FTIR spectra showed that the bidentate ligands were coordinated to the copper ion through their nitrogen and sulfur atoms. The electronic spectra have suggested square planar and octahedral geometries for these complexes. The EPR spectra demonstrated that the solid state copper(II) complexes possess dx2-y2 orbital ground state and g= > g > 2.0023 in a tetragonal environment. The compounds were evaluated for in vitro antimicrobial activity against S. aureus, B. subtilis, E. coli, and C. albicans. The copper complexes showed higher activity than the parent ligands against S. aureus and B. subtilis; the electron-donating OCH3 and CH3 derivatives were more active than the withdrawing Br- A nd Cl-substituted compounds.
PHARMACEUTICAL COMPOUNDS FOR TREATMENT OF MEDICAL DISORDERS
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, (2018/09/21)
Complement Factor D inhibitors, pharmaceutical compositions, and uses thereof, as well as processes for their manufacture are provided. The compounds provided include Formula I, Formula II, Formula III, and Formula IV or a pharmaceutically acceptable salt, prodrug, isotopic analog, N-oxide, or isolated isomer thereof, optionally in a pharmaceutically acceptable composition. The inhibitors described herein target Factor D and inhibit or regulate the complement cascade.
Formation of Sommelet-Hauser-Type Products, 2-Aminoarylmethyl Sulphides, and Nitrenium Ion Products, 2- and 4-Aminoaryl Sulphides, via an N-Arylazasulphonium Salt
Takeuchi, Hiroshi,Itou, Kazuaki,Murai, Hirotaka,Koyama, Kikuhiko
, p. 3156 - 3188 (2007/10/02)
Reactions of a salt (1) formed at -60 deg C from trifluoroacetic anhydride and dimethyl sulphoxide (DMSO) with primary and secondary arylamines gave 2-aminoarylmethyl sulphides (6), (6') and (12) by a Sommelet-Hauser rearrangement of an ylide (5) formed by loss of a methyl proton of an N-arylazasulphonium salt (3) in the absence of base.The use of ethyl methyl sulphoxide instead of DMSO afforded a similar product (19b) by loss of not the ethyl but the methyl proton.However, the use of diethyl sulphoxide merely caused loss of an ethyl group from the N-arylazasulphonium salt to yield ethanesulphenanilide (20).The reaction of (1) with N-phenyl-1-naphthylamine gave mainly aminoaryl sulphides (13) and (14) via an arylnitrenium ion from the N-arylazasulphonium salt.In fact, the reaction of dimethyl sulphide (DMS) with arylnitrenium ions formed in the acid decomposition of aryl azides gave no Sommelet-Hauser-type products but 2- and 4-aminoaryl sulphides (22), (22') and (23).We also discuss the possibility of the N-arylazasulphonium salt being formed by reaction of the arylnitrenium ion with DMS.
