Mathemycin A, a new antifungal macrolactone from Actinomycete sp. HIL Y-8620959. II. Structure elucidation.
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Biomedical subjects
Publications and source records attributed to H W Fehlhaber.
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During the toxicological examination of the fibrosuppressive agent, Lufironil (INN), in rats a dose-dependent positive reaction for urinary bilirubin was observed. This positive reaction was found in quantitative assays, and when using test strips. The positive reaction for bilirubin in these assay systems was caused by a metabolite of Lufironil. It was not due to drug toxicity, and it was not caused by any endogenous substrate produced under the influence of Lufironil. The compound responsible for this reaction was isolated by HPLC and its structure determined by spectroscopic methods. The structure was confirmed by synthesis, starting from pyridine-2,4-dicarboxylate. The synthesized compound and the compound in urine gave an identical reaction with the test reagent for bilirubin.
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A new echinocandin type antifungal antibiotic, deoxymulundocandin, C48H77N7O15, was isolated from the culture filtrate and mycelia of a fungal culture, Aspergillus sydowii (Bainier and Sartory) Thom and Church var. nov. mulundensis Roy (Culture No. Y-30462). The structure was established by comparative GC-MS analyses of the derivatized acid hydrolysates of deoxymulundocandin and mulundocandin as well as by the high field NMR experiments (COSY, NOESY and DEPT).
Mersacidin (1) is a new peptide antibiotic containing beta-methyllanthionine. It is classified as a member of the proposed lantibiotic group of antibiotics, and is produced by a species of Bacillus. Mersacidin has a molecular weight of 1,824 (C80H120N20O21S4). The antibiotic is active against Gram-positive organisms including methicillin-resistant Staphylococcus aureus, but has no activity against Gram-negative bacteria or fungi.
7-[2-(2-Aminothiazol-4-yl)-2-(Z)-oxyiminoacetamido]-3-[(s ubs tituted-1-pyridinio)methyl]ceph-3-em-4-carboxylates II are a group of beta-lactam antibiotics with extraordinary high antibacterial activity. The promising member of this group, cefpirome (HR 810, II-1) is a candidate for clinical use. Synthetic pathways to II starting from cefotaxime derivatives I or 7-aminocephalosporanic acid (7-ACA) are described. A preferred method for the conversion of I to II or 7-ACA to precursors III respectively employs iodotrimethylsilane and an excess of the pyridine base. Structure-activity studies reveal an optimum overall activity in the series of pyridines with fused saturated and unsaturated rings or cyclopropyl- and alkoxy substituents. Favorable oxyimino substituents are methyl, ethyl, difluoromethyl and carbamoylmethyl groups. Acidic substituents lead to decreased activity against Staphylococcus aureus SG 511. Introduction of halogen in the thiazole nucleus causes improvement of activity against the K1 beta-lactamase producing Klebsiella aerogenes 1082 E strain.
Aranorosin, a new antifungal antibiotic, has been isolated from the culture filtrate and mycelium of a strain of Pseudoarachniotus roseus Kuehn. The antibiotic, C23H33NO6, contains a novel 1-oxaspiro[4,5]decane ring system. The structure (I) has been elucidated on the basis of spectroscopic and chemical analysis.
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A new antibiotic swalpamycin (1) has been isolated from the culture broth of Streptomyces sp. Y-84,30967. The antibiotic has the molecular formula of C37H56O14 and belongs to the class of 16-membered neutral macrolide antibiotics. Its structure has been elucidated by an analysis of its spectral properties. It contains a novel aglycone herein called swalpanolide.
The structure of a new antifungal antibiotic, mulundocandin, C48H77N7O16, was elucidated by high field NMR experiments e.g., homo- and heteronuclear correlation spectra, distortionless enhancement by polarization transfer (DEPT) spectra as well as nuclear Overhauser effect. The compound is a lipopeptide antibiotic belonging to the echinocandin class.
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The synthesis is described of the enantiomerically pure (-)-3-(3,4-dimethoxyphenylethylamino)-2-hydroxypropoxy] phenyl]-cis-crotonic acid nitrile (13b) (free base) and its hydrochloride (13c) (pacrinolol, Hoe 224 A) starting from p-hydroxyacetophenone (1) and racemic epichlorohydrin (2). The p-(2,3-oxidopropoxy)acetophenone (2) resulting from this reaction is C-homologisized to (8); reactions of this with homoveratrylamine (9) leads to (10a), the racemic structural analog of (13b). Resolution of the racemate is achieved by fractional crystallisation of the diastereoisomeric mandelates (13a) and (14a) to afford the enantiomerically pure title compound (13c) and its dextrarotatory optical antipode (14c). Structural confirmation of (13b) and (13c) was achieved through physicochemical and spectroscopic data especially from the 1H-NMR- and MS-spectra. Pacrinolol (13c) is a highly cardioselective beta-sympathicolytic with significant and long acting blood pressure lowering properties (intravenous and oral in the dog).
The metabolites of 1-tert.-butylamino-3-(2-cyclopentylphenoxy)propan-2-ol (penbutolol Betapressin) penbutolol 2-glucuronide, 4'-OH-penbutolol 2-glucuronide, 4'-OH-penbutolol 4'-sulfate and 1''-dehydropenbutolol 2-glucuronide were isolated from the urine of patients, purified by high-performance liquid chromatography and characterised by 1H-NMR and mass spectroscopy. Penbutolol 2-glucuronide and 4'-OH-penbutolol 4'-glucuronide were synthesised in vitro from penbutolol and 4'-OH-penbutolol, respectively, using glucuronyltransferase.