Compounds related to pethidine--II. Mannich bases derived from various esters of 4-carboxy-4-phenylpiperidine and acetophenones.
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[reaction: see text] Dioxiranes made in situ from the commercially available tetrafluoroacetophenones (7, 8) and pentafluoroacetophenone (9) are reported for highly efficient epoxidation of olefins for the first time. Studies showed that ketone 7, 8, or 9 can be used in catalytic amount (0.2 equiv) with only 0.6 equiv of Oxone (equal to 1.2 equiv of peroxymonosulfate) to selectively oxidize diene 1 to epoxide 2. The epoxidation reactions of dioxiranes of fluoroacetophenones are compared with the recently described complementary aliphatic acyclic fluorinated ketones.
Mannich bases, namely 1-aryl-3-dimethylamino-1-propanone hydrochlorides (Ia-f) as mono-Mannich bases (series I), bis(beta-aroylethyl)ethylamine hydrochlorides (IIa, IIb, IId, IIe) as bis-Mannich bases (series II), 3-aroyl-4-aryl-1-ethyl-4-piperidinol hydrochlorides (series III), which are structural isomers of bis derivatives and some representative quaternary salts (Ig, IIIf, IIIg), were synthesized to investigate the effect of chemical structure and ring substituents on cytotoxic activity in Jurkat cells. Stability studies of some representative compounds have also been realised. Compounds IIb, IId, IIe, and IIIe were reported for the first time. Id-g, IIa, IId, IIe, IIIf,g were 1.25-6.55 times more potent than 5-fluorouracil (CAS 51-21-8). However, the cytotoxic activity of the most potent compounds. Ig and IIIf, were one fifth of that of melphalan (CAS 148-82-3). The formation of compound IV during the stability studies of Ig, IIa, and IIIf suggested that they may be thiol alkylators. Bis-Mannich base IIa in nonsubstituted derivatives, piperidinol derivative IIIb in methyl substituted compounds, mono derivative Id in chloro substituted compounds were the most potent compounds when the cytotoxicity of the compound series which have the same substituents in benzene ring are compared. Replacement of the benzene with thiophene improved the cytotoxicity in both series I and II. Quaternization procedure also increased the cytotoxicity in both series I and III. Quaternary derivatives seem to be promising compounds for further studies to develop new anticancer drugs.
1-Aryl-3-dimethylamino-1-propanone hydrochlorides Ia-f (series I) as mono-Mannich bases bis(beta-aroylethyl)ethylamine hydrochlorides IIa, IIb, IId, IIe (series II) as bis-Mannich bases, 3-aroyl-4-aryl-1-ethyl-4-piperidinol hydrochlorides (structural isomer of bis derivatives IIIa-e, series III), and some of their representative quaternary salts (Ig, IIIf, IIIg) were synthesized. Antimicrobial activities of the compounds were evaluated against some bacteria and fungi. Series I and III showed antimicrobial activity against gram positive bacteria. All series demonstrated activity against fungi, however, they generally did not affect gram negative bacteria at the concentration range tested (2-64 micrograms/ml). Quaternisation procedure improved the bioactivity in compound IIIa for antibacterial activity and in compounds IIIa and IIIb for antifungal activity against Trichophyton rubrum and Mycosporium canis. There was no relationship between Hammett values of the aryl substituents and bioactivities in series III. The mono-Mannich bases of series I had better antimicrobial activities than bis-Mannich bases of series II. Compounds Ia, If, IIId had equal and compounds If and IIIf had higher antibacterial activities compared to the reference drug, streptomycin (CAS 57-92-1), against various gram positive bacteria. On the other hand, compounds Ia, IIIa, IIIc, IIIe, IIIf, and IIIg had equal and If, IIId, IIIf, IIIg had higher antifungal activity compared to the reference drug, amphotericin-B (CAS 1397-89-3), against various fungi. To conclude, the compounds of series III, having both marked antifungal and antibacterial activities, may serve as candidate compounds for further studies. Especially compound IIIf may serve as a model compound to develop new agents against dermatophytes.
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BACKGROUND: Active oxygen radicals as well as a variety of cytosolic protein tyrosine kinases play a role in the regulation of prostaglandin E(2) (PGE(2)), a key inflammatory mediator, released by skin cells in response to irradiation with ultraviolet B light (UVB). Identification of chemical compounds that can interrupt such events may provide a basis for the development of potent anti-inflammatory agents. OBJECTIVE: To investigate the effect of a novel genistein analog, 2,4, 6-trihydroxy-alpha-p-methoxyphenylacetophenone, with antioxidant property (compound D-58), on UVB-induced inflammatory responses. METHODS: Epidermal cell cultures were irradiated with UVB both in the presence and absence of compound D-58 and the PGE(2) released in the medium was determined by ELISA. For in vivo studies, skin inflammation was induced in mice either by carrageenan challenge of the air pouch or by an acute exposure of skin to UVB radiation. The resulting inflammatory mediator release, skin edema and the histological changes of the skin were determined both in the presence and absence of compound D-58. RESULTS: Compound D-58 treatment effectively inhibited the development of edema and histological changes in the skin of UVB-irradiated mice as well as the release of PGE(2) in vitro as well as in vivo. CONCLUSION: Compound D-58 (2,4,6-trihydroxy-alpha-p-methoxyphenylacetophenone) has potent anti-inflammatory properties.
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The synthesis of benzopyranic simplified analogues of dibenzopyranic natural compounds is described, together with the access to a precursor of a new furobenzopyranic natural product. These natural products have anti-cancer activity. The 1,3-diacetoxy-2-acetyl-4-(3-hydroxy-3-methylbut-1-enyl)benzene synthone is used as a common precursor to these structures.
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