To further study the structure−activity relationship of gossypol, hemigossypol (1) and its derivatives (2−23) were successfully designed via structure simplification and chemically synthesized. The anti-tobacco mosaic virus (TMV), fungicidal, and insecticidal activities of them were tested systematically. Most of these derivatives exhibited excellent anti-TMV activity. Furthermore, these compounds also exhibited broad-spectrum fungicidal activities against 14 kinds of phytopathogenic fungi. In particular, hemigossypol acid lactone (7) was stable in the air. In terms of biological activity, it not only showed anti-TMV activity (inhibitory rates of 70.3, 65.4 and 72.4% at 500 μg/mL for inactivation, curative, and protection activity in vivo, respectively) comparable to ningnanmycin but also exhibited higher insecticidal activity against mosquito larvae (60%/0.25 mg/kg) than the commercial species rotenone. None of hemigossypol and the tested derivatives showed antitumor activities.
Owing to the changing needs of agriculture,
the exploration of
new pest control agents remains as critical as ever. The analogues 3a–3v of the natural product cerbinal
were synthesized from genipin by an efficient and practical method
under additive-free conditions. The antiviral and insecticidal effects
of cerbinal and these cyclopenta[c]pyridines (3a–3v) were evaluated systematically.
Most of the synthesized compounds exhibited higher anti-TMV activities
than the lead compound cerbinal. Compound 3s (2-(4-methoxyphenyl))
had the most promising inhibitory activities against TMV (inactivation
effect 49.0 ± 0.8%, curative effect 41.2 ± 4.3%, and protection
effect 51.5 ± 2.7% at 500 μg/mL). Among the synthesized
compounds, only 3v (2-(2-chloro-4-(trifluoromethoxy)phenyl))
reached the activity level of cerbinal against Plutella
xylostella. This suggested that the cyclopenta[c]pyridines obtained by modifications of cerbinal at position
2 are very significant for the anti-TMV activity, and yet were exceptionally
less active for the insecticidal activities.
The development of antiviral agents with an original structure and noticeable effect is always in great need. Natural products are important lead compounds in the development of new pesticides. Crocin-1 and crocin-2 were effectively isolated from Gardeniae fructus and found to have higher anti-tobacco mosaic virus (TMV) activity levels than ribavirin. A series of the crocetin diester derivatives were synthesized with separated crocetin-1 as material and evaluated for their anti-TMV activities. They could be dissolved in common organic solvents as dichloromethane, ethyl acetate, tetrahydrofuran, and methanol. Compounds 5, 9, 13, 14, and 15 displayed higher activities in vivo than ribavirin. Compound 14 with significantly higher antiviral activities than lead compounds (crocin-1 and crocin-2) emerged as a new antiviral candidate.
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