Ferulic acid derivatives with piperazine moiety as potential antiviral agents.

Pest Manag Sci

State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Center for Research and Development of Fine Chemicals, Guizhou University, Guiyang, China.

Published: April 2022

AI Article Synopsis

  • Plant virus diseases pose a significant challenge to crop productivity, resulting in financial losses, leading to the synthesis of 34 new ferulic acid derivatives to find antiviral drugs.
  • Most synthesized compounds showed strong antiviral effects against tobacco mosaic virus (TMV) and cucumber mosaic virus (CMV), with compound E2 showing the best results compared to existing antivirals.
  • The antiviral effectiveness of compound E2 is linked to improved host photosynthesis, as evidenced by tests on chlorophyll content and gene expression, suggesting its potential as a base for developing new antiviral agents.

Article Abstract

Background: Plant virus diseases are difficult to control and severely threaten the productivity of crops, which leads to huge financial losses. To discover the new antiviral drugs, 34 novel ferulic acid derivatives with piperazine moiety were synthesized, and the antiviral activities were systematically screened as well.

Results: Bioassay results indicated that most of the target compounds had outstanding antiviral activities against tobacco mosaic virus (TMV) and cucumber mosaic virus (CMV) in vivo. In particular, compound E2 exhibited remarkable curative activities to TMV and CMV with EC values of 189.0 and 401.7 μg/mL compared to those for ningnanmycin (387.0, 519.3 μg/mL) and ribavirin (542.1, 721.5 μg/mL). And then the mechanisms of compound E2 were studied by chlorophyll content, differentially expressed proteins and genes tests.

Conclusion: The excellent antiviral activity of compound E2 was closely associated with the increase in host photosynthesis, which was confirmed by chlorophyll content, differentially expressed proteins and genes assays. Compound E2 can be considered as a lead structure for the discovery of new antiviral agents. © 2022 Society of Chemical Industry.

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Source
http://dx.doi.org/10.1002/ps.6794DOI Listing

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