Evaluation of Thiazolidine Derivatives with Potential Anti-ZIKV Activity

Author:

Maria Calado Gonçalves Sayonara1,Vieira Galdino Lília1,Costa Lima Morganna2,da Silva Moura José Arion3,Carvalho Francisco Viana Douglas3,Melgarejo da Rosa Michelle1,Gomes Rebello Ferreira Luiz Felipe4,Zaldini Hernandes Marcelo4,Cristiny Pereira Michelly1,Barreto de Melo Rêgo Moacyr Jesus1,da Rocha Pitta Ivan3,de Oliveira França Rafael2,Galdino da Rocha Pitta Marina3,Galdino da Rocha Pitta Maira1

Affiliation:

1. Therapeutic Innovation Research Center, Federal University of Pernambuco, Av. Moraes Rego, 1235, Recife, 50670-901, Brazil

2. Department of Virology and Experimental Therapy, Aggeu Magalhães Institute, Oswaldo Cruz Foundation / FIOCRUZ, Av. Moraes Rego, 1235, Recife, 50670-901, Brazil

3. Pharmaceutical Planning and Synthesis Laboratory, Federal University of Pernambuco Av. Moraes Rego, 1235, Recife, 50670-901, Brazil

4. Department of Pharmaceutical Sciences, Federal University of Pernambuco, Av. Prof. Artur de Sá, Recife-PE, 50740-521, Brazil

Abstract

Objective: In this study, we have synthesized 19 Thiazolidine (TZD) derivatives to investigate their potential anti-ZIKV effects. Methods: Nineteen thiazolidine derivatives were synthesized and evaluated for their cytotoxicity and antiviral activity against the ZIKA virus. Results: Among them, six demonstrated remarkable selectivity against the ZIKV virus, exhibiting IC50 values of <5μM, and the other compounds did not demonstrate selectivity for the virus. Interestingly, several derivatives effectively suppressed the replication of ZIKV RNA copies, with derivatives significantly reducing ZIKV mRNA levels at 24 hours post-infection (hpi). Notably, two derivatives (ZKC-4 and -9) stood out by demonstrating a protective effect against ZIKV cell entry. Informed by computational analysis of binding affinity and intermolecular interactions within the NS5 domain's N-7 and O'2 positions, ZKC-4 and FT-39 displayed the highest predicted affinities. Intriguingly, ZKC-4 and ZKC-9 derivatives exhibited the most favorable predicted binding affinities for the ZIKV-E binding site. Conclusion: The significance of TZDs as potent antiviral agents is underscored by these findings, suggesting that exploring TZD derivatives holds promise for advancing antiviral therapeutic strategies. conclusion: The significance of TZDs as potent antiviral agents is underscored by these findings, suggesting that exploring TZDs derivatives holds promise for advancing antiviral therapeutic strategies.

Publisher

Bentham Science Publishers Ltd.

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