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Triphenylphosphine gold(I) derivatives promote antiviral effects against the Chikungunya virus

dc.contributor.authorAires, Rochanna L.
dc.contributor.authorSantos, Igor A.
dc.contributor.authorFontes, Josielle
dc.contributor.authorBergamini, Fernando R. G.
dc.contributor.authorJardim, Ana Carolina G. [UNESP]
dc.contributor.authorAbbehausen, Camilla
dc.contributor.institutionUniversidade Estadual de Campinas (UNICAMP)
dc.contributor.institutionUniversidade Federal de Uberlândia (UFU)
dc.contributor.institutionMax Planck Inst Polymer Res
dc.contributor.institutionUniversidade Estadual Paulista (UNESP)
dc.date.accessioned2022-11-30T13:41:12Z
dc.date.available2022-11-30T13:41:12Z
dc.date.issued2022-08-10
dc.description.abstractHerein a systematic series of four [AuLL'](n+) n = 0, +1 complexes, where L = 1,3-bis(mesityl)imidazole-2-ylidene (IMes), or triphenylphosphine (PPh3), and L' = chloride, or 4-dimethylaminopyridine (DMAP), had their in vitro antiviral activity assessed against Chikungunya virus (CHIKV). The PPh3 derivatives inhibited viral replication by 99%, whereas the IMes derivatives about 50%. The lipophilicity of the PPh3 derivatives is higher than the IMes-bearing compounds, which can be related to their more prominent antiviral activities. The dissociation of DMAP is faster than chloride in solution for both IMes and PPh3 derivatives; however, it does not significantly affect their in vitro activities, showing a higher dependence on the nature of L rather than L' towards their antiviral effects. All complexes bind to N-acetyl-L-cysteine, with the Ph3P-bearing complexes coordinating at a faster rate to this amino acid. The binding constants to bovine serum albumin are in the order of 10(4), slightly higher for the DMAP complexes in both PPh3 and IMes derivatives. Mechanistic investigations of the PPh3 complexes showed a ubiquitous protective effect of the compounds in the pretreatment, early stages, and post-entry assays. The most significant inhibition was observed in post-entry activity, in which the complexes blocked viral replication in 99%, followed by up to 95% inhibition of the early stages of infection. Pretreatment assays showed a 92% and 80% replication decrease for the chloride and DMAP derivatives, respectively. dsRNA binding assays showed a significant interaction of the compounds with dsRNA, an essential biomolecule to viral replication.en
dc.description.affiliationUniv Estadual Campinas, Inst Chem, UNICAMP, BR-13083871 Campinas, SP, Brazil
dc.description.affiliationUniv Fed Uberlandia, Inst Biomed Sci, BR-38405302 Uberlandia, MG, Brazil
dc.description.affiliationUniv Fed Uberlandia, Inst Chem, Lab Synth Bioinspired Mol, BR-38408100 Uberlandia, MG, Brazil
dc.description.affiliationMax Planck Inst Polymer Res, Ackermannweg 10, D-55128 Mainz, Germany
dc.description.affiliationSao Paulo State Univ, Inst Biosci Humanities & Exact Sci Ibilce, UNESP, Campus Sao Jose do Rio Preto, BR-15054000 Sao Jose Do Rio Preto, SP, Brazil
dc.description.affiliationUnespSao Paulo State Univ, Inst Biosci Humanities & Exact Sci Ibilce, UNESP, Campus Sao Jose do Rio Preto, BR-15054000 Sao Jose Do Rio Preto, SP, Brazil
dc.description.sponsorshipConselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
dc.description.sponsorshipCoordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
dc.description.sponsorshipFundação de Amparo à Pesquisa do Estado de Minas Gerais (FAPEMIG)
dc.description.sponsorshipFundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
dc.description.sponsorshipIdCNPq: 142495/2020-4
dc.description.sponsorshipIdCAPES: 88881.506794/2020-01
dc.description.sponsorshipIdFAPEMIG: APQ-01613-21
dc.description.sponsorshipIdCNPq: 200829/2020-3
dc.description.sponsorshipIdFAPEMIG: APQ-03385-18
dc.description.sponsorshipIdFAPESP: 2019/16904-2
dc.description.sponsorshipIdCNPq: 406444/2018-8
dc.description.sponsorshipIdCAPES: 88887372957/2019-00
dc.description.sponsorshipIdCAPES: 88887373256/2019-00
dc.format.extent12
dc.identifierhttp://dx.doi.org/10.1093/mtomcs/mfac056
dc.identifier.citationMetallomics. Oxford: Oxford Univ Press, v. 14, n. 8, 12 p., 2022.
dc.identifier.doi10.1093/mtomcs/mfac056
dc.identifier.issn1756-5901
dc.identifier.urihttp://hdl.handle.net/11449/237661
dc.identifier.wosWOS:000838808400001
dc.language.isoeng
dc.publisherOxford Univ Press
dc.relation.ispartofMetallomics
dc.sourceWeb of Science
dc.subjectChikungunya
dc.subjectGold
dc.subjectMetallodrugs
dc.subjectAntivirals
dc.titleTriphenylphosphine gold(I) derivatives promote antiviral effects against the Chikungunya virusen
dc.typeArtigopt
dcterms.licensehttp://www.oxfordjournals.org/access_purchase/self-archiving_policyb.html
dcterms.rightsHolderOxford Univ Press
dspace.entity.typePublication
unesp.author.orcid0000-0002-8410-2252[6]
unesp.campusUniversidade Estadual Paulista (UNESP), Instituto de Biociências, Letras e Ciências Exatas, São José do Rio Pretopt

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