Chemometrics and analytical blank on the at-line monitoring of Zika-VLP production using near-infrared spectroscopy
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DC Field | Value | Language |
---|---|---|
dc.contributor | (LABV) Lab. Biotecnologia Viral | pt_BR |
dc.contributor.author | Rabello, Júlia Públio | pt_BR |
dc.contributor.author | Cavalcante, Paulo Eduardo da Silva | pt_BR |
dc.contributor.author | Leme, Jaci | pt_BR |
dc.contributor.author | Guardalini, Luis Giovani Oliveira | pt_BR |
dc.contributor.author | Bernardino, Thaissa Consoni | pt_BR |
dc.contributor.author | Jorge, Soraia Attie Calil | pt_BR |
dc.date.accessioned | 2024-10-09T17:56:40Z | - |
dc.date.available | 2024-10-09T17:56:40Z | - |
dc.date.issued | 2024 | pt_BR |
dc.identifier.uri | https://repositorio.butantan.gov.br/handle/butantan/5492 | - |
dc.description.abstract | The Zika disease caused by the Zika virus was declared a Public Health Emergency by the World Health Union (WHO), with microcephaly as the most critical consequence. Aiming to reduce the spread of the virus, biopharmaceutical organizations invest in vaccine research and production, based on multiple platforms. A crescent vaccine production approach is based on virus-like particles (VLP), for not having genetic material in its composition, hypoallergenic and non-mutant character. For bioprocess, it is essential to have means of real-time monitoring, which can be assessed using process analysis techniques such as Near-infrared (NIR) spectroscopy, that can be combined with chemometric methods, like Partial-Least Squares (PLS) and Artificial Neural Networks (ANN) for prediction of biochemical variables. This work proposes a biochemical Zika VLP upstream production at-line monitoring model using NIR spectroscopy comparing sampling conditions (with or without cells), analytical blank (air, ultrapure water), and spectra pre-processing approaches. Seven experiments in a benchtop bioreactor using recombinant baculovirus/Sf9 insect cell platform in serum-free medium were performed to obtain biochemical and spectral data for chemometrics modeling (PLS and ANN), composed by a random data split (80 % calibration, 20 % validation) for cross-validation of the PLS models and 70 % training, 15 % testing, 15 % validation for ANN. The best models generated in the present work presented an average absolute error of 1.59 × 105 cell/mL for density of viable cells, 2.37 % for cell viability, 0.25 g/L for glucose, 0.007 g/L for lactate, 0.138 g/L for glutamine, 0.18 g/L for glutamate, 0,003 g/L for ammonium, and 0.014 g/L for potassium. | pt_BR |
dc.description.sponsorship | (FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo | pt_BR |
dc.description.sponsorship | Fundação Butantan | pt_BR |
dc.format.extent | 125217 | pt_BR |
dc.language.iso | English | pt_BR |
dc.relation.ispartof | Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | pt_BR |
dc.rights | Restricted access | pt_BR |
dc.title | Chemometrics and analytical blank on the at-line monitoring of Zika-VLP production using near-infrared spectroscopy | pt_BR |
dc.type | Article | pt_BR |
dc.identifier.doi | 10.1016/j.saa.2024.125217 | pt_BR |
dc.identifier.url | https://doi.org/10.1016/j.saa.2024.125217 | pt_BR |
dc.contributor.external | (USP) Universidade de São Paulo | pt_BR |
dc.contributor.external | Astro34 | pt_BR |
dc.identifier.citationvolume | 326 | pt_BR |
dc.subject.keyword | artificial neural networks | pt_BR |
dc.subject.keyword | Bbioprocess monitoring | pt_BR |
dc.subject.keyword | near-infrared spectroscopy | pt_BR |
dc.subject.keyword | partial-least squares | pt_BR |
dc.subject.keyword | recombinant baculovirus | pt_BR |
dc.subject.keyword | Sf9 insect cell | pt_BR |
dc.subject.keyword | virus-like particles | pt_BR |
dc.subject.keyword | Zika virus | pt_BR |
dc.relation.ispartofabbreviated | Spectroc Acta Pt A-Molec Biomolec Spectr | pt_BR |
dc.identifier.citationabnt | v. 326, 125217, out. 2024 | pt_BR |
dc.identifier.citationvancouver | 2024 Oct; 326:125217 | pt_BR |
dc.contributor.butantan | Leme, Jaci|:Técnico|:(LABV) Lab. Biotecnologia Viral | pt_BR |
dc.contributor.butantan | Guardalini, Luis Giovani Oliveira|:Técnico|:(LABV) Lab. Biotecnologia Viral | pt_BR |
dc.contributor.butantan | Bernardino, Thaissa Consoni|:Técnico|:(LABV) Lab. Biotecnologia Viral | pt_BR |
dc.contributor.butantan | Jorge, Soraia Attie Calil|:Pesquisador|:(LABV) Lab. Biotecnologia Viral|:Curso de Especialização em Biotecnologia para Saúde – Vacinas e Biofármacos | pt_BR |
dc.sponsorship.butantan | (FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2022/02713-3 | pt_BR |
dc.sponsorship.butantan | (FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2023/09463-5 | pt_BR |
dc.sponsorship.butantan | Fundação Butantan¦¦ | pt_BR |
dc.identifier.bvscc | BR78.1 | pt_BR |
dc.identifier.bvsdb | IBProd | pt_BR |
dc.description.dbindexed | Yes | pt_BR |
item.openairetype | Article | - |
item.fulltext | Sem Texto completo | - |
item.languageiso639-1 | English | - |
item.grantfulltext | none | - |
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crisitem.author.orcid | #PLACEHOLDER_PARENT_METADATA_VALUE# | - |
crisitem.author.orcid | 0000-0001-9380-1023 | - |
crisitem.author.parentorg | #PLACEHOLDER_PARENT_METADATA_VALUE# | - |
crisitem.author.parentorg | #PLACEHOLDER_PARENT_METADATA_VALUE# | - |
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