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Hybrid thiolated polyacrylic acid and Schizochytrium sp-based particles: Synthesis, characterization, and initial evaluation as antigen delivery vehicles

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dc.contributor PALESTINO GABRIELA;0000-0002-7535-9363 es_MX
dc.contributor Sergio Rosales-Mendoza;0000-0003-2569-7329 es_MX
dc.contributor.advisor Palestino Escobedo, Alma Gabriela es_MX
dc.contributor.advisor Rosales Mendoza, Sergio es_MX
dc.contributor.author García Silva, Ileana Alejandra es_MX
dc.coverage.spatial México. San Luis Potosí. San Luis Potosí es_MX
dc.creator Ileana García-Silva;0000-0002-0904-868X es_MX
dc.date.accessioned 2025-03-21T17:25:39Z
dc.date.available 2025-03-21T17:25:39Z
dc.date.issued 2024-10-14
dc.identifier.uri https://repositorioinstitucional.uaslp.mx/xmlui/handle/i/9315
dc.identifier.uri https://doi.org/10.3390/pharmaceutics16070891
dc.description.abstract The development of safe and effective vaccines is key to public health. However, emerging diseases such as Ebola, COVID-19, Malaria, and Zika require innovative approaches. Vaccines activate the adaptive immune system through the innate response, enabling antigen presentation to lymphocytes and a long-lasting immune reaction. Conventional vaccines (attenuated or inactivated) generate strong immune responses but may pose risks for pregnant and immunocompromised individuals. While subunit vaccines are safer, they require adjuvants to enhance their immunogenicity. Adjuvants can be immunostimulants or delivery systems, such as polymeric nanoparticles, which optimize antigen presentation and vaccine stability. Natural and synthetic polymers, such as PLGA and PAA, are used in delivery systems due to their biocompatibility. Functionalization with thiol groups has improved immune cell uptake and mucosal adhesion. This study developed thiolated PAA/Schizo hybrid particles by combining PAA with the cell wall fraction of the microalga Schizochytrium sp., evaluating them as carriers for the SARS-CoV-2 RBD antigen. The COVID-19 pandemic highlighted the urgency of developing fast and safe vaccines. Although platforms such as DNA, RNA, and viral vectors were approved in record time, the emergence of new variants justifies continued research. Nanotechnology has driven the design of nanoparticles with enhanced properties. Combining synthetic polymers with Schizochytrium sp. cell walls offers an innovative approach to creating biocompatible materials that function as both adjuvants and antigen delivery systems. es_MX
dc.description.sponsorship Consejo Nacional de Humanidades, Ciencias y Tecnologías (CONAHCYT)/México (grant CB2017-2018 A1-S-31287 to G.P. and 848290 to S.R.-M.). es_MX
dc.description.statementofresponsibility Investigadores es_MX
dc.description.statementofresponsibility Estudiantes es_MX
dc.language Inglés es_MX
dc.publisher Interdependencias es_MX
dc.relation.ispartof REPOSITORIO NACIONAL CONACYT es_MX
dc.relation.requires Synthesis and Characterization of Thiolated Nanoparticles Based on Poly (Acrylic Acid) and Algal Cell Wall Biopolymers for the Delivery of the Receptor Binding Domain from SARS-CoV-2. 2024. Article. MDPI. es_MX
dc.rights Acceso Abierto es_MX
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0 es_MX
dc.subject Tiomero es_MX
dc.subject adyuvante es_MX
dc.subject mucoadhesion es_MX
dc.subject biopolímero es_MX
dc.subject thiomer es_MX
dc.subject adjuvant es_MX
dc.subject mucoadhesion es_MX
dc.subject biopolymer es_MX
dc.subject.other BIOLOGÍA Y QUIMICA es_MX
dc.title Hybrid thiolated polyacrylic acid and Schizochytrium sp-based particles: Synthesis, characterization, and initial evaluation as antigen delivery vehicles es_MX
dc.type Tesis de doctorado es_MX
dc.degree.name Doctorado Institucional en Ingeniería y Ciencia de Materiales es_MX
dc.degree.department Facultad de Ciencias Químicas es_MX


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