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Augmenting the immune response against a stabilized HIV-1 Clade C envelope trimer by silica nanoparticle delivery

Title: Augmenting the immune response against a stabilized HIV-1 Clade C envelope trimer by silica nanoparticle delivery
Authors: Peterhoff, D.; Thalhauser, S.; Sobczak, J.M.; Mohsen, M.O.; Voigt, C.; Seifert, N.; Neckermann, P.; Hauser, A.; Ding, S.; Sattentau, Q.; Bachmann, M.F.; Breunig, M.; Wagner, R.
Publisher Information: MDPI
Publication Year: 2021
Collection: Max-Delbrueck-Center for Molecular Medicine, Berlin: MDC Repository
Description: The delivery of HIV-1 envelope (Env) trimer-based immunogens on the surface of nanoparticles holds promise to promote immunogenicity with the aim of inducing a potent, durable and broad neutralizing antibody (bnAb) response. Towards that goal, we examined the covalent conjugation of Env to 100 nm and 200 nm silica nanoparticles (SiNPs) to optimize conjugation density and attachment stability. Env was redesigned to enable site-specific cysteine-mediated covalent conjugation while maintaining its structural integrity and antigenicity. Env was anchored to different sized SiNPs with a calculated spacing of 15 nm between adjacent trimers. Both particle sizes exhibited high in vitro stability over a seven-day period. After attachment, 100 nm particles showed better colloidal stability compared to 200 nm particles. Importantly, the antigenic profile of Env was not impaired by surface attachment, indicating that the quaternary structure was maintained. In vitro Env uptake by dendritic cells was significantly enhanced when Env was delivered on the surface of nanoparticles compared to soluble Env. Furthermore, multivalent Env displayed efficiently activated B cells even at Env concentrations in the low nanomolar range. In mice, antibody responses to nanoparticle-coupled Env were stronger compared to the free protein and had equivalent effects at lower doses and without adjuvant.
Document Type: article in journal/newspaper
File Description: application/pdf; other
Language: English
Relation: https://edoc.mdc-berlin.de/id/eprint/22327/1/22327oa.pdf; https://edoc.mdc-berlin.de/id/eprint/22327/2/22327suppl.zip; Augmenting the immune response against a stabilized HIV-1 Clade C envelope trimer by silica nanoparticle delivery. Peterhoff, D., Thalhauser, S., Sobczak, J.M., Mohsen, M.O., Voigt, C., Seifert, N., Neckermann, P., Hauser, A., Ding, S., Sattentau, Q., Bachmann, M.F., Breunig, M. and Wagner, R. Vaccines 9 (6): 642. 11 June 2021; PMID:34208059; https://doi.org/10.3390/vaccines9060642
DOI: 10.3390/vaccines9060642
Availability: https://edoc.mdc-berlin.de/id/eprint/22327/; https://edoc.mdc-berlin.de/22327/; https://doi.org/10.3390/vaccines9060642
Rights: cc_by_4
Accession Number: edsbas.1AFC62F5
Database: BASE