bioRxiv Science⌕ Search

Biology subjects

Kobal, T.

Publications and source records attributed to Kobal, T..

2 recordsLinked to original sources

Purification and Immunogenicity of Nipah Virus-Like Particles from Insect Cells

Nipah virus (NiV) is an emerging high-fatality zoonotic threat lacking approved vaccines. Current virus-like particle (VLP) production methods rely on costly mammalian cell systems and non-scalable ultracentrifugation purification. We developed an efficient production system for enveloped NiVLPs by co-expressing structural proteins F, G, and M using a baculovirus expression vector system in Sf9 cells. A novel multi-step chromatographic purification process was established using monolith convective media, integrating steric exclusion chromatography with sequential cation and anion exchange steps. Purified NiVLPs were characterized by nanoparticle tracking analysis and transmission electron microscopy, then evaluated for immunogenicity in Syrian golden hamsters. The optimized process yielded enveloped particles of approximately 100-120 nm that morphologically resemble native NiV virions. A single 25 g NiVLP dose induced robust systemic anti-NiV G IgG responses within 14 days, demonstrating rapid immunogenicity suitable for outbreak response. However, neutralizing antibody titers against NiV remained limited compared to total IgG responses. This study establishes the first chromatography-based manufacturing platform for morphologically correct NiVLPs from insect cells. A deeper understanding of the immunity generated is needed to support their potential as a rapidly deployable vaccine platform against NiV.

bioengineering↗

First-Year Dynamics of the Anaerobic Microbiome and Archaeome in Infants Oral and Gastrointestinal Systems

Recent research provides new insights into the early establishment of the infant gut microbiome, emphasizing the influence of breastfeeding on the development of gastrointestinal (GIT) microbiomes. In our study, we longitudinally examined the taxonomic and functional dynamics of the oral and GIT microbiomes of healthy infants (n=30) in their first year, focusing on the often over-looked aspects, the development of archaeal and anaerobic microbiomes. Breastfed (BF) infants exhibit a more defined transitional phase in their oral microbiome compared to non-breastfed (NBF) infants, marked by a decrease in Streptococcus and the emergence of anaerobic genera such as Granulicatella. This phase, characterized by increased alpha diversity and significant changes in beta diversity, occurs earlier in NBF infants (months 1-3) than in BF infants (months 4-6), suggesting that breastfeeding supports later, more defined microbiome maturation. We demonstrated the presence of archaea in the infant oral cavity and GIT microbiome from early infancy, with Methanobrevibacter being the predominant genus. Still, transient patterns show that no stable archaeome is formed. The GIT microbiome exhibited gradual development, with BF infants showing increased diversity and complexity between months 3 and 8, marked by anaerobic microbial networks. NBF infants displayed complex microbial co-occurrence patterns from the start. Those strong differences between BF and NBF infants GIT microbiomes are less pronounced on functional levels than on taxonomic level. Overall, the infant microbiome differentiates and stabilizes over the first year, with breastfeeding playing a crucial role in shaping anaerobic microbial networks and overall microbiome maturation.

microbiology↗