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Cytokines as fast indicator of infectious virus titer during process development.

Authors :
Bacher, Johanna
Lali, Narges
Steiner, Florian
Jungbauer, Alois
Source :
Journal of Biotechnology. Mar2024, Vol. 383, p55-63. 9p.
Publication Year :
2024

Abstract

Measuring infectious titer is the most time-consuming method during the production and process development of live viruses. Conventionally, it is done by measuring the tissue culture infectious dose (TCID50) or plaque forming units (pfu) in cell-based assays. Such assays require a time span of more than a week to the readout and significantly slow down process development. In this study, we utilized the pro-inflammatory cytokine response of a Vero production cell line to a recombinant measles vaccine virus (MVV) as model system for rapidly determining infectious virus titer within several hours after infection instead of one week. Cytokines are immunostimulatory proteins contributing to the first line of defence against virus infection. The probed cytokines in this study were MCP-1 and RANTES, which are secreted in a virus dose as well as time dependent manner and correlate to TCID50 over a concentration range of several logarithmic levels with R2 = 0.86 and R2 = 0.83, respectively. Furthermore, the pro-inflammatory cytokine response of the cells was specific for infectious virus particles and not evoked with filtered virus seed. We also discovered that individual cytokine candidates may be more suitable for off- or at-line analysis, depending on the secretion profile as well as their sensitivity towards changing process conditions. Furthermore, the method can be applied to follow a purification procedure and is therefore suited for process development and control. • MCP-1 and RANTES are fast surrogate predictors for TCID50. • Infectious virus titer can be measured 18 and 72 hours post infection through pro-inflammatory cytokine response instead of one week. • They can be directly measured during virus production from the bioreactor. • Cytokines correlate with infectious virus over several log TCID50/mL. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01681656
Volume :
383
Database :
Academic Search Index
Journal :
Journal of Biotechnology
Publication Type :
Academic Journal
Accession number :
175871123
Full Text :
https://doi.org/10.1016/j.jbiotec.2024.01.016