| Literature DB >> 24942228 |
Eutimio Gustavo Fernández Núñez1,2, Jaci Leme3, Letícia de Almeida Parizotto4, Alexandre Gonçalves de Rezende5, Bruno Labate Vale da Costa6, Vera Lucia Lopes Boldorini5, Soraia Attie Calil Jorge5, Renato Mancini Astray5, Carlos Augusto Pereira4,5, Celso Pereira Caricati3, Aldo Tonso4.
Abstract
Mammalian cells are the most frequently used hosts for biopharmaceutical proteins manufacturing. Inoculum quality is a key element for establishing an efficient bioconversion process. The main objective in inoculation expansion process is to generate large volume of viable cells in the shortest time. The aim of this paper was to optimize the inoculum preparation stage of baby hamster kidney (BHK)-21 cells for suspension cultures in benchtop bioreactors, by means of a combination of static and agitated culture systems. Critical parameters for static (liquid column height: 5, 10, 15 mm) and agitated (working volume: 35, 50, 65 mL, inoculum volume percentage: 10, 30 % and agitation speed: 25, 60 rpm) cultures were study in T-flask and spinner flask, respectively. The optimal liquid column height was 5 mm for static culture. The maximum viable cell concentration in spinner flask cultures was reached with 50 mL working volume and the inoculum volume percentage was not significant in the range under study (10-30 %) at 25 rpm agitation. Agitation speed at 60 rpm did not change the main kinetic parameters with respect to those observed for 25 rpm. These results allowed for a schedule to produce more than 4 × 10(9) BHK-21 cells from 4 × 10(6) cells in 13 day with 1,051 mL culture medium.Entities:
Keywords: BHK-21; Bioreactor; Inoculum preparation; Mammalian cells; Spinner flask; Static cell culture; Suspension cell culture
Year: 2014 PMID: 24942228 PMCID: PMC4698255 DOI: 10.1007/s10616-014-9756-6
Source DB: PubMed Journal: Cytotechnology ISSN: 0920-9069 Impact factor: 2.058