| Literature DB >> 28860488 |
Jean-François Gélinas1, Lee A Davies1,2, Deborah R Gill1,2, Stephen C Hyde3,4.
Abstract
The development of lentiviral-based therapeutics is challenged by the high cost of current Good Manufacturing Practices (cGMP) production. Lentiviruses are enveloped viruses that capture a portion of the host cell membrane during budding, which then constitutes part of the virus particle. This process might lead to lipid and protein depletion in the cell membrane and affect cell viability. Furthermore, growth in suspension also causes stresses that can affect virus production yields. To assess the impact of these issues, selected supplements (Cholesterol Lipid Concentrate, Chemically Defined Lipid Concentrate, Lipid Mixture 1, Gelatin Peptone N3, N-Acetyl-L-Cysteine and Pluronic F-68) were assayed in order to improve production yields in a transient transfection production of a Sendai virus F/HN-pseudotyped HIV-1-based third generation lentiviral vector in FreeStyle 293 (serum-free media) in suspension. None of the supplements tested had a significant positive impact on lentiviral vector yields, but small non-significant improvements could be combined to increase vector production in a cell line where other conditions have been optimised.Entities:
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Year: 2017 PMID: 28860488 PMCID: PMC5579034 DOI: 10.1038/s41598-017-07893-3
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic representation of the different transient transfection, production and titration protocols for lentiviral vectors produced in flasks. In both cases, Human Embryonic Kidney 293T cells (HEK 293T) were transiently transfected with a ‘transfection mix’ of the five plasmids required for virus production complexed with polyethylenimine (PEI). (A) In the multiple independent transfections strategy, cells were split into the required number of replicates prior to transfection and the ‘transfection mixes’ were prepared independently for each flask. Media change was performed after 24 hours including the addition of sodium butyrate. (B) In the single-flask transfection strategy, the cells were split after transient transfection into the required number of replicates. Media change and sodium butyrate addition were performed after 24 hours and, if appropriate, the assayed supplement added at this point. (A and B) After an additional 48 hours of incubation, the production was harvested by centrifugation and the supernatant filtered. A sample of the filtrate was used for transduction in a 12 well plate seeded with HEK 293T in media containing hexadimethrine bromide (polybrene) After a 72-hour incubation, the titre was determined by flow cytometry.
Figure 2Lentiviral vector production yields for the multiple independent transfections strategy flask and the single-flask transfection strategy. Individual rHIV.F/HN CMV- EGFPLux yields from flasks containing non-supplemented medium from (A) multiple independent transfections strategy (12 independent 125 mL flasks at 1 × 106 HEK 293T cells/mL in 20 mL) where cells were transfected with independently prepared ‘transfection mixes’ necessary to produce rHIV.F/HN CMV- EGFPLux, or (B) single-flask transfection strategy where HEK 293T cells (1 × 106 cells/mL in a 1000 mL flask) were transfected with the five plasmids necessary to produce rHIV.F/HN CMV- EGFPLux and subsequently divided into 12 separate 20 mL cultures in 125 mL flasks. Titres were measured by flow cytometry (flow cytometry transducing units: FTU/mL). The dashed lines show the average titre for all flasks for each strategy.
Figure 3Lentiviral vector titres following lipid medium supplementation. Yields of rHIV.F/HN CMV- EGFPLux in non-supplemented medium (dark green) or medium supplemented (yellow) with (A) Cholesterol Lipid Concentrate, (B) Chemically Defined Lipid Concentrate or (C) Lipid Mixture 1, (D) Gelatin Peptone N3, (E) N-acetyl-cysteine, or (F) Pluronic F-68. Titres were measured by flow cytometry and are shown relative to non-supplemented values. Bars represent the mean of triplicate production studies ± standard error of the mean. There were no statistically significant differences between group means as determined by one-way ANOVA, except in (E): (A) F(3,8) = 3.798, p = 0.0582, (B) F(3,8) = 1.025, p = 0.4315, (C) F(3,8) = 1.230, p = 0.3606), (D) F(3,8) = 1.113, p = 0.3993, (E) F(3,8) = 11.04, p = 0.0032 and (F) F(3,8) = 1.621, p = 0.2598, followed, if appropriate, by Dunnett’s post-test. A calculated p value of > 0.05 was deemed non-significant as indicated with ns on charts. A calculated p value of < 0.05 was deemed a significant difference as indicated with one star (*) on charts.