Comprehensive Comparison of Baculoviral and Plasmid Gene Delivery in Mammalian Cells

Viruses. 2024 Mar 10;16(3):426. doi: 10.3390/v16030426.

Abstract

(1) Recombinant protein production in mammalian cells is either based on transient transfection processes, often inefficient and underlying high batch-to-batch variability, or on laborious generation of stable cell lines. Alternatively, BacMam, a transduction process using the baculovirus, can be employed. (2) Six transfecting agents were compared to baculovirus transduction in terms of transient and stable protein expression characteristics of the model protein ACE2-eGFP using HEK293-6E, CHO-K1, and Vero cell lines. Furthermore, process optimization such as expression enhancement using sodium butyrate and TSA or baculovirus purification was assessed. (3) Baculovirus transduction efficiency was superior to all transfection agents for all cell lines. Transduced protein expression was moderate, but an 18-fold expression increase was achieved using the enhancer sodium butyrate. Ultracentrifugation of baculovirus from a 3.5 L bioreactor significantly improved the transduction efficiency and protein expression. Stable cell lines were obtained with each baculovirus transduction, yet stable cell line generation after transfection was highly unreliable. (4) This study demonstrated the superiority of the BacMam platform to standard transfections. The baculovirus efficiently transduced an array of cell lines both transiently and stably and achieved the highest efficiency for all tested cell lines. The feasibility of the scale-up of baculovirus production was demonstrated and the possibility of baculovirus purification was successfully explored.

Keywords: BacMam; baculovirus; expression enhancement; protein production; stable cell lines; transduction; transfection.

MeSH terms

  • Animals
  • Baculoviridae* / genetics
  • Baculoviridae* / metabolism
  • Butyric Acid
  • Genetic Vectors* / genetics
  • HEK293 Cells
  • Humans
  • Mammals
  • Plasmids / genetics

Substances

  • Butyric Acid