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Chemically Defined, High-Density Insect Cell-Based Expression System for Scalable AAV Vector Production. | LitMetric

AI Article Synopsis

  • The recombinant adeno-associated virus (AAV) vector is popular in gene therapy because of its effectiveness and low toxicity, but large-scale production remains a challenge.
  • The study presents a method using the ExpiSf Baculovirus Expression System, which enhances AAV production to about 19 times the yield compared to traditional methods with Sf9 cells.
  • Despite the significant increase in production, testing in mice showed that AAV vectors produced in ExpiSf9 cells had similar efficiency and distribution as those from the conventional system, making it promising for clinical use.

Article Abstract

The recombinant adeno-associated virus (AAV) vector is one of the most utilized viral vectors in gene therapy due to its robust, long-term transgene expression and low toxicity. One major hurdle for clinical AAV applications is large-scale manufacturing. In this regard, the baculovirus-based AAV production system is highly attractive due to its scalability and predictable biosafety. Here, we describe a simple method to improve the baculovirus-based AAV production using the ExpiSf Baculovirus Expression System with a chemically defined medium for suspension culture of high-density ExpiSf9 cells. Baculovirus-infected ExpiSf9 cells produced up to 5 × 10 genome copies of highly purified AAV vectors per 1 mL of suspension culture, which is up to a 19-fold higher yield than the titers we obtained from the conventional Sf9 cell-based system. When mice were administered the same dose of AAV vectors, we saw comparable transduction efficiency and biodistributions between the vectors made in ExpiSf9 and Sf9 cells. Thus, the ExpiSf Baculovirus Expression System would support facile and scalable AAV manufacturing amenable for preclinical and clinical applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7591331PMC
http://dx.doi.org/10.1016/j.omtm.2020.09.018DOI Listing

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