White Paper

Formulation And Production Of A Blood‐Free And Chemically Defined Virus Production Media For VERO Cells

Source: InVitria
vial syringe vaccine iStock-1216812369

Vaccines provide effective protection against many infectious diseases as well as therapeutics for select pathologies, such as cancer. Many viral vaccines require amplification of virus in cell cultures during manufacture. Traditionally, cell cultures, such as VERO, have been used for virus production in bovine serum‐containing culture media. However, due to concerns of potential adventitious agents present in fetal bovine serum (FBS), regulatory agencies suggest avoiding the use of bovine serum in vaccine production. Current serum‐free media suitable for VERO‐based virus production contains high concentrations of undefined plant hydrolysates. Although these media have been extensively used, the lack of chemical definition has the potential to adversely affect cell growth kinetics and subsequent virus production. As plant hydrolysates are made from plant raw materials, performance variations could be significant among different lots of production. We developed a chemically defined, serum‐free medium, OptiVERO, which was optimized specifically for VERO cells. VERO cell growth kinetics were demonstrated to be equivalent to EMEM‐10% FBS in this chemically defined medium while the plant hydrolysatecontaining medium demonstrated a slower doubling time in both two‐dimensional (2D) and 3D cultures. Virus production comparisons demonstrated that the chemically defined OptiVERO medium performed at least as good as the EMEM‐10% FBS and better than the plant hydrolysate‐containing media. We report the success in using recombinant proteins to replace undefined plant hydrolysates to formulate a chemically defined medium that can efficiently support VERO cell expansion and virus production.

Alfano R, Pennybaker A, Halfmann P, Huang CY‐H. Formulation and production of a blood‐free and chemically defined virus production media for VERO cells. Biotechnology and Bioengineering. 2020;117:3277–3285. https://doi.org/10.1002/bit.27486

access the White Paper!

Get unlimited access to:

Trend and Thought Leadership Articles
Case Studies & White Papers
Extensive Product Database
Members-Only Premium Content
Welcome Back! Please Log In to Continue. X

Enter your credentials below to log in. Not yet a member of Cell & Gene? Subscribe today.

Subscribe to Cell & Gene X

Please enter your email address and create a password to access the full content, Or log in to your account to continue.

or

Subscribe to Cell & Gene