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Published on: January 24, 2017
Development of a Serum-Free Medium To Aid Large-Scale Production of Mycoplasma-Based Therapies
Raul Burgos1, Eva Garcia-Ramallo1, Daniel Shaw1
1Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Barcelona, Spain.
Abstract:
To assist in the advancement of the large-scale production of safe Mycoplasma vaccines and other Mycoplasma-based therapies, we developed a culture medium free of animal serum and other animal components for Mycoplasma pneumoniae growth. By establishing a workflow method to systematically test different compounds and concentrations, we provide optimized formulations capable of supporting serial passaging and robust growth reaching 60 to 70% of the biomass obtained in rich medium. Global transcriptomic and proteomic analysis showed minor physiological changes upon cell culture in the animal component-free medium, supporting its suitability for the production of M. pneumoniae-based therapies. The major contributors to growth performance were found to be glucose as a carbon source, glycerol, cholesterol, and phospholipids as a source of fatty acids. Bovine serum albumin or cyclodextrin (in the animal component-free medium) were required as lipid carriers to prevent lipid toxicity. Connaught Medical Research Laboratories medium (CMRL) used to simplify medium preparation as a source of amino acids, nucleotide precursors, vitamins, and other cofactors could be substituted by cysteine. In fact, the presence of protein hydrolysates such as yeastolate or peptones was found to be essential and preferred over free amino acids, except for the cysteine. Supplementation of nucleotide precursors and vitamins is not strictly necessary in the presence of yeastolate, suggesting that this animal origin-free hydrolysate serves as an efficient source for these compounds. Finally, we adapted the serum-free medium formulation to support growth of Mycoplasma hyopneumoniae, a swine pathogen for which inactivated whole-cell vaccines are available. IMPORTANCE Mycoplasma infections have a significant negative impact on both livestock production and human health. Vaccination is often the first option to control disease and alleviate the economic impact that some Mycoplasma infections cause on milk production, weight gain, and animal health. The fastidious nutrient requirements of these bacteria, however, challenges the industrial production of attenuated or inactivated whole-cell vaccines, which depends on the use of animal serum and other animal raw materials. Apart from their clinical relevance, some Mycoplasma species have become cellular models for systems and synthetic biology, owing to the small size of their genomes and the absence of a cell wall, which offers unique opportunities for the secretion and delivery of biotherapeutics. This study proposes medium formulations free of serum and animal components with the potential of supporting large-scale production upon industrial optimization, thus contributing to the development of safe vaccines and other Mycoplasma-based therapies.
Insights
Researchers developed a serum-free culture medium for Mycoplasma pneumoniae, enabling large-scale vaccine and therapy production. This animal-component-free medium supports robust growth and has potential for Mycoplasma hyopneumoniae.
Area of Science:
- Microbiology
- Biotechnology
- Vaccine Development
Background:
- Mycoplasma infections pose significant threats to human health and livestock production.
- Industrial production of Mycoplasma vaccines and therapies is hindered by reliance on animal-derived components in culture media.
- Mycoplasma species are valuable models for systems and synthetic biology due to their simple genomes and lack of cell walls.
Purpose of the Study:
- To develop an animal serum-free and animal component-free culture medium for Mycoplasma pneumoniae.
- To optimize formulations for large-scale production of Mycoplasma-based vaccines and therapies.
- To adapt the serum-free medium for the growth of Mycoplasma hyopneumoniae.
Main Methods:
- Systematic testing of various compounds and concentrations to establish optimized culture medium formulations.
- Global transcriptomic and proteomic analyses to assess physiological changes in cells cultured in the new medium.
- Adaptation of the serum-free medium formulation for Mycoplasma hyopneumoniae growth.
Main Results:
- Optimized serum-free medium formulations supported serial passaging and robust Mycoplasma pneumoniae growth, achieving 60-70% of biomass in rich medium.
- Transcriptomic and proteomic analyses revealed minimal physiological changes, indicating suitability for therapeutic production.
- Key growth factors identified: glucose, glycerol, cholesterol, phospholipids, lipid carriers (bovine serum albumin or cyclodextrin), and protein hydrolysates (yeastolate/peptones) over free amino acids (except cysteine).
Conclusions:
- Developed effective animal component-free culture media for Mycoplasma pneumoniae and Mycoplasma hyopneumoniae.
- The serum-free medium supports significant bacterial growth and shows minimal physiological impact, making it suitable for industrial-scale production.
- This advancement facilitates the development of safer Mycoplasma vaccines and novel biotherapeutics.
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