Strategic nutrient sourcing for biomanufacturing intensification

Author:

Noroozi Kimia1,Jarboe Laura R1ORCID

Affiliation:

1. Department of Chemical and Biological Engineering, Iowa State University , Ames, IA 50011 , USA

Abstract

Abstract   The successful design of economically viable bioprocesses can help to abate global dependence on petroleum, increase supply chain resilience, and add value to agriculture. Specifically, bioprocessing provides the opportunity to replace petrochemical production methods with biological methods and to develop novel bioproducts. Even though a vast range of chemicals can be biomanufactured, the constraints on economic viability, especially while competing with petrochemicals, are severe. There have been extensive gains in our ability to engineer microbes for improved production metrics and utilization of target carbon sources. The impact of growth medium composition on process cost and organism performance receives less attention in the literature than organism engineering efforts, with media optimization often being performed in proprietary settings. The widespread use of corn steep liquor as a nutrient source demonstrates the viability and importance of “waste” streams in biomanufacturing. There are other promising waste streams that can be used to increase the sustainability of biomanufacturing, such as the use of urea instead of fossil fuel-intensive ammonia and the use of struvite instead of contributing to the depletion of phosphate reserves. In this review, we discuss several process-specific optimizations of micronutrients that increased product titers by twofold or more. This practice of deliberate and thoughtful sourcing and adjustment of nutrients can substantially impact process metrics. Yet the mechanisms are rarely explored, making it difficult to generalize the results to other processes. In this review, we will discuss examples of nutrient sourcing and adjustment as a means of process improvement. One-Sentence Summary The potential impact of nutrient adjustments on bioprocess performance, economics, and waste valorization is undervalued and largely undercharacterized.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

Reference154 articles.

1. Optimization of diverse carbon sources and cultivation conditions for enhanced growth and lipid and medium-chain fatty acid (MCFA) production by mucor circinelloides;Ammar,2019

2. The influence of micronutrients in cell culture: A reflection on viability and genomic stability;Arigony;BioMed Research International,2013

3. Multi-factorial-guided media optimization for enhanced biomass and lipid formation by the oleaginous yeast Cutaneotrichosporon oleaginosus;Awad;Frontiers in Bioengineering and Biotechnology,2019

4. Differential role of the protein matrix on the binding of a catalytic aspartate to Mg2+ vs Ca2+: Application to ribonuclease H;Babu;Journal of the American Chemical Society,2013

5. Use of a D-optimal design with constrains to quantify the effects of the mixture of sodium, potassium, calcium and magnesium chloride salts on the growth parameters of Saccharomyces cerevisiae;Bautista-Gallego;Journal of Industrial Microbiology & Biotechnology,2008

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