4.7 Article

Engineering Considerations to Produce Bioactive Compounds from Plant Cell Suspension Culture in Bioreactors

期刊

PLANTS-BASEL
卷 10, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/plants10122762

关键词

medicinal plant; bioactive compounds; plant-derived secondary metabolites (PDSM); cell suspension culture (CSC); bioreactor engineering

资金

  1. Consejo Nacional de Ciencia y Tecnologia (CONACyT) [616138]

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The large-scale production of plant-derived secondary metabolites (PDSM) in bioreactors is considered an engineering challenge due to the operational factors that need to be considered. Plant cell suspension culture (CSC) offers benefits over other technologies, such as avoiding overexploitation of plant species and achieving better yields. The selection of the bioreactor configuration depends on cell culture properties and engineering considerations related to operating conditions' effects on thermodynamics, kinetics, and transport phenomena.
The large-scale production of plant-derived secondary metabolites (PDSM) in bioreactors to meet the increasing demand for bioactive compounds for the treatment and prevention of degenerative diseases is nowadays considered an engineering challenge due to the large number of operational factors that need to be considered during their design and scale-up. The plant cell suspension culture (CSC) has presented numerous benefits over other technologies, such as the conventional whole-plant extraction, not only for avoiding the overexploitation of plant species, but also for achieving better yields and having excellent scaling-up attributes. The selection of the bioreactor configuration depends on intrinsic cell culture properties and engineering considerations related to the effect of operating conditions on thermodynamics, kinetics, and transport phenomena, which together are essential for accomplishing the large-scale production of PDSM. To this end, this review, firstly, provides a comprehensive appraisement of PDSM, essentially those with demonstrated importance and utilization in pharmaceutical industries. Then, special attention is given to PDSM obtained out of CSC. Finally, engineering aspects related to the bioreactor configuration for CSC stating the effect of the operating conditions on kinetics and transport phenomena and, hence, on the cell viability and production of PDSM are presented accordingly. The engineering analysis of the reviewed bioreactor configurations for CSC will pave the way for future research focused on their scaling up, to produce high value-added PDSM.

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