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Ionic Liquids toward Enhanced Carotenoid Extraction from Bacterial Biomass
Tiago P Silva1, Luís Alves1, Francisco Salgado1
1LNEG-Laboratório Nacional de Energia e Geologia, IP, Unidade de Bioenergia e Biorrefinarias, Estrada do Paço do Lumiar, 22, 1649-038 Lisboa, Portugal.
Ionic liquids (ILs) significantly enhance carotenoid extraction from the bacterium Gordonia alkanivorans strain 1B. This novel method improves efficiency and yield by 264% compared to conventional techniques.
Area of Science:
- Biotechnology
- Natural Product Extraction
- Microbial Pigments
Background:
- Carotenoids are valuable compounds with intense coloration and antioxidant properties, sourced from diverse organisms.
- Gordonia alkanivorans strain 1B is a potent bacterial pigment producer, but its solvent resistance complicates traditional extraction.
- Ionic liquids (ILs) show promise for carotenoid extraction from plants and microalgae, yet their application in bacteria, particularly Gordonia, is underexplored.
Purpose of the Study:
- To investigate the efficacy of ILs for extracting carotenoids from bacterial biomass.
- To develop an optimized, efficient extraction method with reduced pre-processing steps.
- To enhance carotenoid recovery from Gordonia alkanivorans strain 1B.
Main Methods:
- Screening of nineteen ILs and co-solvents for carotenoid extraction from G. alkanivorans strain 1B biomass.
- Optimization of IL#18 (tributyl(ethyl)phosphonium diethyl phosphate) and ethyl acetate (EAc) concentrations using experimental designs.
- Comparison of the novel IL-based method with conventional Dimethyl sulfoxide (DMSO) extraction.
Main Results:
- Tributyl(ethyl)phosphonium diethyl phosphate (IL#18) with ethyl acetate (EAc) demonstrated superior carotenoid extraction.
- Optimal conditions identified: 50 µL IL#18, 1125 µL EAc, and 400 µL biomass suspension (36 g/L).
- The IL-based method increased carotenoid yield by 264% compared to DMSO, eliminating biomass drying and reducing extraction temperature.
Conclusions:
- Ionic liquids, specifically IL#18/EAc, offer a highly effective strategy for bacterial carotenoid extraction.
- This method significantly improves process efficiency, reduces energy consumption, and lowers costs and emissions.
- The findings support the potential of ILs for industrial-scale recovery of carotenoids from microbial sources.
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