4.7 Article

Utilization of Crab Waste for Cost-Effective Bioproduction of Prodigiosin

Journal

MARINE DRUGS
Volume 18, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/md18110523

Keywords

Serratia marcescens; prodigiosin; bioreactor system; crab shells; bioprocessing; antioxidants; anticancers

Funding

  1. Ministry of Science and Technology, Taiwan [MOST 109-2313-B-032-002-, MOST 109-2811-B-032-500]

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This study aimed to establish the culture process for the cost-effective production of prodigiosin (PG) from demineralized crab shell powder (de-CSP), a fishery processing byproduct created via fermentation. Among the tested PG-producing strains, Serratia marcescens TNU02 was demonstrated to be the most active strain. Various ratios of protein/de-CSP were used as the sources of C/N for PG biosynthesis. The PG yield was significantly enhanced when the casein/de-CSP ratio was controlled in the range of 3/7 to 4/6. TNU02 produced PG with a high yield (5100 mg/L) in a 15 L bioreactor system containing 4.5 L of a newly-designed liquid medium containing 1.6% C/N source (protein/de-CSP ratio of 3/7), 0.02% (NH4)(2)SO4, 0.1% K2HPO4, and an initial pH of 6.15, at 27 degrees C for 8 h in dark conditions. The red pigment was purified from the culture broth and then quantified as being PG by specific Matrix-Assisted Laser Desorption Ionization-Time of Flight Mass Spectrometry (MALDI-TOF MS) and UV spectra analysis. The purified PG demonstrated moderate antioxidant and effective inhibition against four cancerous cell lines. Notably, this study was the first to report on using crab wastes for PG bioproduction with high-level productivity (5100 mg/L) in a large scale (4.5 L per pilot) in a short period of fermentation time (8 h). The salt compositions, including (NH4)(2)SO4 and K2HPO4, were also a novel finding for the enhancement of PG yield by S. marcescens in this report.

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