Department of Science and Technology, Tay Nguyen University, Buon Ma Thuot 630000, Vietnam.
Department of Chemistry, Tamkang University, New Taipei City 25137, Taiwan.
Molecules. 2021 May 24;26(11):3138. doi: 10.3390/molecules26113138.
Recently, microbial prodigiosin (PG) has received much attention due to its numerous beneficial applications. The aim of this study was to establish the bioprocessing of marine chitinous wastes (MCWs) for the cost-effective preparation of PG. Of the MCWs, demineralized shrimp shell powders (de-SSP) were found to be a potential source of carbon/nitrogen (C/N) for PG production by bacterial fermentation using strains. Further, PG scale-up production was investigated in a 15 L bioreactor system, and the highest yield (6200 mg/L) was achieved during fermentation using 5 L of a novel-designed culture broth that included 1.60% C/N sources (a de-SSP/casein ratio of 7/3), 0.02% KSO and 0.05% KHPO, with an initial pH of 6-7. Fermentation was conducted in the dark at 27.5 °C for 8.0 h. This study was the first to report on the utilization of shrimp wastes for cost-effective, large-scale (5 L/pilot) PG production with high productivity (6200 mg/L) in a short cultivation time. The combination of 0.02% KSO and 0.05% KHPO was also found to be a novel salt composition that significantly enhanced PG yield. The red compound was purified and confirmed as PG after analyzing its HPLC profile, mass, and UV/vis spectra. The purified PG was then tested for its bioactivities and showed effective anticancer activities, moderated antioxidant activities, and novel anti-NO effects.
最近,微生物灵菌红素(PG)因其众多有益的应用而受到广泛关注。本研究旨在建立利用海洋甲壳废物(MCWs)进行经济高效制备 PG 的生物加工工艺。在这些 MCWs 中,脱矿虾壳粉(de-SSP)被发现是通过细菌发酵生产 PG 的潜在碳/氮(C/N)来源,使用 菌株。此外,在 15 L 生物反应器系统中进行了 PG 放大生产研究,在使用新型设计的培养液进行发酵时,获得了最高产量(6200 mg/L),该培养液包括 1.60%的 C/N 源(de-SSP/酪蛋白比为 7/3)、0.02%的 KSO 和 0.05%的 KHPO,初始 pH 值为 6-7。发酵在黑暗中于 27.5°C 下进行 8.0 h。本研究首次报道了利用虾废物进行经济高效、大规模(5 L/中试)PG 生产,在短培养时间内实现高生产力(6200 mg/L)。还发现 0.02%的 KSO 和 0.05%的 KHPO 的组合是一种新型盐组成,可显著提高 PG 产量。对红色化合物进行了分析其 HPLC 图谱、质量和 UV/vis 光谱,确认其为 PG。然后对纯化的 PG 进行了生物活性测试,显示出有效的抗癌活性、适度的抗氧化活性和新型的抗 NO 作用。