Gong Mengyue, Bassi Amarjeet
Department of Chemical and Biochemical Engineering, Faculty of Engineering, Western University, London, ON, N6A 5B9, Canada.
Appl Biochem Biotechnol. 2017 Oct;183(2):652-671. doi: 10.1007/s12010-017-2537-x. Epub 2017 Jun 24.
Lutein has an increasing share in the pharmaceutical and nutraceutical market due to its benefits to eye health. Microalgae may be a potential source for lutein production while the expense limits the commercialization. In this study, a coiled tubular tree photobioreactor (CTPBR) design was investigated for cultivating the cold tolerant microalgae Chlorella vulgaris UTEX 265 under various conditions for lutein production. The influence and interaction of light irradiance strength, lighting cycle, and temperature on microalgae and lutein production efficiency at low temperature range were also studied in flasks via response surface method (RSM). The results demonstrated that 14 h day-light, 120 μmol photons m s, and 10 °C was the optimal condition for algae growth and lutein production at low temperature experimental ranges. C. vulgaris UTEX 265 showed good potential to produce lutein in cold weather, and the optimum lutein production was contrary to the specific lutein content but corresponds to the trend of optimum growth. Additionally, fast growth (μ = 1.50 day) and good lutein recovery (11.98 mg g day) in CTPBR were also achieved at the low irradiance stress condition and the low temperature photo-inhibition conditions.
由于叶黄素对眼睛健康有益,它在制药和营养保健品市场中的份额不断增加。微藻可能是叶黄素生产的潜在来源,但其成本限制了商业化进程。在本研究中,对一种螺旋管式树形光生物反应器(CTPBR)设计进行了研究,用于在各种条件下培养耐寒微藻普通小球藻UTEX 265以生产叶黄素。还通过响应面法(RSM)在烧瓶中研究了光照强度、光照周期和温度在低温范围内对微藻和叶黄素生产效率的影响及相互作用。结果表明,在低温实验范围内,14小时光照、120 μmol光子·m⁻²·s⁻¹和10°C是藻类生长和叶黄素生产的最佳条件。普通小球藻UTEX 265在寒冷天气下显示出良好的叶黄素生产潜力,最佳叶黄素产量与特定叶黄素含量相反,但与最佳生长趋势一致。此外,在低光照胁迫条件和低温光抑制条件下,CTPBR中也实现了快速生长(μ = 1.50天⁻¹)和良好的叶黄素回收率(11.98 mg·g⁻¹·天⁻¹)。