Industrial Biotechnology & Biocatalysis Group, School of Chemical Engineering, National Technical University of Athens, 9 Iroon Polytechniou Str, Zografou Campus, 15780 Athens, Greece.
Chemical Process and Energy Resources Institute (CPERI), CERTH, 6th Km Harilaou‑Thermi Road, Thermi, 57001, Thessaloniki, Greece.
Bioresour Technol. 2020 May;303:122899. doi: 10.1016/j.biortech.2020.122899. Epub 2020 Jan 27.
Omega-3 fatty acids have become a commodity of high nutritional and commercial value; intensive fishing and its environmental and social cost has led researchers to seeking alternative more sustainable ways of producing them. Heterotrophic microalgae such as Crypthecodinium cohnii, a marine dinoflagellate, have the ability to utilize various substrates and accumulate high amounts of docosahexaenoic acid (DHA). In this work, a mild oxidative organosolv pretreatment of beechwood pulps was employed that allowed up to 95% of lignin removal in a single stage, thus yielding a cellulose-rich solid fraction. The enzymatic hydrolysates were evaluated for their ability to support the growth and lipid accumulation of C. cohnii in batch and fed-batch cultures; the results verified the successful microalgae growth, while DHA reached up to 43.5% of the cell's total lipids. The proposed bioprocess demonstrated the utilization of non-edible biomass towards high added value food supplements in a sustainable and efficient manner.
ω-3 脂肪酸已成为一种具有高营养价值和商业价值的商品;密集型捕捞及其对环境和社会造成的成本,促使研究人员寻求更可持续的替代生产方法。异养微藻,如海洋甲藻 Crypthecodinium cohnii,具有利用各种基质和积累大量二十二碳六烯酸 (DHA) 的能力。在这项工作中,采用温和的氧化有机溶媒预处理山毛榉木浆,可在单级处理中去除高达 95%的木质素,从而得到富含纤维素的固体部分。评估了酶解产物在分批和补料分批培养中支持 C. cohnii 生长和脂质积累的能力;结果证实了微藻的成功生长,同时 DHA 达到细胞总脂质的 43.5%。所提出的生物工艺证明了以可持续和有效的方式利用非食用生物质来生产高附加值的食品补充剂。