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Eicosapentaenoic Acid (EPA) from Porphyridium Cruentum: Increasing Growth and Productivity of the Microalgae for Pharmaceutical Products.

机译:十字卟啉菌的二十碳五烯酸(EPA):提高微藻类药物产品的生长和生产力。

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摘要

One of the major nutritional requirements in our diet is an adequate intake of omega-3 specially eicosapentaenoic acid (EPA). In the present study, the effects of two temperatures (16°C & 20°C) and light intensities (140 & 180microE/M2.S) and four nitrate levels (0.075, 0.3, 0.5 and 0.7g/L) on the cell growth and lipid productivity of Porphyridium cruentum, one of the most promising oil-rich species of microalgae, were investigated. A growth comparison was carried out using pure CO2 and 5% CO 2/air. Additionally, the ratio of the fatty acids with omega-3 and omega-6 groups at various growth conditions were compared, since an appropriate proportion of omega-6 (arachidonic acid(ARA)) to omega-3(EPA) is vital for healthy nutrition. Lower EPA production and consequently higher ARA/EPA ratio occurred when 5%CO 2/Air was utilized as CO2 supplementation. The highest biomass productivity (143 mg/L.day) and EPA (13.08%w/w) were achieved at 20°C, 140microE/M2.S and 0.3g/L nitrate, while lipid content was the lowest (0.5%w/w) at this condition. The optimal growth condition to produce the lowest ARA/EPA, 2.17, was achieved at 20°C, 140microE/M2 .S (pure CO2) and 0.5g/L nitrate.;The possible growth of P. cruentum in ultra-filtered swine wastewater was also evaluated in this study. P. cruentum was grown in different waste dilutions (total nitrogen concentrations of 12.4, 49.4, 82.4 and 115.3mg/L) to achieve the optimum nutrient condition for producing EPA. Various salinities (0-3.2%) were examined in the optimum nitrogen concentration. The data were compared to L1-medium and the results generally demonstrate better growth of P. cruentum in swine waste with higher lipid productivity and lipid content. The maximum lipid productivity (143mg/L) and lipid content (4.71 mg/100g biomass) was achieved in 3.2% salinity swine waste with 82.4mg/L nitrogen concentration while control medium with 2.5% salinity resulted the highest biomass productivity (3.76g/L). Markedly higher biomass productivity, lipid productivity and lipid content were achieved from swine waste culture diluted with seawater compared to saltwater. Higher C16:0, 18:2 and C20:5 (EPA) and lower C18:0 and ARA/EPA were achieved from swine waste culture compared to the control medium. Generally, the minimum ARA/EPA(1.33) was obtained at 82.4mg/L nitrogen concentration and 3.2% salinity in swine waste diluted with seawater.
机译:我们饮食中的主要营养需求之一是摄入足够的omega-3,尤其是二十碳五烯酸(EPA)。在本研究中,两个温度(16°C和20°C)和光强度(140和180microE / M2.S)和四个硝酸盐水平(0.075、0.3、0.5和0.7g / L)对细胞的影响研究了最有前途的富含油的微藻物种之一的卟啉卟啉的生长和脂质生产力。使用纯CO2和5%CO 2 /空气进行生长比较。此外,比较了不同生长条件下具有omega-3和omega-6组的脂肪酸的比例,因为适当比例的omega-6(花生四烯酸(ARA))与omega-3(EPA)对健康至关重要营养。当使用5%CO 2 /空气作为CO2补充剂时,EPA的产量较低,因此ARA / EPA的比例较高。在20°C,140microE / M2.S和0.3g / L硝酸盐的条件下实现了最高的生物质生产率(143 mg / L.day)和EPA(13.08%w / w),而脂质含量最低(0.5%w / w)。在20°C,140microE / M2 .S(纯CO2)和0.5g / L硝酸盐的条件下,可达到产生最低ARA / EPA的最佳生长条件,即2.17;这项研究还对废水进行了评估。在不同的废液稀释液(总氮浓度分别为12.4、49.4、82.4和115.3mg / L)下种植苦瓜,以达到生产EPA的最佳营养条件。在最佳氮浓度下检查了各种盐度(0-3.2%)。将数据与L1培养基进行比较,结果通常表明猪粪中的C. cruentum生长更好,脂质生产率和脂质含量更高。在氮浓度为82.4mg / L的3.2%盐度猪粪中实现了最大的脂质生产率(143mg / L)和脂质含量(4.71 mg / 100g生物量),而在盐度为2.5%的对照培养基中,生物质生产率最高(3.76g / L) L)。与盐水相比,用海水稀释的猪粪便培养物具有更高的生物量生产率,脂质生产率和脂质含量。与对照培养基相比,猪粪便培养获得了更高的C16:0、18:2和C20:5(EPA)以及更低的C18:0和ARA / EPA。通常,在用海水稀释的猪粪中,氮浓度为82.4mg / L,盐度为3.2%时,可获得最低ARA / EPA(1.33)。

著录项

  • 作者

    Asgharpour, Maryam.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Chemical engineering.;Pharmaceutical sciences.;Biology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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