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中国精品科技期刊2020
王淑惠, 杨玉洁, 周爱梅, 肖苏尧, 曹庸, 陈汉民. 两种方法提取佛手渣多糖及其对巨噬细胞RAW264.7免疫调节活性的研究[J]. 食品工业科技, 2020, 41(15): 179-187. DOI: 10.13386/j.issn1002-0306.2020.15.028
引用本文: 王淑惠, 杨玉洁, 周爱梅, 肖苏尧, 曹庸, 陈汉民. 两种方法提取佛手渣多糖及其对巨噬细胞RAW264.7免疫调节活性的研究[J]. 食品工业科技, 2020, 41(15): 179-187. DOI: 10.13386/j.issn1002-0306.2020.15.028
WANG Shu-hui, YANG Yu-jie, ZHOU Ai-mei, XIAO Su-yao, CAO Yong, CHEN Han-min. Study on the Polysaccharide Extracted from Bergamot (Citrus medica L. var. sarcodactylis) Residue by Two Methods and Its Immunomodulatory Function in RAW264.7 Cells[J]. Science and Technology of Food Industry, 2020, 41(15): 179-187. DOI: 10.13386/j.issn1002-0306.2020.15.028
Citation: WANG Shu-hui, YANG Yu-jie, ZHOU Ai-mei, XIAO Su-yao, CAO Yong, CHEN Han-min. Study on the Polysaccharide Extracted from Bergamot (Citrus medica L. var. sarcodactylis) Residue by Two Methods and Its Immunomodulatory Function in RAW264.7 Cells[J]. Science and Technology of Food Industry, 2020, 41(15): 179-187. DOI: 10.13386/j.issn1002-0306.2020.15.028

两种方法提取佛手渣多糖及其对巨噬细胞RAW264.7免疫调节活性的研究

Study on the Polysaccharide Extracted from Bergamot (Citrus medica L. var. sarcodactylis) Residue by Two Methods and Its Immunomodulatory Function in RAW264.7 Cells

  • 摘要: 本文以提取精油和黄酮后的佛手渣为原料,分别采用连续相变萃取(CPE)法和热水浸提法(HWE)法提取佛手多糖,在单因素实验的基础上,以佛手多糖提取率为指标,通过响应面优化得出两种方法的最佳提取工艺,并利用RAW264.7巨噬细胞模型评价佛手多糖的免疫活性,采用MTT法、中性红比色法和Griess法分别检测佛手多糖对RAW264.7细胞的生长、吞噬活性和释放NO能力的影响。结果表明,CPE法提取佛手多糖的最佳工艺条件为:温度99 ℃,时间4.5 h,流速66 L/h,提取率为16.09%±0.12%,得率为21.31%±0.13%;HWE法提取佛手多糖的最佳工艺条件为:95 ℃,时间6.0 h,液料比63 mL/g,提取率为15.43%±0.21%,得率为20.22%±0.16%;与HWE法相比,CPE法将佛手多糖提取率提高了4.28%(P<0.05),得率提高了5.39%(P<0.05),且提取时间缩短了1/4。佛手多糖在浓度低于500 μg/mL时对RAW264.7巨噬细胞无明显毒性作用,且可以促进NO的分泌以及提高吞噬活性。上述结果说明,CPE法适合佛手多糖的提取,优于传统的HWE法,且佛手多糖具有免疫类保健食品和药品开发的潜力。

     

    Abstract: In this paper, bergamot residue after extracting essential oils and flavonoids was used as raw material to extract polysaccharide by CPE (Continuous phase-transition extraction) and HWE (Hot water extraction) methods, respectively. Based on the single factor experiments, the response surface methodology was employed to obtain the optimal extraction conditions of polysaccharide using extraction rate as the index and the RAW264.7 macrophage was used to evaluate the immunological activity of the extracted polysaccharide. Therein, MTT assay, neutral red phagocytic assay and Griess method were used to detect the effects of the bergamot polysaccharide on the growth, phagocytic activity and NO release of RAW264.7, respectively. The results showed that the optimum extraction conditions of CPE method were as follows:The extraction temperature of 99℃, the extraction time of 4.5 h, the extraction flow rate of 66 L/h. The corresponding extraction rate and yield were 16.09%±0.12% and 21.31%±0.13%, respectively. For HWE method, the optimal conditions were:The extraction temperature of 95℃, the extraction time of 6.0 h, the liquid material ratio of 63 mL/g. The resulted extraction rate and yield were 15.43%±0.21% and 20.22%±0.16%, respectively. Compared with HWE method, CPE method increased the extraction rate by 4.28% and the yield by 5.39% (P<0.05) of bergamot polysaccharide and shorten the extraction time by 1/4. Bergamot polysaccharide had no significant toxic effect on RAW264.7 macrophages concentrations under 500 μg/mL, and could promote the secretion of NO and enhance the phagocytic activity. To summarize, the CPE method is suitable for the extraction of bergamot polysaccharide, and is superior to the traditional HWE method. Furthermore, the bergamot polysaccharide has the potential to develop immune health foods and medicines.

     

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