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第 2 期                     姜   哲,等:  尿素-氯化胆碱低共熔体系提取羊毛角蛋白                                  ·261·


            性和降解所引起        [15] 。再生羊毛角蛋白的最大热分解                 [5]   Garcia M T, Gathergood N, Scammells P J. Biodegradable ionic liquids
            温度略低于原羊毛,这说明再生羊毛角蛋白的热稳                                 Part  Ⅱ.Effect  of  the  anion  and  toxicology[J].  Green  Chemistry,
                                                                   2005, 7(1): 9-14.
            定性略有下降。                                            [6]   Abbott  A,  John  C,  Karl  S,  et al.  Eutectic-based  ionic  liquids  with
                                                                   metal-containing  anions  and  cations[J].  Chemistry-A  European
            3   结论                                                 Journal, 2007, 13(22): 6495-6501.
                                                               [7]   Tenhunen T M, Lewandowska A E, Orelma H, et al. Understanding
                 尿素-氯化胆碱低共熔体系可以应用于羊毛角                              the  interactions  of  cellulose  fibres  and  deep  eutectic  solvent  of
                                                                   choline chloride and urea[J]. Cellulose, 2018, 25(1): 137-150.
            蛋白的溶解,适宜的溶解条件为温度 130 ℃,溶解
                                                               [8]   Marino  D  D,  Stöckmann  D,  Kriescher  S,  et al.  Electrochemical
            时间 180 min,m(羊毛) : m(尿素-氯化胆碱低共熔体                       depolymerisation  of  lignin  in  a  deep  eutectic  solvent[J].  Green
            系)=1 : 33。再生羊毛角蛋白大分子主链结构完整,                            Chemistry, 2016, 18(22): 6021-6028.
                                                               [9]   Wang  C  H,  Damodaran  S.  Thermal  destruction  of  cysteine  and
            但 α-螺旋结构的数量降低,热稳定性较差。
                                                                   cystine  residues  of  soy  protein  under  conditions  of  gelation[J].
                 尿素-氯化胆碱低共熔体系提取羊毛角蛋白是                              Journal of Food Science, 1990, 55(4): 1077-1080.
            一种绿色环保的方法,此方法也为羊毛角蛋白的再                             [10]  Yao  Yongbo  (姚勇波).  Co-dissolution  of  cellulose/silk  fibroin  and
                                                                   regeneration  of  the  blended  fibers[D].  Shanghai:  Donghua  University,
            生提供了一种新的思路,同时有助于研究尿素-氯化
                                                                   2015.
            胆碱低共熔体系与蛋白质的相互作用。                                  [11]  Lu  Zhenxiang  (路振翔).  Solution  of  wool  keratin/ionic  liquid
                                                                   properties and film studies[D]. Zhengzhou: Zhongyuan University of
            参考文献:                                                  Technology, 2016.
            [1]   Eslahi  N,  Dadashian  F,  Nejad  N  H.  An  investigation  on  keratin   [12]  Ma B M, Xue Q, Hou X L, et al. Pure keratin membrane and fibers
                 extraction from wool and feather waste by enzymatic hydrolysis[J].   from  chicken  feather[J].  International  Journal  of  Biological
                 Preparative Biochemistry, 2013, 43(7): 624-648.   Macromolecules, 2016, 89: 614-621.
            [2]   Liang Xiao (梁潇). Research on wool keratin extraction and its anti-   [13]  Wang K, Li R, Ma J H, et al. Extracting keratin from wool by using
                 felting application [D]. Shanghai: Donghua University, 2015.   L-cysteine[J]. Green Chemistry, 2016, 18(2): 476-481.
            [3]   Xie  H,  Li  S,  Zhang  S.  Ionic  liquids  as  novel  solvents  for  the   [14]  Kuzuhara A. Analysis of structural changes in bleached keratin fibers
                 dissolution and blending of wool keratin fibers[J]. Green Chemistry,   (black  and  white  human  hair)  using  Raman  spectroscopy[J].
                 2005, 7(8): 606-608.                              Biopolymers, 2006, 81(6): 506-514.
            [4]   Andrew S, Vyvyan T. On the freshwater ecotoxicity and biodegradation   [15]  Zhang  Z,  Zhang  X,  Nie  Y,  et al.  Effects  of  water  content  on  the
                 properties of some common ionic liquids[J]. Organic Process Research   dissolution behavior of wool keratin using 1-ethyl-3- methylimidazolium
                 and Development, 2006, 10(4): 794-798.            dimethylphosphate[J]. Science China Chemistry, 2017, 60(7): 934-941.


            (上接第 249 页)                                            远), et al. Phytochemical and pharmacological research progress in
                                                                   Tussilagofarfara[J] . China Journal of Chinese Materia Medica (中国
            [9]   Shen Linhui (申林卉), Liu Lixia (刘丽侠), Chen Guan (陈冠), et al.   中药杂志), 2006, 31(22): 1837-1841.
                 Research  progress  in  structural  modification  of  polysaccharide[J].   [17]  Roeder E. Medicinal plants in China containing pyrrolizidine alkaloids
                 Drug Evaluation Research (药物评价研究), 2013, 36(6): 465-468.     [J]. Pharmazie, 2000, 55(10): 711-726.
            [10]  Chen  Xiaoming  (陈晓明),  Tian  Gengyuan  (田庚元).  Advances  in   [18]  Zhang Xiuchang (张秀昌), Liu Hua (刘华), Liu Yuyu (刘玉玉), et
                 studies on phosphorylation of polysaccharides[J]. Chinese Journal of   al. Apoptosis of K562 cells induced by FlosFarfarae polysaccharide
                 Organic Chemistry (有机化学), 2002, 22(11): 835-839.     in  vitro[J].  Journal  of  Clinical  Rehabilitative  Tissue  Engineering
            [11]  Yang  Ping  (杨萍).  Study  on  synthesis  phosphated  derivatives  of   Research  ( 中国组织工程研 究 与临床康复 ),  2007,  11(11):
                 polysaccharide  from  Tremellafuciformis  Berk  and  its  effects  of   2029-2031.
                 radiation protection[D]. Beijing: Peking Union Medical College (北  [19]  Yu Tao (余涛), Song Xiao (宋逍), Zhao Peng (赵鹏), et al. Effect of
                 京协和医学院), 2013.                                    polysaccharides  from  Tussilagofarfara  on  tumor-inhibition  rate  and
            [12]  Wang Xiaolin (王晓琳), Yang Ping (杨萍), Kong Lingyu (孔令钰),   survival-extending rate in tumor or leukemia bearing mice[J]. Central
                 et al.  Protection  of  phosphate  esterification  polysaccharides  from   South Pharmacy (中南药学), 2014, 12(2): 125-128.
                 Tremellafuciformis  on  hematopoietic  function  in  radiation-injured   [20]  Zhao Peng (赵鹏). Isolation, characterizationof polysaccharides from
                 mice[J].  Chinese  Traditional  and  Herbal  Drugs  (中草药),  2013,   Tussilagofarfara[D]. Xi’an: Northwest University (西北大学), 2010.
                 44(13): 1811-1813.                            [21]  Zhang Jie (张洁), Shen Sheng (沈胜), Shen Shuyi (沈淑仪). Study
            [13]  Sun Jie (孙婕), Yin Guoyou (尹国友), Niu Meiyan (牛美艳), et al.   on  phosphorylated  modification  of  blettilastriata  polysaccharide[J].
                 Preparation and antioxidation of polysaccharides in phoshphorylated   Chinese  Wild  Plant  Resources  (中国野生植物资源),  2016,  35(3):
                 Pumpkin[J]. Journal of Sichuan Agricultural University (四川农业大  13-16, 20.
                 学学报), 2013, 31(3): 322-327.                   [22]  Ning Yuanling (宁苑灵), Meng Fayan (蒙法艳), Jiang Jie (蒋洁), et
            [14]  Liu  Yi  (刘毅).  Studyoncientific  evaluation  system  of  the  quality   al.  Optimization  of  preparation  technology  for  phosphorylated
                 standardand  standardized  cultivation  standards  of  Tussilagofarfara   polysaccharides from dimocarlongan by response surface method[J].
                 [D]. Chengdu: Chengdu University of TCM (成都中医药大学), 2008.     Chinese Journal of Experimental Traditional Medical Formulae (中
            [15]  Wu Qizhen (吴琪珍), Zhang Chaofeng (张朝凤), Xu Xianghong (许  国实验方剂学杂志), 2013, 19(6): 50-53.
                 翔鸿),  et al.  Advances  in  the  chemical  constituents  and  biological   [23]  Guo Rui (郭睿), Liu Aiyu (刘爱玉), Guo Yu (郭煜), et al. Process
                 activities  of  the  flower  buds  of  Tussilagofarfara[J].  Chinese  Wild   optimization for preparation of carboxymethyl chitosan by response
                 Plant Resources (中国野生植物资源), 2015, 34(2): 33-37.     surface  methodology[J].  Fine  Chemicals  (精细化工),  2016,  33(8):
            [16]  Liu  Keyue  (刘可越),  Zhang  Tiejun  (张铁军),  Gao  Wenyuan  (高文  872-879.
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