Page 115 - 《精细化工》2022年第7期
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第 7 期                   高   莉,等:  山杏核壳黑色素氨基酸修饰物的制备及性能分析                                 ·1401·


            参考文献:                                              [23]  CHEN B W (陈博文), ZHANG X L (张小林), SUN X R (孙晓瑞),
                                                                   et al. Isolation, identification, stability and antioxidant activity of
            [1]   WANG X X (王雪雪). Development of dung  beetle melanin hair   melanin in Pleurotus cylindrica[J]. Acta Edulis Fungi (食用菌学报),
                 dye[D]. Mianyang: Southwest University of Science and Technology,   2017, 24(3): 57-62.
                 (西南科技大学) , 2018.                              [24]  LIU R (刘瑞), YU Z L (于章龙), SUN Y L (孙元琳), et al. Study on
            [2]   FANG Y M (方玉梅), ZHANG P (张萍), WANG Y H (王毅红), et al.   extraction and antioxidant activity of  antioxidant components from
                 Study on biological activity of melanin from leaves of sweetgum in   black wheat bud[J]. Food Industry (食品工业), 2021,  42(7): 134-
                 Guizhou[J]. Food  Research and Development (食品研究与开发),   138.
                 2015, 36(14): 36-40.                          [25]  YU Z L (于章龙), LIU R (刘瑞), SONG Y (宋昱), et al. Extraction
            [3]   LI W (李玮). Study on the correlation between jinggangmycin and   of antioxidant active components from black wheat  bran and
                 melanin produced by  Streptomyces bibulus 5008[D]. Hangzhou:   evaluation of antioxidant capacity[J]. Science and Technology of
                 Zhejiang University (浙江大学), 2015.                 Cereals (粮油食品科技), 2021, (7): 71-76.
            [4]   JU J J (巨俊俊). Study on active components and mechanism of   [26]  XIN C, MA J H,  TAN C J,  et al. Preparation  of melanin  from
                 sesame  melanin black hair[D].  Zhengzhou: Zhengzhou University   Catharsius molossus L.  and preliminary study on its chemical
                 (郑州大学) , 2020.                                    structure[J]. Journal of Bioscience and Bioengineerin, 2015, 119 (4):
            [5]   LI H J, LI J X, ZHAO Z. Characterization of melanin extracted from   446-454.
                 apricot (Armeniaca sibirica) and its effect on hydrazine-induced rat   [27]  XU C, LI J, YANG L, et al. Antibacterial activity and a membrane
                 hepatic injury[J]. Scienceasia, 2016, 42(6): 382-391.     damage mechanism  of  Lachnum YM30 melanin against  Vibrio
            [6]   LIU C (刘超). Study on preparation technology of hair dye gardenia   parahaemolyticus and Staphylococcus aureus[J]. Food Control, 2017,
                 black[D]. Changsha: Hunan University of Chinese Medicine (湖南中  73(1): 1445-1451.
                 医药大学), 2019.                                  [28]  DING Y (丁芸), LIU Y M (刘玉梅). Study on dyeing properties of
            [7]  WANG Y  (汪洋),  DONG W F (东为富). Structure, properties and   ethanol extract of green walnut husk  on cotton  fabric[J]. Fine
                 application of melanin in nano-composite materials[J]. Materials   Chemicals (精细化工), 2016, 33(11): 1278-1286.
                 China (中国材料进展), 2019, 38(5): 470-477.         [29] ZHANG  L  (张麟), SUN  Y (孙彦), GUO X C (郭小翠). The
            [8]   SHANKAR S, WANG  L F,  RHIM J W. Effect  of melanin   invention  discloses a method and application  for self-assembly of
                 nanoparticles on the mechanical, water vapor barrier, and antioxidant   auxiliary virus-like particles by introducing positive and negative
                 properties of gelatin-based films for food packaging application[J].   charge: CN106636016B[P]. 2017-02-24.
                 Food Packaging and Shelf Life, 2019, 21: 100363.     [30]  PRALEA I E, MOLDOVAN R C, PETRACHE  A M,  et al. From
            [9]   ROY S, RHIM J W. Carrageenan-based antimicrobial bionanocomposite   extraction  to advanced analytical  methods: The challenges of
                 films incorporated with ZnO nanoparticles stabilized by melanin[J].   melanin analysis[J]. International Journal of Molecular Sciences,
                 Food Hydrocolloids, 2019, 90(5): 500-507.         2019, 20(16): 3943.
            [10]  NAGGAR  E A,  EWASY S M. Bioproduction, characterization,   [31]  XU C (徐灿). Bioactivity and mechanism of melanin and its
                 anticancer and antioxidant activities of extracellular melanin pigment   derivatives[D]. Hefei: Hefei University of Technology (合肥工业大
                 produced by newly isolated microbial cell factories  Streptomyces   学), 2017.
                 glaucescens NEAE-H[J]. Scientific Reports, 2017, 7: 42129.     [32]  CHO S, PARK W, KIM D H. Silica-coated metal chelating-melanin
            [11]  WANG Y (汪燕). Study on structure, amino acid modification and   nanoparticles as a dual-modal contrast enhancement imaging and
                 biological activity of YM-346 melanin from  Trichoderma   therapeutic agent[J]. ACS Applied Materials & Interfaces, 2017, 9(1):
                 granuloides[D]. Hefei: Hefei University of Technology (合肥工业大  101-111.
                 学), 2012.                                     [33]  LONGO  D L, STEFANIA R, CALLARI C,  et al. Water soluble
            [12]  YE Z, LU Y, ZONG S, et al. Structure, molecular modification and   melanin derivatives for dynamic  contrast enhanced photoacoustic
                 anti-tumor activity of melanin from  Lachnum singerianum[J].   imaging of tumor vasculature and response to antiangiogenic
                 Process Biochemistry, 2019, 76: 203-212.          therapy[J]. Advanced Healthcare Materials, 2017, 6(1): 1-6.
            [13]  XIE W, PAKDEL  E, LIANG Y,  et al. Natural eumelanin and its   [34]  DISCHIA M, NAPOLITANO A, PEZZELLA  A,  et al. Melanin
                 derivatives as multifunctional materials for bioinspired applications:   biopolymers: Tailoring chemical complexity for materials design[J].
                 A review[J]. Biomacromolecules, 2019, 20(12): 4312-4331.     Angewandte Chemie, 2020, 59(28): 11196-11205.
            [14]  YE M, WANG Y, GUO G Y, et al. Physicochemical characteristics   [35]  BATAL A I, SAYYAD G S, GHAMERY A, et al. Response surface
                 and antioxidant activity of arginine-modified melanin from Lachnum   methodology optimization of melanin production  by Streptomyces
                 YM-346[J]. Food Chemistry, 2012, 135(4): 2490-2497.     cyaneusand synthesis of copper oxide nanoparticles  using gamma
            [15]  LU Y (卢莹). Structure characterization, amino acids modification   radiation[J]. Journal of Cluster Science, 2017, 28(3): 1083-1112.
                 and bioactivities of melanin from Lachnum singerianum[D]. Hefei:   [36]  ROY S, RHIM J W. New insight into melanin for food packaging and
                 Hefei University of Technology (合肥工业大学), 2014.     biotechnology applications[J]. Critical Reviews in Food Science and
            [16]  LI H J (李红姣), LI J X (李巨秀), ZHAO Z (赵忠). Optimization   Nutrition, 2021, (1): 1-27.
                 and stability of enzymatic assisted extraction of melanin from seed   [37]  LIU Y L,  AI K  L, JI X Y,  et al. Comprehensive insights into the
                 coat of apricot[J]. Food Science (食品科学), 2016, 37(10): 69-75.     multi-antioxidative  mechanisms of melanin nanoparticles and their
            [17]  YANG L (杨柳). Preparation and properties of melanin nanoparticles   application to protect brain from injury in ischemic stroke[J]. J Am
                 in apricot kernel shell[D]. Taiyuan: North University of China (中北  Chem Soc, 2016, 139(2): 856-862.
                 大学), 2019.                                    [38]  USHAKOVA N A, DONTSOV  A  E, MARSOVA  M  V,  et al.
            [18]  FRANCISCO S. Melanin and melanin-related polymers as materials   Antioxidant properties of an extract of hermetia illucens larvae[J].
                 with biomedical and biotechnological applications-cuttlefish ink and   Biology Bulletin, 2021, 48(2): 118-121.
                 mussel foot proteins as inspired biomolecules[J]. Scientific Reports,     [39]  XU  Y  A  (徐炎安). Preliminary study on the effect of synthetic
                 2017, 18: 1561.                                   antimicrobial peptides against  Escherichia coli. biofilm[D].
            [19]  LI J (李俊). Preparation and properties of ganoderma lucidum   Chongqing: Chongqing Medical University (重庆医科大学), 2009.
                 melanin derivatives[D]. Taiyuan: Shanxi Agricultural University (山  [40]  KIRAN G S, JACKSON S A, PRIYADHARSINI S, et al. Synthesis
                 西农业大学), 2019.                                     of Nm-PHB (nanomelanin-polyhydroxy butyrate) nanocomposite
            [20]  WANG L F,  RHIM J  W. Isolation and characterization of  melanin   film and its protective effect against biofilm-forming multi drug
                 from black garlic and sepia ink[J]. LWT, 2019, 99: 17-23.     resistant  Staphylococcus aureus[J]. Scientific Reports, 2017, 7(1):
            [21]  VARGA  M, BERKESI O, DARULA Z,  et al. Structural   9167.
                 characterization  of  allomelanin from black oat[J]. Phytochemistry,   [41]  LAXMI M, KURIAN N K, SMITHA S,  et al. Melanin and
                 2016, 130: 313-320.                               bacteriocin from marine bacteria inhibit biofilms of  foodborne
            [22]  HAN Z B (韩宗博), QI K J (戚克进), ZHAN Y L (展亚莉), et al.   pathogens[J]. Indian Journal of Biotechnology, 2016, 15(3): 392-399.
                 Different food additives enhance the thermal stability of the two   [42]  THIERRY D M, LLINE S, KAREN H, et al. Halochromic properties
                 water-soluble natural pigments[J]. Food Industry (食品工业), 2021,   of sulfonphthaleine dyes in a textile environment: The influence of
                 42(4): 277-280.                                   substituents[J]. Dyes and Pigments, 2016, 124: 249-257.
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