Page 74 - 《精细化工》2023年第2期
P. 74

·296·                             精细化工   FINE CHEMICALS                                 第 40 卷

                 Bletilla striata[J]. Fitoterapia, 2015, 101: 12-18.   by different methods[J]. Carbohydrate Polymers, 2021, 266: 118149.
            [6]   YUE L, WANG W, WANG Y, et al. Bletilla striata polysaccharide   [20]  DUBOIS M, GILLES K A, HAMILTON J K,  et al. Colorimetric
                 inhibits angiotensin  Ⅱ-induced ROS and inflammation  via  NOX4   method for determination of sugars and related substances[J].
                 and  TLR2  pathways[J]. International  Journal of Biological   Analytical Chemistry, 1956, 28(3): 350-356.
                 Macromolecules, 2016, 89: 376-388.            [21]  BRADFORD M M. A rapid and sensitive method for the quantitation
            [7]   WANG B L, XU Y, CHEN L J, et al. Optimizing the extraction of   of microgram quantities of protein utilizing the principle of protein-
                 polysaccharides from Bletilla ochracea Schltr. using response surface   dye binding[J]. Analytical Biochemistry, 1976, 72(12): 248-254.
                 methodology (RSM) and  evaluating their  antioxidant activity[J].   [22]  CHEN C (陈春). Structural identification, biological activities evaluation,
                 Processes, 2020, 8(3): 341.                       digestion and fermentation in vitro of polysaccharides from Fructus
            [8]   GUO J J, DAI B L, CHEN N P, et al. The anti-Staphylococcus aureus   Mori[D]. Guangzhou: South China University of Technology (华南
                 activity of the phenanthrene fraction  from fibrous roots  of  Bletilla   理工大学), 2018.
                 striata[J]. BMC Complementary and  Alternative Medicine, 2016,   [23]  TRISTÁN  A I, ABREU A C,  AGUILERA-SÁEZ  L M,  et al.
                 16(1): 1-7.                                       Evaluation of ORAC, IR  and NMR metabolomics for predicting
            [9]   WANG Y, LIU D,  CHEN  S  J,  et al. A new glucomannan from   ripening  stage and variety in melon (Cucumis melo L.)[J]. Food
                 Bletilla striata: Structural and anti-fibrosis effects[J]. Fitoterapia,   Chemistry, 2022, 372: 131263.
                 2014, 92: 72-78.                              [24]  TENG C, QIN P Y, SHI Z X, et al. Structural characterization and
            [10]  ZHANG Y S, LYU T, LI M, et al. Anti-aging effect of polysaccharide   antioxidant activity of alkali-extracted polysaccharides from
                 from Bletilla striata  on nematode  Caenorhabditis elegans[J].   quinoa[J]. Food Hydrocolloids, 2021, 113: 106392.
                 Pharmacognosy Magazine, 2015, 11(43): 449-454.   [25]  YU J, DONG X  D, JIAO J S,  et al. Extraction,  purification, and
            [11]  ZHANG N, XUE L P, YOUNAS A, et al. Co-delivery of triamcinolone   biological activities  in vivo  of a novel fructose-rich polysaccharide
                 acetonide and verapamil for synergistic treatment of hypertrophic   from Codonopsis pilosula[J]. Industrial Crops and Products, 2022,
                 scars via carboxymethyl chitosan and Bletilla striata polysaccharide-   176: 114309.
                 based microneedles[J]. Carbohydrate Polymers, 2022, 284: 119219.   [26]  HU H G (胡会刚), ZHAO Q  L (赵巧丽), PANG Z C (庞振才).
            [12]  XU J, CHEN Z  Y, LIU P H,  et al. Structural characterization of a   Study on deproteinization and decoloration of polysaccharides from
                 pure polysaccharide from  Bletilla striata tubers and its protective   Pineapple Pomace and its antioxidant activity[J]. Food Research and
                 effect against H 2O 2-induced injury fibroblast cells[J]. International   Development (食品研究与开发), 2018, 39(24): 12-20.
                 Journal of Biological Macromolecules, 2021, 193: 2281-2289.   [27]  CHEN Z Y, CHENG L Z, HE Y C, et al. Extraction, characterization,
            [13]  HU L L, LIAO Z C, HU Q Q, et al. Novel Bletilla striata polysaccharide   utilization as wound dressing and drug delivery of  Bletilla striata
                 microneedles: Fabrication, characterization, and in vitro transcutaneous   polysaccharide: A review[J]. International Journal  of  Biological
                 drug delivery[J]. International Journal of Biological Macromolecules,   Macromolecules, 2018, 120: 2076-2085.
                 2018, 117: 928-936.                           [28]  JI X L, YIN M S, NIE  H,  et al.  A review of isolation, chemical
            [14]  SHI M (石猛), MO S Z (莫尚志), ZHOU W Z (周文政). Problems   properties, and bioactivities of polysaccharides from Bletilla striata[J].
                 and solutions of alcohol precipitation method[J]. Journal of Chinese   BioMed Research International, 2020, 2020: 5391379.
                 Medicinal Materials (中药材), 1999, (6): 313-314.   [29]  TAN J Q, CUI P S, GE S Q, et al. Ultrasound assisted aqueous two-
            [15]  YU X H (于晓红), WU X L (吴宪玲), FU W (付薇),  et al.   phase extraction of polysaccharides from  Cornus officinalis fruit:
                 Decoloration and deproteinization of polysaccharides from American   Modeling, optimization, purification, and characterization[J]. Ultrasonics
                 Ginseng[J]. Journal of Chinese Institute  of  Food  Science and   Sonochemistry, 2022, 84: 105966.
                 Technology (中国食品学报), 2017, 17(11): 145-149.   [30]  ZHANG Z F, LYU G Y, HE W Q, et al. Effects of extraction methods
            [16]  HE M J (何美佳), LIU X (刘晓), TANG C C (唐翠翠), et al. Research   on the antioxidant activities of polysaccharides obtained from Flammulina
                 progress on the  methods for deproteinization of polysaccharide[J].   velutipes[J]. Carbohydrate Polymers, 2013, 98(2): 1524-1531.
                 Chinese Journal of Marine Drugs (中国海洋药物), 2019, 38(3): 82-   [31]  CHEN R  Z, LUO S J, WANG C X,  et al. Effects of  ultra-high
                 86.                                               pressure enzyme extraction on characteristics and functional properties
            [17]  XIONG Q P, HUANG S, CHEN J H, et al. A novel green method for   of red pitaya (Hylocereus polyrhizus) peel pectic polysaccharides[J].
                 deproteinization of polysaccharide from Cipangopaludina chinensis   Food Hydrocolloids, 2021, 121: 107016.
                 by freeze-thaw treatment[J]. Journal of Cleaner Production, 2017,   [32]  LAI Y L, LIN Y Y, SADHASIVAM S,  et al. Efficacy  of  Bletilla
                 142: 3409-3418.                                   striata polysaccharide on  hydrogen  peroxide-induced apoptosis  of
            [18]  ZHANG L M, ZHANG, Q, ZHENG Y Q, et al. Study of Schiff base   osteoarthritic chondrocytes[J]. Journal of Polymer Research, 2018,
                 formation between dialdehyde cellulose and proteins, and its application   25(2): 1-10.
                 for the deproteinization of crude polysaccharide extracts[J]. Industrial   [33]  YARLEY O P  N, KOJO A B, ZHOU C S,  et al. Reviews on
                 Crops and Products, 2018, 112: 532-540.           mechanisms of in vitro antioxidant, antibacterial and anticancer
            [19]  CHEN H Y, ZENG J S, WANG B, et al. Structural characterization   activities of water-soluble plant polysaccharides[J]. International
                 and antioxidant activities of Bletilla striata polysaccharide extracted   Journal of Biological Macromolecules, 2021, 183: 2262-2271.
   69   70   71   72   73   74   75   76   77   78   79