Page 127 - 《精细化工》2023年第8期
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第 8 期            曲萌菲,等:  羟丙基壳聚糖/氧化甲基纤维素自愈合水凝胶的制备及其载药性能                                  ·1741·


                 chitosan quaternary ammonium salt[J]. Carbohydrate Research, 2021,   Developing of hydrophobically  associated polyacrylamide  hydrogels
                 507: 108389.                                      and its self-healing mechanism[J]. Polymeric Materials Science and
            [6]   AN H, YANG Y,  ZHOU  Z W,  et al. Pectin-based  injectable and   Engineering (高分子材料科学与工程), 2020, 36(5): 127-135.
                 biodegradable self-healing  hydrogels for enhanced synergistic   [18]  LI D Q, WANG S Y, MENG Y J, et al. Fabrication of self-healing
                 anticancer therapy[J]. Acta Biomaterialia, 2021, 131: 149-161.   pectin/chitosan hybrid hydrogel via Diels-Alder reactions for drug
            [7]   SARMAH D, KARAK N. Physically cross-linked starch/hydrophobically-   delivery with high swelling property, pH-responsiveness, and
                 associated poly(acrylamide) self-healing mechanically strong   cytocompatibility[J]. Carbohydrate Polymers, 2021, 268: 118244.
                 hydrogel[J]. Carbohydrate Polymers, 2022, 289: 119428.   [19]  LAVANYA K, CHANDRAN S V, BALAGANGADHARAN K, et al.
            [8]   LIU X, YANG  W  X, XIAO C M. Self-healable and pH-sensitive   Temperature- and pH-responsive chitosan-based injectable hydrogels
                 high-strength water-soluble chitosan/chemically cross-linked polyvinyl   for bone tissue engineering[J]. Materials Science & Engineering C:
                 alcohol semi-IPN  hydrogel[J]. International Journal of  Biological   Materials for Biological Applications, 2020, 111: 110862.
                 Macromolecules, 2019, 138: 667-672.           [20]  EBRAHIMI M H, SAMADIAN H, DAVANI S T, et al. Peripheral
            [9]   ZHOU Z W, WANG Z F, LIU X J, et al. Pectin-based self-healing   nerve regeneration in rats by chitosan/alginate hydrogel composited
                 hydrogel through acylhydrazone connection for controlled drug release   with berberine and naringin nanoparticles:  In vitro and in vivo
                 and enhanced tumor therapy[J]. Journal of Drug Delivery Science   study[J]. Journal of Molecular Liquids, 2020, 318: 114226.
                 and Technology, 2022, 70: 103210.             [21]  CHUYSINUAN P, THANYACHAROEN T, THONGCHAI K, et al.
            [10]  YANG Y Y (杨珏莹), CHEN Y (陈煜), ZHAO L (赵琳), et al. Progress   Preparation of chitosan/hydrolyzed collagen/hyaluronic acid based
                 on constructing of self-healing hydrogel based on dynamic reversible   hydrogel composite with caffeic acid addition[J]. International Journal
                 non-covalent system[J]. Materials Review (材料导报), 2020, 34(5):   of Biological Macromolecules, 2020, 162: 1937-1943.
                 133-141.                                      [22]  LIU Q, JI N, XIONG L,  et al. Rapid  gelling, self-healing, and
            [11]  YU P, XIE J,  CHEN Y,  et al. A thermo-sensitive injectable   fluorescence-responsive chitosan hydrogels formed by dynamic
                 hydroxypropyl chitin hydrogel for sustained salmon calcitonin release   covalent crosslinking[J]. Carbohydrate Polymers, 2020, 246: 116586.
                 with enhanced  osteogenesis and  hypocalcemic effects[J]. J Mater   [23]  CAO J L, HE G H, NING X Q, et al. Hydroxypropyl chitosan-based
                 Chem B, 2020, 8(2): 270-281.                      dual self-healing  hydrogel for adsorption  of chromium ions[J].
            [12]  LI D Q, WANG S Y, MENG Y J, et al. An injectable, self-healing   International Journal of Biological Macromolecules, 2021, 174: 89-100.
                 hydrogel  system from oxidized  pectin/chitosan/γ-Fe 2O 3[J]. International   [24]  YEO Y H, PARK W H. Dual-crosslinked, self-healing and thermo-
                 Journal of Biological Macromolecules, 2020, 164: 4566-4574.
            [13]  LI J (李进), ZHAO Z N (赵梓年), LI Z Z (李征征), et al. Synthetic   responsive methylcellulose/chitosan oligomer copolymer hydrogels[J].
                 mechanism and biomedical  application of self-healing hydrogel[J].   Carbohydrate Polymers, 2021, 258: 117705.
                 Materials Reports (材料导报), 2019, 33(19): 3328-3346.   [25]  HOU  B N (候冰娜), NI K (倪凯),  SHEN H L  (沈慧玲),  et al.
            [14]  QIU W W, HAN H, LI M N, et al. Nanofibers reinforced injectable   Preparation of self-healing oxidized sodium alginate-carboxymethyl
                 hydrogel with  self-healing, antibacterial, and hemostatic  properties   chitosan hydrogel for sustained drug release[J]. Acta Materiae Compositae
                 for chronic wound healing[J]. Journal of Colloid and Interface Science,   Sinica (复合材料学报), 2022, 39 (1) : 250-257.
                 2021, 596: 312-323.                           [26]  LIU C X (刘长霞), JIN R Y (金儒颖), DONG C F (董翠芳), et al.
            [15]  YANG J Y, CHEN  Y, ZHAO L,  et al. Preparation  of a chitosan/   Research progress in construction and  property of aldehyde-imine-
                 carboxymethyl  chitosan/AgNPs polyelectrolyte composite physical   chitosan hydrogel[J]. Fine Chemicals (精细化工), 2021, 38(5): 865-873.
                 hydrogel with self-healing ability, antibacterial properties, and good   [27]  SONG Z Y (宋志英), HAN D (韩冬), WANG J (王娟), et al. Study
                 biosafety simultaneously, and its application as a wound dressing[J].   on reaction mechanisms and their structure-activity relationship
                 Composites Part B: Engineering, 2020, 197: 108139.   between each of four furanocoumarin drugs and lysozyme[J]. Journal
            [16]  SHEN Y H, WANG Z L, WANG Y C,  et al. A  self-healing   of Instrumental Analysis (分析测试学报), 2013, 32(1): 23-31.
                 carboxymethyl chitosan/oxidized carboxymethyl cellulose hydrogel   [28]  JIANG K, ZHOU X S, HE T. The synthesis of bacterial cellulose-
                 with fluorescent bioprobes  for glucose detection[J]. Carbohydrate   chitosan zwitterionic hydrogels with  pH responsiveness for  drug
                 Polymers, 2021, 274: 118642.                      release mechanism of the naproxen[J]. International Journal of Biological
            [17]  HE M L (何美玲), HUANG M (黄敏), ZHANG M J (张梦蛟), et al.   Macromolecules, 2022, 209: 814-824.




            (上接第 1733 页)                                           Transactions of the Faraday Society, 1944, 40: 546-551.
                                                               [38]  ZHANG Y F (张玉芬). Construction and corrosion behavior  of
            [33]  HU S (胡盛), YUAN X H (袁晓慧), TAN Z W (谭志伟),  et al.   superhydrophobic coatings on magnesium alloy[D]. Harbin: Harbin
                 Study on dry modification of heavy calcium carbonate by sodium   Institute of Technology (哈尔滨工业大学), 2017.
                 stearate[J]. China Non-metallic Mining Industry Herald (中国非金属  [39]  WANG X Y (王晓艳), SUN B (孙波). Preparation and properties of
                 矿工业导刊), 2020, (2): 8-10,4.                        PTFE-CaCO 3 super hydrophobic composite coatings[J].  China
            [34]  ZHU Z C (朱子春), WANG J J (汪江节),  YANG X H (杨小红).   Synthetic Resin and Plastics (合成树脂及塑料), 2019, 36(4): 23-25, 37.
                 Preparation and characterization of calcium micro/nano materials by   [40]  WANG C D, GUO J C, YU H B, et al. Preparation and self-cleaning
                 biological template  method[J]. Journal of Chifeng  University  property of a superhydrophobic coating based on micro-nano integrated
                 (Natural Science  Edition) (赤峰大学学报:  自然科学版), 2017,   TiO 2 microspheres[J]. Ceramics International, 2021, 47(22): 32456-
                 33(5): 13-15.                                     32459.
            [35]  YUAN Z  Q, BIN J P, WANG  X,  et al. Preparation of a   [41]  YANG M P, LIU W Q, CHI J, et al. Fabrication of superhydrophobic
                                          based  superhydrophobic  cotton fabric with fluorinated TiO 2  sol  by a green and one-step
                 polydimethylsiloxane(PDMS)/CaCO 3
                 coating[J]. Surface & Coatings Technology, 2014, 254: 97-103.   sol-gel process[J]. Carbohydrate Polymers, 2018, 197: 75-82.
            [36]  ZHENG  Y S,  HE Y, QING Y G,  et al. Preparation of   [42]  JU Z X (鞠增鑫), HU L N (胡丽娜), NIJIATI Y S F (尼加提·玉素
                 superhydrophobic coating using modified CaCO 3[J]. Applied Surface   甫). Preparation of super-hydrophobic coating on the surface of mine
                 Science, 2013, 265: 532-536.                      water flowing and its scale inhibition mechanism[J]. Materials
            [37]  CASSIE A  B  D,  BAXTER S.  Wettability of porous surfaces[J].   Protection (材料保护), 2021, 54(10): 13-18.
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