\[1\]孟昭剛, 張子璇. 解放軍預防醫(yī)學雜志\[J\], 2020,38(3): 88-89+93. MENG Z G, ZHANG Z X. Journal of Preventive Medicine of Chinese Peoples Liberation Army\[J\], 2020, 38(3): 88-89+93. \[2\]MORTON L M, PHILLIPS T J. Journal of the American Academy of Dermatology\[J\], 2016, 74(4):589-605. \[3\]ZHANG Z,XIE J,XING J, et al. Advanced Healthcare Materials\[J\], 2023,12: 2201565. \[4\]FALCONE M, ANGELIS B D, PEA F, et al. Journal of Global Antimicrobial Resistance\[J\], 2021, 26: 140-147. \[5\]FARAHANI M, SHAFIEE A. Advanced Healthcare Materials\[J\], 2021, 10: 2100477. \[6\]MORENOTORRES V, de MENDOZA C, de la FUENTE S, et al. Internal and Emergency Medicine\[J\], 2022, 17: 431-438. \[7\]FARRELL J M, ZHAO C Y, TARQUINIO K M, et al. Frontiers in Microbiology\[J\], 2021, 12: 682571. \[8\]VIIAY S, BANSAL N, RAO B K, et al. Infection and Drug Resistance\[J\], 2021, 14: 1893-1903. \[9\]KUCINSKALIPKA J, GUBANSKA I, JANIK H, et al. Materials Science & Engineering: CMaterials for Biogical Applications\[J\], 2015, 46: 166-176. \[10\]TAN L, HU J, HUANG H, et al. International Journal of Biological Macromolecules\[J\], 2015, 79: 469-476. \[11\]GHOLAMI H, YEGANEH H. Biomedical Materials\[J\], 2020, 15(4): 045001. \[12\]BAHRAMI N, NOURI KHORASANI S, MAHDAVI H, et al. Journal of Applied Polymer Science\[J\], 2019, 136(21): 47567. \[13\]YANG Y, ZHAO X, YU J, et al. Bioactive Materials\[J\], 2021, 6(11): 3962-3975. \[14\]CLAUDIORIZO J A, GONZALEZLARA I A, FLORESGUIA T E, et al. International Journal of Biological Macromolecules\[J\], 2020, 156(1): 27-39. \[15\]SINGHAL P, SMALL W, COSGRIFFHERNANDEZ E, et al. Acta Biomaterialia\[J\], 2014, 10(1): 67-76. \[16\]JANIK H, MARZEC M. Materials Science & Engineering: C\[J\], 2015, 48: 586-591. \[17\]楊建軍,聚氨酯醫(yī)用材料\[M\].北京:化學工業(yè)出版社,2008:36-48. YANG J J.Polyurethane Medical Materials\[M\]. Beijing: Chemical Industrial Press, 2008: 36-48. \[18\]HUANG Y, HE K, WANG X. Materials Science & Engineering: C\[J\], 2013, 33(6): 3220-3229. \[19\]FIROOZI N, REZAYAN A H, REZAEI S J T, et al. International Journal of Polymeric Materials and Polymeric Biomaterials\[J\], 2017, 66(16): 805-811. \[20\]LIU X, NIU Y, CHEN K, et al. Materials Science & Engineering: C\[J\], 2017, 71: 289-297. \[21\]SHEIKHOLESLAM M, WRIGHT M E E, CHENG N, et al. ACS Biomaterials Science & Engineering\[J\], 2020, 6(1): 505-516. \[22\]GUELCHER S A. Tissue Engineering Part B: Reviews\[J\], 2008, 14(1): 3-17. \[23\]ADIPURNAMA I, YANG M C, CIACH T, et al. Biomaterials Science\[J\], 2016, 5(1): 22-37. \[24\]MARZEC M, KUCIN′SKALIPKA J, KALASZCZYN′SKA I, et al. Materials Science and Engineering C\[J\], 2017, 80: 736-747. \[25\]SINGH A, SHIEKH P A, DAS M, et al. Biomacromolecules\[J\], 2019, 20(2): 662-673. \[26\]MAHANTA A K, MITTAL V, SINGH N, et al. Macromolecules\[J\], 2015, 48(8): 2654-2666. \[27\]ALURI R, JAVAKANNAN M. Biomacromolecules\[J\], 2017, 18(1): 189-200. \[28\]馬曉振, 羅清, 秦冬冬, 等. 化學進展\[J\], 2020, 241(5): 123-132. MA X Z, LUO Q, QIN D D, et al. Progress in Chemistry\[J\], 2020, 241(5): 123-132. \[29\]COCCIA F, GRYSHCHUK L, MOIMARE P, et al. Polymers\[J\], 2021, 13(15): 2556. \[30\]ANGHEL N, DINU V M, VERESTIUC L, et al. Polymers\[J\], 2021, 13(11): 1845. \[31\]JEONG J, KIM W S, MIN W L, et al. ACS Omega\[J\], 2021, 6(16): 10745-10751. \[32\]GONDALIYA A, NEIAD M. Molecules\[J\], 2021, 26(8): 2302. \[33\]REN L, TANG Z, DU J, et al. Journal of Hazardous Materials\[J\], 2021, 417(1-3): 126130. \[34\]WANG S, ZHANG Y, YANG L, et al. Polymers\[J\], 2020, 12(5): 1135. \[35\]CLAUDIORIZO J A, ESCOBEDOESTRADA N, CARRILLOCORTES S L, et al. Journal of Materials Science: Materials in Medicine\[J\], 2021, 32(6): 70. \[36\]MUHAMMAD R, ZIA M K, ASIF J M, et al. International Journal of Biological Macromolecules\[J\], 2021, 180(1): 324-331. \[37\]GONZALEZTORRES M, SERRANOAGUILAR I H, CABRERAWROOMAN A, et al. Carbohydrate Polymers\[J\], 2021, 270(15): 117916. \[38\]WENDELS S, AVEROUS L. Bioactive Materials\[J\], 2021, 6(4): 1083-1106. \[39\]AUSTIN A, HICKS D. PU Magazine\[J\], 2016, 13: 442-452. \[40\]AKINDOVO J, BEG M D, GHAZALI S, et al. RSC Advances\[J\], 2016, 6(115): 114453-114482. \[41\]TORNIMBENE B, EREMIN S, ESCHER M, et al. The Lancet Infectious Diseases\[J\], 2018, 18(3): 241-242. \[42\]FISHER R A, GOLLAN B, HELAINE S. Nature Reviews Microbiology\[J\], 2017, 15(8): 453-464. \[43\]BRAZ V S, MELCHIOR K, MOREIRA C G. Frontiers in Cellular and Infection Microbiology\[J\], 2020, 10: 548492. \[44\]GUO Y L, SONG G H, SUN M L, et al. Frontiers in Cellular and Infection Microbiology\[J\], 2020, 10: 00107. \[45\]MARTIN R M, BACHMAN M A. Frontiers in Cellular & Infection Microbiology\[J\], 2018, 8: 4. \[46\]DUAN H, HE Y, ZHANG H, et al. Journal of Wound Care\[J\], 2020, 29(9): 510-517. \[47\]SUBHAMOY D, BAKER A B. Frontiers in Bioengineering and Biotechnology\[J\], 2016, 4: 82. \[48\]GRADINARU L M, BERCEA M, LUPU A, et al. Polymers\[J\], 2023, 15(7): 1697. \[49\]RAFI R, ZULFIQAR S, ASAD M, et al. Materials Today Communications\[J\],2023, 35: 105914. \[50\]FOULADIAN P, JIN Q, ARAFAT M, et al. Pharmaceuticals\[J\], 2021, 14(4): 311. \[51\]KUANG Z P, DAI G M, WAN R J, et al. Genes & Diseases\[J\], 2019, 8(2): 193-202. \[52\]KAPUKAYA R, CILOGLU O. International Wound Journal\[J\], 2020, 17(5): 1159-1165. \[53\]MALONEPOVOLNY M J, BRADSHAW T M, MERRICKS E P, et al. ACS Biomaterials Science and Engineering\[J\], 2021, 7(6): 2444-2452. \[54\]SHIN S R, LIANG J Y, RYU H, et al. Molecules\[J\], 2019, 24(7): 1347. \[55\]SADEGHIANMARYAN A, SARDROUD H A, ALLAFASGHARI S, et al. Journal of Biomaterials Applications\[J\], 2020, 35(1): 135-145. \[56\]ESMAEILI E, ESLAMIARSHAGHI T, HOSSEINZADEH S, et al. International Journal of Biological Macromolecules\[J\], 2020, 152: 418-427. \[57\]YUE Y, GONG X, JIAO W, et al. Journal of Colloid and Interface Science\[J\], 2021, 529(15): 310-318. \[58\]HUANG Q, HE F, YU J, et al. Journal of Materials Chemistry B\[J\], 2021, 9(11): 2727-2735. \[59\]ZHANG H, CHEN G, YU Y, et al. Advanced Science\[J\], 2020, 7(16): 2000789. \[60\]PENG P, YANG J, WU Q, et al. ePolymers\[J\], 2021, 21(1): 047-056. \[61\]LIU M, LIU T, CHEN X, et al. Journal of Nanobiotechnology\[J\], 2018, 16: 89. \[62\]JIAN Z, WANG H, LIU M, et al. Materials Science and Engineering: C\[J\], 2020, 111: 110833. \[63\]WANG Y, WANG H, LI Z, et al. Journal of Colloid and Interface Science\[J\], 2021, 594(15): 316-325. \[64\]SALEKDEH S S H, DAEMI H, ZAREGACHI M, et al. ACS Applied Materials and Interfaces\[J\], 2020, 12(3): 3393-3406. \[65\]盧江琴,劉斐,黃駿成等. 中國材料進展\[J/OL\], 2023, http://knscnkinet/kcms/detail/611473TG202301191720002html. LU J Q, LIU F, HUANG J C, et al. Materials China\[J/OL\], 2023, http://knscnkinet/kcms/detail/611473TG202301191720002html. \[66\]GHOLAMI H, YEGANEH H. European Polymer Journal\[J\], 2020, 142: 110142. \[67\]SHEN W, CHEN X, LUAN J, et al. ACS Applied Materials & Interfaces\[J\], 2017, 9(46): 40031-40046. \[68\]SHI Y, van der MEEL R, THEEK B, et al. ACS Nano\[J\], 2015, 9 (4): 3740-3752. \[69\]ZHANG F, CHENG H, KONG Q, et al. ACS Applied Materials & Interfaces\[J\], 2019, 11(40): 37147-37155. \[70\]FENG Y, XIAO K, HE Y, et al. Materials Science and Engineering C\[J\], 2020, 121: 111820. \[71\]MOLLA M R, RANGADURAI P, PAVAN G M, et al. Nanoscale\[J\], 2015, 7(9): 3817-3837. \[72\]HUYNH T, PADOIS K, SONVICO F, et al. European Journal of Pharmaceutics & Biopharmaceutics\[J\], 2010, 74(2): 255-264. \[73\]KIM S, CHEN Y, HO E A, et al. Acta Biomaterialia\[J\], 2017, 47: 100-112. \[74\]KASHYAP S, SINGH N, SURNAR B, et al. Biomacromolecules\[J\], 2015, 17(1): 384-398. \[75\]WANG M, ZHAN J, XU L, et al. Journal of Biomaterials Science Polymer Edition\[J\], 2020, 32(5): 613-634. \[76\]SHAHROUSVAND M, HOSEINIAN M S, GHOLLASI M, et al. Materials Science & Engineering\[J\], 2017, 74(1): 556-567. \[77\]ITO A, TAKIZAWA Y, HONDA H, et al. Tissue Engineering\[J\], 2004, 10(5): 833-840. \[78\]LAURANO R, BOFFITO M, ABRAMI M, et al. Bioactive Materials\[J\], 2021, 6(9): 3013-3024. \[79\]TORCHIO A, CASSINO C, LAVELLA M, et al. Materials Science and Engineering: C\[J\], 2021, 127: 112194. \[80\]CERUSICO N A, AYBAR J P, LOPEZ S A, et al. Analyst\[J\], 2018, 143: 1583-1592. \[81\]STROMDAHL A C, IGNATOWICZ L, PETRUK G, et al. Acta Biomaterialia\[J\], 2021, 128(1): 314-331. \[82\]DING Y, SUN Z, SHI R, et al. ACS Applied Materials & Interfaces\[J\], 2018, 11(3): 2860-2869. \[83\]GONZALEZTORRES M, SERRANOAGUILAR I H, CABRERAWROOMAN A, et al. Carbohydrate Polymers\[J\], 2021, 270(15): 117916. \[84\]dos SANTOS M R, ALCARAZESPINOZA J J, da COSTA M M, et al. Materials Science and Engineering: C\[J\], 2018, 89(1): 33-40. \[85\]XIAO L, NI W, ZHAO X, et al. Soft Matter\[J\], 2021, 17(11): 3162-3173. \[86\]XU B, LI A, WANG R, et al. Advanced Functional Materials\[J\], 2021, 31(14): 2105265. \[87\]ZHANG H, CHEN C, ZHANG H, et al. Applied Materials Today\[J\], 2021, 23: 101068. \[88\]FU C Y, CHUANG W T, HSU S H. ACS Applied Materials & Interfaces\[J\], 2021, 13(8): 9702-9713. \[89\]SHIEKH A P A, SINGH A A, KUMAR A. Biomaterials\[J\], 2020, 249: 120020. \[90\]ZHOU Y, FENG H, JIANG Y, et al. ACS Applied Materials & Interfaces\[J\], 2021, 13(16): 18443-18453. \[91\]LI Y, WANG J, WANG Y, et al. Composites Part B: Engineering\[J\], 2021, 223(15): 109101. \[92\]ANDRABI S M, SINGH P, MAJUMDER S, et al. Chemical Engineering Journal\[J\], 2021, 423(5): 130219. \[93\]LIANG Y, HE J, GUO B. ACS Nano\[J\], 2021, 15 (8): 12687-12722.