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化学进展 2009, Vol. 21 Issue (0708): 1644-1654 前一篇   后一篇

• 综述与评论 •

载银缓释型抗菌敷料

温昕;安胜军*;侯志飞;焦展   

  1. (河北化工医药职业技术学院 |石家庄 |050026)
  • 收稿日期:2008-09-02 修回日期:2008-12-17 出版日期:2009-08-24 发布日期:2009-06-30
  • 通讯作者: 安胜军 E-mail:anshjun@yahoo.com
  • 基金资助:

    无;无

Ag-Loaded Sustained Release Antimicrobial Dressings

Wen Xin; |An Shengjun*;  |Hou Zhifei; |Jiao Zhan   

  1. (The Chemical and Pharmaceutical College of Hebei, Shijiazhuang 050026, China)
  • Received:2008-09-02 Revised:2008-12-17 Online:2009-08-24 Published:2009-06-30
  • Contact: An Shengjun E-mail:anshjun@yahoo.com

近10年来,载银缓释型抗菌敷料因其优良特性,在医药、卫生等领域引起科学家们的广泛关注。本文综述了银的抗菌机理和载银缓释型抗菌敷料的缓释机制;重点介绍了目前在国际市场上销售的代表性载银缓释型抗菌敷料的性能,并从载体材料分类角度(如生物高分子、合成高分子、生物和合成高分子共用、有机硅材料)总结了新型载银抗菌敷料的研究进展;最后,讨论了载银抗菌医用敷料在研究和应用中需要解决的问题。

During recent ten years, Ag-loaded sustained release antimicrobial dressings have been drawn great attention in the fields of medicine and sanitation because of their excellence characteristic. This review highlights the antimicrobial mechanisms and sustained release methods of silver. It emphatically introduces the functions of the primary Ag-loaded sustained release antimicrobial dressings on the international market, and summarizes the progress on the novel Ag-loaded sustained release antimicrobial dressings from the area of material, including biopolymer, synthetic polymer, blended biopolymer and synthetic polymer and silicone materials. Finally, the challenge and problem for the development of Ag-loaded sustained release antimicrobial dressings are discussed.

Contents
1 Introduction
2 Antimicrobial mechanisms of silver
2.1 Antimicrobial mechanisms of silver ion
2.2 Antimicrobial mechanisms of nano-particle silver
3 Sustained release mechanisms of silver ion
3.1 Interaction of electrovalent and coordinate bond
3.2 Adjustion of the hydrophilicity of carrier
3.3 Crosslinking
3.4 Enhancement of the crystallinity degree
3.5 Others
4 Properties of Ag-loaded sustained release antimicrobial dressings on the market
4.1 Biopolymers
4.2 Polyurethanes
4.3 Artificial fibres/polyesters
5 MaterialsW and characters of the novel Ag-loaded sustained release antimicrobial dressings
5.1 Biopolymers
5.2 Synthetic polymer
5.3 Biopolymers and synthetic polymers
5.4 Polysilicone resins
6 Problems and prospects

中图分类号: 

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[ 1 ]  Kuroyanagi Y, Kim E , Shioya N. J . Burn Care Rehabil . , 1990 ,11 : 106 —115
[ 2 ]  Qin Y. Polym. Int . , 2008 , 57 : 171 —180
[ 3 ]  Sezer A D , Hatipoˇglu F , Cevher E , et al . AAPS Pharm. Sci .Tech. , 2007 , 8 (2) : art . no. 39
[ 4 ]  Simon S , Le T, Phung GS. J . Ind. Microbiol . Biotechnol . , 2006 ,33 : 627 —634
[ 5 ]  Damm C , Munstedt H. Appl . Phys. , 2008 , 91 : 479 —486
[ 6 ]  Payne J L , Ambrosio A M. J . Biomed. Mater. Res. Part B : Appl .Biomater. , 2009 , 89 (1) : 223 —241
[ 7 ]  Lo S F , Hayter M, Chang C J , et al . J . Clin. Nur. , 2008 , 17 :1973 —1985
[ 8 ]  Silver S , Phung T L , Silver G. J . Ind. Microbiol . Biotechnol . ,2006 , 33 : 627 —634
[ 9 ]  Lawrence J C. Burns , 1977 , 3 : 186 —193
[10 ]  Choi Y S , Hong S R , Lee Y M, et al . Biomaterials , 1999 , 20 :409 —417
[11 ]  Castellano J J , Shafii S M, Ko F , et al . Int . Wound J . , 2007 , 4 :114 —122
[12 ]  Mi F L , Wu YB , Shyu S S , et al . J . Biom. Mate. Res. , 2001 ,59 : 438 —449
[13 ]  Kumar R , Münstedt H. Biomaterials , 2005 , 26 : 2081 —2088
[14 ]  Grier N. Disinfection , Sterilization , and Preservation. Philadelphia: Lea and Febiger , 1983. 375 —389
[15 ]  Slawson R M, Van D M, Lee H , et al . Plasmid. , 1992 , 27 :72 —79
[16 ]  Bellantone M, Williams H D , Hench L L. Antimicrob. Agents Chemother. , 2002 , 46 : 1940 —1945
[17 ]  Klueh U , Wagner V , Kelly S , et al . J . Biomed. Mater. Res. ,2000 , 53 : 621 —631
[18 ]  Feng Q L , Wu J , Chen G Q , et al . J . Biomed. Mater. Res. ,2000 , 52 : 662 —668
[19 ]  夏金兰(Xia J L) , 王春(Wang C) , 刘新星(Liu X X) . 中南大学学报: 自然科学版(J . Central South University: Science and Technology) , 2004 , 35 (1) : 31 —38
[20 ]  Song Y H , Ko K K, Oh I H , et al . Euro. Cells &Mater. , 2006 ,11 : 58
[21 ]  Sondi I , Salopek-Sondi B. J . Colloid Interface Sci . , 2004 , 275 :177 —182
[22 ]  Stoimenov K P , Klinger L R , Marchin GL , et al . Langmuir , 2002 ,18 : 6679 —6686
[23 ]  Amro A N , Kotra P L , Wadu-Mesthrige K, et al . Langmuir , 2000 ,16 : 2789 —2796
[24 ]  Kim SJ , Kuk E , Yu N K, et al . Nanomedicine , 2007 , 3 : 95 —101
[25 ]  Mendis E , Rajapakse N , Byun H G, et al . Life Sci . , 2005 , 77 :2166 —2178
[26 ]  Li P , Li J , Wu C , et al . Nanotechnology , 2005 , 16 : 1912 —1917
[27 ]  Bowler P , Jacques E , Parsons D. WO 00243743 ,2002
[28 ]  Bowler P , Parsons D , Walker M. EP 1825841 ,2003
[29 ]  Chanda M, Rempel GL. Reaction Polymers , 1990 , 12 : 83 —94
[30 ]  Chen S P , Wu G Z, Zeng H Y. Carbohydrate Polymers , 2005 , 60 :33 —38
[31 ]  Kuroyanagi Y, Kim E , Kenmochi M, et al . J . Appl . Biomater. ,1992 , 3 : 153 —161
[32 ]  Hashimoto T, Suzuki Y, Tanihara M, et al . Biomaterials , 2004 ,25 : 1407 —1414
[33 ]  王孝华(Wang X H) , 聂明(Nie M) . 化学工业与工程(Chemical Industry and Engineering) , 2005 , 22 : 187 —189
[34 ]  Lee J E , Park J C , Lee K H , et al . Artif . Organs , 2002 , 26 :636 —646
[35 ]  Kumar R , Münstedt H. Polym. Int . , 2005 , 54 : 1180 —1186
[36 ]  Ghosh S , Banthia KA. J . Mater. Sci . , 2007 , 42 : 118 —121
[37 ]  Zhang YW, Peng H S , Huang W, et al . J . Phys. Chem. , 2008 ,112 : 2330 —2336
[38 ]  Lee Y M, Kim S S , Park M H , et al . J . Mater. Sci . : Mater.Med. , 2000 , 11 : 817 —823
[39 ]  Scanlon E , Karlsmark T, Leaper D J , et al . Int . Wound J . , 2005 ,2 : 150 —160
[40 ]  Newman G R , Walker M, Hobot A J , et al . Biomaterials , 2006 ,27 : 1129 —1139
[41 ]  Childress B , Berceli S , Nelson P , et al . Ann. Plast . Surg. , 2007 ,21 : 598 —602
[42 ]  Wright J B , Lam K, Hansen D , et al . Am. J . Infect . Control . ,1999 , 27 (4) : 344 —350
[43 ]  Meaume S , Senet P , Dumas R , et al . Br. J . Nurs. , 2002 , 11(16) : 42 —50
[44 ]  J? rgensen B , Price P , Andersen K E , et al . Int . Wound J . , 2005 ,2 : 64 —73
[45 ]  Ulkur E , Oncul O , Karagoz H , et al . Burns , 2005 , 31 : 874 —877
[46 ]  Mazurak V C , Burrell R E , Tredget E E , et al . Burns , 2007 , 33 :52 —58
[47 ]  Thomas S , McCubbin P. J . Wound Care , 2003 , 12 : 101 —107
[48 ]  Muangman P , Chuntrasakul C , Silthram S , et al . J . Med. Assoc.Thai . , 2006 , 89 (7) : 953 —958
[49 ]  Mu, ller G, Winkler Y, Kramer A. J . Hospital Infection , 2003 , 53 :211 —214
[50 ]  Yu HJ , Xu X Y, Chen X, et al . J . Appl . Polym. Sci . , 2007 ,103 : 125 —133
[51 ]  Maneerung T, Rujiravanit R , Tokura S. Carbohydrate Polymers ,2008 , 72 : 43 —51
[52 ]  Ersek R A , Denton D R. Ann. Plast . Surg. , 1984 , 13 : 482 —487
[53 ]  Ersek R A , Denton D R. Contemp. Surg. , 1984 , 23 : 83 —93
[54 ]  Fox C L , Modak SM, Stanford J W, et al . Burns , 1981 , 7 : 295 —297
[55 ]  Miller L , Hansbrough J , Slater H , et al . J . Burn Care Rehabil . ,1990 , 11 : 35 —41
[56 ]  Kuroyanagi Y, Kim E , Shioya N. J . Burn Care Rehabil . , 1991 ,12 : 106 —115
[57 ]  Lu S , Gao W, Gu H Y. Burns , 2008 , 34 : 623 —628
[58 ]  Qin Y. Int . Wound J . , 2005 , 2 : 172 —176
[59 ]  Willi P , Chandra P S. Trends Biomater. Artif . Organs , 2004 , 18(1) : 18 —23
[60 ]  Balassa L L , Prudden J F. Applications of chitin and chitosan in wound healing acceleration , in Chitin , Chitosan and Related Enzymes , San Diego: Academic Press , 1984. 296 —305
[61 ]  Yu S H , Mi F L , Wu Y B , et al . J . Mem. Sci . , 2003 , 212 :237 —254
[62 ]  Yu S H , Mi F L , Wu Y B , et al . J . Appl . Polym. Sci . , 2005 ,98 : 538 —549
[63 ]  Guan M, Ren L , Wu T, et al . J . Appl . Polym. Sci . , 2007 , 105 :1679 —1686
[64 ]  Qin Y M, Groocock M R. WO 0236866 , 2002
[65 ]  Pang X, Zhitomirsky I. Surface &Coatings Technology , 2008 , 202 :3815 —3821
[66 ]  Qin YM, Zhu C J , Chen J , et al . J . Appl . Polym. Sci . , 2006 ,101 : 766 —771
[67 ]  Qin YM. J . Appl . Polym. Sci . , 1993 , 49 : 727 —731
[68 ]  Kawai K, Suzuki S , Tabata Y, et al . J . Biomed. Mater. Res. ,2001 , 57 : 346 —356
[69 ]  Matsuda K, Suzuki S , Issiki N , et al . Biomaterials , 1993 , 14 :1030 —1035
[70 ]  Rosenkranz H S , Carr H S. Antimicrob Agents Chemother , 1972 , 2 :367 —372
[71 ]  Choi YS , Hong S R , Lee YM, et al . J . Biomed. Mater. Res. Part B : Appl . Biomater. , 1999 , 48 : 631 —639
[72 ]  Bromberg L E , Braman V M, Rothstein D M, et al . J . Control .Rel . , 2000 , 68 : 63 —72
[73 ]  Yoshida K, Tanagewa M, Atsuta M. J . Biomed. Mater. Res. ,1999 , 47 : 516 —522
[74 ]  Radheshkumar C , Münstedt H. Materials Letters , 2005 , 59 : 1949 —1953
[75 ]  Kumar R , Howdle S , Münstedt H. J . Biomed. Mater. Res. Part B :Appl . Biomater. , 2005 , 75 : 311 —319
[76 ]  Damm C , Münstedt H , Rêsch A. Mater. Chem. Phys. , 2008 , 108 :61 —66
[77 ]  Zan J , Chen H H , Jiang G Q , et al . J . Appl . Poly. Sci . , 2006 ,101 : 1892 —1898
[78 ]  Kyung H , H. Polym. Eng. Sci . , 2007 , 47 : 43 —49
[79 ]  Jeon HJ , KimJ S , Kim T G, et al . Appl . Sur. Sci . , 2008 , 254 :5886 —5890
[80 ]  Kim HJ , Choi E Y, Oh J S , et al . Biomaterials , 2000 , 21 : 131 —141
[81 ]  Yu D G. Colloids Sur. B : Biointerf . , 2007 , 59 : 171 —178
[82 ]  LaMer V K. Ind. Eng. Chem. , 1952 , 44 : 1270 —1227
[83 ]  Ghosh S , Banthia A K. Eur. Polym. J . , 2003 , 39 : 2141 —2146
[84 ]  Loher S , Schneider D O , Maienfisch T, et al . Small , 2008 , 4 :824 —832
[85 ]  Eckelman MJ , Graedel T E. Environ. Sci . Technol . , 2007 , 41 :6283 —6289
[86 ]  Sambhy V , MacBride M M, Peterson B R , et al . J . Am. Chem.Soc. , 2006 , 128 : 9798 —9890
[87 ]  Damm C , Münstedt H. Surface &Coatings Technology , 2008 , 202 :5122 —5126
[88 ]  Murthy P S K, Mohan Y M, Varaprasada K, et al . J . Colloid Interface. Sci . , 2008 , 318 : 217 —224
[89 ]  Lala N L , Ramaseshan R , Bojun L , et al . Biotechnol . Bioeng. ,2007 , 97 : 1357 —1365
[90 ]  Son W K, Youk J H , Lee T S , et al . Polymer , 2004 , 45 (9) :2959 —2966
[91 ]  Petica A , Gavriliu S , Lungu M, et al . Mater. Sci . Eng. B , 2008 ,152 (1/3) : 22 —27
[92 ]  Ma YL , Zhou T, Zhao C S. Carbohydrate Res. , 2008 , 343 : 230 —237
[93 ]  Lim T S , Martin P G, Berry J D , et al . J . Control . Rel . , 2000 ,66 : 281 —292
[94 ]  Cho Y S. J . Mater. Sci . : Materials in Medicine , 2002 , 13 : 861 —865
[95 ]  Min KD , Youk J H , Kwark YJ , et al . Fibers and Polymers , 2007 ,8 : 591 —600
[96 ]  Jeon HJ , Yi S C , Oh S G. Biomaterials , 2003 , 24 : 4921 —4928
[97 ]  Cutting K, White R , Edmonds M. Int . Wound J . , 2007 , 4 : 177 —184
[98 ]  Guillaume C , Michel V , Philippe M, et al . Arch Dermatol . , 2007 ,143 (10) : 1297 —1304
[99 ]  Chopra I. J . Antim. Chem. , 2007 , 59 : 587 —590
[100 ]  Atiyeh B , Costagliola M, Hayek S , et al . Burns , 2007 , 33 : 139 —148

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摘要

载银缓释型抗菌敷料