[1] Zhao L,Wang H,Huo K,et al.Antibacterial nano-structured titania coating incorporated with silver nanoparticles.Biomaterials.2011;32:5706.[2] Laure B,Besnier JM,Bergemer-Fouquet AM,et al.Effect of hydroxyapatite coating and polymethyimemacrylate onstainless steel implant site infection with Staphylococcus epidermids in a sleep model.J Biomed Mater Res B Appl Biomater. 2009;91(2):596-603.[3] Monteiro DR,Gorup LF,Takamiya AS,et al.The growing importance of materials that prevent microbial adhesion: antimicrobial effect of medical devices containing silver. Int J Antimicrob Agents. 2009; 34(2): 103-110.[4] Mah TFC,O’Toole GA.Mechanisms of biofilm resistance to antimicrobial agents.Trends Microbiol. 2001;9(1):34-39.[5] Zhao L,Mei S,Chu PK,et al.The influence of hierarchical hybrid micro/nano-textured titanium surface with titania nanotubes on osteoblast functions.Biomaterials.2010;31:5055-5072.[6] Agarwal A,Weis TL,Schurr MJ,et al.Surfaces modified with nanometer-thick silver-impregnated polymeric films that kill bacteria but support growth of mammalian cells.Biomaterials.2010;31:680-690.[7] 时海芳,姜晓红,李智超.金属基抗菌涂层发展现状[J].电镀与涂饰,2008,27(10):55-58.[8] Li L,Sun J,Li X,et al.Controllable synthesis of monodispersed silver nanoparticles as standards for quantitative assessment of their cytotoxicity. Biomaterials.2012;33(8):1714.[9] Berger TJ,Spadaro JA,Chapin SE,et al.Electrically generated silver ions: quantitative effects on bacterial and mammalian cells.Antimicrob Agents Chemother. 1976;9(2):357-358.[10] Williams RL,Doherty PJ,Vince DG,et al.Crit Rev Biocompat.1989;(5):221.[11] Bellantone M,Williams HD,Hench LL.Broad-spectrum bactericidal activity of Ag(2)O-doped bioactive glass.Antimicrob Agents Chemother. 2002;46(6): 1940-1945.[12] Feng QL,Wu J,Chen GQ,et al.A mechanistic study of the antibacterial effect of silver ions on Escherichia coli and Staphylococcus aureus.J Biomed Mater Res. 2000; 52:662.[13] Chen J,Han CM,Lin XW,et al.Effect of silver nanoparticle dressing on second degree burn wound].Zhonghua Wai Ke Za Zhi.2006;44(1):50-52.[14] Muangman P,Chuntrasakul C,Silthram S,et al. Comparison of efficacy of 1% silver sulfadiazine and Acticoat for treatment of partial-thickness burn wounds.J Med Assoc Thai. 2006;89(7): 953-958.[15] Cohen MS,Stern JM,Vanni AJ,et al.In vitro analysis of a nanocrystalline silver-coated surgical mesh.Surg Infect (Larchmt).2007;8(3):397-403.[16] Lansdown AB.Silver in health care: antimicrobial effects and safety in use. Curr Probl Dermatol. 2006;33:17-34.[17] Nair LS,Laurencin CT.Nanofibers and nanoparticles for orthopaedic surgery applications.J Bone Joint Surg [Am].2008;90-A(Supp l1):128-131.[18] Galdiero S,Falanga A,Vitiello M,et al.Silver Nanoparti-cles as Potential Antiviral Agents. Molecules. 2011;10(16):8894-8918.[19] Morones JR,Elechiguerra JL,Camacho A,et al.The bactericidal effect of silver nanoparticles. Nanotechnology. 2005;16(10):2346-2353[20] Feng QL,Wu J,Chen GQ,et al. A mechanistic study of the antibacterial effect of silver ions on Escheria coli and Staphylococcus aureus.J Biomed Mater. 2000; 52(4):662-668.[21] Jain J,Arora S,Rajwade JM,et al.Silver Nanoparticles in Therapeutics: Development of an Antimicrobial Gel Formulation for Topical Use.Mol Pharm. 2009;6(5): 1388-1401.[22] Kim JS,Kuk E,Yu KN,et al.Antimicrobial effects of silver nanoparticles. Nanomedicine.2007;3(1):95-101.[23] Lara HH,Garza-Trevio EN,Ixtepan-Turrent L,et al.Silver nanoparticles are broad -spectrum bactericidal and virucidal compounds.J Nanobiotechnol.2011;9: 30.[24] Matsunaga T,Tomoda R,Nakajima T,et al. Continuous- sterilization system that uses photosemiconductor powders.Appl Environ Microbiol. 1988;54(6):1330- 1333.[25] Feng QL,Wu J,Chen GQ,et al.A mechanistic study of the antibacterial effect of silver ions on Escheria coli and Staphylococcus aureus.J Biomed Mater.2000;52 (4):662-668.[26] Xu HY,Qu F,Xu H,et al.Role of reactive oxygen species in the antibacterial mechanism of silver nanoparticles on Escherichia coli O157:H7.Biometals. 2012;25(1):45-53.[27] Alt V,Bechert T,Steinrücke P,et al.An in vitro assessment of the antibacterial properties and cytotoxicity of nanoparticulate silver bone cement. Biomaterials. 2004;25:4383-4391. [28] Devi LS,Joshi SR.Antimicrobial and synergistic effects of silver nanoparticles synthesized using soil fungi of high altitudes of Eastern Himalaya.Mycobiol.2012; 40:27-34.[29] Bawaskar M,Gaikwad S,Ingle A,et al.A new report on mycosynthesis of silver nanoparticles by Fusarium culmorum.Curr Nanosci.2010;6:376-380.[30] Shameli K,Ahmad MB,Jazayeri SD,et al.Investigation of antibacterial properties silver nanoparticles prepared via green method.Chem Central J.2012;6:73.[31] Kim KJ,Sung WS,Moon SK,et al.Antifungal effect of silver nanoparticles on dermatophytes.J Microbiol Biotechnol.2008;18:1482-1484.[32] Gajbhiye MB,Kesharwani JG,Ingle AP,et al.Fungus mediated synthesis of silver nanoparticles and its activity against pathogenic fungi in combination of fluconazole.Nanomedicine NBM.2009;5:282-286.[33] Kaur P,Thakur R,Choudhary A.An in vitro study of the antifungal activity of silver/chitosan nanoformulations against important seed borne pathogens.Int J Sci Technol Res.2012;1:83-86.[34] Tile VA,Bholay AD.Biosynthesis of silver nanoparticles and its antifungal activities.J Environ Res Develop. 2012;7:338-345.[35] Galdiero S,Falanga A,Vitiello M,et al.Silver nanoparticles as novel antibacterial and antiviral agents.Molecules.2011;16(10):8894-8918.[36] De-Gusseme B,Sintubin L,Baert L,et al.Biogenic silver for disinfection of water contaminated with viruses.Appl Environ Microbiol.2010;76:1082-1087.[37] Narasimha G .Antiviral activity of silver nanoparticles synthesized by fungal strain Aspergillus niger.J Nanosci Nanotechnol.2012;6(1):18-20.[38] Lara HH,Ayala-Nunez NV,Ixtepan-Turrent L,et al.Mode of antiviral action of silver nanoparticles against HIV-1. J Nanobiotechnol.2010;8:1.[39] Speshock JL,Murdock RC,Braydich-Stolle LK,et al.Interaction of silver nanoparticles with tacaribe virus.J Nanobiotechnol.2010;8:19.[40] Baram-Pinto D,Shukla S,Perkas N,et al.Inhibition of herpes simplex virus type 1 infection by silver nanoparticles capped with mercaptoethane sulfonate.Bioconjug Chem. 2009;20:1497-1502.[41] Trefry JC,Wooley DP.Silver nanoparticles inhibit vaccinia virus infection by preventing viral entry through a macropinocytosisdependent mechanism.J Biomed Nanotech. 2013 9:1624-1635.[42] Gaikwad S,Ingle A,Gade A,et al.Antiviral activity of mycosynthesized silver nanoparticles against herpes simplex virus and human parainfluenza virus type 3.Int J Nanomedicine.2013;3(8):4303-4314.[43] Salem ANB,Zyed R,Lassoued MA,et al. Plant-derived nanoparticles enhance antiviral activity against coxsakievirus B3 by acting on virus particles and vero cells. Dig J Nanomater Biostruct. 2012;7:737-744.[44] Roger JV,Parkinson CV,Choi YW,et al.A Preliminary assessment of silver nanoparticle inhibition of monkeypox virus plciue formation.Nanoscale Res Lett. 2008;3:129-133.[45] Lara HH,Ixtepan-Turrent L,Garza-Treviño EN,et al.Use of silver nanoparticles increased inhibition of cell-associated HIV-1 infection by neutralizing antibodies developed against HIV-1 envelope proteins. J Nanobiotechnol.2011;9:38.[46] Jeyaraj M,Rajesh M,Arun R,et al.An investigation on the cytotoxicity and caspase-mediated apoptotic effect of biologically synthesized silver nanoparticles using Podophyllum hexandrum on human cervical carcinoma cells.Colloids Surf B Biointerfaces. 2013; 102:708-717.[47] Prabhu D,Arulvasu C,Babu G,et al.Biologically synthesized green silver nanoparticles from leaf extract of Vitex negundoL. induce growth-inhibitory effect on human colon cancer cell line HCT15.Process Biochem.2013: 48:317-324.[48] Lee KJ,Nallathamby PD,Browning LM,et al.In vivo imaging of transport and biocompatibility of single silver nanoparticles in early development of zebrafish embryos.ACS Nano.2007;1:133-143.[49] Cheng X,Zhang W,Ji Y,et al.Revealing silver cytotoxicity using Au nanorods/Ag shell nanostructures: disrupting cell membrane and causing apoptosis through oxidative damage.RSC Adv. 2013;3:2296- 2305.[50] AshaRani PV,Low Kah Mun G,Hande MP,et al.Cytotoxicity and genotoxicity of silver nanoparticles in human cells.ACS Nano.2009;3:279-290.[51] De Jong WH,Van Der Ven LT,Sleijffers A,et al.Systemic and immunotoxicity of silver nanoparticles in an intravenous 28 days repeated dose toxicity study in rats. Biomaterials.2013;34:8333-8343.[52] 刘敏,胡嘉想,秦光和,等.纳米银抗菌凝胶剂的毒理学评价[J].中国消毒学杂,2010,27(3): 260-262.[53] Pauksch L,Hartmann S,Rohnke M,et al. Biocompatibility of silver nanoparticles and silver ions in primary human mesenchymal stem cells and osteoblasts.Acta Biomater. 2014;10:439-449.[54] Necula BS,van Leeuwen JP,Fratila-Apachitei LE,et al.In vitro cytotoxicity evaluation of porous TiO2-Ag antibacterial coatings for human fetal osteoblasts.Acta Biomater.2012;8:4191-4197.[55] Kovvuru P,Mancilla PE,Shirode AB,et al.Oral ingestion of silver nanoparticles induces genomic instability and DNA damage in multiple tissues.Nanotoxicology. 2015; 9(2):162-171.[56] Green SA.Complications of external skeletal fixation. Clin Orthop Relat Res.1983;180:109.[57] 王华,梁成浩.抗菌金属材料的研究进展[J].腐蚀科学与防护技术,2004,16(2):96.[58] 廖娟.纯钛种植体表面抗菌改性的研究进展[J].国际口腔医学杂志,2007,34(3):213.[59] Geetha M,Singh AK,Asokamani R,et al.Ti based biomaterials, the ultimate choice for orthopaedic implantsea review.Prog Mater Sci.2009;54:397-425.[60] 阮洪江,范存义,郑学斌,等.载银羟基磷灰石抗菌涂层抗菌性能及对成骨细胞影响的体外实验[J].中国科学, 2009, 54(1):60.[61] 王宇华,朱梓园,张富强,等.单质银应用于等离子喷涂抗菌涂层的研究[J].上海口腔医学,2009,18(3):317-319.[62] Chen W,Zhang J.Ag nanoparticles hosted in monolithic mesoporous silica by thermal decomposition method. Scripta Materialia.2003;49:321-325.[63] Rodriguez-Sanchez L,Blanco MC,LopezQuintela MA.Elect ro chemical synthesis of s ilver nanopar ticles.J Phys Chem B.2000;441(10):9683-9688.[64] Huang HH,Ni XP,Loy GL,et al.Photochemical formation of silver nanoparticles in poly(N-vinylpyrrolidone).Langmuir.1996;12(4):909-91.[65] Pol VG,Srivastava DN,Palchik O,et al.Sonochemical deposition of silver nanoparticles on silica spheres. Langmuir.2002;18(8):3352-3357.[66] Kamat PV,Flumiani M,Hartland GV.Picosecond dynamics of silver nanoclusters. Photoejection of electronsand fragmentation.J Phys Chem B. 1998; 102(17):3123-3128.[67] Sintubin L,Verstraete W,Boon N.Biologically produced nanosilver: current state and future perspectives. Biotechnol Bioeng.2012;109:2422-2436.[68] Nanda A,Saravanan M.Biosynthesis of silver nanoparticles from Staphylococcus aureus and its antimicrobial activity against MRSA and MRSE. Nanomedicine.2009;5:452-456.[69] Pala E,Trovarelli G,Calabrò T,et al.Survival of modern knee tumor megaprostheses:failures, functional results, and a comparative statistical analysis. Clin Orthop Relat Res.2015;473:891-899.[70] Angelini A,Drago G,Trovarelli G,et al.Infection after surgical resection for pelvic bone tumors: an analysis of 270 patients from one institution.Clin Orthop Relat Res. 2014;472:349-359.[71] Angelini A,Henderson E,Trovarelli G,et al.Is there a role for knee arthrodesis with modular endoprostheses for tumor and revision of failed endoprostheses?Clin Orthop Relat Res.2013;471:3326-3335.[72] Hardes J,von Eiff C,Streitbuerger A,et al.Reduction of periprosthetic infection with silver-coated megaprostheses in patients with bone sarcoma.J Surg Oncol.2010;101:389-395.[73] Mahan J,Seligson D,Henry SL,et al.Factors in pin tract infections.Orthopedics.1991;14:305-308.[74] Collinge CA,Goll G,Seligson D,et al. Pin tract infections: silver vs uncoated pins. Orthopedics. 1994;17: 445-448.[75] Zheng Z,Yin W,Zara JN,et al.The use of BMP-2 coupled - Nanosilver-PLGA composite grafts to induce bone repair in grossly infected segmental defects. Biomaterials. 2010;31:9293-9300.[76] Alt V,Bechert T,Steinrücke P,et al.An in vitro assessment of the antibacterial properties and cytotoxicity of nanoparticulate silver bone cement. Biomaterials. 2004;25:4383-4391.[77] Wilkinson LJ,White RJ,Chipman JK.Silver and nanoparticles of silver in wound dressings: a review of efficacy and safety.J Wound Care.2011;20:543-549.[78] Ewald A,Glückermann SK,Thull R,et al.Antimicrobial titanium/silver PVD coatings on titanium.Biomed Eng Online.2006;5:22.[79] Das K,Bose S,Bandyopadhyay A,et al.Surface coatings for improvement of bone cell materials and antimicrobial activities of Ti implants.J Biomed Mater Res B Appl Biomater.2008;87:455-460.[80] Kose N,Otuzbir A,Pek?en C,et al.A silver ion-doped calcium phosphate-based ceramic nanopowder-coated prosthesis increased infection resistance.Clin Orthop Relat Res. 2013;471: 2532-2539. |