Melanin/polydopamine-based nanomaterials for biomedical applications
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Melanin/polydopamine-based nanomaterials for biomedical applications
  • 作者:Chao ; Qi ; Lian-Hua ; Fu ; Han ; Xu ; Tian-Fu ; Wang ; Jing ; Lin ; Peng ; Huang
  • 英文作者:Chao Qi;Lian-Hua Fu;Han Xu;Tian-Fu Wang;Jing Lin;Peng Huang;Guangdong Key Laboratory for Biomedical Measurements and Ultrasound Imaging, Carson International Cancer Center, Laboratory of Evolutionary Theranostics, School of Biomedical Engineering, Health Science Center, Shenzhen University;Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University;
  • 英文关键词:melanin;;polydopamine;;nanomaterials;;biomedical applications
  • 中文刊名:JBXG
  • 英文刊名:中国科学:化学(英文版)
  • 机构:Guangdong Key Laboratory for Biomedical Measurements and Ultrasound Imaging, Carson International Cancer Center, Laboratory of Evolutionary Theranostics, School of Biomedical Engineering, Health Science Center, Shenzhen University;Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering, Shenzhen University;
  • 出版日期:2019-01-05 16:06
  • 出版单位:Science China(Chemistry)
  • 年:2019
  • 期:v.62
  • 基金:supported by the National Natural Science Foundation of China (51802202, 51703132, 51573096, 21807074);; the Postdoctoral Science Foundation of China (2017M612727, 2018M633123);; the National Postdoctoral Program for Innovative Talents (BX201600111);; the Guangdong Province Natural Science Foundation of PhD Start-up Fund (2018A030310566, 2018A030310574);; the Basic Research Program of Shenzhen (JCYJ20170412111100742, JCYJ20160422091238319)
  • 语种:英文;
  • 页:JBXG201902006
  • 页数:27
  • CN:02
  • ISSN:11-5839/O6
  • 分类号:18-44
摘要
The natural melanin is one kind of ubiquitous biological pigments, which is produced in melanosomes and widely distributed in living organisms. The synthetic melanin, often known as polydopamine(PDA), has similar chemical compositions and physical properties to natural melanin. In recent years, both natural melanin and PDA have aroused increased research interests in biomedical fields owing to their inherent biocompatibility, antioxidant activity, free-radical scavenging, metal ion chelation,strong near-infrared absorption and high photothermal conversion efficiency. Inspired by these fascinating properties, melanin and PDA have been widely used as building blocks for the construction of multifunctional nanoplatforms for various biomedical applications. This review focuses on the state-of-the-art progress in melanin/PDA-based nanomaterials, which covers from their preparation methods to biomedical applications including bioimaging, treatment, theranostics, antibacterial, UV/radiation protection, biosensor and tissue engineering. Moreover, the current trends and the future prospects of melanin/PDA-based nanomaterials are also discussed.
        The natural melanin is one kind of ubiquitous biological pigments, which is produced in melanosomes and widely distributed in living organisms. The synthetic melanin, often known as polydopamine(PDA), has similar chemical compositions and physical properties to natural melanin. In recent years, both natural melanin and PDA have aroused increased research interests in biomedical fields owing to their inherent biocompatibility, antioxidant activity, free-radical scavenging, metal ion chelation,strong near-infrared absorption and high photothermal conversion efficiency. Inspired by these fascinating properties, melanin and PDA have been widely used as building blocks for the construction of multifunctional nanoplatforms for various biomedical applications. This review focuses on the state-of-the-art progress in melanin/PDA-based nanomaterials, which covers from their preparation methods to biomedical applications including bioimaging, treatment, theranostics, antibacterial, UV/radiation protection, biosensor and tissue engineering. Moreover, the current trends and the future prospects of melanin/PDA-based nanomaterials are also discussed.
引文
1 Chou LYT,Zagorovsky K,Chan WCW.Nat Nanotech,2014,9:148-155
    2 Ohta S,Glancy D,Chan WCW.Science,2016,351:841-845
    3 Sun M,Xu L,Ma W,Wu X,Kuang H,Wang L,Xu C.Adv Mater,2016,28:898-904
    4 Nikitin MP,Zdobnova TA,Lukash SV,Stremovskiy OA,Deyev SM.Proc Natl Acad Sci USA,2010,107:5827-5832
    5 Ge J,Lei J,Zare RN.Nat Nanotech,2012,7:428-432
    6 Wang Z,Huang P,Jacobson O,Wang Z,Liu Y,Lin L,Lin J,Lu N,Zhang H,Tian R,Niu G,Liu G,Chen X.ACS Nano,2016,10:3453-3460
    7 Yang T,Wang Y,Ke H,Wang Q,Lv X,Wu H,Tang Y,Yang X,Chen C,Zhao Y,Chen H.Adv Mater,2016,28:5923-5930
    8 Lee H,Dellatore SM,Miller WM,Messersmith PB.Science,2007,318:426-430
    9 Liu Y,Ai K,Lu L.Chem Rev,2014,114:5057-5115
    10 Solano F.Int J Mol Sci,2017,18:1561
    11 Lampel A,Mc Phee SA,Park HA,Scott GG,Humagain S,Hekstra DR,Yoo B,Frederix PWJM,Li TD,Abzalimov RR,Greenbaum SG,Tuttle T,Hu C,Bettinger CJ,Ulijn RV.Science,2017,356:1064-1068
    12 d’Ischia M,Wakamatsu K,Cicoira F,Di Mauro E,Garcia-Borron JC,Commo S,Galván I,Ghanem G,Kenzo K,Meredith P,Pezzella A,Santato C,Sarna T,Simon JD,Zecca L,Zucca FA,Napolitano A,Ito S.Pigment Cell Melanom Res,2015,28:520-544
    13 Liu Y,Ai K,Ji X,Askhatova D,Du R,Lu L,Shi J.J Am Chem Soc,2017,139:856-862
    14 Burbulla LF,Song P,Mazzulli JR,Zampese E,Wong YC,Jeon S,Santos DP,Blanz J,Obermaier CD,Strojny C,Savas JN,Kiskinis E,Zhuang X,Krüger R,Surmeier DJ,Krainc D.Science,2017,357:1255-1261
    15 Ju KY,Lee Y,Lee S,Park SB,Lee JK.Biomacromolecules,2011,12:625-632
    16 Panzella L,Gentile G,D’Errico G,Della Vecchia NF,Errico ME,Napolitano A,Carfagna C,d’Ischia M.Angew Chem Int Ed,2013,52:12684-12687
    17 Longo DL,Stefania R,Aime S,Oraevsky A.Int J Mol Sci,2017,18:1719
    18 Liu Y,Ai K,Liu J,Deng M,He Y,Lu L.Adv Mater,2013,25:1353-1359
    19 Ju KY,Kang J,Pyo J,Lim J,Chang JH,Lee JK.Nanoscale,2016,8:14448-14456
    20 Shi Y,Liu M,Deng F,Zeng G,Wan Q,Zhang X,Wei Y.J Mater Chem B,2017,5:194-206
    21 Cho S,Park W,Kim DH.ACS Appl Mater Interfaces,2017,9:101-111
    22 Hong SH,Sun Y,Tang C,Cheng K,Zhang R,Fan Q,Xu L,Huang D,Zhao A,Cheng Z.Bioconj Chem,2017,28:1925-1930
    23 Fan Q,Cheng K,Hu X,Ma X,Zhang R,Yang M,Lu X,Xing L,Huang W,Gambhir SS,Cheng Z.J Am Chem Soc,2014,136:15185-15194
    24 Ju KY,Lee JW,Im GH,Lee S,Pyo J,Park SB,Lee JH,Lee JK.Biomacromolecules,2013,14:3491-3497
    25 Zhang R,Fan Q,Yang M,Cheng K,Lu X,Zhang L,Huang W,Cheng Z.Adv Mater,2015,27:5063-5069
    26 Araújo M,Viveiros R,Correia TR,Correia IJ,Bonifácio VDB,Casimiro T,Aguiar-Ricardo A.Int J Pharm,2014,469:140-145
    27 Li H,Jia Y,Wang A,Cui W,Ma H,Feng X,Li J.Chem Eur J,2014,20:499-504
    28 Lynge ME,van der Westen R,Postma A,St?dler B.Nanoscale,2011,3:4916-4928
    29 Yang HC,Waldman RZ,Wu MB,Hou J,Chen L,Darling SB,Xu ZK.Adv Funct Mater,2018,28:1705327
    30 Liu X,Cao J,Li H,Li J,Jin Q,Ren K,Ji J.ACS Nano,2013,7:9384-9395
    31 Lin LS,Cong ZX,Cao JB,Ke KM,Peng QL,Gao J,Yang HH,Liu G,Chen X.ACS Nano,2014,8:3876-3883
    32 Yang SH,Kang SM,Lee KB,Chung TD,Lee H,Choi IS.J Am Chem Soc,2011,133:2795-2797
    33 Lee H,Rho J,Messersmith PB.Adv Mater,2009,21:431-434
    34 Huang Q,Liu M,Chen J,Wan Q,Tian J,Huang L,Jiang R,Wen Y,Zhang X,Wei Y.Appl Surf Sci,2017,419:35-44
    35 Zhang X,Huang Q,Liu M,Tian J,Zeng G,Li Z,Wang K,Zhang Q,Wan Q,Deng F,Wei Y.Appl Surf Sci,2015,343:19-27
    36 Huang Q,Liu M,Mao L,Xu D,Zeng G,Huang H,Jiang R,Deng F,Zhang X,Wei Y.J Colloid Interface Sci,2017,499:170-179
    37 Zhang J,Zhang L,Cui X,Gong L,Xiang L,Shi C,Hu W,Zeng H.Chem Commun,2018,54:9734-9737
    38 Zhang X,Huang Q,Deng F,Huang H,Wan Q,Liu M,Wei Y.Appl Mater Today,2017,7:222-238
    39 Wang C,Sun L,Zhang F,Wang X,Sun Q,Cheng Y,Wang L.Small,2017,13:1701246
    40 Qu K,Zheng Y,Jiao Y,Zhang X,Dai S,Qiao SZ.Adv Energy Mater,2017,7:1602068
    41 d'Ischia M,Napolitano A,Pezzella A,Meredith P,Sarna T.Angew Chem Int Ed,2009,48:3914-3921
    42 Watt AAR,Bothma JP,Meredith P.Soft Matter,2009,5:3754-3760
    43 d’Ischia M,Napolitano A,Ball V,Chen CT,Buehler MJ.Acc Chem Res,2014,47:3541-3550
    44 Napolitano A,Panzella L,Leone L,d’Ischia M.Acc Chem Res,2013,46:519-528
    45 Simon JD,Peles DN.Acc Chem Res,2010,43:1452-1460
    46 Ho CC,Ding SJ.J Biomed Nanotechnol,2014,10:3063-3084
    47 Dreyer DR,Miller DJ,Freeman BD,Paul DR,Bielawski CW.Langmuir,2012,28:6428-6435
    48 Huang L,Liu M,Huang H,Wen Y,Zhang X,Wei Y.Biomacromolecules,2018,19:1858-1868
    49 Liu M,Zeng G,Wang K,Wan Q,Tao L,Zhang X,Wei Y.Nanoscale,2016,8:16819-16840
    50 Chu M,Hai W,Zhang Z,Wo F,Wu Q,Zhang Z,Shao Y,Zhang D,Jin L,Shi D.Biomaterials,2016,91:182-199
    51 Kiran GS,Dhasayan A,Lipton AN,Selvin J,Arasu MV,Al-Dhabi NA.J Nanobiotechnol,2014,12:18
    52 Kiran GS,Jackson SA,Priyadharsini S,Dobson ADW,Selvin J.Sci Rep,2017,7:9167
    53 della Vecchia NF,Cerruti P,Gentile G,Errico ME,Ambrogi V,D'Errico G,Longobardi S,Napolitano A,Paduano L,Carfagna C,d’Ischia M.Biomacromolecules,2014,15:3811-3816
    54 Strube OI,Büngeler A,Bremser W.Biomacromolecules,2015,16:1608-1613
    55 Strube OI,Büngeler A,Bremser W.Macromol Mater Eng,2016,301:801-804
    56 Hong S,Na YS,Choi S,Song IT,Kim WY,Lee H.Adv Funct Mater,2012,22:4711-4717
    57 Arzillo M,Mangiapia G,Pezzella A,Heenan RK,Radulescu A,Paduano L,d’Ischia M.Biomacromolecules,2012,13:2379-2390
    58 Apte M,Girme G,Bankar A,Ravikumar A,Zinjarde S.J Nanobiotechnol,2013,11:2
    59 Wei F,Liu J,Zhu YN,Wang XS,Cao CY,Song WG.Sci China Chem,2017,60:1236-1242
    60 Lin J,Wang M,Hu H,Yang X,Wen B,Wang Z,Jacobson O,Song J,Zhang G,Niu G,Huang P,Chen X.Adv Mater,2016,28:3273-3279
    61 Dong Z,Feng L,Hao Y,Chen M,Gao M,Chao Y,Zhao H,Zhu W,Liu J,Liang C,Zhang Q,Liu Z.J Am Chem Soc,2018,140:2165-2178
    62 Klosterman L,Ahmad Z,Viswanathan V,Bettinger CJ.Adv Mater Interfaces,2017,4:1700041
    63 Panzella L,Melone L,Pezzella A,Rossi B,Pastori N,Perfetti M,D'Errico G,Punta C,d’Ischia M.Biomacromolecules,2016,17:564-571
    64 Neto AI,Cibr?o AC,Correia CR,Carvalho RR,Luz GM,Ferrer GG,Botelho G,Picart C,Alves NM,Mano JF.Small,2014,10:2459-2469
    65 Zhou J,Xiong Q,Ma J,Ren J,Messersmith PB,Chen P,Duan H.ACS Nano,2016,10:11066-11075
    66 Zheng J,Lin Z,Zhang L,Yang H.Sci China Chem,2015,58:1056-1064
    67 Liu Q,Jia J,Yang T,Fan Q,Wang L,Ma G.Small,2016,12:1744-1757
    68 Mazur M,Barras A,Kuncser V,Galatanu A,Zaitzev V,Turcheniuk KV,Woisel P,Lyskawa J,Laure W,Siriwardena A,Boukherroub R,Szunerits S.Nanoscale,2013,5:2692-2702
    69 Ma H,Luo J,Sun Z,Xia L,Shi M,Liu M,Chang J,Wu C.Biomaterials,2016,111:138-148
    70 Qu K,Wang J,Ren J,Qu X.Chem Eur J,2013,19:7243-7249
    71 Hu C,Liu Y,Chen J,He Q,Gao H.J Colloid Interface Sci,2016,480:85-90
    72 Xiao W,Li Y,Hu C,Huang Y,He Q,Gao H.J Colloid Interface Sci,2017,497:226-232
    73 Park JY,Back SH,Chang SJ,Lee SJ,Lee KG,Park TJ.ACS Appl Mater Interfaces,2015,7:15633-15640
    74 Liu R,Mahurin SM,Li C,Unocic RR,Idrobo JC,Gao H,Pennycook SJ,Dai S.Angew Chem Int Ed,2011,50:6799-6802
    75 Zhang X,Wang S,Xu L,Feng L,Ji Y,Tao L,Li S,Wei Y.Nanoscale,2012,4:5581-5584
    76 Shi Y,Jiang R,Liu M,Fu L,Zeng G,Wan Q,Mao L,Deng F,Zhang X,Wei Y.Mater Sci Eng-C,2017,77:972-977
    77 Repenko T,Rix A,Nedilko A,Rose J,Hermann A,Vinokur R,Moli S,Cao-Milàn R,Mayer M,von Plessen G,Fery A,De Laporte L,Lederle W,Chigrin DN,Kuehne AJC.Adv Funct Mater,2018,28:1705607
    78 Wang Z,Carniato F,Xie Y,Huang Y,Li Y,He S,Zang N,Rinehart JD,Botta M,Gianneschi NC.Small,2017,13:1701830
    79 Cai WW,Wang LJ,Li SJ,Zhang XP,Li TT,Wang YH,Yang X,Xie J,Li JD,Liu SJ,Xu W,He S,Cheng Z,Fan QL,Zhang RP.J Biomed Mater Res,2017,105:131-137
    80 Jung HS,Cho KJ,Seol Y,Takagi Y,Dittmore A,Roche PA,Neuman KC.Adv Funct Mater,2018,28:1801252
    81 Yang M,Fan Q,Zhang R,Cheng K,Yan J,Pan D,Ma X,Lu A,Cheng Z.Biomaterials,2015,69:30-37
    82 Ju KY,Lee S,Pyo J,Choo J,Lee JK.Small,2015,11:84-89
    83 Liopo A,Su R,Oraevsky AA.Photoacoustics,2015,3:35-43
    84 Li Y,Xie Y,Wang Z,Zang N,Carniato F,Huang Y,Andolina CM,Parent LR,Ditri TB,Walter ED,Botta M,Rinehart JD,Gianneschi NC.ACS Nano,2016,10:10186-10194
    85 Kayatz P,Thumann G,Luther TT,Jordan JF,Bartz-Schmidt KU,Esser PJ,Schraermeyer U.Invest Ophth Vis Sci,2001,42:241-246
    86 Quignard S,d’Ischia M,Chen Y,Fattaccioli J.Chem Plus Chem,2014,79:1254-1257
    87 Yan J,Ji Y,Zhang P,Lu X,Fan Q,Pan D,Yang R,Xu Y,Wang L,Zhang L,Yang M.J Mater Chem B,2016,4:7233-7240
    88 Zhang P,Yue Y,Pan D,Yang R,Xu Y,Wang L,Yan J,Li X,Yang M.Nucl Med Biol,2016,43:529-533
    89 Ye Y,Wang C,Zhang X,Hu Q,Zhang Y,Liu Q,Wen D,Milligan J,Bellotti A,Huang L,Dotti G,Gu Z.Sci Immunol,2017,2:eaan5692
    90 Bao X,Zhao J,Sun J,et al.ACS Nano,2018
    91 Mellman I,Coukos G,Dranoff G.Nature,2011,480:480-489
    92 Kim M,Kim HS,Kim MA,Ryu H,Jeong HJ,Lee CM.Macromol Biosci,2017,17:1600371
    93 Li J,Qiu L,Xie S,Zhang J,Zhang L,Liu H,Li J,Zhang X,Tan W.Sci China Chem,2018,61:497-504
    94 Marsza??MP,Buciński A,Goryński K,Proszowska A,Kaliszan R.JChromatogr A,2011,1218:229-236
    95 Sheng W,Li W,Zhang G,Tong Y,Liu Z,Jia X.New J Chem,2015,39:2752-2757
    96 Qi C,Lin J,Fu LH,Huang P.Chem Soc Rev,2018,47:357-403
    97 Chen W,Qin M,Chen X,Wang Q,Zhang Z,Sun X.Theranostics,2018,8:2229-2241
    98 Chen W,Wang Y,Qin M,Zhang X,Zhang Z,Sun X,Gu Z.ACSNano,2018,12:5995-6005
    99 Gao Y,Wu X,Zhou L,Su Y,Dong CM.Macromol Rapid Commun,2015,36:916-922
    100 Wu X,Zhou L,Su Y,Dong CM.Polym Chem,2016,7:5552-5562
    101 Zhang C,Zhao X,Guo S,Lin T,Guo H.Int J Nanomed,2017,12:1827-1840
    102 Wang X,Zhang J,Wang Y,Wang C,Xiao J,Zhang Q,Cheng Y.Biomaterials,2016,81:114-124
    103 Wu Q,Niu M,Chen X,Tan L,Fu C,Ren X,Ren J,Li L,Xu K,Zhong H,Meng X.Biomaterials,2018,162:132-143
    104 Li M,Sun X,Zhang N,Wang W,Yang Y,Jia H,Liu W.Adv Sci,2018,5:1800155
    105 Liu S,Pan J,Liu J,Ma Y,Qiu F,Mei L,Zeng X,Pan G.Small,2018,14:1703968
    106 Wang Y,Wei G,Zhang X,Huang X,Zhao J,Guo X,Zhou S.Small,2018,14:1702994
    107 Cheng W,Nie J,Gao N,Liu G,Tao W,Xiao X,Jiang L,Liu Z,Zeng X,Mei L.Adv Funct Mater,2017,27:1704135
    108 Zhang D,Wu M,Zeng Y,Wu L,Wang Q,Han X,Liu X,Liu J.ACSAppl Mater Interfaces,2015,7:8176-8187
    109 Han J,Park W,Park S,Na K.ACS Appl Mater Interfaces,2016,8:7739-7747
    110 Liu WL,Liu T,Zou MZ,Yu WY,Li CX,He ZY,Zhang MK,Liu MD,Li ZH,Feng J,Zhang XZ.Adv Mater,2018,30:1802006
    111 Jiang Q,Luo Z,Men Y,Yang P,Peng H,Guo R,Tian Y,Pang Z,Yang W.Biomaterials,2017,143:29-45
    112 Li Y,Jiang C,Zhang D,Wang Y,Ren X,Ai K,Chen X,Lu L.Acta Biomater,2017,47:124-134
    113 Zhang M,Zhang L,Chen Y,Li L,Su Z,Wang C.Chem Sci,2017,8:8067-8077
    114 Yi X,Chen L,Chen J,Maiti D,Chai Z,Liu Z,Yang K.Adv Funct Mater,2018,28:1705161
    115 Miao ZH,Wang H,Yang H,Li ZL,Zhen L,Xu CY.ACS Appl Mater Interfaces,2015,7:16946-16952
    116 Yang Z,Ren J,Ye Z,Zhu W,Xiao L,Zhang L,He Q,Xu Z,Xu H.JMater Chem B,2017,5:1108-1116
    117 Wu M,Wang Q,Zhang D,Liao N,Wu L,Huang A,Liu X.Colloids Surfs B-Biointerfaces,2016,141:467-475
    118 Cheng Y,Zhang S,Kang N,Huang J,Lv X,Wen K,Ye S,Chen Z,Zhou X,Ren L.ACS Appl Mater Interfaces,2017,9:19296-19306
    119 Ding X,Liu J,Li J,Wang F,Wang Y,Song S,Zhang H.Chem Sci,2016,7:6695-6700
    120 Liu J,Jin L,Wang Y,Ding X,Zhang S,Song S,Wang D,Zhang H.Small,2018,14:1702431
    121 Stritzker J,Kirscher L,Scadeng M,Deliolanis NC,Morscher S,Symvoulidis P,Schaefer K,Zhang Q,Buckel L,Hess M,Donat U,Bradley WG,Ntziachristos V,Szalay AA.Proc Natl Acad Sci USA,2013,110:3316-3320
    122 Zhang L,Sheng D,Wang D,Yao Y,Yang K,Wang Z,Deng L,Chen Y.Theranostics,2018,8:1591-1606
    123 Liu H,Chu C,Liu Y,Pang X,Wu Y,Zhou Z,Zhang P,Zhang W,Liu G,Chen X.Adv Sci,2018,5:1800032
    124 Hu D,Liu C,Song L,Cui H,Gao G,Liu P,Sheng Z,Cai L.Nanoscale,2016,8:17150-17158
    125 Wang S,Lin J,Wang Z,Zhou Z,Bai R,Lu N,Liu Y,Fu X,Jacobson O,Fan W,Qu J,Chen S,Wang T,Huang P,Chen X.Adv Mater,2017,29:1701013
    126 Chen YW,Peng YK,Chou SW,Tseng YJ,Wu PC,Wang SK,Lee YW,Shyue JJ,Hsiao JK,Liu TM,Chou PT.Part Part Syst Charact,2017,34:1600415
    127 Yoon YI,Ju KY,Cho HS,Yu KN,Lee JJ,Ahn GJ,Lee SH,Cho MH,Lee HJ,Lee JK,Yoon TJ.Chem Commun,2015,51:9455-9458
    128 Liu D,Ma L,Liu L,Wang L,Liu Y,Jia Q,Guo Q,Zhang G,Zhou J.ACS Appl Mater Interfaces,2016,8:24455-24462
    129 Hadjesfandiari N,Weinhart M,Kizhakkedathu JN,Haag R,Brooks DE.Adv Healthcare Mater,2018,7:1700839
    130 El-Batal AI,El-Sayyad GS,El-Ghamry A,Agaypi KM,Elsayed MA,Gobara M.J Photochem Photobiol B-Biol,2017,173:120-139
    131 Pezzella A,Capelli L,Costantini A,Luciani G,Tescione F,Silvestri B,Vitiello G,Branda F.Mater Sci Eng-C,2013,33:347-355
    132 Vitiello G,Pezzella A,Zanfardino A,Varcamonti M,Silvestri B,Costantini A,Branda F,Luciani G.J Mater Chem B,2015,3:2808-2815
    133 Vitiello G,Pezzella A,Zanfardino A,Silvestri B,Giudicianni P,Costantini A,Varcamonti M,Branda F,Luciani G.Mater Sci Eng-C,2017,75:454-462
    134 Black KCL,Sileika TS,Yi J,Zhang R,Rivera JG,Messersmith PB.Small,2014,10:169-178
    135 Brenner M,Hearing VJ.Photochem Photobiol,2008,84:539-549
    136 Rageh MM,El-Gebaly RH,Abou-Shady H,Amin DG.Mol Cell Biochem,2015,399:59-69
    137 Schweitzer AD,Revskaya E,Chu P,Pazo V,Friedman M,Nosanchuk JD,Cahill S,Frases S,Casadevall A,Dadachova E.Int J Radiat Oncol Biol Phys,2010,78:1494-1502
    138 Wang Y,Li T,Ma P,Bai H,Xie Y,Chen M,Dong W.ACS Sustain Chem Eng,2016,4:2252-2258
    139 Vij M,Grover R,Gotherwal V,Wani NA,Joshi P,Gautam H,Sharma K,Chandna S,Gokhale RS,Rai R,Ganguli M,Natarajan VT.Biomacromolecules,2016,17:2912-2919
    140 Dadachova E,Bryan RA,Howell RC,Schweitzer AD,Aisen P,Nosanchuk JD,Casadevall A.Pigment Cell Melanom Res,2008,21:192-199
    141 Huang Y,Li Y,Hu Z,Yue X,Proetto MT,Jones Y,Gianneschi NC.ACS Cent Sci,2017,3:564-569
    142 Wang C,Wang D,Dai T,Xu P,Wu P,Zou Y,Yang P,Hu J,Li Y,Cheng Y.Adv Funct Mater,2018,28:1802127
    143 Wu Q,Fang A,Li H,Zhang Y,Yao S.Biosens Bioelectron,2016,77:957-962
    144 Ao H,Qian Z,Zhu Y,Zhao M,Tang C,Huang Y,Feng H,Wang A.Biosens Bioelectron,2016,86:542-547
    145 Chai L,Zhou J,Feng H,Tang C,Huang Y,Qian Z.ACS Appl Mater Interfaces,2015,7:23564-23574
    146 Liu JW,Wang YM,Xu L,Duan LY,Tang H,Yu RQ,Jiang JH.Anal Chem,2016,88:8355-8358
    147 Liu YM,Zhang JJ,Shi GF,Zhou M,Liu YY,Huang KJ,Chen YH.Electrochim Acta,2014,129:222-228
    148 Wang HB,Zhang HD,Xu LL,Gan T,Huang KJ,Liu YM.J Solid State Electrochem,2014,18:2435-2442
    149 Dong H,Liu Z,Zhong H,Yang H,Zhou Y,Hou Y,Long J,Lin J,Guo Z.Nanomaterials,2017,7:70
    150 Li J,Baird MA,Davis MA,Tai W,Zweifel LS,Adams Waldorf KM,Gale M,Rajagopal L,Pierce RH,Gao X.Nat Biomed Eng,2017,1:0082
    151 Qian RC,Cao Y,Zhao LJ,Gu Z,Long YT.Angew Chem Int Ed,2017,56:4802-4805
    152 Cai J,Huang J,Ge M,Iocozzia J,Lin Z,Zhang KQ,Lai Y.Small,2017,13:1604240
    153 Clarke SJ,Hollmann CA,Zhang Z,Suffern D,Bradforth SE,Dimitrijevic NM,Minarik WG,Nadeau JL.Nat Mater,2006,5:409-417
    154 Medintz IL,Stewart MH,Trammell SA,Susumu K,Delehanty JB,Mei BC,Melinger JS,Blanco-Canosa JB,Dawson PE,Mattoussi H.Nat Mater,2010,9:676-684
    155 Wang D,Chen C,Ke X,Kang N,Shen Y,Liu Y,Zhou X,Wang H,Chen C,Ren L.ACS Appl Mater Interfaces,2015,7:3030-3040
    156 Kumar S,Kumar A,Kim GH,Rhim WK,Hartman KL,Nam JM.Small,2017,13:1701584
    157 Xiong B,Chen Y,Shu Y,Shen B,Chan HN,Chen Y,Zhou J,Wu H.Chem Commun,2014,50:13578-13580
    158 Dutta Chowdhury A,Doong R.ACS Appl Mater Interfaces,2016,8:21002-21010
    159 Jiang Y,Wang Z,Dai Z.ACS Appl Mater Interfaces,2016,8:3644-3650
    160 Huang GS,Wang MT,Su CW,Chen YS,Hong MY.Biosens Bioelectron,2007,23:319-325
    161 Manchineella S,Thrivikraman G,Khanum KK,Ramamurthy PC,Basu B,Govindaraju T.Adv Healthc Mater,2016,5:1222-1232
    162 Han L,Zhang Y,Lu X,Wang K,Wang Z,Zhang H.ACS Appl Mater Interfaces,2016,8:29088-29100
    163 Scognamiglio F,Travan A,Turco G,Borgogna M,Marsich E,Pasqua M,Paoletti S,Donati I.Colloids Surfs B-Biointerfaces,2017,155:553-559
    164 Li M,Liu X,Xu Z,Yeung KWK,Wu S.ACS Appl Mater Interfaces,2016,8:33972-33981
    165 Li J,Tan L,Liu X,Cui Z,Yang X,Yeung KWK,Chu PK,Wu S.ACSNano,2017,11:11250-11263
    166 Ding L,Zhu X,Wang Y,Shi B,Ling X,Chen H,Nan W,Barrett A,Guo Z,Tao W,Wu J,Shi X.Nano Lett,2017,17:6790-6801
    167 Mrówczyński R,Bunge A,Liebscher J.Chem Eur J,2014,20:8647-8653
    168 Fu LH,Qi C,Lin J,Huang P.Chem Soc Rev,2018,47:6454-6472

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700