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化学进展  2013 

纳米颗粒与蛋白质分子的相互作用

DOI: 10.7536/PC121208, PP. 1383-1391

Keywords: 纳米颗粒,蛋白质,相互作用,蛋白质结构,生物效应

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Abstract:

纳米技术的快速发展和广泛应用前景,引起了人们对纳米生物效应和安全性问题的普遍关注。为保证纳米技术的健康持续发展,纳米颗粒与生物体的相互作用以及产生的生物学效应不容忽视。为充分了解纳米颗粒物产生的生物学效应,阐明纳米颗粒如何进入生物体以及与生物体相互作用的分子过程至关重要。在总结国内外相关研究的基础上,本文介绍了纳米颗粒进入机体的主要途径,并系统综述了纳米颗粒与蛋白质分子的相互作用及其表征方法,以及纳米颗粒与蛋白质相互作用对蛋白质结构功能和纳米颗粒生物效应的影响。

References

[1]  赵宇亮(Zhao Y L), 柴之芳(Chai Z F). 学科发展(Disciplinary Development), 2005, 20: 194-199
[2]  Zhu Q, Talton J, Zhang G, Cunningham T, Wang Z, Waters R C, Kirk J, Eppler B, Klinman D M, Sui Y, Gagnon S, Belyakov I M, Mumper R J, Berzofsky J A. Nat. Med., 2012, 18: 1291-1296
[3]  Saraceno R, Chiricozzi A, Botti E, Gramiccia T, Pietroleonardo L, Chimenti S, Souto E B. Patenting Nanomedicines. Springer Berlin Heidelberg, 2012. 383-399
[4]  The Project on Emerging Nanotechnologies. [2012-12-01]. http: //www. nanotechproject. org/inventories/consumer/analysis_ draft/
[5]  Oberd?rster G, Oberd?rster E, Oberd?rster J. Environ. Health Persp., 2005, 113: 823-839
[6]  李炜(Li W), 赵峰(Zhao F), 陈春英(Chen C Y), 赵宇亮(Zhao Y L). 化学进展(Progress in Chemistry), 2009, 21: 430-435
[7]  Zhao F, Zhao Y, Liu Y, Chang X, Chen C, Zhao Y. Small, 2011, 7: 1322-1337
[8]  Sharifi S, Behzadi S, Laurent S, Laird F M, Stroeve P, Mahmoudi M. Chem. Soc. Rev., 2012, 41: 2323-2343
[9]  Song Y, Li X, Du X. Eur. Respir. J., 2009, 34: 559-567
[10]  Khan M I, Mohammad A, Patil G, Naqvi S A H, Chauhan L K S, Ahmad I. Biomaterials, 2012, 33: 1477-1488
[11]  Crosera M, Bovenzi M, Maina G, Adami G, Zanette C, Florio C, Filon L F. Int. Arch. Occ. Env. Hea., 2009, 82: 1043-1055
[12]  Gebauer J S, Malissek M, Simon S, Knauer S K, Maskos M, Stauber R H, Peukert W, Treuel L. Langmuir, 2012, 28: 9673-9679
[13]  庄志雄(Zhuang Z X), 刘建军(Liu J J), 袁建辉(Yuan J H). 纳米毒理学(Nanotoxicology). 北京: 科学出版社(Beijing: Science Press), 2009. 172
[14]  Sund J, Alenius H, Vippola M, Savolainen K, Puustinen A. ACS Nano, 2011, 5: 4300-4309
[15]  Larese F F, D'Agostin F, Crosera M, Adami G, Renzi N, Bovenzi M, Maina G. Toxicology, 2009, 255: 33-37
[16]  Prow T W, Monteiro-Riviere N A, Erdmann D, Riviere J E, Roberts M S, Inman A O, Grice J E, Chen X, Zhao X, Sanchez W H, Gierden A, Kendall M A F, Zvyagin A V. Nanotoxicology, 2012, 6: 173-185
[17]  Chen X, Schluesener H J. Toxicol. Lett., 2008, 176: 1-12
[18]  Slütter B, Plapied L, Fievez V, Alonso S M, des Rieux A, Schneider Y J, van Riet E, Jiskoot W, Prat V. J. Control Release, 2009, 138: 113-121
[19]  Jain A K, Goyal A K, Mishra N, Vaidya B, Mangal S, Vyas S P. Int. J. Pharm., 2010, 387: 253-262
[20]  Van der Zande M, Vandebriel R J, van Doren E, Kramer E, Herrera R Z, Serrano-Rojero C S, Gremmer E R, Mast J, Peters R J B, Hollman P C H, Hendriksen P J M, Marvin H J P, Peijnenburg A A C M, Bouwmeester H. ACS Nano, 2012, 6: 7427-7442
[21]  Muthusamy B, Hanumanthu G, Suresh S, Rekha B, Srinivas D, Karthick L, Vrushabendra B M, Sharma S, Mishra G, Chatterjee P, Mangala K S, Shivashankar H N, Chandrika K N, Deshpande N, Suresh M, Kannabiran N, Niranjan V, Nalli A, Prasad T S K, Arun K S, Reddy R, Chandran S, Jadhav T, Julie D, Mahesh M, John S L, Palvankar K, Sudhir D, Bala P, Rashmi N S, Vishnupriya G, Dhar K, Reshma S, Chaerkady R, Gandhi T K B, Harsha H C, Mohan S S, Deshpande K S, Sarker M, Pandey A. Proteomics, 2005, 5: 3531-3536
[22]  Gagner J E, Shrivastava S, Qian X, Dordick J S, Siegel R W. J. Phys. Chem. Lett., 2012, 3: 3149-3158
[23]  Anand G, Sharma S, Dutta A K, Kumar S K, Belfort G. Langmuir, 2010, 26: 10803-10811
[24]  Deng Z J, Liang M, Toth I, Monteiro M, Minchin R F. Nanotoxicology, 2012, 7: 314-322
[25]  De M, Miranda O R, Rana S, Rotello V M. Chem. Commun., 2009, 2157-2159
[26]  Aggarwal P, Hall J B, McLeland C B, Dobrovolskaia M A, McNeil S E. Adv. Drug Deliv. Rev., 2009, 61: 428-437
[27]  Cedervall T, Lynch I, Lindman S, Bergg?rd T, Thulin E, Nilsson H, Dawson K A, Linse S. Proc. Nat. Acad. Sci. U. S. A., 2007, 104: 2050-2055
[28]  Lindman S, Lynch I, Thulin E, Nilsson H, Dawson K A, Linse S. Nano Letters, 2007, 7: 914-920
[29]  Gebauer J S, Malissek M, Simon S, Knauer S K, Maskos M, Stauber R H, Peukert W, Treuel L. Langmuir, 2012, 28: 9673-9679
[30]  Chakraborti S, Joshi P, Chakravarty D, Shanker V, Ansari Z A, Singh S P, Chakrabarti P. Langmuir, 2012, 28: 11142-11152
[31]  Gagner J E, Qian X, Lopez M M, Dordick J S, Siegel R W. Biomaterials, 2012, 33: 8503-8516
[32]  Norde W. Colloids and Surfaces. B: Biointerfaces, 2008, 61: 1-9
[33]  Asuri P, Bale S S, Karajanagi S S, Kane R S. Curr. Opin. Biotech., 2006, 17: 562-568
[34]  Roach P, Farrar D, Perry C C. J. Am. Chem. Soc., 2006, 128: 3939-3945
[35]  Colvin V L, Kulinowski K M. Proc. Nat. Acad. Sci. U. S. A., 2007, 104: 8679-8680
[36]  Zhang D, Neumann O, Wang H, Yuwono V M, Barhoumi A, Perham M, Hartgerink J D, Wittung-Stafshede P, Halas N J. Nano Letters, 2009, 9: 666-671
[37]  Calzolai L, Franchini F, Gilliland D, Rossi F. Nano Letters, 2010, 10: 3101-3105
[38]  Bharti B, Meissner J, Findenegg G H. Langmuir, 2011, 27: 9823-9833
[39]  Lesniak A, Fenaroli F, Monopoli M P, berg C, Dawson K A, Salvati A. ACS Nano, 2012, 6: 5845-5857
[40]  Zhu Y, Li W, Li Q, Li Y, Li Y, Zhang X, Huang Q. Carbon, 2009, 47: 1351-1358
[41]  Walkey C D, Olsen J B, Guo H, Emili A, Chan W C W. J. Am. Chem. Soc., 2011, 134: 2139-2147
[42]  Deng Z J, Liang M, Monteiro M, Toth I, Minchin R F. Nat. Nano, 2011, 6: 39-44
[43]  Lacerda S H D P, Park J J, Meuse C, Pristinski D, Becker M L, Karim A, Douglas J F. ACS Nano, 2009, 4: 365-379
[44]  刘元方(Liu Y F), 陈欣欣(Chen X X), 王海芳(Wang H F). 自然杂志(Chinese Journal of Nature), 2011, 33: 192-197
[45]  晏晓敏(Yan X M), 石宝友(Shi B Y), 王东升(Wang D S), 汤鸿霄(Tang H X). 化学进展(Progress in Chemistry), 2008, 20: 422-428
[46]  Shemetov A A, Nabiev I, Sukhanova A. ACS Nano, 2012, 6: 4585-4602
[47]  Ge C, Du J, Zhao L, Wang L, Liu Y, Li D, Yang Y, Zhou R, Zhao Y, Chai Z, Chen C. Proc. Nat. Acad. Sci. U. S. A., 2011, 108: 16968-16973
[48]  Asuri P, Karajanagi S S, Yang H, Yim T J, Kane R S, Dordick J S. Langmuir, 2006, 22: 5833-5836
[49]  Klein J. Proc. Nat. Acad. Sci. U. S. A., 2007, 104: 2029-2030
[50]  Chun A L. Nat. Nanotechnol., 2012. doi: 10.1038 /nnano. 2012. 159
[51]  Lynch I, Dawson K A. Nano Today, 2008, 3: 40-47
[52]  Linse S, Cabaleiro-Lago C, Xue W F, Lynch I, Lindman S, Thulin E, Radford S E, Dawson K A. Proc. Nat. Acad. Sci. U. S. A., 2007, 104: 8691-8696
[53]  Walkey C D, Chan W C W. Chem. Soc. Rev., 2012, 41: 2780-2799
[54]  Renwick L C, Brown D, Clouter A, Donaldson K. Occup. Environ. Med., 2004, 61: 442-447
[55]  M?ller W, Hofer T, Ziesenis A, Karg E, Heyder J. Toxicol. Appl. Pharm., 2002, 182: 197-207
[56]  Terzano C, Di Stefano F, Conti V, Graziani E, Petroianni A. Eur. Rev. Med. Pharmacol. Sci., 2010, 14: 809-820
[57]  Yokoyama T, Tam J, Kuroda S, Scott A W, Aaron J, Larson T, Shanker M, Correa A M, Kondo S, Roth J A, Sokolov K, Ramesh R. PLoS One, 2011, 6: e25507
[58]  周国强(Zhou G Q), 陈春英(Chen C Y), 李玉锋(Li Y F), 李炜(Li W), 高愈希(Gao Y X), 赵宇亮(Zhao Y L). 生物化学与生物物理进展(Progress in Biochemistry and Biophysics), 2008, 35: 998-1006
[59]  Ryman-Rasmussen J P, Riviere J E, Monteiro-Riviere N A. J. Invest. Dermatol., 2006, 127: 143-153
[60]  Sarkar S, Sharma C, Yog R, Periakaruppan A, Jejelowo O, Thomas R. J. Nanosci. Nanotechnol., 2009, 7: 584-592
[61]  Cohen D, Soroka Y, Ma'or Z, Oron M, Portugal-Cohen M, Brégégère FM, Berhanu D, Valsami-Jones E, Hai N, Milner Y. Toxicol. in Vitro, 2012, 27: 292-298
[62]  Ryman-Rasmussen J P, Riviere J E, Monteiro-Riviere N A. Toxicol. Sci., 2006, 91: 159-165
[63]  Rancan F, Gao Q, Graf C, Troppens S, Hadam S, Hackbarth S, Kembuan C, Blume-Peytavi U, Rühl E, Lademann J, Vogt A. ACS Nano, 2012, 6: 6829-6842
[64]  Nohynek G, Dufour E. Arch. Toxicol., 2012, 86: 1063-1075
[65]  Winter M, Beer H D, Hornung V, Kr?mer U, Schins R P F, F?rster I. Nanotoxicology, 2011, 5: 326-340
[66]  He C, Yin L, Tang C, Yin C. Biomaterials, 2012, 33: 8569-8578
[67]  Cedervall T, Lynch I, Foy M, Bergg?rd T, Donnelly S C, Cagney G, Linse S, Dawson K A. Angew. Chem. Int. Edit., 2007, 46: 5754-5756
[68]  Lunov O, Syrovets T, Loos C, Beil J, Delacher M, Tron K, Nienhaus G U, Musyanovych A, Mail?nder V, Landfester K, Simmet T. ACS Nano, 2011, 5: 1657-1669
[69]  Cole A J, David A E, Wang J, Galbán C J, Hill H L, Yang V C. Biomaterials, 2011, 32: 2183-2193
[70]  Gagner J E, Lopez M D, Dordick J S, Siegel R W. Biomaterials, 2011, 32: 7241-7252
[71]  Boyer C, Huang X, Whittaker M R, Bulmus V, Davis T P. Soft Matter, 2011, 7: 1599-1614
[72]  Peiris R H, Ignagni N, Budman H, Moresoli C, Legge R L. Talanta, 2012, 99: 457-463
[73]  Lynch I, Cedervall T, Lundqvist M, Cabaleiro-Lago C, Linse S, Dawson K A. Adv. Colloid Interface Sci., 2007, 134/135: 167-174
[74]  Cabaleiro-Lago C, Lynch I, Dawson K A, Linse S. Langmuir, 2010, 26: 3453-3461
[75]  Vertegel A A, Siegel R W, Dordick J S. Langmuir, 2004, 20: 6800-6807

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