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金纳米粒子(AuNVs)是构建用于诊断和治疗的纳米药物/探针的理想纳米材料之一,因此研究AuNPs与细胞的相互作用具有重要意义.本文详细分析了金纳米簇(AuNCs)、球形金纳米粒子A(AuNPss)、金纳米球壳(AuNSs)和金纳米棒(AuNRs)等不同形貌的Au NPs对不同细胞模型的细胞毒性;讨论了AuNPs的理化性质(大小、形状、化学功能和表面电荷)对其细胞毒性的影响.总结了AuNP细胞毒性研究遇到的挑战并提出相应解决方法.

参考文献

[1] CATHERINE J. MURPHY;ANAND M. GOLE;JOHN W. STONE.Gold Nanoparticles in Biology: Beyond Toxicity to Cellular Imaging[J].Accounts of Chemical Research,200812(12):1721-1730.
[2] Frank Caruso;Taeghwan Hyeon;Vincent M. Rotello.Nanomedicine[J].Chemical Society Reviews,20127(7):2537-2538.
[3] Pelaz, B.;Jaber, S.;De Aberasturi, D.J.;Wulf, V.;Aida, T.;De La Fuente, J.M.;Feldmann, J.;Gaub, H.E.;Josephson, L.;Kagan, C.R.;Kotov, N.A.;Liz-Marzán, L.M.;Mattoussi, H.;Mulvaney, P.;Murray, C.B.;Rogach, A.L.;Weiss, P.S.;Willner, I.;Parak, W.J..The state of nanoparticle-based nanoscience and biotechnology: Progress, promises, and challenges[J].ACS nano,201210(10):8468-8483.
[4] Lingyan Feng;Li Wu;Xiaogang Qu.New Horizons for Diagnostics and Therapeutic Applications of Graphene and Craphene Oxide[J].Advanced Materials,20132(2):168-186.
[5] Jiang, Ziwen;Le, Ngoc D. B.;Gupta, Akash;Rotello, Vincent M..Cell surface-based sensing with metallic nanoparticles[J].Chemical Society Reviews,201513(13):4264-4274.
[6] Prodi, L.;Rampazzo, E.;Rastrelli, F.;Speghini, A.;Zaccheroni, N..Imaging agents based on lanthanide doped nanoparticles[J].Chemical Society Reviews,201514(14):4922-4952.
[7] Dickerson EB;Dreaden EC;Huang X;El-Sayed IH;Chu H;Pushpanketh S;McDonald JF;El-Sayed MA.Gold nanorod assisted near-infrared plasmonic photothermal therapy (PPTT) of squamous cell carcinoma in mice.[J].Cancer letters,20081(1):57-66.
[8] Bardhan, R.;Chen, W.;Bartels, M.;Perez-Torres, C.;Botero, M.F.;McAninch, R.W.;Contreras, A.;Schiff, R.;Pautler, R.G.;Halas, N.J.;Joshi, A..Tracking of multimodal therapeutic nanocomplexes targeting breast cancer in vivo[J].Nano letters,201012(12):4920-4928.
[9] Ciceron Ayala-Orozco;Cordula Urban;Mark W. Knight;Alexander Skyrme Urban;Oara Neumann;Sandra W. Bishnoi;Shaunak Mukherjee;Amanda M. Goodman;Heather Charron;Tamika Mitchell;Martin Shea;Ronita Roy;Sarmistha Nanda;Rachel Schiff;Naomi J. Halas;Amit Joshi.Au Nanomatryoshkas as Efficient Near-Infrared Photothermal Transducers for Cancer Treatment: Benchmarking against Nanoshells[J].ACS nano,20146(6):6372-6381.
[10] Freya Joris;Bella B. Manshian;Karen Peynshaert.Assessing nanoparticle toxicity in cell-based assays: influence of cell culture parameters and optimized models for bridging the in vitro-in vivo gap[J].Chemical Society Reviews,201321(21):8339-8359.
[11] Fratoddi, Ilaria;Venditti, Iole;Cametti, Cesare;Russo, Maria Vittoria.The puzzle of toxicity of gold nanoparticles. The case-study of HeLa cells[J].Toxicology Research,20154(4):796-800.
[12] Stefaan J. Soenen;Pilar Rivera-Gil;Jose-Maria Montenegro.Cellular toxicity of inorganic nanoparticles: Common aspects and guidelines for improved nanotoxicityevaluation[J].Nano Today,20115(5):446-465.
[13] Soenen, Stefaan J.;Parak, Wolfgang J.;Rejman, Joanna;Manshian, Bella.(Intra)Cellular Stability of Inorganic Nanoparticles: Effects on Cytotoxicity, Particle Functionality, and Biomedical Applications[J].Chemical Reviews,20155(5):2109-2135.
[14] Lewinski N;Colvin V;Drezek R.Cytotoxicity of nanoparticles[J].Small,20081(1):26-49.
[15] Chithrani BD;Chan WCW.Elucidating the mechanism of cellular uptake and removal of protein-coated gold nanoparticles of different sizes and shapes[J].Nano letters,20076(6):1542-1550.
[16] Gratton, SEA;Ropp, PA;Pohlhaus, PD;Luft, JC;Madden, VJ;Napier, ME;DeSimone, JM.The effect of particle design on cellular internalization pathways[J].Proceedings of the National Academy of Sciences of the United States of America,200833(33):11613-11618.
[17] Mironava, Tatsiana;Hadjiargyrou, Michael;Simon, Marcia;Rafailovich, Miriam H..Gold nanoparticles cellular toxicity and recovery: Adipose Derived Stromal cells[J].Nanotoxicology,20141/8(1/8):189-201.
[18] Wang, Y.;Black, K.C.L.;Luehmann, H.;Li, W.;Zhang, Y.;Cai, X.;Wan, D.;Liu, S.-Y.;Li, M.;Kim, P.;Li, Z.-Y.;Wang, L.V.;Liu, Y.;Xia, Y..Comparison study of gold nanohexapods, nanorods, and nanocages for photothermal cancer treatment[J].ACS nano,20133(3):2068-2077.
[19] Brandenberger, C.;Mühlfeld, C.;Ali, Z.;Lenz, A.-G.;Schmid, O.;Parak, W.J.;Gehr, P.;Rothen-Rutishauser, B..Quantitative evaluation of cellular uptake and trafficking of plain and polyethylene glycol-coated gold nanoparticles[J].Small,201015(15):1669-1678.
[20] Bartczak, D.;Sanchez-Elsner, T.;Louafi, F.;Millar, T.M.;Kanaras, A.G..Receptor-mediated interactions between colloidal gold nanoparticles and human umbilical vein endothelial cells[J].Small,20113(3):388-394.
[21] Rui Hong;Gang Han;Joseph M.Fernandez;Byoung-jin Kim;Neil S.Forbes;Vincent M.Rotello.Glutathione-Mediated Delivery and Release Using Monolayer Protected Nanoparticle Carriers[J].Journal of the American Chemical Society,20064(4):1078-1079.
[22] Krpeti?, Z.;Saleemi, S.;Prior, I.A.;Sée, V.;Qureshi, R.;Brust, M..Negotiation of intracellular membrane barriers by TAT-modified gold nanoparticles[J].ACS nano,20116(6):5195-5201.
[23] Ahn, Sungsook;Seo, Eunseok;Kim, Ki Hean;Lee, Sang Joon.Physical Property Control on the Cellular Uptake Pathway and Spatial Distribution of Nanoparticles in Cells[J].Journal of biomedical nanotechnology,20156(6):1051-1070.
[24] Marie-Christine Daniel;Didier Astruc.Gold Nanoparticles:Assembly,Supramolecular Chemistry,Quantum-Size-Related Properties,and Applications toward Biology,Catalysis,and Nanotechnology[J].Chemical Reviews,20041(1):293-346.
[25] PRASHANT K. JAIN;XIAOHUA HUANG;IVAN H. EL-SAYED.Noble Metals on the Nanoscale: Optical and Photothermal Properties and Some Applications in Imaging, Sensing, Biology, and Medicine[J].Accounts of Chemical Research,200812(12):1578-1586.
[26] YOUNAN XIA;WEIYANG LI;CLAIRE M. COBLEY.Gold Nanocages: From Synthesis to Theranostic Applications[J].Accounts of Chemical Research,201110(10):914-924.
[27] Han, Sung Gu;Lee, Jong Seong;Ahn, Kangho;Kim, Yong Soon;Kim, Jin Kwon;Lee, Ji Huyn;Shin, Jae Hoon;Jeon, Ki Soo;Cho, Wan Seob;Song, Nam Woong;Gulumian, Mary;Shin, Beom Soo;Yu, Il Je.Size-dependent clearance of gold nanoparticles from lungs of Sprague-Dawley rats after short-term inhalation exposure[J].Archives of Toxicology,20157(7):1083-1094.
[28] Yang,H.;Du,L.;Tian,X.;Fan,Z.;Sun,C.;Liu,Y.;Keelan,J.A.;Nie,G..Effects of nanoparticle size and gestational age on maternal biodistribution and toxicity of gold nanoparticles in pregnant mice[J].Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research,20141(1):10-18.
[29] Jens Frigell;Isabel García;Vanessa Go?mez-Vallejo;Jordi Llop;Soledad Penade?s.~(68)Ga-Labeled Gold Glyconanoparticles for Exploring Blood?Brain Barrier Permeability: Preparation, Biodistribution Studies, and Improved Brain Uptake via Neuropeptide Conjugation[J].Journal of the American Chemical Society,20141(1):449-457.
[30] Sonavane G;Tomoda K;Makino K.Biodistribution of colloidal gold nanoparticles after intravenous administration: Effect of particle size[J].Colloids and Surfaces, B. Biointerfaces,20082(2):274-280.
[31] Zhang,X.-D.;Wu,D.;Shen,X.;Liu,P.-X.;Fan,F.-Y.;Fan,S.-J..In vivo renal clearance, biodistribution, toxicity of gold nanoclusters[J].Biomaterials,201218(18):4628-4638.
[32] Wang, Jing;Xie, Yadian;Wang, Liming;Tang, Jinglong;Li, Jiayang;Kocaefe, Duygu;Kocaefe, Yasar;Zhang, Zhiwen;Li, Yaping;Chen, Chunying.In vivo pharmacokinetic features and biodistribution of star and rod shaped gold nanoparticles by multispectral optoacoustic tomography[J].RSC Advances,201510(10):7529-7538.
[33] Pan Y;Neuss S;Leifert A;Fischler M;Wen F;Simon U;Schmid G;Brandau W;Jahnen-Dechent W.Size-dependent cytotoxicity of gold nanoparticles[J].Small,200711(11):1941-1949.
[34] Pan, Y;Leifert, A;Ruau, D;Neuss, S;Bornemann, J;Schmid, G;Brandau, W;Simon, U;Jahnen-Dechent, W.Gold Nanoparticles of Diameter 1.4 nm Trigger Necrosis by Oxidative Stress and Mitochondrial Damage[J].Small,200918(18):2067-2076.
[35] Albanese, A.;Chan, W.C.W..Effect of gold nanoparticle aggregation on cell uptake and toxicity[J].ACS nano,20117(7):5478-5489.
[36] Hauck TS;Ghazani AA;Chan WCW.Assessing the effect of surface chemistry on gold nanorod uptake, toxicity, and gene expression in mammalian cells[J].Small,20081(1):153-159.
[37] Ann K. Nowinski;Andrew D. White;Andrew J. Keefe;Shaoyi Jiang.Biologically Inspired Stealth Peptide-Capped Gold Nanoparticles[J].Langmuir: The ACS Journal of Surfaces and Colloids,20147(7):1864-1870.
[38] Carolina Adura;Simon Guerrero;Edison Salas.Stable Conjugates of Peptides with Gold Nanorods for Biomedical Applications with Reduced Effects on Cell Viability[J].ACS applied materials & interfaces,201310(10):4076-4085.
[39] Nicole M. Schaeublin;Laura K. Braydich-Stolle;Amanda M. Schrand.Surface charge of gold nanoparticles mediates mechanism of toxicity[J].Nanoscale,20112(2):410-420.
[40] Pillai, P.P.;Huda, S.;Kowalczyk, B.;Grzybowski, B.A..Controlled pH stability and adjustable cellular uptake of mixed-charge nanoparticles[J].Journal of the American Chemical Society,201317(17):6392-6395.
[41] Hühn, D.;Kantner, K.;Geidel, C.;Brandholt, S.;De Cock, I.;Soenen, S.J.H.;Riveragil, P.;Montenegro, J.-M.;Braeckmans, K.;Müllen, K.;Nienhaus, G.U.;Klapper, M.;Parak, W.J..Polymer-coated nanoparticles interacting with proteins and cells: Focusing on the sign of the net charge[J].ACS nano,20134(4):3253-3263.
[42] Catherine M.Goodman;Catherine D.McCusker;Tuna Yilmaz;Vincent M.Rotello.Toxicity of Gold Nanoparticles Functionalized with Cationic and Anionic Side Chains[J].Bioconjugate Chemistry,20044(4):897-900.
[43] Liu, X.;Huang, N.;Li, H.;Jin, Q.;Ji, J..Surface and size effects on Cell interaction of gold nanoparticles with both phagocytic and nonphagocytic cells[J].Langmuir: The ACS Journal of Surfaces and Colloids,201329(29):9138-9148.
[44] Alaaldin M. Alkilany;Stefano P. Boulos;Samuel E. Lohse.Homing Peptide-Conjugated Gold Nanorods: The Effect of Amino Acid Sequence Display on Nanorod Uptake and Cellular Proliferation[J].Bioconjugate Chemistry,20146(6):1162-1171.
[45] James Chen Yong Kah;Christin Grabinski;Emily Untener;Carol Garrett;John Chen;David Zhu;Saber M. Hussain;Kimberly Hamad-Schifferli.Protein Coronas on Gold Nanorods Passivated with Amphiphilic Ligands Affect Cytotoxicity and Cellular Response to Penicillin/Streptomycin[J].ACS nano,20145(5):4608-4620.
[46] Chiung-Wen Kuo;Jun-Jung Lai;Kung Hwa Wei;Peilin Chen.Studies of Surface-Modified Gold Nanowires Inside Living Cells[J].Advanced functional materials,200718(18):3707-3714.
[47] Lipka J;Semmler Behnke M;Sperling RA;Wenk A;Takenaka S;Schleh C;Kissel T;Parak WJ;Kreyling WG.Biodistribution of PEG-modified gold nanoparticles following intratracheal instillation and intravenous injection.[J].Biomaterials,201025(25):6574-6581.
[48] Yu Cheng;Qing Dai;Ramin A. Morshed;Xiaobing Fan;Michelle L. Wegscheid;Derek A. Wainwright;Yu Han;Lingjiao Zhang;Brenda Auffinger;Alex L. Tobias;Esther Rincón;Bart Thaci;Atique U. Ahmed;Peter C. Warnke;Chuan He;Maciej S. Lesniak.Blood-Brain Barrier Permeable Gold Nanoparticles: An Efficient Delivery Platform for Enhanced Malignant Glioma Therapy and Imaging[J].Small,201424(24):5137-5150.
[49] Deol, Suprit;Weerasuriya, Nisala;Shon, Young-Seok.Stability, cytotoxicity and cell uptake of water-soluble dendron-conjugated gold nanoparticles with 3, 12 and 17 nm cores[J].Journal of Materials Chemistry, B. materials for biology and medicine,201529(29):6071-6080.
[50] Gogna,R.;Madan,E.;Kuppusamy,P.;Pati,U..Reactive oxygen species-mediated p53 core-domain modifications determine apoptotic or necrotic death in cancer cells[J].Antioxidants and redox signalling,20125(5):400-412.
[51] Soenen, S.J.;Manshian, B.;Montenegro, J.M.;Amin, F.;Meermann, B.;Thiron, T.;Cornelissen, M.;Vanhaecke, F.;Doak, S.;Parak, W.J.;De Smedt, S.;Braeckmans, K..Cytotoxic effects of gold nanoparticles: A multiparametric study[J].ACS nano,20127(7):5767-5783.
[52] Monita Sharma;Richard L. Salisbury;Elizabeth I. Maurer.Gold nanoparticles induce transcriptional activity of NF-κB in a B-lymphocyte cell line[J].Nanoscale,20139(9):3747-3756.
[53] Mironava, T.;Hadjiargyrou, M.;Simon, M.;Jurukovski, V.;Rafailovich, M.H..Gold nanoparticles cellular toxicity and recovery: Effect of size, concentration and exposure time[J].Nanotoxicology,20101/4(1/4):120-137.
[54] Ma, Zhifang;Bai, Jing;Jiang, Xiue.Monitoring of the Enzymatic Degradation of Protein Corona and Evaluating the Accompanying Cytotoxicity of Nanoparticles[J].ACS applied materials & interfaces,201532(32):17614-17622.
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