Immunotoxicity assessment of CdSe/ZnS quantum dots in macrophages, lymphocytes and BALB/c mice
详细信息    查看全文
  • 作者:Xiaomei Wang ; Jinglin Tian ; Ken-Tye Yong ; Xuedan Zhu…
  • 关键词:Quantum dots ; Macrophages ; Lymphocytes ; Cytotoxicity ; Immunotoxicity
  • 刊名:Journal of Nanobiotechnology
  • 出版年:2016
  • 出版时间:December 2016
  • 年:2016
  • 卷:14
  • 期:1
  • 全文大小:8,026 KB
  • 参考文献:1.Bruchez MJ, Moronne M, Gin P, Weiss S, Alivisatos AP. Semiconductor nanocrystals as fluorescent biological labels. Science. 1998;281:2013–6.CrossRef
    2.Hauck TS, Anderson RE, Fischer HC, Newbigging S, Chan WCW. In vivo Quantum-Dot Toxicity Assessment. Small. 2010;6:138–44.CrossRef
    3.Liu J, Law W, Liu J, Hu R, Liu L, Zhu J, Chen H, Wang J, Hu Y, Ye L, Yong K. Toxicity assessment of phospholipid micelle-encapsulated cadmium-based quantum dots using Kunming mice. RSC Adv. 2013;3:1768–73.CrossRef
    4.Qu G, Wang X, Wang Z, Liu S, Jiang G. Cytotoxicity of quantum dots and graphene oxide to erythroid cells and macrophages. Nanoscale Res Lett. 2013;8:198.CrossRef
    5.Nguyen KC, Rippstein P, Tayabali AF, Willmore WG. Mitochondrial Toxicity of Cadmium Telluride Quantum Dot Nanoparticles in Mammalian Hepatocytes. Toxicol Sci. 2015;146:31–42.CrossRef
    6.Pathakoti K, Hwang HM, Xu H, Aguilar ZP, Wang A. In vitro cytotoxicity of CdSe/ZnS quantum dots with different surface coatings to human keratinocytes HaCaT cells. J Environ Sci (China). 2013;25:163–71.CrossRef
    7.Chen N, He Y, Su Y, Li X, Huang Q, Wang H, Zhang X, Tai R, Fan C. The cytotoxicity of cadmium-based quantum dots. Biomaterials. 2012;33:1238–44.CrossRef
    8.Mahto SK, Park C, Yoon TH, Rhee SW. Assessment of cytocompatibility of surface-modified CdSe/ZnSe quantum dots for BALB/3T3 fibroblast cells. Toxicol In Vitro. 2010;24:1070–7.CrossRef
    9.Nguyen KC, Seligy VL, Tayabali AF. Cadmium telluride quantum dot nanoparticle cytotoxicity and effects on model immune responses to Pseudomonas aeruginosa. Nanotoxicology. 2013;7:202–11.CrossRef
    10.Lin G, Ouyang Q, Hu R, Ding Z, Tian J, Yin F, Xu G, Chen Q, Wang X, Yong K. In vivo toxicity assessment of non-cadmium quantum dots in BALB/c mice. Nanomed Nanotechnol Biol Med. 2015;11:341–50.CrossRef
    11.Ye L, Yong K, Liu L, Roy I, Hu R, Zhu J, Cai H, Law W, Liu J, Wang K. Others: a pilot study in non-human primates shows no adverse response to intravenous injection of quantum dots. Nat Nanotechnol. 2012;7:453–8.CrossRef
    12.Lin G, Ding Z, Hu R, Wang X, Chen Q, Zhu X, Liu K, Liang J, Lu F, Lei D, et al. Cytotoxicity and immune response of CdSe/ZnS quantum dots towards a murine macrophage cell line. RSC Adv. 2014;4:5792–7.CrossRef
    13.Clift MJD, Varet J, Hankin SM, Brownlee B, Davidson AM, Brandenberger C, Rothen-Rutishauser B, Brown DM, Stone V. Quantum dot cytotoxicity in vitro An investigation into the cytotoxic effects of a series of different surface chemistries and their core/shell materials. Nanotoxicology. 2011;5:664–74.CrossRef
    14.Lin G, Wang X, Yi W, Zhang C, Xu G, Zhu X, Cai Z, Liu Y, Diao Y, Lin MC, Jin G. A conjugate of octamer-binding transcription factor 4 and toll-like receptor 7 agonist prevents the growth and metastasis of testis embryonic carcinoma. J Transl Med. 2015;13:166.CrossRef
    15.Rietschel ET, Kirikae T, Schade FU, Mamat U, Schmidt G, Loppnow H, Ulmer AJ, Zahringer U, Seydel U, Di Padova F, Et A. Bacterial endotoxin: molecular relationships of structure to activity and function. FASEB J. 1994;8:217–25.
    16.Weiner GJ, Liu HM, Wooldridge JE, Dahle CE, Krieg AM. Immunostimulatory oligodeoxynucleotides containing the CpG motif are effective as immune adjuvants in tumor antigen immunization. Proc Natl Acad Sci USA. 1997;94:10833–7.CrossRef
    17.Hardman R. A toxicologic review of quantum dots: toxicity depends on physicochemical and environmental factors. Environ Health Perspect. 2006;114:165–72.CrossRef
    18.Yuanyuan S, Yao H, Haoting L, Liman S, Qingnuan L, Wenxin L, Lianhui W, Pingping S, Qing H, Chunhai F. The cytotoxicity of cadmium based, aqueous phase—synthesized, quantum dots and its modulation by surface coating. Biomaterials. 2009;30:19–25.CrossRef
    19.Shiohara A, Hoshino A, Hanaki K, Suzuki K, Yamamoto K. On the cyto-toxicity caused by quantum dots. Microbiol Immunol. 2004;48:669–75.CrossRef
    20.Lee HM, Shin DM, Song HM, Yuk JM, Lee ZW, Lee SH, Hwang SM, Kim JM, Lee CS, Jo EK. Nanoparticles up-regulate tumor necrosis factor-alpha and CXCL8 via reactive oxygen species and mitogen-activated protein kinase activation. Toxicol Appl Pharmacol. 2009;238:160–9.CrossRef
    21.Zhang Z, Berg A, Levanon H, Fessenden RW, Meisel D. On the interactions of free radicals with gold nanoparticles. J Am Chem Soc. 2003;125:7959–63.CrossRef
    22.Manke A, Wang L, Rojanasakul Y. Mechanisms of nanoparticle-induced oxidative stress and toxicity. Biomed Res Int. 2013;2013:942916.CrossRef
    23.Hsin YH, Chen CF, Huang S, Shih TS, Lai PS, Chueh PJ. The apoptotic effect of nanosilver is mediated by a ROS- and JNK-dependent mechanism involving the mitochondrial pathway in NIH3T3 cells. Toxicol Lett. 2008;179:130–9.CrossRef
    24.Takeda K, Akira S. TLR signaling pathways. Semin Immunol. 2004;16:3–9.CrossRef
    25.Mullick CS, Lalwani G, Zhang K, Yang JY, Neville K, Sitharaman B. Cell specific cytotoxicity and uptake of graphene nanoribbons. Biomaterials. 2013;34:283–93.CrossRef
    26.Choi HS, Liu W, Misra P, Tanaka E, Zimmer JP, Itty IB, Bawendi MG, Frangioni JV. Renal clearance of quantum dots. Nat Biotechnol. 2007;25:1165–70.CrossRef
    27.Su Y, Peng F, Jiang Z, Zhong Y, Lu Y, Jiang X, Huang Q, Fan C, Lee ST, He Y. In vivo distribution, pharmacokinetics, and toxicity of aqueous synthesized cadmium-containing quantum dots. Biomaterials. 2011;32:5855–62.CrossRef
    28.Tang Y, Han S, Liu H, Chen X, Huang L, Li X, Zhang J. The role of surface chemistry in determining in vivo biodistribution and toxicity of CdSe/ZnS core-shell quantum dots. Biomaterials. 2013;34:8741–55.CrossRef
    29.Manna SK, Sarkar S, Barr J, Wise K, Barrera EV, Jejelowo O, Rice-Ficht AC, Ramesh GT. Single-walled carbon nanotube induces oxidative stress and activates nuclear transcription factor-kappaB in human keratinocytes. Nano Lett. 2005;5:1676–84.CrossRef
    30.Schipper ML, Nakayama-Ratchford N, Davis CR, Kam NW, Chu P, Liu Z, Sun X, Dai H, Gambhir SS. A pilot toxicology study of single-walled carbon nanotubes in a small sample of mice. Nat Nanotechnol. 2008;3:216–21.CrossRef
    31.Sayes CM, Marchione AA, Reed KL, Warheit DB. Comparative pulmonary toxicity assessments of C60 water suspensions in rats: few differences in fullerene toxicity in vivo in contrast to in vitro profiles. Nano Lett. 2007;7:2399–406.CrossRef
  • 作者单位:Xiaomei Wang (1) (2) (4)
    Jinglin Tian (1) (2)
    Ken-Tye Yong (3)
    Xuedan Zhu (2)
    Marie Chia-Mi Lin (2)
    Wenxiao Jiang (2)
    Jiefeng Li (2)
    Qijun Huang (2)
    Guimiao Lin (2) (4)

    1. College of Life Science and Oceanography, Shenzhen University, Shenzhen, 518060, People’s Republic of China
    2. Key Lab of Biomedical Engineering, School of Medicine, Shenzhen University, Shenzhen, 518060, People’s Republic of China
    4. The Institute of Urinary and Reproductive, Shenzhen Key lab of Translational Medicine of Tumor, The Engineering Lab of Synthetic Biology, School of Medicine, Shenzhen University, Shenzhen, 518060, People’s Republic of China
    3. School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore, 639798, Singapore
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Biotechnology
    Nanotechnology
  • 出版者:BioMed Central
  • ISSN:1477-3155
文摘
Background The toxicity of CdSe/ZnS quantum dots (QDs) in the environment and biological systems has become a major concern for the nanoparticle community. However, the potential toxicity of QDs on immune cells and its corresponding immune functions remains poorly understood. In this study, we investigated the immunotoxicity of CdSe/ZnS QDs using the in vitro in macrophages and lymphocytes and in vivo in BALB/c mice.

© 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