335
Views
46
CrossRef citations to date
0
Altmetric
Research Article

Immune responses of BALB/c mice to subcutaneously injected multi-walled carbon nanotubes

, , , , &
Pages 583-591 | Received 20 Dec 2009, Accepted 04 Aug 2010, Published online: 01 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Stefan Siegrist, Emre Cörek, Pascal Detampel, Jenny Sandström, Peter Wick & Jörg Huwyler. (2019) Preclinical hazard evaluation strategy for nanomedicines. Nanotoxicology 13:1, pages 73-99.
Read now
Man Yang, Li Jing, Ji Wang, Yang Yu, Lige Cao, Lianshuang Zhang, Xianqing Zhou & Zhiwei Sun. (2016) Macrophages participate in local and systemic inflammation induced by amorphous silica nanoparticles through intratracheal instillation. International Journal of Nanomedicine 11, pages 6217-6228.
Read now
Eleonore Fröhlich. (2015) Value of phagocyte function screening for immunotoxicity of nanoparticles in vivo. International Journal of Nanomedicine 10, pages 3761-3778.
Read now
Jie Meng, Yinglu Ji, Jian Liu, Xuelian Cheng, Hua Guo, Weiqi Zhang, Xiaochun Wu & Haiyan Xu. (2014) Using gold nanorods core/silver shell nanostructures as model material to probe biodistribution and toxic effects of silver nanoparticles in mice. Nanotoxicology 8:6, pages 686-696.
Read now

Articles from other publishers (42)

Shreya Mehrotra, Souradeep Dey, Kunj Sachdeva, Sujata Mohanty & Biman B. Mandal. (2023) Recent advances in tailoring stimuli-responsive hybrid scaffolds for cardiac tissue engineering and allied applications. Journal of Materials Chemistry B 11:43, pages 10297-10331.
Crossref
Luca Marchetti, Flavia Novelli, Barbara Tanno, Simona Leonardi, Veronica Mohamed Hizam, Caterina Arcangeli, Luca Santi, Selene Baschieri, Chiara Lico & Mariateresa Mancuso. (2023) Peptide-Functionalized and Drug-Loaded Tomato Bushy Stunt Virus Nanoparticles Counteract Tumor Growth in a Mouse Model of Shh-Dependent Medulloblastoma. International Journal of Molecular Sciences 24:10, pages 8911.
Crossref
Bbumba Patrick, Tahira Akhtar, Rubina Kousar, Chih-Ching Huang & Xing-Guo Li. (2023) Carbon Nanomaterials: Emerging Roles in Immuno-Oncology. International Journal of Molecular Sciences 24:7, pages 6600.
Crossref
Souvik Ghosh, Partha Roy & Debrupa Lahiri. (2022) Enhanced neurogenic differentiation on anisotropically conductive carbon nanotube reinforced polycaprolactone-collagen scaffold by applying direct coupling electrical stimulation. International Journal of Biological Macromolecules 218, pages 269-284.
Crossref
Amy Chall, John Stagg, Andrew Mixson, Eric Gato, Rafael L Quirino & Vinoth Sittaramane. (2021) Ablation of cells in mice using antibody-functionalized multiwalled carbon nanotubes (Ab-MWCNTs) in combination with microwaves. Nanotechnology 32:19, pages 195102.
Crossref
Hatem A.F.M. Hassan, Sandra S. Diebold, Lesley A. Smyth, Adam A. Walters, Giovanna Lombardi & Khuloud T. Al-Jamal. (2019) Application of carbon nanotubes in cancer vaccines: Achievements, challenges and chances. Journal of Controlled Release 297, pages 79-90.
Crossref
Khurram S. Munir, Cuie Wen & Yuncang Li. (2019) Carbon Nanotubes and Graphene as Nanoreinforcements in Metallic Biomaterials: a Review. Advanced Biosystems 3:3, pages 1800212.
Crossref
Kazuo Umemura & Shizuma Sato. (2018) Scanning Techniques for Nanobioconjugates of Carbon Nanotubes. Scanning 2018, pages 1-19.
Crossref
Se-Jun Lee, Wei Zhu, Margaret Nowicki, Grace Lee, Dong Nyoung Heo, Junghoon Kim, Yi Y Zuo & Lijie Grace Zhang. (2018) 3D printing nano conductive multi-walled carbon nanotube scaffolds for nerve regeneration. Journal of Neural Engineering 15:1, pages 016018.
Crossref
Zi Gu, Shiyu Yan, Soshan Cheong, Zhenbang Cao, Huali Zuo, Anita C. Thomas, Barbara E. Rolfe & Zhi Ping Xu. (2018) Layered double hydroxide nanoparticles: Impact on vascular cells, blood cells and the complement system. Journal of Colloid and Interface Science 512, pages 404-410.
Crossref
Meiyu Wu, Liang Chen, Ruiru Li, Mo Dan, Haining Liu, Xinsheng Wang, Xiaochun Wu, Ying Liu, Liming Xu & Liming Xie. (2018) Bio-distribution and bio-availability of silver and gold in rat tissues with silver/gold nanorod administration. RSC Advances 8:22, pages 12260-12268.
Crossref
Haseeb A. Khan, Isra Khan & Yong-kyu Lee. 2018. Fullerens, Graphenes and Nanotubes. Fullerens, Graphenes and Nanotubes 601 630 .
Kati Erdmann, Jessica Ringel, Silke Hampel, Manfred P Wirth & Susanne Fuessel. (2017) Carbon nanomaterials sensitize prostate cancer cells to docetaxel and mitomycin C via induction of apoptosis and inhibition of proliferation. Beilstein Journal of Nanotechnology 8, pages 1307-1317.
Crossref
Hui Li, Xiao-Qiu Tan, Li Yan, Bo Zeng, Jie Meng, Hai-Yan Xu & Ji-Min Cao. (2017) Multi-walled carbon nanotubes act as a chemokine and recruit macrophages by activating the PLC/IP3/CRAC channel signaling pathway. Scientific Reports 7:1.
Crossref
Ali M. Tabish, Katrien Poels, Hyang-Min Byun, Katrien luyts, Andrea A. Baccarelli, Johan Martens, Stef Kerkhofs, Sven Seys, Peter Hoet & Lode Godderis. (2017) Changes in DNA Methylation in Mouse Lungs after a Single Intra-Tracheal Administration of Nanomaterials. PLOS ONE 12:1, pages e0169886.
Crossref
Xinfeng Zhu, Jiadi Sun, Yinzhi Zhang & Xiulan Sun. (2016) Immunization with functionalized carbon nanotubes enhances the antibody response against mode antigen ovalbumin. Immunology Letters 178, pages 77-84.
Crossref
Saeedeh Najafi-Hajivar, Parvin Zakeri-Milani, Hamed Mohammadi, Mehri Niazi, Mehdi Soleymani-Goloujeh, Behzad Baradaran & Hadi Valizadeh. (2016) Overview on experimental models of interactions between nanoparticles and the immune system. Biomedicine & Pharmacotherapy 83, pages 1365-1378.
Crossref
Jie Xing, Zhenguang Liu, Yifan Huang, Tao Qin, Ruonan Bo, Sisi Zheng, Li Luo, Yee Huang, Yale Niu & Deyun Wang. (2016) Lentinan-Modified Carbon Nanotubes as an Antigen Delivery System Modulate Immune Response in Vitro and in Vivo. ACS Applied Materials & Interfaces 8:30, pages 19276-19283.
Crossref
Haiyan Xu, Jie Meng, Qiang Ma & Xiaojin Li. 2016. Biomedical Applications and Toxicology of Carbon Nanomaterials. Biomedical Applications and Toxicology of Carbon Nanomaterials 357 396 .
Anna E. Czapar & Nicole F. Steinmetz. 2016. Nanomaterials in Pharmacology. Nanomaterials in Pharmacology 65 85 .
Abhilash Sasidharan, Siddharth Swaroop, Chaitanya K. Koduri, Chundayil Madathil Girish, Parwathy Chandran, L.S. Panchakarla, Vijay H. Somasundaram, Genekehal S. Gowd, Shantikumar Nair & Manzoor Koyakutty. (2015) Comparative in vivo toxicity, organ biodistribution and immune response of pristine, carboxylated and PEGylated few-layer graphene sheets in Swiss albino mice: A three month study. Carbon 95, pages 511-524.
Crossref
Kristopher J. KoudelkaAndrzej S. PitekMarianne Manchester & Nicole F. Steinmetz. (2015) Virus-Based Nanoparticles as Versatile Nanomachines. Annual Review of Virology 2:1, pages 379-401.
Crossref
James D. Ede, Van A. Ortega, David Boyle, Rachel L. Beingessner, Usha D. Hemraz, Hicham Fenniri, James L. Stafford & Greg G. Goss. (2015) Rosette Nanotubes Alter IgE-Mediated Degranulation in the Rat Basophilic Leukemia (RBL)-2H3 Cell Line. Toxicological Sciences 148:1, pages 108-120.
Crossref
Sourabh Shukla & Nicole F. Steinmetz. (2015) Virus-based nanomaterials as positron emission tomography and magnetic resonance contrast agents: from technology development to translational medicine. Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology 7:5, pages 708-721.
Crossref
Karin L. Lee, Sourabh Shukla, Mengzhi Wu, Nadia R. Ayat, Caroline E. El Sanadi, Amy M. Wen, John F. Edelbrock, Jonathan K. Pokorski, Ulrich Commandeur, George R. Dubyak & Nicole F. Steinmetz. (2015) Stealth filaments: Polymer chain length and conformation affect the in vivo fate of PEGylated potato virus X. Acta Biomaterialia 19, pages 166-179.
Crossref
Jie Meng, Xiaojin Li, Chuan Wang, Hua Guo, Jian Liu & Haiyan Xu. (2015) Carbon Nanotubes Activate Macrophages into a M1/M2 Mixed Status: Recruiting Naïve Macrophages and Supporting Angiogenesis. ACS Applied Materials & Interfaces 7:5, pages 3180-3188.
Crossref
Sing Ling Chia, Chor Yong Tay, Magdiel I. Setyawati & David T. Leong. (2015) Biomimicry 3D Gastrointestinal Spheroid Platform for the Assessment of Toxicity and Inflammatory Effects of Zinc Oxide Nanoparticles. Small 11:6, pages 702-712.
Crossref
Chandraiah Godugu, Raman Preet Singh & Ramarao Poduri. 2015. Targeted Drug Delivery : Concepts and Design. Targeted Drug Delivery : Concepts and Design 733 781 .
Marco Orecchioni, Davide Bedognetti, Francesco Sgarrella, Francesco M Marincola, Alberto Bianco & Lucia Gemma Delogu. (2014) Impact of carbon nanotubes and graphene on immune cells. Journal of Translational Medicine 12:1.
Crossref
Eleonore Fröhlich. 2014. Horizons in Clinical Nanomedicine. Horizons in Clinical Nanomedicine 317 348 .
Cuijuan Jiang, Jianbo Jia & Shumei Zhai. (2014) Mechanistic Understanding of Toxicity from Nanocatalysts. International Journal of Molecular Sciences 15:8, pages 13967-13992.
Crossref
Naoto Saito, Hisao Haniu, Yuki Usui, Kaoru Aoki, Kazuo Hara, Seiji Takanashi, Masayuki Shimizu, Nobuyo Narita, Masanori Okamoto, Shinsuke Kobayashi, Hiroki Nomura, Hiroyuki Kato, Naoyuki Nishimura, Seiichi Taruta & Morinobu Endo. (2014) Safe Clinical Use of Carbon Nanotubes as Innovative Biomaterials. Chemical Reviews 114:11, pages 6040-6079.
Crossref
Simona Clichici, Alexandru Radu Biris, Cornel Catoi, Adriana Filip & Flaviu Tabaran. (2014) Short-term splenic impact of single-strand DNA functionalized multi-walled carbon nanotubes intraperitoneally injected in rats. Journal of Applied Toxicology 34:4, pages 332-344.
Crossref
Matthew Boyles, Linda Stoehr, Paul Schlinkert, Martin Himly & Albert Duschl. (2014) The Significance and Insignificance of Carbon Nanotube-Induced Inflammation. Fibers 2:1, pages 45-74.
Crossref
Richa Gupta, Neelesh Kumar Mehra & Narendra Kumar Jain. (2013) Fucosylated Multiwalled Carbon Nanotubes for Kupffer Cells Targeting for the Treatment of Cytokine-Induced Liver Damage. Pharmaceutical Research 31:2, pages 322-334.
Crossref
安良 邵. (2014) Silver Nanoparticles Induced Immunotoxicity-Based Early Systemic Toxicity. Immunology Studies 02:04, pages 33-47.
Crossref
Qing Jiao, Liwen Li, Qingxin Mu & Qiu Zhang. (2014) Immunomodulation of Nanoparticles in Nanomedicine Applications. BioMed Research International 2014, pages 1-19.
Crossref
M. Turabekova, B. Rasulev, M. Theodore, J. Jackman, D. Leszczynska & J. Leszczynski. (2014) Immunotoxicity of nanoparticles: a computational study suggests that CNTs and C 60 fullerenes might be recognized as pathogens by Toll-like receptors . Nanoscale 6:7, pages 3488-3495.
Crossref
Abdelli Nouara, Qiuli Wu, Yinxia Li, Meng Tang, Haifang Wang, Yuliang Zhao & Dayong Wang. (2013) Carboxylic acid functionalization prevents the translocation of multi-walled carbon nanotubes at predicted environmentally relevant concentrations into targeted organs of nematode Caenorhabditis elegans. Nanoscale 5:13, pages 6088.
Crossref
Ka Lun Cheung, Huanjun Chen, Qiulan Chen, Jianfang Wang, Ho Pui Ho, Chun Kwok Wong & Siu Kai Kong. (2012) CTAB-coated gold nanorods elicit allergic response through degranulation and cell death in human basophils. Nanoscale 4:15, pages 4447.
Crossref
Malgorzata J. Rybak-Smith & Robert B. Sim. (2011) Complement activation by carbon nanotubes. Advanced Drug Delivery Reviews 63:12, pages 1031-1041.
Crossref
Feng Yang, Chen Jin, Dong Yang, Yongjian Jiang, Ji Li, Yang Di, Jianhua Hu, Changchun Wang, Quanxing Ni & Deliang Fu. (2011) Magnetic functionalised carbon nanotubes as drug vehicles for cancer lymph node metastasis treatment. European Journal of Cancer 47:12, pages 1873-1882.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.