Supporting Information
Supporting Information File 1: Selected FTIR characterisation data and viability tests using MCF7 cells. | ||
Format: PDF | Size: 592.3 KB | Download |
Supporting Information File 2: A video of a WS2-NT-CM dispersion brought near a magnet. | ||
Format: MOV | Size: 14.4 MB | Download |
Cite the Following Article
Tungsten disulfide-based nanocomposites for photothermal therapy
Tzuriel Levin, Hagit Sade, Rina Ben-Shabbat Binyamini, Maayan Pour, Iftach Nachman and Jean-Paul Lellouche
Beilstein J. Nanotechnol. 2019, 10, 811–822.
https://doi.org/10.3762/bjnano.10.81
How to Cite
Levin, T.; Sade, H.; Binyamini, R. B.-S.; Pour, M.; Nachman, I.; Lellouche, J.-P. Beilstein J. Nanotechnol. 2019, 10, 811–822. doi:10.3762/bjnano.10.81
Download Citation
Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window
below.
Citation data in RIS format can be imported by all major citation management software, including EndNote,
ProCite, RefWorks, and Zotero.
Presentation Graphic
Picture with graphical abstract, title and authors for social media postings and presentations. | ||
Format: PNG | Size: 653.4 KB | Download |
Citations to This Article
Up to 20 of the most recent references are displayed here.
Scholarly Works
- Meivita, M. P.; Mozar, F. S.; Go, S.-X.; Li, L.; Bajalovic, N.; Loke, D. K. Energy-Efficient and Effective MCF-7 Cell Ablation and Electrothermal Therapy Enabled by M13-WS2-PEG Nanostructures. Materials (Basel, Switzerland) 2024, 17, 4624. doi:10.3390/ma17184624
- Chu, M. Laser-Triggered Hybridize Magnetic Iron Oxide/Semiconductor Nanocrystals for Cancer Therapy. Laser-triggered Nanobiomaterials for Inhibiting Tumor Growth; Springer Nature Singapore, 2024; pp 105–122. doi:10.1007/978-981-97-4220-2_6
- Bahadur, R.; Singh, B.; Rai, D.; Srivastava, R. Influence of PEGylation on WS2 Nanosheets and Its Application in Photothermal Therapy. ACS applied bio materials 2023, 6, 4740–4748. doi:10.1021/acsabm.3c00506
- Gu, C.; Wang, Z.; Pan, Y.; Zhu, S.; Gu, Z. Tungsten-based Nanomaterials in the Biomedical Field: A Bibliometric Analysis of Research Progress and Prospects. Advanced materials (Deerfield Beach, Fla.) 2022, 35, e2204397. doi:10.1002/adma.202204397
- Naffakh, M.; Shuttleworth, P. S. Investigation of the Crystallization Kinetics and Melting Behaviour of Polymer Blend Nanocomposites Based on Poly(L-Lactic Acid), Nylon 11 and TMDCs WS2. Polymers 2022, 14, 2692. doi:10.3390/polym14132692
- Wang, S.; Wu, W.; Liu, Y.; Wang, C.; Xu, Q.; Lv, Q.; Huang, R.; Li, X. Targeted peptide-modified oxidized mesoporous carbon nanospheres for chemo-thermo combined therapy of ovarian cancer in vitro. Drug delivery 2022, 29, 1947–1958. doi:10.1080/10717544.2022.2089298
- Pan, J.; Zhang, M.; Fu, G.; Zhang, L.; Yu, H.; Yan, X.; Liu, F.; Sun, P.; Jia, X.; Liu, X.; Lu, G. Ti3C2 MXene Nanosheets Functionalized with NaErF4:0.5%Tm@NaLuF4 Nanoparticles for Dual-Modal Near-Infrared IIb/Magnetic Resonance Imaging-Guided Tumor Hyperthermia. ACS Applied Nano Materials 2022, 5, 8142–8153. doi:10.1021/acsanm.2c01251
- Abdelnasir, S.; Mungroo, M. R.; Shahabuddin, S.; Siddiqui, R.; Khan, N. A.; Ahmad, I.; Anwar, A. Polyaniline (PANI)-conjugated tungsten disulphide (WS2) nanoparticles as potential therapeutics against brain-eating amoebae. Applied microbiology and biotechnology 2022, 106, 3279–3291. doi:10.1007/s00253-022-11899-x
- Levin, T.; Lampel, Y.; Savyon, G.; Levy, E.; Harel, Y.; Elias, Y.; Sinvani, M.; Nachman, I.; Lellouche, J.-P. Innovative functional polymerization of pyrrole-N-propionic acid onto WS2 nanotubes using cerium-doped maghemite nanoparticles for photothermal therapy. Scientific reports 2021, 11, 18883. doi:10.1038/s41598-021-97052-6
- Narayana, S.; Ahmed, M.; Gowda, B. H. J.; Shetty, P. K.; Nasrine, A.; Thriveni, M.; Noushida, N.; Sanjana, A. Recent advances in ocular drug delivery systems and targeting VEGF receptors for management of ocular angiogenesis: A comprehensive review. Future Journal of Pharmaceutical Sciences 2021, 7, 1–21. doi:10.1186/s43094-021-00331-2
- Naffakh, M. Biopolymer Nanocomposite Materials Based on Poly(L-lactic Acid) and Inorganic Fullerene-like WS2 Nanoparticles. Polymers 2021, 13, 2947. doi:10.3390/polym13172947
- Levin, T.; Harel, Y.; Lellouche, J.-P.; Moshkovich, A.; Lapsker, I.; Laikhtman, A.; Rapoport, L. Tungsten Disulfide Inorganic Nanotubes Functionalized by PTFE for Friction Application. Lubricants 2021, 9, 78. doi:10.3390/lubricants9080078
- Sobhani, M.; Zieglari, A.; Moniri, E.; Panahi, H. A.; Asli, M. D. Graft hyper-branched dendrimer onto WS2 nanosheets modified Poly (N-Vinylcaprolactam) as a thermosensitive nanocarrier for Pioglitazone delivery using near-infrared radiation. International journal of pharmaceutics 2021, 607, 120985. doi:10.1016/j.ijpharm.2021.120985
- Reinhardt, L. S.; de Barros Dias, M. C. H.; de Almeida Gnoatto, J.; Wawruszak, A.; Halasa, M.; Arantes, P. R.; Rowan, N. J.; Moura, D. J. Polymeric Nanocomposites for Cancer-Targeted Drug Delivery. Advances in Material Research and Technology; Springer International Publishing, 2021; pp 241–270. doi:10.1007/978-3-030-70266-3_8
- Zhang, Q.; Jiang, Y.; Chen, L.; Chen, W.; Li, J.; Cai, Y.; Ma, C.; Xu, W.; Lu, Y.-q.; Jia, X.; Bao, Z. Ultra-Compliant and Tough Thermochromic Polymer for Self-Regulated Smart Windows. Advanced Functional Materials 2021, 31, 2100686. doi:10.1002/adfm.202100686
- Mohapatra, A.; Uthaman, S.; Park, I.-K. External and Internal Stimuli-Responsive Metallic Nanotherapeutics for Enhanced Anticancer Therapy. Frontiers in molecular biosciences 2021, 7, 597634. doi:10.3389/fmolb.2020.597634
- Hatamie, S.; Shih, P.-J.; Chen, B.-W.; Wang, I.-J.; Young, T.-H.; Yao, D.-J. Synergic Effect of Novel WS2 Carriers Holding Spherical Cobalt Ferrite @cubic Fe3O4 (WS2/s-CoFe2O4@c-Fe3O4) Nanocomposites in Magnetic Resonance Imaging and Photothermal Therapy for Ocular Treatments and Investigation of Corneal Endothelial Cell Migration. Nanomaterials (Basel, Switzerland) 2020, 10, 2555. doi:10.3390/nano10122555
- Serra, M.; Lajaunie, L.; Sreedhara, M.; Miroshnikov, Y.; Pinkas, I.; Calvino, J. J.; Enyashin, A. N.; Tenne, R. Quaternary LnxLa(1-x)S-TaS2 nanotubes (Ln=Pr, Sm, Ho, and Yb) as a vehicle for improving the yield of misfit nanotubes. Applied Materials Today 2020, 19, 100581. doi:10.1016/j.apmt.2020.100581
- Wacker, M. G. Frontiers in pharmaceutical nanotechnology. Beilstein journal of nanotechnology 2019, 10, 2538–2540. doi:10.3762/bjnano.10.244
- Wong, W.-K.; Ren, Y.; Leung, F. K.-C. Photothermal-chemotherapy: the emerging supramolecular photothermal molecules and the recent advances. Nanophototherapy; Elsevier; pp 463–499. doi:10.1016/b978-0-443-13937-6.00007-x