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Intracellular delivery of nanomaterials: how to catch endosomal escape in the act

Thomas Martens (UGent) , Katrien Remaut (UGent) , Jo Demeester (UGent) , Stefaan De Smedt (UGent) and Kevin Braeckmans (UGent)
(2014) NANO TODAY. 9(3). p.344-364
Author
Organization
Project
NB-Photonics
Keywords
Proton sponge, Pore formation, Fusion, Assays, Endosomat escape, Nanomaterials, LASER-SCANNING MICROSCOPY, CELL-PENETRATING PEPTIDES, NUCLEIC-ACID DELIVERY, GENE DELIVERY, CYTOSOLIC DELIVERY, IN-VITRO, TRANSFECTION EFFICIENCY, PROTON SPONGE, LIVING CELLS, PLASMID DNA

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Citation

Please use this url to cite or link to this publication:

MLA
Martens, Thomas et al. “Intracellular Delivery of Nanomaterials: How to Catch Endosomal Escape in the Act.” NANO TODAY 9.3 (2014): 344–364. Print.
APA
Martens, T., Remaut, K., Demeester, J., De Smedt, S., & Braeckmans, K. (2014). Intracellular delivery of nanomaterials: how to catch endosomal escape in the act. NANO TODAY, 9(3), 344–364.
Chicago author-date
Martens, Thomas, Katrien Remaut, Jo Demeester, Stefaan De Smedt, and Kevin Braeckmans. 2014. “Intracellular Delivery of Nanomaterials: How to Catch Endosomal Escape in the Act.” Nano Today 9 (3): 344–364.
Chicago author-date (all authors)
Martens, Thomas, Katrien Remaut, Jo Demeester, Stefaan De Smedt, and Kevin Braeckmans. 2014. “Intracellular Delivery of Nanomaterials: How to Catch Endosomal Escape in the Act.” Nano Today 9 (3): 344–364.
Vancouver
1.
Martens T, Remaut K, Demeester J, De Smedt S, Braeckmans K. Intracellular delivery of nanomaterials: how to catch endosomal escape in the act. NANO TODAY. 2014;9(3):344–64.
IEEE
[1]
T. Martens, K. Remaut, J. Demeester, S. De Smedt, and K. Braeckmans, “Intracellular delivery of nanomaterials: how to catch endosomal escape in the act,” NANO TODAY, vol. 9, no. 3, pp. 344–364, 2014.
@article{5760110,
  author       = {Martens, Thomas and Remaut, Katrien and Demeester, Jo and De Smedt, Stefaan and Braeckmans, Kevin},
  issn         = {1748-0132},
  journal      = {NANO TODAY},
  keywords     = {Proton sponge,Pore formation,Fusion,Assays,Endosomat escape,Nanomaterials,LASER-SCANNING MICROSCOPY,CELL-PENETRATING PEPTIDES,NUCLEIC-ACID DELIVERY,GENE DELIVERY,CYTOSOLIC DELIVERY,IN-VITRO,TRANSFECTION EFFICIENCY,PROTON SPONGE,LIVING CELLS,PLASMID DNA},
  language     = {eng},
  number       = {3},
  pages        = {344--364},
  title        = {Intracellular delivery of nanomaterials: how to catch endosomal escape in the act},
  url          = {http://dx.doi.org/10.1016/j.nantod.2014.04.011},
  volume       = {9},
  year         = {2014},
}

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