Nanotechnologies
February
[MECHANO]
Moreno PMD, Ferreira AR, Salvador D, Rodrigues MT, Torrado M, Carvalho ED, Tedebark U, Sousa MM, Amaral IF,
Wengel J, Pêgo AP.
Hydrogel-assisted antisense LNA gapmer delivery for in situ gene silencing in spinal
cord injury.
Mol Ther Nucleic Acids. 2018; 11:393-406.
https://doi.org/10.1016/j.omtn.2018.03.009
Moreno PMD, Ferreira AR, Salvador D, Rodrigues MT, Torrado M, Carvalho ED, Tedebark U, Sousa MM, Amaral IF,
Wengel J, Pêgo AP.
Hydrogel-assisted antisense LNA gapmer delivery for in situ gene silencing in spinal
cord injury.
Mol Ther Nucleic Acids. 2018; 11:393-406.
https://doi.org/10.1016/j.omtn.2018.03.009
[NANOTHER]
García-Hevia, L., Bañobre-López, M., & Gallo, J. (2018).
Recent Progress on Manganese-Based Nanostructures as Responsive MRI Contrast
Agents.
In Chemistry – A European Journal (Vol. 25, Issue 2, pp. 431–441). Wiley.
https://doi.org/10.1002/chem.201802851
García-Hevia, L., Bañobre-López, M., & Gallo, J. (2018).
Recent Progress on Manganese-Based Nanostructures as Responsive MRI Contrast
Agents.
In Chemistry – A European Journal (Vol. 25, Issue 2, pp. 431–441). Wiley.
https://doi.org/10.1002/chem.201802851
April
[2DMS]
Cardoso, B. D., Rio, I. S. R., Rodrigues, A. R. O., Fernandes, F. C. T., Almeida, B. G., Pires, A., Pereira,
A. M., Araújo, J. P., Castanheira, E. M. S., & Coutinho, P. J. G. (2018).
Magnetoliposomes containing magnesium ferrite nanoparticles as nanocarriers for the
model drug curcumin.
Royal Society Open Science, 5(10), 181017.
https://doi.org/10.1098/rsos.181017
Cardoso, B. D., Rio, I. S. R., Rodrigues, A. R. O., Fernandes, F. C. T., Almeida, B. G., Pires, A., Pereira,
A. M., Araújo, J. P., Castanheira, E. M. S., & Coutinho, P. J. G. (2018).
Magnetoliposomes containing magnesium ferrite nanoparticles as nanocarriers for the
model drug curcumin.
Royal Society Open Science, 5(10), 181017.
https://doi.org/10.1098/rsos.181017
May
[UT-BORN-PT]
Piotrowski, M., Franco, M., Sousa, V., Rodrigues, J., Deepak, F. L., Kakefuda, Y., Kawamoto, N., Baba, T.,
Owens-Baird, B., Alpuim, P., Kovnir, K., Mori, T., & Kolen’ko, Y. V. (2018). Probing
of Thermal Transport in 50 nm Thick PbTe Nanocrystal Films by Time-Domain Thermoreflectance.
In The Journal of Physical Chemistry C (Vol. 122, Issue 48, pp. 27127–27134). American Chemical Society
(ACS).
https://doi.org/10.1021/acs.jpcc.8b04104
Piotrowski, M., Franco, M., Sousa, V., Rodrigues, J., Deepak, F. L., Kakefuda, Y., Kawamoto, N., Baba, T.,
Owens-Baird, B., Alpuim, P., Kovnir, K., Mori, T., & Kolen’ko, Y. V. (2018). Probing
of Thermal Transport in 50 nm Thick PbTe Nanocrystal Films by Time-Domain Thermoreflectance.
In The Journal of Physical Chemistry C (Vol. 122, Issue 48, pp. 27127–27134). American Chemical Society
(ACS).
https://doi.org/10.1021/acs.jpcc.8b04104
[2DMS]
Rodrigues, A., Matos, J., Nova Dias, A., Almeida, B., Pires, A., Pereira, A., Araújo, J., Queiroz, M.-J.,
Castanheira, E., & Coutinho, P. (2018).
Development of Multifunctional Liposomes Containing Magnetic/Plasmonic MnFe2O4/Au
Core/Shell Nanoparticles.
Pharmaceutics, 11(1), 10.
https://doi.org/10.3390/pharmaceutics11010010
Rodrigues, A., Matos, J., Nova Dias, A., Almeida, B., Pires, A., Pereira, A., Araújo, J., Queiroz, M.-J.,
Castanheira, E., & Coutinho, P. (2018).
Development of Multifunctional Liposomes Containing Magnetic/Plasmonic MnFe2O4/Au
Core/Shell Nanoparticles.
Pharmaceutics, 11(1), 10.
https://doi.org/10.3390/pharmaceutics11010010