nanoparticle coatings
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2021 ◽  
pp. 106606
Author(s):  
Yongsoo Kim ◽  
Hyuk Jun Kwon ◽  
Jun-Won Kook ◽  
Jae Jung Park ◽  
Chanmin Lee ◽  
...  

2021 ◽  
pp. 117291
Author(s):  
M. Bedolla-Hernández ◽  
G. Rosano-Ortega ◽  
F.J. Sánchez-Ruiz ◽  
J. Bedolla-Hernández ◽  
P.S. Schabes-Retchkiman ◽  
...  

2021 ◽  
Vol 11 (21) ◽  
pp. 9898
Author(s):  
Jaime Andres Garcia Diosa ◽  
Alejandro Gonzalez Orive ◽  
Guido Grundmeier ◽  
Ruben Jesus Camargo Amado ◽  
Adrian Keller

Coatings of modified TiO2 nanoparticles (TiO2-m) have been shown to effectively and selectively trap non-adherent cancer cells, with an enormous potential for applications in photodynamic therapy (PDT). Leukemia cells have a remarkable affinity for TiO2-m coatings, adhering to the surface by membrane structures and exhibiting morphologic characteristics of amoeboid locomotion. However, the details of the cell–substrate interaction induced by the TiO2-m coating remain elusive. With the aim to obtain a better understanding of this phenomenon, leukemia cell adhesion to such coatings was characterized by atomic force microscopy (AFM) for short contact times up to 60 min. The cell and membrane morphological parameters mean cell height, contact area, cell volume, and membrane roughness were determined at different contact times. These results reveal cell expansion and contraction phases occurring during the initial stage of adhesion. Subsequently, the leukemic cells reach what appears to be a new resting state, characterized by pinning of the cell membrane by TiO2-m nanoparticle aggregates protruding from the coating surface.


Author(s):  
Jaime Andrés Garcia-Diosa ◽  
Alejandro Gonzalez Orive ◽  
Guido Grundmeier ◽  
Adrian Keller ◽  
Rubén Jesús Camargo-Amado

2021 ◽  
Vol MA2021-01 (52) ◽  
pp. 2030-2030
Author(s):  
Svetlana Khaiboullina ◽  
Timsy Uppal ◽  
Nikhil Dhabarde ◽  
Vaidyanathan Subramanian ◽  
Subhash Verma

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