Boron Nitride Nanotube-Mediated Stimulation of Cell Co-Culture on Micro-Engineered Hydrogels

被引:63
作者
Ricotti, Leonardo [1 ]
Fujie, Toshinori [2 ,5 ]
Vazao, Helena [3 ,4 ]
Ciofani, Gianni [2 ]
Marotta, Roberto [9 ]
Brescia, Rosaria [9 ]
Filippeschi, Carlo [1 ,2 ]
Corradini, Irene [6 ,7 ]
Matteoli, Michela [7 ,8 ]
Mattoli, Virgilio [2 ]
Ferreira, Lino [3 ,4 ]
Menciassi, Arianna [1 ]
机构
[1] Scuola Superiore St Anna, BioRobot Inst, Pisa, Italy
[2] Ist Italiano Tecnol, Ctr MicroBioRobot SSSA, Pisa, Italy
[3] Biocant Ctr Biotechnol Innovat Ctr, Coimbra, Portugal
[4] Univ Coimbra, CNC Ctr Neurosci & Cell Biol, Coimbra, Portugal
[5] Tohoku Univ, WPI Adv Inst Mat Res, Sendai, Miyagi 980, Japan
[6] Fdn Filarete, Milan, Italy
[7] Univ Milan, Dipartimento Biotecnol Med & Med Traslaz, Milan, Italy
[8] Humanitas Clin & Res Ctr, Rozzano, Italy
[9] Ist Italiano Tecnol, Genoa, Italy
关键词
SKELETAL-MUSCLE CELLS; C2C12 MOUSE MYOTUBES; MYOGENIC DIFFERENTIATION; ELECTRICAL-STIMULATION; THIN-FILMS; SUBSTRATE; STIFFNESS; ALIGNMENT; ACTIVATION; MYOBLASTS;
D O I
10.1371/journal.pone.0071707
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In this paper, we describe the effects of the combination of topographical, mechanical, chemical and intracellular electrical stimuli on a co-culture of fibroblasts and skeletal muscle cells. The co-culture was anisotropically grown onto an engineered micro-grooved (10 mm-wide grooves) polyacrylamide substrate, showing a precisely tuned Young's modulus (similar to 14 kPa) and a small thickness (similar to 12 mm). We enhanced the co-culture properties through intracellular stimulation produced by piezoelectric nanostructures (i.e., boron nitride nanotubes) activated by ultrasounds, thus exploiting the ability of boron nitride nanotubes to convert outer mechanical waves (such as ultrasounds) in intracellular electrical stimuli, by exploiting the direct piezoelectric effect. We demonstrated that nanotubes were internalized by muscle cells and localized in both early and late endosomes, while they were not internalized by the underneath fibroblast layer. Muscle cell differentiation benefited from the synergic combination of topographical, mechanical, chemical and nanoparticle-based stimuli, showing good myotube development and alignment towards a preferential direction, as well as high expression of genes encoding key proteins for muscle contraction (i.e., actin and myosin). We also clarified the possible role of fibroblasts in this process, highlighting their response to the above mentioned physical stimuli in terms of gene expression and cytokine production. Finally, calcium imaging-based experiments demonstrated a higher functionality of the stimulated co-cultures.
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页数:15
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