Literature DB >> 24150892

Boron nitride nanotubes and primary human osteoblasts: in vitro compatibility and biological interactions under low frequency ultrasound stimulation.

Serena Danti1, Gianni Ciofani, Stefania Moscato, Delfo D'Alessandro, Elena Ciabatti, Claudia Nesti, Rosaria Brescia, Giovanni Bertoni, Andrea Pietrabissa, Michele Lisanti, Mario Petrini, Virgilio Mattoli, Stefano Berrettini.   

Abstract

In this paper we investigated a novel and non-invasive approach for an endogenous osteoblast stimulation mediated by boron nitride nanotubes (BNNTs). Specifically, following the cellular uptake of the piezoelectric nanotubes, cultures of primary human osteoblasts (hOBs) were irradiated with low frequency ultrasound (US), as a simple method to apply a mechanical input to the cells loaded with BNNTs. This in vitro study was aimed at investigating the main interactions between hOBs and BNNTs and to study the effects of the 'BNNTs + US' stimulatory method on the osteoblastic function and maturation.A non-cytotoxic BNNT concentration to be used in vitro with hOB cultures was established. Moreover, investigation with transmission electron microscopy/electron energy loss spectroscopy (TEM/EELS) confirmed that BNNTs were internalized in membranal vesicles. The panel of investigated osteoblastic markers disclosed that BNNTs were capable of fostering the expression of late-stage bone proteins in vitro, without using any mineralizing culture supplements. In our samples, the maximal osteopontin expression, with the highest osteocalcin and Ca(2+) production, in the presence of mineral matrix with nodular morphology, was observed in the samples treated with BNNTs + US. In this group was also shown a significantly enhanced synthesis of TGF-β1, a molecule sensitive to electric stimulation in bone. Finally, gene deregulations of the analyzed osteoblastic genes leading to depletive cellular effects were not detected. Due to their piezoelectricity, BNNT-based therapies might disclose advancements in the treatment of bone diseases.

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Year:  2013        PMID: 24150892     DOI: 10.1088/0957-4484/24/46/465102

Source DB:  PubMed          Journal:  Nanotechnology        ISSN: 0957-4484            Impact factor:   3.874


  7 in total

1.  Ultrasound-Induced Wireless Energy Harvesting: From Materials Strategies to Functional Applications.

Authors:  Laiming Jiang; Yang Yang; Yong Chen; Qifa Zhou
Journal:  Nano Energy       Date:  2020-07-22       Impact factor: 17.881

Review 2.  In Vitro and In Vivo Cytotoxicity of Boron Nitride Nanotubes: A Systematic Review.

Authors:  Akesh Babu Kakarla; Ing Kong
Journal:  Nanomaterials (Basel)       Date:  2022-06-15       Impact factor: 5.719

3.  In vitro investigation of the effects of boron nitride nanotubes and curcumin on DNA damage.

Authors:  Tuğbagül Çal; Ülkü Ündeğer Bucurgat
Journal:  Daru       Date:  2019-04-02       Impact factor: 3.117

Review 4.  Synthesis of boron nitride nanotubes and their applications.

Authors:  Saban Kalay; Zehra Yilmaz; Ozlem Sen; Melis Emanet; Emine Kazanc; Mustafa Çulha
Journal:  Beilstein J Nanotechnol       Date:  2015-01-08       Impact factor: 3.649

Review 5.  Piezoelectric Signals in Vascularized Bone Regeneration.

Authors:  Delfo D'Alessandro; Claudio Ricci; Mario Milazzo; Giovanna Strangis; Francesca Forli; Gabriele Buda; Mario Petrini; Stefano Berrettini; Mohammed Jasim Uddin; Serena Danti; Paolo Parchi
Journal:  Biomolecules       Date:  2021-11-20

6.  Piezoelectric effect stimulates the rearrangement of chondrogenic cells and alters ciliary orientation via atypical PKCζ.

Authors:  Jormay Lim; Yu-Cheng Liu; Ya-Cherng Chu; Yu-Xuan Lin; Wen-Hao Hwang; Jaw-Lin Wang
Journal:  Biochem Biophys Rep       Date:  2022-05-03

Review 7.  Boron Nitride Nanotubes: Recent Advances in Their Synthesis, Functionalization, and Applications.

Authors:  Chee Huei Lee; Shiva Bhandari; Bishnu Tiwari; Nazmiye Yapici; Dongyan Zhang; Yoke Khin Yap
Journal:  Molecules       Date:  2016-07-15       Impact factor: 4.411

  7 in total

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