Carbon nanotubes gathered onto silica particles lose their biomimetic properties with the cytoskeleton becoming biocompatible
نویسندگان
چکیده
Carbon nanotubes (CNTs) are likely to transform the therapeutic and diagnostic fields in biomedicine during the coming years. However, the fragmented vision of their side effects and toxicity in humans has proscribed their use as nanomedicines. Most studies agree that biocompatibility depends on the state of aggregation/dispersion of CNTs under physiological conditions, but conclusions are confusing so far. This study designs an experimental setup to investigate the cytotoxic effect of individualized multiwalled CNTs compared to that of identical nanotubes assembled on submicrometric structures. Our results demonstrate how CNT cytotoxicity is directly dependent on the nanotube dispersion at a given dosage. When CNTs are gathered onto silica templates, they do not interfere with cell proliferation or survival becoming highly compatible. These results support the hypothesis that CNT cytotoxicity is due to the biomimetics of these nanomaterials with the intracellular nanofilaments. These findings provide major clues for the development of innocuous CNT-containing nanodevices and nanomedicines.
منابع مشابه
Journal of Physics: Conference Series Biomedical Platforms Based on Composite Nanomaterials and Cellular Toxicity
Carbon nanotubes possess unique chemical, physical, optical, and magnetic properties, which make them suitable for many uses in industrial products and in the field of nanotechnology, including nanomedicine. We describe fluorescent nanocomposites for use in biosensors or nanoelectronics. Then we describe recent results on the issue of cytotoxicity of carbon nanotubes obtained in our labs. Silic...
متن کاملRadiation-induced grafting of carbon nanotubes on HPLC silica microspheres: theoretical and practical aspects.
Multi-walled carbon nanotubes (MWCNTs) were grafted for the first time by γ-radiation onto silica microspheres in the presence of polybutadiene (PB) as the linking agent, obtaining a novel hybrid material with chromatographic properties, with an alternative approach to the existing procedures. The synthesis involves the one-pot γ-radiation-induced grafting of MWCNTs onto silica microspheres in ...
متن کاملPreparation of thick silica coatings on carbon fibers with fine-structured silica nanotubes induced by a self-assembly process
A facile method to coat carbon fibers with a silica shell is presented in this work. By immobilizing linear polyamines on the carbon fiber surface, the high catalytic activity of polyamines in the sol-gel-processing of silica precursors is used to deposit a silica coating directly on the fiber's surface. The surface localization of the catalyst is achieved either by attaching short-chain polyam...
متن کاملAdsorption Properties of Folic Acid onto Functionalized Carbon Nanotubes: Isotherms and Thermodynamics Studies
In the present research, we report the results of a systematic study on the adsorption properties of folic acid (FA) over functionalized single-walled carbon nanotubes (SWCNTs) using the various factors, such as adsorbent dose, contact time, temperature, and initial FA concentration. Our results reveal that SWCNT is an excellent adsorbent for folic acid, with an adsorption percentage of up to 7...
متن کاملEnzyme Entrapment in Silica Nanoparticles: Mediated by Single Walled Carbon Nanotubes-lysozyme for Biosensor Applications
Introduction Silica compounds are among the most extensively studied materials, especially those prepared by the sol−gel process [13]. A wide variety of proteins can catalyze the precipitation of silica and become encapsulated as the silica matrix forms. The reaction provides an efficient method for enzyme immobilization and provides significant mechanical stability to resulting silica matrix. ...
متن کامل