Toxicology of carbon nanotubes - A review

P. Khalid, V. B. Suman, M. A. Hussain, A. B. Arun

Research output: Contribution to journalArticle

15 Citations (Scopus)

Abstract

A large number of nanoparticles are present in the environment in which some are unintentionally produced; ultra fine particles or intentionally produced engineered nanoparticle (ENPs). The carbon based ENPs include single-walled and multi walled carbon nanotubes (SWCNTs and MWCNTs), spherical fullerenes and dendrimers. Among all ENPs, the carbon based ENPs are attracting much attention for potential biomedical applications, such as biosensors design, drug design, drug delivery, tumor therapy and tissue engineering, because of their electronic, optical and mechanical properties. The pristine CNTs are inert in nature so it needs to be functionalized to make it reactive. The functionalization appends different functional group e.g. C=O, C–O, –OH and –COOH to CNTs, which make it dispersible and suitable for different applications. The biocompatibility of these functionalized CNTs and their composite has to be tested before real time applications in the biological system. Determining the toxicity of CNT is the most persistent questions in nanotechnology. Inconsistent reports on toxicity of CNTs often appear in the literature and a mechanistic explanation of the reported toxicity remains incomprehensible. Results from various scientific tests on cells have so far proven confusing, with some results indicating it to be highly toxic and others showing no signs of toxicity. Several toxicity mechanisms have been proposed for CNTs including interruption of trans membrane electron transfer, disruption/penetration of the cell envelope, oxidation of cell components, and production of secondary products such as dissolved heavy metal ions or reactive oxygen species (ROS).Toxicity of a CNT sample is dependent on its composition along with its geometry and surface functionalization. Several studies have suggested that well-functionalized CNTs are safe to animal cells, while raw CNTs or CNTs without functionalization show severe toxicity to animal or human cells at even moderate dosage.

Original languageEnglish
Pages (from-to)148-157
Number of pages10
JournalInternational Journal of Applied Engineering Research
Volume11
Issue number1
Publication statusPublished - 01-02-2016
Externally publishedYes

Fingerprint

Toxicity
Carbon nanotubes
Nanoparticles
Animals
Cells
Carbon
Dendrimers
Biological systems
Fullerenes
Heavy ions
Drug delivery
Biocompatibility
Nanotechnology
Tissue engineering
Biosensors
Electronic properties
Functional groups
Heavy metals
Metal ions
Tumors

All Science Journal Classification (ASJC) codes

  • Engineering(all)

Cite this

Khalid, P., Suman, V. B., Hussain, M. A., & Arun, A. B. (2016). Toxicology of carbon nanotubes - A review. International Journal of Applied Engineering Research, 11(1), 148-157.
Khalid, P. ; Suman, V. B. ; Hussain, M. A. ; Arun, A. B. / Toxicology of carbon nanotubes - A review. In: International Journal of Applied Engineering Research. 2016 ; Vol. 11, No. 1. pp. 148-157.
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Khalid, P, Suman, VB, Hussain, MA & Arun, AB 2016, 'Toxicology of carbon nanotubes - A review', International Journal of Applied Engineering Research, vol. 11, no. 1, pp. 148-157.

Toxicology of carbon nanotubes - A review. / Khalid, P.; Suman, V. B.; Hussain, M. A.; Arun, A. B.

In: International Journal of Applied Engineering Research, Vol. 11, No. 1, 01.02.2016, p. 148-157.

Research output: Contribution to journalArticle

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Khalid P, Suman VB, Hussain MA, Arun AB. Toxicology of carbon nanotubes - A review. International Journal of Applied Engineering Research. 2016 Feb 1;11(1):148-157.