Nanophotothermolysis of multiple scattered cancer cells with carbon nanotubes guided by time-resolved infrared thermal imaging.

Abstract:

:Nanophotothermolysis with long laser pulses for treatment of scattered cancer cells and their clusters is introduced with the main focus on real-time monitoring of temperature dynamics inside and around individual cancer cells labeled with carbon nanotubes. This technique utilizes advanced time- and spatially-resolved thermal radiometry imaging for the visualization of laser-induced temperature distribution in multiple-point absorbing targets. The capability of this approach was demonstrated for monitoring of thermal effects under long laser exposure (from millisecond to seconds, wavelength 1,064 nm, maximum power 1 W) of cervical cancer HeLa cells labeled with carbon nanotubes in vitro. The applications are discussed with a focus on the nanophotothermolysis of small tumors, tumor margins, or micrometastases under the guidance of near-IR and microwave radiometry.

journal_name

J Biomed Opt

authors

Biris AS,Boldor D,Palmer J,Monroe WT,Mahmood M,Dervishi E,Xu Y,Li Z,Galanzha EI,Zharov VP

doi

10.1117/1.3119135

subject

Has Abstract

pub_date

2009-03-01 00:00:00

pages

021007

issue

2

eissn

1083-3668

issn

1560-2281

journal_volume

14

pub_type

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