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Temperature control methods in a laser tweezers system.

Authors :
Mao H
Arias-Gonzalez JR
Smith SB
Tinoco I Jr
Bustamante C
Source :
Biophysical journal [Biophys J] 2005 Aug; Vol. 89 (2), pp. 1308-16. Date of Electronic Publication: 2005 May 27.
Publication Year :
2005

Abstract

Two methods of temperature control of a dual-beam optical-tweezers system are compared. In the first method, we used a 975 nm infrared laser to raise the temperature 5.6 degrees C/100 mW in a nonheating (830 nm) optical trap. The temperature increment logarithmically decreases toward the periphery of the heating beam, causing a fluid convection of 8 mum/s inside a 180 microm thick microchamber. In the second method, heating or cooling fluid was pumped through copper jackets that were placed on the water immersion objectives on both sides of the microchamber to control its temperature from 4.5 degrees C to 68 degrees C. The temperature controlled by the second method was both stable and homogeneous, inducing little fluid convection that would disturb single-molecule applications. An analysis of the power spectrum of the thermal force on a trapped bead showed no detectable vibration due to the liquid circulation. In both methods, force was measured directly by sensors of the momentum flux of light, independent of environmental disturbances including refractive index changes that vary with temperature. The utility of the second method was demonstrated in single-molecule experiments by measuring the mechanical stretch of a 41 kbp lambda double-stranded DNA at temperatures ranging from 8.4 degrees C to 45.6 degrees C.

Details

Language :
English
ISSN :
0006-3495
Volume :
89
Issue :
2
Database :
MEDLINE
Journal :
Biophysical journal
Publication Type :
Academic Journal
Accession number :
15923237
Full Text :
https://doi.org/10.1529/biophysj.104.054536