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Antimicrobial susceptibility testing using high surface-to-volume ratio microchannels

Authors :
Chen, Chia Hsiang
Lu, Yi
Sin, Mandy L.Y.
Mach, Kathleen E.
Zhang, Donna D.
Gau, Vincent
Liao, Joseph C.
Wong, Pak Kin
Source :
Analytical Chemistry. Feb 1, 2010, Vol. 82 Issue 3, p1012, 8 p.
Publication Year :
2010

Abstract

This study reports the use of microfluidics, which intrinsically has a large surface-to-volume ratio, toward rapid antimicrobial susceptibility testing at the point of care. By observing the growth of uropathogenic Escherichia coli in gas permeable polymeric microchannels with different dimensions, we demonstrate that the large surface-to-volume ratio of microfluidic systems facilitates rapid growth of bacteria. For microchannels with 250 [micro]m or less in depth, the effective oxygenation can sustain the growth of E. coli to over [10.sup.9] cfu/mL without external agitation or oxygenation, which eliminates the requirement of bulky instrumentation and facilitates rapid bacterial growth for antimicrobial susceptibility testing at the point of care. The applicability of microfluidic rapid antimicrobial susceptibility testing is demonstrated in culture media and in urine with clinical bacterial isolates that have different antimicrobial resistance profiles. The antimicrobial resistance pattern can be determined as rapidly as 2 h compared to days in standard clinical procedures facilitating diagnostics at the point of care. 10.1021/ac9022764

Details

Language :
English
ISSN :
00032700
Volume :
82
Issue :
3
Database :
Gale General OneFile
Journal :
Analytical Chemistry
Publication Type :
Academic Journal
Accession number :
edsgcl.219074109