Microflow Cytometer for optical analysis of phytoplankton

被引:59
作者
Hashemi, Nastaran [1 ]
Erickson, Jeffrey S. [1 ]
Golden, Joel P. [1 ]
Jackson, Kirsten M. [1 ]
Ligler, Frances S. [1 ]
机构
[1] USN, Res Lab, Ctr Biomol Sci & Engn, Washington, DC 20375 USA
关键词
Flow cytometry; Microfluidics; Optical sensing; Hydrodynamic focusing; Phytoplankton; FLOW-CYTOMETRY; DISCRIMINATION; FLUORESCENCE; VARIABILITY; INDICATORS; RETRIEVAL; TOXINS;
D O I
10.1016/j.bios.2011.03.042
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Analysis of the intrinsic fluorescence profiles of individual marine algae can be used in general classification of organisms based on cell size and fluorescence properties. We describe the design and fabrication of a Microflow Cytometer on a chip for characterization of phytoplankton. The Microflow Cytometer measured distinct side scatter and fluorescence properties of Synechococcus sp., Nitzschia d., and Thalassiosira p.; measurements were confirmed using the benchtop Accuri C6 flow cytometer. The Microflow Cytometer proved sensitive enough to detect and characterize picoplankton with diameter approximately 1 mu m and larger phytoplankton of up to 80 mu m in length. The wide range in size discrimination coupled with detection of intrinsic fluorescent pigments suggests that this Microflow Cytometer will be able to distinguish different populations of phytoplankton on unmanned underwater vehicles. Published by Elsevier B.V.
引用
收藏
页码:4263 / 4269
页数:7
相关论文
共 30 条
[11]   Lidar fluorosensor and satellite integrated approach: seven years of Southern Ocean investigation [J].
Fantoni, R. ;
Fiorani, L. ;
Okladnikov, I. G. ;
Palucci, A. .
INTERNATIONAL CONFERENCE ON LASERS, APPLICATIONS, AND TECHNOLOGIES 2005: LASER TECHNOLOGIES FOR ENVIRONMENTAL MONITORING AND ECOLOGICAL APPLICATIONS AND LASER TECHNOLOGIES FOR MEDICINE, 2006, 6284
[12]  
Fiorani L, 2007, J OPTOELECTRON ADV M, V9, P3939
[13]   FISH and chips: Marine bacterial communities analyzed by flow cytometry based on microfluidics [J].
Gerdts, G ;
Luedke, G .
JOURNAL OF MICROBIOLOGICAL METHODS, 2006, 64 (02) :232-240
[14]   Multi-wavelength microflow cytometer using groove-generated sheath flow [J].
Golden, Joel P. ;
Kim, Jason S. ;
Erickson, Jeffrey S. ;
Hilliard, Lisa R. ;
Howell, Peter B. ;
Anderson, George P. ;
Nasir, Mansoor ;
Ligler, Frances S. .
LAB ON A CHIP, 2009, 9 (13) :1942-1950
[15]   Review: Marine ecology - Emerging marine diseases - Climate links and anthropogenic factors [J].
Harvell, CD ;
Kim, K ;
Burkholder, JM ;
Colwell, RR ;
Epstein, PR ;
Grimes, DJ ;
Hofmann, EE ;
Lipp, EK ;
Osterhaus, ADME ;
Overstreet, RM ;
Porter, JW ;
Smith, GW ;
Vasta, GR .
SCIENCE, 1999, 285 (5433) :1505-1510
[16]  
Hashemi N., 2011, BIOMICROFLU IN PRESS
[17]   Dynamic reversibility of hydrodynamic focusing for recycling sheath fluid [J].
Hashemi, Nastaran ;
Howell, Peter B., Jr. ;
Erickson, Jeffrey S. ;
Golden, Joel P. ;
Ligler, Frances S. .
LAB ON A CHIP, 2010, 10 (15) :1952-1959
[18]   3D imaging of diatoms with ion-abrasion scanning electron microscopy [J].
Hildebrand, Mark ;
Kim, Sang ;
Shi, Dan ;
Scott, Keana ;
Subramaniam, Sriram .
JOURNAL OF STRUCTURAL BIOLOGY, 2009, 166 (03) :316-328
[19]   Chlorophyll biomass in the global oceans: airborne lidar retrieval using fluorescence of both chlorophyll and chromophoric dissolved organic matter [J].
Hoge, FE ;
Lyon, PE ;
Wright, CW ;
Swift, RN ;
Yungel, JK .
APPLIED OPTICS, 2005, 44 (14) :2857-2862
[20]   Two simple and rugged designs for creating microfluidic sheath flow [J].
Howell, Peter B., Jr. ;
Golden, Joel P. ;
Hilliard, Lisa R. ;
Erickson, Jeffrey S. ;
Mott, David R. ;
Ligler, Frances S. .
LAB ON A CHIP, 2008, 8 (07) :1097-1103