IP Library Granted Patent US 8,889,349
Granted Patent B2
US 8,889,349 · App. 12/914,055 · Granted Nov 18, 2014

Method for testing microorganism or the like and testing apparatus therefor

Inventors: Kei Takenaka (Kashiwa, JP); Hideki Nakamoto (Tokai, JP); Kazuo Takei (Tokai, JP); Masahiro Kurihara (Yokohama, JP); Yuusuke Watanabe (Hitachinaka, JP); Hisao Saito (Tokyo, JP); Yasuhiko Sasaki (Tsuchiura, JP)
Assignee: Hitachi Engineering & Services Co., Ltd.
G01N21/6428G01N2021/6441G01J3/36G01N2021/6421G01N21/645G01J3/4406
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Quick Facts
Patent No.
US 8,889,349
App. No.
12/914,055
Granted
Nov 18, 2014
Kind
B2
Abstract

A method for accurately counting desired cells or microorganisms (viable bacteria) in a sample fluid in which contaminants are included is provided. One or plural types of membrane-permeable fluorochromes whose fluorescence amount is amplified by binding to a nucleic acid and glycerin are added to a sample fluid containing cells or microorganisms to be counted and allowed to stand for a certain time. Glycerin is added before or after or simultaneously with the mixing of the sample fluid and the fluorochrome(s). The cells or microorganisms to be counted are counted by staining the cells or microorganisms to be counted, followed by irradiating with light having a specific wavelength to detect the fluorescence emitted from the cells or microorganisms.

Claims (10)

1. A method for testing cells or microorganisms, comprising multiply staining the cells or microorganisms with two membrane-permeable fluorochromes whose fluorescence amounts are amplified by binding to a nucleic acid and one membrane-impermeable fluorochrome whose fluorescence amount is amplified by binding to a nucleic acid, simultaneously irradiating a plurality of excitation lights having different specific peak wavelengths on a sample fluid containing the multiply stained cells or microorganisms, measuring fluorescences emitted from the irradiated sample fluid using fluorescence cytometry, detecting the cells or microorganisms in the irradiated sample fluid based on the fluorescences emitted from the cells or microorganisms, and discriminating between the multiply stained cells or microorganisms and particles formed by self-aggregation of the membrane-permeable fluorochromes or the membrane-impermeable fluorochromes wherein objects emitting a plurality of fluorescences derived from the two membrane-permeable fluorochromes are determined to be the multiply stained cells or microorganisms, and objects emitting single fluorescence are determined to be the particles formed by aggregation of the flurochromes, and

wherein a membrane-permeable fluorochrome which has a fluorescence spectrum peak at less than 550 nm and a membrane-permeable fluorochrome which has a fluorescence spectrum peak at 680 nm or more are used as the two membrane-permeable fluorochromes, and a membrane-impermeable fluorochrome which has a fluorescence spectrum peak at 550 nm or more and less than 680 nm is used as the one membrane-impermeable fluorochrome to multiply stain the cells or microorganisms.

2. The method for testing cells or microorganisms according to claim 1 , wherein the two membrane-permeable fluorochromes and the one membrane-impermeable fluorochrome have peaks of fluorescence spectra 50 nm or more away from each other.

3. A method of testing cells or microorganisms, comprising steps of:

multiply staining the cells or microorganisms with two membrane-permeable fluorochromes whose fluorescence amounts are amplified by binding to a nucleic acid and one membrane-impermeable fluorochrome whose fluorescence amount is amplified by binding to a nucleic acid, wherein a membrane-permeable fluorochrome which has a fluorescence spectrum peak at less than 550 nm and a membrane-permeable fluorochrome which has a fluorescence spectrum peak at 680 nm or more are used as the two membrane-permeable fluorochromes, and a membrane-impermeable fluorochrome which has a fluorescence spectrum peak at 550 nm or more and less than 680 nm is used as the one membrane-impermeable fluorochrome;

simultaneously irradiating a plurality of excitation lights having different specific peak wavelengths on a sample fluid containing the multiply stained cells or microorganisms;

measuring fluorescences emitted from the irradiated sample fluid using fluorescence cytometry;

detecting the multiply stained cells or microorganisms based on the fluorescences emitted from the cells or microorganisms in the irradiated sample fluid; and

discriminating between objects emitting a plurality of fluorescences derived from the two membrane-permeable fluorochromes and objects emitting single fluorescence, wherein the objects emitting a plurality of fluorescences are the multiply stained cells or microorganisms, and the objects emitting single fluorescence are particles formed by self-aggregation of the fluorochromes.

4. The method for testing cells or microorganisms according to claim 3 , wherein the two membrane-permeable fluorochromes and the one membrane-impermeable fluorochrome have peaks of fluorescence spectra 50 nm or more away from each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2011
From: TAKENAKA, KEI; NAKAMOTO, HIDEKI; TAKEI, KAZUO; KURIHARA, MASAHIRO; WATANABE, YUUSUKE; SAITO, HISAO; SASAKI, YASUHIKO
To: HITACHI ENGINEERING & SERVICES CO., LTD.
Reel/Frame 025577/0162 →
Priority Claims (1)
JP 2009-249647 · Oct 30, 2009 · national
Continuity (1)
Related Publication 20110104685A1 · May 5, 2011