Volume 20 Issue 1
Feb.  2007
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LI ZHU, JUN-PENG CAI, QING CHEN, SHOU-YI YU. Specific Detection of Toxigenic Vibrio cholerae Based on in situ PCR in Combination With Flow Cytometry[J]. Biomedical and Environmental Sciences, 2007, 20(1): 64-69.
Citation: LI ZHU, JUN-PENG CAI, QING CHEN, SHOU-YI YU. Specific Detection of Toxigenic Vibrio cholerae Based on in situ PCR in Combination With Flow Cytometry[J]. Biomedical and Environmental Sciences, 2007, 20(1): 64-69.

Specific Detection of Toxigenic Vibrio cholerae Based on in situ PCR in Combination With Flow Cytometry

Funds:  国家自然科学基金(40176036)
  • Objective To develop an in situ PCR in combination with flow cytometry (ISPCR-FCM) for monitoring cholera toxin positive Vibrio cholerae. Methods In running this method, 4% paraformaldehyde was used to fix the Vibrio cholerae cells and 1 mg/mL lysozyme for 20 min to permeabilize the cells. Before the PCR thermal cycling, 2.5% glycerol was added into the PCR reaction mixture in order to protect the integrality of the cells. Results A length of 1037bp DNA sequence was amplified, which is specific for the cholera toxin gene (ctxAB gene). Cells subjected to ISPCR showed the presences of ctxAB gene both in epifiuorescence microscopy and in flow cytometric analysis. The specificity and sensitivity of the method were investigated. The sensitivity was relatively low (105 cells/mL), while the specificity was high. Conclusion We have successfully developed a new technique for detection of toxigenic Vibrio cholerae strains. Further study is needed to enhance its sensitivities. ISPCR-FCM shows a great promise in monitoring specific bacteria and their physiological states in environmental samples.
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通讯作者: 陈斌, bchen63@163.com
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Specific Detection of Toxigenic Vibrio cholerae Based on in situ PCR in Combination With Flow Cytometry

Funds:  国家自然科学基金(40176036)

Abstract: Objective To develop an in situ PCR in combination with flow cytometry (ISPCR-FCM) for monitoring cholera toxin positive Vibrio cholerae. Methods In running this method, 4% paraformaldehyde was used to fix the Vibrio cholerae cells and 1 mg/mL lysozyme for 20 min to permeabilize the cells. Before the PCR thermal cycling, 2.5% glycerol was added into the PCR reaction mixture in order to protect the integrality of the cells. Results A length of 1037bp DNA sequence was amplified, which is specific for the cholera toxin gene (ctxAB gene). Cells subjected to ISPCR showed the presences of ctxAB gene both in epifiuorescence microscopy and in flow cytometric analysis. The specificity and sensitivity of the method were investigated. The sensitivity was relatively low (105 cells/mL), while the specificity was high. Conclusion We have successfully developed a new technique for detection of toxigenic Vibrio cholerae strains. Further study is needed to enhance its sensitivities. ISPCR-FCM shows a great promise in monitoring specific bacteria and their physiological states in environmental samples.

LI ZHU, JUN-PENG CAI, QING CHEN, SHOU-YI YU. Specific Detection of Toxigenic Vibrio cholerae Based on in situ PCR in Combination With Flow Cytometry[J]. Biomedical and Environmental Sciences, 2007, 20(1): 64-69.
Citation: LI ZHU, JUN-PENG CAI, QING CHEN, SHOU-YI YU. Specific Detection of Toxigenic Vibrio cholerae Based on in situ PCR in Combination With Flow Cytometry[J]. Biomedical and Environmental Sciences, 2007, 20(1): 64-69.

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