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Production of monoclonal antibodies for detection of Vibrio harveyi
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Metadata
Document Title
Production of monoclonal antibodies for detection of Vibrio harveyi
Author
Phianphak W, Rengpipat S, Rukpratanporn S, Longyant S, Chaivisuthangkura P, Sithigorngul W, Sithigorngul P
Name from Authors Collection
Affiliations
Srinakharinwirot University; Chulalongkorn University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); Chulalongkorn University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC)
Type
Article
Source Title
DISEASES OF AQUATIC ORGANISMS
ISSN
0177-5103
Year
2005
Volume
63
Issue
2-3
Page
161-168
Open Access
Bronze
Publisher
INTER-RESEARCH
DOI
10.3354/dao063161
Format
Abstract
Monoclonal antibodies (MAbs) against Vibrio harveyi were produced from mice immunized with heat-killed and SDS-mercaptoethanol-treated highly virulent V harveyi 639. Fifteen MAbs were selected and sorted into 6 groups according to their specificity to various proteins of apparent molecular weight ranging from 8 to 49 kDa. Some antibodies were used for detection of V harveyi at concentrations as low as 10(4) CFU ml(-1) using immunodot blots. Most of the selected MAbs did not show cross-reactivity to other Vibrio species and other Gram-negative bacteria tested. Only 1 MAb (VH39-4E) showed slight cross-reactivity to Aeromonas hydrophila. Another MAb (VH24-8H) bound lightly to V harveyi 1526 but strongly to V harveyi 639, allowing rapid differentiation. Two of the MAb groups were used to localize V harveyi in tissues of infected black tiger shrimp Penaeus monodon by immunohistochemistry. This study demonstrates the versatility of a highly specific immunological tool for the detection of V harveyi in aquaculture and opens the way for further development of convenient test kits.
Keyword
Dot blot | Immunohistochemistry | Monoclonal antibody | Penaeus monodon | Vibrio harveyi | Western blot
Publication Source
WOS