| Literature DB >> 16504108 |
Nitar Nwe1, Qigai He, Sudarat Damrongwatanapokin, Qingyun Du, Ivanus Manopo, Yukol Limlamthong, Beau James Fenner, Lynn Spencer, Jimmy Kwang.
Abstract
BACKGROUND: Prevention of a possible avian influenza pandemic necessitates the development of rapid diagnostic tests and the eventual production of a vaccine.Entities:
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Year: 2006 PMID: 16504108 PMCID: PMC1397843 DOI: 10.1186/1471-2180-6-16
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Figure 1SDS-PAGE and immunoblot analysis of rHA1 protein expressed in a baculovirus/insect cell system under monolayer (lanes 1 and 3) and suspension (lanes 2 and 4) culture conditions. Values on the left indicate molecular weights of the marker protein (lane M). The rHA1 was detected by immunoblotting with rabbit anti-H5N1 serum.
Figure 2Confocal imaging of recombinant baculovirus infected Sf9 cell (A and B) and uninfected Sf9 cell (C and D). DAPI was used to stain cell nuclei and monoclonal antibody specific to HA1 of avian influenza H5 was used to localize rHA1 in recombinant baculovirus infected cells and uninfected cells.
Figure 3Expression of rHA1 in baculovirus infected Sf9 cells under monolayer (A) and suspension (B) culture conditions. Each data point is the average from triplicate experiments and the error bars represent the 95% confidence level.
Figure 4SDS-PAGE and immunoblot analysis of supernatant (lane 1 and 3) and pellet (lane 2 and 4) after lysis of recombinant baculovirus infected Sf9 cell with lysis buffer containing 1% NP-40. Values on the left indicate molecular weights of the maker protein (LaneM).
Antibody response of guinea pigs to recombinant hemagglutinin protein rHA1from influenza virus H5N1.
| Protein | HI titer | Neutralization titer |
| rHA1 (insoluble) | ≥ 1:160 | ≥ 1:160 |
| Denatured rHA1 | < 1:20 | < 1:10 |
| Control | < 1:10 | < 1:10 |