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Published on: October 13, 2015
Tissue MicroArray (TMA) analysis of normal and persistent Chlamydophila pneumoniae infection
Nicole Borel1, Sanghamitra Mukhopadhyay, Carmen Kaiser
1Institute of Veterinary Pathology, Vetsuisse Faculty, University of Zurich, Zurich, Switzerland. n.borel@access.unizh.ch
Background:
Chlamydophila pneumoniae infection has been implicated as a potential risk factor for atherosclerosis, however the mechanism leading to persistent infection and its role in the disease process remains to be elucidated.
Methods:
We validated the use of tissue microarray (TMA) technology, in combination with immunohistochemistry (IHC), to test antibodies (GroEL, GroES, GspD, Ndk and Pyk) raised against differentially expressed proteins under an interferon-gamma (IFN-gamma) induced model of chlamydial persistence.
Results:
In the cell pellet array, we were able to identify differences in protein expression patterns between untreated and IFN-gamma treated samples. Typical, large chlamydial inclusions could be observed in the untreated samples with all antibodies, whereas the number of inclusions were decreased and were smaller and atypical in shape in the IFN-gamma treated samples. The staining results obtained with the TMA method were generally similar to the changes observed between normal and IFN-gamma persistence using proteomic analysis. Subsequently, it was shown in a second TMA including archival atheromatous heart tissues from 12 patients undergoing heart transplantation, that GroEL, GroES, GspD and Pyk were expressed in atheromatous heart tissue specimens as well, and were detectable morphologically within lesions by IHC.
Conclusion:
TMA technology proved useful in documenting functional proteomics data with the morphologic distribution of GroEL, GroES, GspD, Ndk and Pyk within formalin-fixed, paraffin-embedded cell pellets and tissues from patients with severe coronary atherosclerosis. The antibodies GroEL and GroES, which were upregulated under persistence in proteomic analysis, displayed positive reaction in atheromatous heart tissue from 10 out of 12 patients. These may be useful markers for the detection of persistent infection in vitro and in vivo.
Insights
Chlamydophila pneumoniae infection may contribute to atherosclerosis. Researchers used tissue microarray (TMA) and immunohistochemistry (IHC) to detect bacterial proteins, GroEL and GroES, in heart tissues, suggesting they could mark persistent infection.
Area of Science:
- Microbiology
- Immunology
- Cardiovascular Research
Background:
- Chlamydophila pneumoniae infection is linked to atherosclerosis.
- Mechanisms of persistent infection and its role in atherosclerosis require further investigation.
Purpose of the Study:
- To validate tissue microarray (TMA) technology combined with immunohistochemistry (IHC) for detecting chlamydial proteins.
- To investigate the expression of specific chlamydial proteins (GroEL, GroES, GspD, Ndk, Pyk) in a model of persistent infection and in human atherosclerotic tissues.
Main Methods:
- Validated TMA and IHC for analyzing protein expression in interferon-gamma (IFN-gamma) induced chlamydial persistence.
- Tested antibodies against differentially expressed proteins in cell pellets and archival atheromatous heart tissues from heart transplant patients.
Main Results:
- Identified distinct protein expression patterns in IFN-gamma treated vs. untreated chlamydial samples.
- Observed decreased and atypical chlamydial inclusions in IFN-gamma treated samples.
- Detected expression of GroEL, GroES, GspD, and Pyk in human atheromatous heart tissues.
Conclusions:
- TMA technology effectively documented protein distribution in patient tissues.
- GroEL and GroES antibodies showed positive reactions in 10 out of 12 atherosclerotic heart tissue samples.
- GroEL and GroES may serve as useful markers for detecting persistent Chlamydophila pneumoniae infection.
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