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Updated: Sep 20, 2026

Discovery of New Intracellular Pathogens by Amoebal Coculture and Amoebal Enrichment Approaches
Published on: October 27, 2013
[Chlamydia-like and coronavirus-like agents found in dead cases of atypical pneumonia by electron microscopy]
Tao Hong1, Jian-wei Wang, Yi-lin Sun
1Institute of Viral Disease Control and Prevention, China CDC, Beijing 100052, China. hungt@public3.bta.net.cn
Objective:
To explore the causative agents of the atypical pneumonia (also SARS) occurred recently in some regions of our country.
Method:
Organ samples of 7 dead cases of SARS were collected from Guangdong, Shanxi, Sichuan Provinces and Beijing for electron microscopic examination. 293 cell line was inoculated with the materials derived from the lungs to isolate causative agent(s). The agents in the organs and cell cultures were revealed by immunoassay.
Results:
Both Chlamydia-like and coronavirus-like particles were found in EM. Inclusion bodies containing elementary bodies, reticulate antibodies and intermediate bodies of Chlamydia-like agent were visualized in multiple organs from the 7 dead cases, including lungs (7 cases), spleens (2 cases), livers (2 cases), kidneys (3 cases) and lymph nodes (1 cases), by ultrathin section electron microscopy (EM). In some few sections, coronavirus-like particles were concurrently seen. A coronavirus RNA- polymerase segment (440 bp) was amplified from the lung tissues of two cases of the SARS. After inoculated with materials from the lung samples, the similar Chlamydia-like particles were also found in the inoculated 293 cells. Since the Chlamydia-like agents visualized in both organs and cell cultures could not react with the genus specific antibodies against Chlamydia and monoclonal antibodies against C. pneumoniae and C. psittaci, the results might well be suggestive of a novel Chlamydia-like agent.
Conclusion:
Since the novel Chlamydia-like agent was found co-existing with a coronavirus-like agent in the dead cases of SARS, it looks most likely that both the agents play some roles in the disease. At the present time, however, one can hardly determining how did these agents interact each other synergetically, or one follows another, need further study.
Insights
Researchers identified a novel Chlamydia-like agent and coronavirus-like particles in fatal cases of severe acute respiratory syndrome (SARS). Both agents likely contribute to SARS pathogenesis, requiring further investigation into their synergistic roles.
Area of Science:
- Virology
- Microbiology
- Pathology
Context:
- The study investigates the etiology of atypical pneumonia, identified as severe acute respiratory syndrome (SARS).
- Recent outbreaks necessitated rapid identification of causative agents.
- Understanding SARS origins is crucial for public health interventions.
Purpose:
- To identify the causative agents responsible for severe acute respiratory syndrome (SARS).
- To examine organ samples from SARS fatalities using electron microscopy and cell culture.
- To characterize potential novel pathogens involved in SARS.
Summary:
- Electron microscopy revealed both Chlamydia-like and coronavirus-like particles in SARS patient samples.
- A novel Chlamydia-like agent, distinct from known Chlamydia species, was identified in multiple organs.
- Coronavirus RNA polymerase was detected, and similar Chlamydia-like particles were observed in cell cultures.
- The co-existence of these agents suggests a potential role in SARS development.
Impact:
- Identifies a novel Chlamydia-like agent as a potential contributor to SARS.
- Highlights the likely dual etiology of SARS involving both Chlamydia-like and coronavirus-like agents.
- Provides a foundation for further research into SARS pathogenesis and therapeutic strategies.
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Atypical Pneumonia
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Bacterial Phylum Spirochaetes
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