Related Experiment Video
Updated: Jun 2, 2026

Using Fluorescent Proteins to Visualize and Quantitate Chlamydia Vacuole Growth Dynamics in Living Cells
Published on: October 13, 2015
In vivo ultrastructural analysis of the intimate relationship between polymorphonuclear leukocytes and the chlamydial
Roger G Rank1, Judy Whittimore, Anne K Bowlin
1Department of Microbiology and Immunology, University of Arkansas for Medical Sciences and Arkansas Children's Hospital Research Institute, Little Rock, AR 72202, USA. rankrogerg@uams.edu
Abstract:
We utilized a recently developed model of intracervical infection with Chlamydia muridarum in the mouse to elicit a relatively synchronous infection during the initial developmental cycle in order to examine at the ultrastructural level the development of both the chlamydial inclusion and the onset of the inflammatory response. At 18 h after infection, only a few elementary bodies attached to cells were visible, as were an occasional intracellular intermediate body and reticulate body. By 24 h, inclusions had 2 to 5 reticulate bodies and were beginning to fuse. A few polymorphonuclear leukocytes (PMNs) were already present in the epithelium in the vicinity of and directly adjacent to infected cells. By 30 h, the inclusions were larger and consisted solely of reticulate bodies, but by 36 to 42 h, they contained intermediate bodies and elementary bodies as well. Many PMNs were adjacent to or actually inside infected cells. Chlamydiae appeared to exit the cell either (i) through disintegration of the inclusion membrane and rupture of the cell, (ii) by dislodgement of the cell from the epithelium by PMNs, or (iii) by direct invasion of the infected cell by the PMNs. When PMNs were depleted, the number of released elementary bodies was significantly greater as determined both visually and by culture. Interestingly, depletion of PMNs revealed the presence of inclusions containing aberrant reticulate bodies, reminiscent of effects seen in vitro when chlamydiae are incubated with gamma interferon. In vivo evidence for the contact-dependent development hypothesis, a potential mechanism for triggering the conversion of reticulate bodies to elementary bodies, and for translocation of lipid droplets into the inclusion is also presented.
Insights
Inflammation from polymorphonuclear leukocytes (PMNs) can hinder Chlamydia muridarum development. Depleting PMNs in mice increased elementary body release and revealed aberrant chlamydial forms.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Chlamydia muridarum causes intracervical infections.
- Understanding chlamydial development and host response is crucial.
Purpose of the Study:
- To examine ultrastructural development of chlamydial inclusions.
- To investigate the inflammatory response during infection.
- To elucidate Chlamydia muridarum exit mechanisms.
Main Methods:
- Utilized a mouse model of intracervical Chlamydia muridarum infection.
- Examined infected tissue at 18, 24, 30, 36, and 42 hours post-infection.
- Depleted polymorphonuclear leukocytes (PMNs) to assess their role.
Main Results:
- Observed chlamydial developmental stages from elementary bodies to reticulate bodies within inclusions.
- Documented the infiltration of PMNs into infected epithelium.
- Found increased elementary body release and aberrant reticulate bodies upon PMN depletion.
- Identified multiple chlamydial exit strategies from host cells.
Conclusions:
- PMN presence influences chlamydial development and release.
- PMN depletion enhances elementary body production.
- Aberrant chlamydial forms appear in vivo under specific conditions.
- Provides evidence for contact-dependent development and lipid droplet translocation.
Related Concept Videos
Bacterial Phylum Chlamydiae
Lampbrush Chromosomes
LBCs are made up of two pairs of conjugating homologous chromatids. Each chromatid consists of alternatively positioned regions of condensed-inactive chromatin and loosely placed-active side loops, which can be contracted and extended. The loops resemble the...

