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Updated: Jul 11, 2026

Differentiating Functional Roles of Gene Expression from Immune and Non-immune Cells in Mouse Colitis by Bone Marrow Transplantation
Published on: October 1, 2012
Cell-wall-deficient bacteria and culture-negative febrile episodes in bone-marrow-transplant recipients
1Department of Microbiology, University of Hong Kong, Queen Mary Hospital, Hong Kong.
Background:
Although about 75-80% of neutropenic fevers are thought to be caused by infections, a causal organism can be confirmed microbiologically or suspected clinically in only 30-50%, and even fewer of these cases (16%) have a documented bacteraemia. The cause of neutropenic fever in the remaining cases remains elusive. We investigate the role of cell-wall-deficient bacteria in bone-marrow transplantation (BMT).
Methods:
Blood cultures were obtained from bone-marrow-transplant recipients and were inoculated into an aerobic bottle with resin, an anaerobic bottle, and a bottle to isolate cell-wall deficient bacteria. When growth was detected in the blood-culture bottle for cell-wall-deficient bacteria, 20 microL of the broth was subcultured and the isolate identified by standard biochemical methods. The microbiological findings were correlated with the clinical characteristics of the patients.
Findings:
From the 86 BMT recipients enrolled into the study, 798 sets of blood cultures were sent for laboratory analysis. 55 blood cultures were positive in the aerobic bottle, and the same isolates were also detected in 52 blood-culture bottles for cell-wall-deficient forms. For 20 sets of blood cultures, the isolates were detected only in the bottle for cell-wall-deficient forms. Blood for 13 (65%) of these 20 sets were sampled in the pre-engraftment neutropenic period, three (15%) during conditioning when the absolute neutrophil count was above 0.5 x 10(3)/L, and four (20%) in the post-engraftment period. 17 (85%) of the isolates were gram positive: four (20%) were Staphylococcus spp and ten (50%) were Bacillus spp. Antibiotic treatment was successful in 19 (95%) of 20 episodes.
Interpretation:
Bacteraemia due to cell-wall-deficient forms causes a significant proportion of so-called culture-negative febrile episodes in BMT recipients.
Insights
Cell-wall-deficient bacteria are a key cause of unexplained fevers in bone-marrow-transplant (BMT) recipients. Identifying these organisms improves treatment outcomes for culture-negative febrile episodes in BMT patients.
Area of Science:
- Infectious Diseases
- Hematology
- Microbiology
Background:
- Neutropenic fevers are common in bone-marrow-transplant (BMT) recipients, often with unidentified causes.
- While infections are suspected, microbiological confirmation is infrequent, leaving many cases of neutropenic fever unexplained.
- The role of cell-wall-deficient bacteria in BMT-associated fevers requires further investigation.
Purpose of the Study:
- To investigate the prevalence and clinical significance of cell-wall-deficient bacteria in bone-marrow-transplant recipients.
- To determine the contribution of these organisms to culture-negative febrile episodes.
- To correlate microbiological findings with patient clinical characteristics.
Main Methods:
- Blood cultures from BMT recipients were analyzed using standard aerobic, anaerobic, and specialized cell-wall-deficient bacterial culture bottles.
- Isolates from positive cultures were identified using standard biochemical methods.
- Microbiological results were correlated with patient clinical data, including the neutropenic period.
Main Results:
- Of 798 blood cultures from 86 BMT recipients, 20 sets yielded isolates solely in the cell-wall-deficient bacterial culture bottle.
- The majority of these isolates (85%) were Gram-positive, including Staphylococcus and Bacillus species.
- Antibiotic treatment was successful in 95% of the 20 episodes linked to cell-wall-deficient bacteria.
Conclusions:
- Cell-wall-deficient bacteria represent a significant cause of culture-negative febrile episodes in BMT recipients.
- Detection of these organisms can explain previously unexplained fevers in this vulnerable patient population.
- Targeted detection methods for cell-wall-deficient bacteria are crucial for accurate diagnosis and effective management in BMT patients.
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