Related Experiment Video
Updated: Aug 25, 2026

Induction of Alloantigen-specific Anergy in Human Peripheral Blood Mononuclear Cells by Alloantigen Stimulation with Co-stimulatory Signal Blockade
Published on: March 14, 2011
Myeloperoxidase deficiency enhances inflammation after allogeneic marrow transplantation
Carlos Milla1, Shuxia Yang, David N Cornfield
1Division of Pulmonary and Critical Care, Department of Pediatrics, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Abstract:
Myeloperoxidase (MPO)-derived oxidants participate in the respiratory antimicrobial defense system but are also implicated in oxidant-mediated acute lung injury. We hypothesized that MPO contributes to lung injury commonly observed after bone marrow transplantation (BMT). MPO-sufficient (MPO+/+) and -deficient (MPO-/-) mice were given cyclophosphamide and lethally irradiated followed by infusion of inflammation-inducing donor spleen T cells at time of BMT. Despite suppressed generation of nitrative stress, MPO-/- recipient mice unexpectedly exhibited accelerated weight loss and increased markers of lung dysfunction compared with MPO+/+ mice. The increased lung injury during MPO deficiency was a result of donor T cell-dependent inflammatory responses because bronchoalveolar lavage fluids (BALF) from MPO-/- mice contained increased numbers of inflammatory cells and higher levels of the proinflammatory cytokine TNF-alpha and the monocyte chemoattractant protein-1 compared with wild-type mice. Enhanced inflammation in MPO-/- mice was associated with suppressed apoptosis of BALF inflammatory cells. The inflammatory process in MPO-/- recipients was also associated with enhanced necrosis of freshly isolated alveolar type II cells, critical for preventing capillary leak. We conclude that suppressed MPO-derived oxidative/nitrative stress is associated with enhanced lung inflammation and persistent alveolar epithelial injury.
Insights
Myeloperoxidase (MPO) deficiency unexpectedly worsened lung injury after bone marrow transplantation, leading to increased inflammation and alveolar cell damage. Suppressed MPO-derived oxidative stress heightened inflammatory responses and impaired lung repair.
Area of Science:
- Immunology
- Pulmonary Medicine
- Cell Biology
Background:
- Myeloperoxidase (MPO) produces oxidants crucial for antimicrobial defense but also implicated in lung injury.
- Bone marrow transplantation (BMT) can lead to significant lung injury.
- The role of MPO in BMT-related lung injury remains unclear.
Purpose of the Study:
- To investigate the role of MPO in acute lung injury following BMT.
- To determine if MPO deficiency exacerbates lung dysfunction after BMT.
Main Methods:
- Mice genetically deficient in MPO (MPO-/-) and sufficient MPO (MPO+/+) underwent BMT with T cell infusion.
- Lung injury markers, inflammatory cell counts, cytokine levels (TNF-alpha, MCP-1), and alveolar cell apoptosis/necrosis were assessed.
- Bronchoalveolar lavage fluid (BALF) analysis was performed.
Main Results:
- MPO-/- mice showed accelerated weight loss and increased lung dysfunction markers compared to MPO+/+ mice.
- MPO deficiency led to increased inflammatory cells, TNF-alpha, and MCP-1 in BALF.
- Suppressed apoptosis of inflammatory cells and enhanced necrosis of alveolar type II cells were observed in MPO-/- mice.
Conclusions:
- Suppressed MPO-derived oxidative/nitrative stress is associated with enhanced lung inflammation post-BMT.
- MPO deficiency exacerbates lung injury by promoting inflammatory responses and alveolar epithelial cell damage.
- These findings highlight a protective role for MPO in mitigating lung injury after BMT.
Related Concept Videos
Differentiation of Common Myeloid Progenitor Cells
Bone Marrow Sampling and Transplants
The transplant begins with high doses of chemotherapy and radiation treatment, which aim to destroy the...

