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Updated: Jan 31, 2026

Quantification of Monocyte Chemotactic Activity In Vivo and Characterization of Blood Monocyte Derived Macrophages
Published on: August 12, 2019
Bacterial load and defective monocyte-derived macrophage bacterial phagocytosis in biomass smoke-related COPD
Baishakhi Ghosh1,2, Akshay H Gaike3,4, Kanchan Pyasi1
1Chest Research Foundation, Pune, India.
Abstract:
Lower airway colonisation with species of potentially pathogenic bacteria (PPB) is associated with defective bacterial phagocytosis, in monocyte-derived macrophages (MDMs) and alveolar macrophages, from tobacco smoke-associated chronic obstructive pulmonary disease (S-COPD) subjects. In the developing world, COPD among nonsmokers is largely due to biomass smoke (BMS) exposure; however, little is known about PPB colonisation and its association with impaired innate immunity in these subjects.We investigated the PPB load (Streptococcus pneumoniae, Haemophilus influenzae, Moraxella catarrhalis and Pseudomonas aeruginosa) in BMS-exposed COPD (BMS-COPD) subjects compared with S-COPD and spirometrically normal subjects. We also examined the association between PPB load and phagocytic activity of MDMs and lung function. Induced sputum and peripheral venous blood samples were collected from 18 healthy nonsmokers, 15 smokers without COPD, 16 BMS-exposed healthy subjects, 19 S-COPD subjects and 23 BMS-COPD subjects. PPB load in induced sputum and MDM phagocytic activity were determined using quantitative PCR and fluorimetry, respectively.Higher bacterial loads of S. pneumoniae, H. influenzae and P. aeruginosa were observed in BMS-COPD subjects. Increased PPB load in BMS-exposed subjects was significantly negatively associated with defective phagocytosis in MDMs and spirometric lung function indices (p<0.05).Increased PPB load in airways of BMS-COPD subjects is inversely associated with defective bacterial phagocytosis and lung function.
Insights
Potentially pathogenic bacteria (PPB) colonization is higher in biomass smoke-exposed COPD (BMS-COPD) patients. This increased bacterial load correlates with impaired immune cell function and reduced lung function in these individuals.
Area of Science:
- Pulmonary Medicine
- Immunology
- Microbiology
Background:
- Tobacco smoke-associated COPD (S-COPD) involves lower airway colonization by potentially pathogenic bacteria (PPB), linked to defective macrophage phagocytosis.
- In developing nations, COPD in nonsmokers is primarily linked to biomass smoke (BMS) exposure, with limited understanding of PPB colonization and its impact on innate immunity.
Purpose of the Study:
- To compare PPB load in BMS-exposed COPD (BMS-COPD) subjects with S-COPD and healthy controls.
- To investigate the association between PPB load, monocyte-derived macrophage (MDM) phagocytic activity, and lung function in BMS-COPD subjects.
Main Methods:
- Quantitative PCR was used to determine PPB load (Streptococcus pneumoniae, Haemophilus influenzae, Moraxella catarrhalis, Pseudomonas aeruginosa) in induced sputum.
- MDM phagocytic activity was assessed using fluorimetry.
- Spirometry was performed to evaluate lung function.
Main Results:
- BMS-COPD subjects exhibited higher bacterial loads of S. pneumoniae, H. influenzae, and P. aeruginosa.
- Increased PPB load in BMS-exposed individuals was significantly associated with defective MDM phagocytosis and reduced spirometric lung function indices (p<0.05).
Conclusions:
- Higher airway PPB load in BMS-COPD subjects is inversely associated with impaired bacterial phagocytosis and diminished lung function.
- These findings highlight a potential link between biomass smoke exposure, bacterial colonization, and immune dysfunction in COPD.
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