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Published on: February 23, 2014
Streptococcus pneumoniae and chronic endobronchial infections in childhood
Kim M Hare1, Amanda J Leach1, Heidi C Smith-Vaughan1,2
1Child Health Division, Menzies School of Health Research, Darwin, Northern Territory, Australia.
Insights
Streptococcus pneumoniae (pneumococcus) is increasingly recognized for its role in chronic lung infections like protracted bacterial bronchitis. Further research is needed to understand pneumococcal persistence in the lower airways and develop targeted treatments.
Area of Science:
- Pulmonary Medicine
- Microbiology
- Infectious Diseases
Background:
- Streptococcus pneumoniae (pneumococcus) is a primary cause of bacterial pneumonia globally.
- Its role in chronic endobronchial infections, such as protracted bacterial bronchitis (PBB), chronic suppurative lung disease (CSLD), and bronchiectasis, is understudied.
- Pneumococci are frequently found in the lower airways of children with these chronic lung conditions, despite nontypeable Haemophilus influenzae being a main pathogen.
Purpose of the Study:
- To review current knowledge on pneumococcal involvement in PBB, CSLD, and bronchiectasis.
- To explore the significance of pneumococcal nasopharyngeal colonization and lower airway persistence in disease pathogenesis.
- To discuss current and future therapeutic and preventative strategies, including antibiotic treatments and vaccines.
Main Methods:
- Literature review synthesizing existing research on pneumococci in chronic endobronchial infections.
- Analysis of pneumococcal colonization, persistence, and contribution to lower airway inflammation.
- Discussion of antibiotic resistance, current treatments (e.g., long-term azithromycin), and the impact of pneumococcal conjugate vaccines.
Main Results:
- Pneumococci are commonly isolated from lower airways in patients with PBB, CSLD, and bronchiectasis.
- Nasopharyngeal colonization is a key factor, and lower airway persistence may drive chronic inflammation and lung damage.
- Antibiotic resistance and vaccine impact are critical considerations for managing these infections.
Conclusions:
- Further investigation into pneumococcal pathogenesis in chronic lung diseases is essential.
- Areas for future research include immune responses, advanced serotyping techniques, and genome-wide association studies.
- Identifying novel therapeutic targets and vaccine antigens is crucial for preventing and treating these debilitating endobronchial infections.
Abstract:
Streptococcus pneumoniae (pneumococcus) is the main cause of bacterial pneumonia worldwide and has been studied extensively in this context. However, its role in chronic endobronchial infections and accompanying lower airway neutrophilic infiltration has received little attention. Severe and recurrent pneumonia are risk factors for chronic suppurative lung disease (CSLD) and bronchiectasis; the latter causes considerable morbidity and, in some populations, premature death in children and adults. Protracted bacterial bronchitis (PBB) is another chronic endobronchial infection associated with substantial morbidity. In some children, PBB may progress to bronchiectasis. Although nontypeable Haemophilus influenzae is the main pathogen in PBB, CSLD and bronchiectasis, pneumococci are isolated commonly from the lower airways of children with these diagnoses. Here we review what is known currently about pneumococci in PBB, CSLD and bronchiectasis, including the importance of pneumococcal nasopharyngeal colonization and how persistence in the lower airways may contribute to the pathogenesis of these chronic pulmonary disorders. Antibiotic treatments, particularly long-term azithromycin therapy, are discussed together with antibiotic resistance and the impact of pneumococcal conjugate vaccines. Important areas requiring further investigation are identified, including immune responses associated with pneumococcal lower airway infection, alone and in combination with other respiratory pathogens, and microarray serotyping to improve detection of carriage and infection by multiple serotypes. Genome wide association studies of pneumococci from the upper and lower airways will help identify virulence and resistance determinants, including potential therapeutic targets and vaccine antigens to treat and prevent endobronchial infections. Much work is needed, but the benefits will be substantial.
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