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Published on: July 9, 2014
Infections and immunizations of children with sickle cell disease
1University of New Mexico, Albuquerque, USA.
Insights
Children with sickle cell disease (SCD) face high infection risks from encapsulated bacteria and other pathogens. Early diagnosis, vaccinations, and prompt antibiotic treatment are crucial for preventing severe infections and improving outcomes.
Area of Science:
- Pediatric Infectious Diseases
- Hematology
- Immunology
Background:
- Children with sickle cell disease (SCD) exhibit increased susceptibility to severe bacterial infections, particularly from Streptococcus pneumoniae and Haemophilus influenzae.
- Osteomyelitis is frequently caused by Salmonella species, while Mycoplasma and Chlamydia are associated with chest syndrome and lower respiratory infections.
Purpose of the Study:
- To elucidate the immunopathologic mechanisms underlying the heightened risk of infection in children with SCD.
- To review current and emerging strategies for preventing and managing infections in this vulnerable population.
Main Methods:
- Review of existing literature on the pathophysiology of SCD-related infections.
- Analysis of the roles of splenic dysfunction, complement defects, and antibody responses in infection susceptibility.
- Evaluation of the impact of vaccinations and antibiotic prophylaxis.
Main Results:
- Dysfunctional antibody responses, impaired splenic clearance, complement pathway defects, and opsonophagocytic dysfunction contribute to invasive infections.
- Haemophilus conjugate vaccines have significantly reduced H. influenzae infections.
- Neonatal screening enabling early antibiotic management has been highly beneficial.
Conclusions:
- While penicillin prophylaxis is recommended, antibiotic resistance and compliance issues necessitate ongoing reevaluation.
- Conjugate pneumococcal vaccines show promise for controlling pneumococcal infections in children with SCD.
- Targeted antibiotic therapy, including macrolides for respiratory infections, is essential.
Abstract:
Children with SCD are prone to invasive infections caused by S. pneumoniae and H. influenzae. Osteomyelitis is caused most often by Salmonella species and less often by S. aureus. The chest syndrome and its associated microvascular disease carry a risk of prolonged and severe infections for Mycoplasma, Chlamydia, and probably other lower respiratory pathogens, particularly in the group of children with SCD prone to pain or microvascular sequestration, such as those with SC hemoglobinopathy. Despite three decades of investigation, the immunopathologic mechanisms leading to these increased risks is not completely clear. Bone infarction and microvascular disease probably play a part in the predisposition to osteomyelitis. Dysfunctional IgG and IgM antibody response, a lack of splenic clearance, defects in alternative pathway fixation of complement, and opsonophagocytic dysfunction play a role in the predisposition to invasive infection from polysaccharide-encapsulated organisms. Immunization with the conjugate Haemophilus vaccines has largely controlled infections caused by this pathogen. Early recognition of SCD through neonatal screening allows early and vigorous antibiotic management of febrile episodes in children with SCD and has perhaps provided the greatest benefit. Treatment of acute febrile episodes should include antibiotics active against regional strains of S. pneumoniae and H. influenzae, whereas treatment of febrile lower respiratory infections should include macrolide antibiotics that are active against Chlamydia and Mycoplasma, as well as pneumococci and Haemophilus. To date, no convincing evidence exists for the efficacy of pneumococcal polysaccharide vaccines in children with SCD, but preliminary data with the conjugate pneumococcal vaccines in normal children and those with SCD suggest that they may be as successful as Haemophilus vaccines in controlling this infection once they are available. Prophylaxis with daily penicillin administration is recommended and is well founded on clinical trials. However, problems with pneumococcal penicillin resistance and the association of failure with a lack of compliance to antibiotic regimens will dictate continued reexamination of this modality for the prevention of pneumococcal infections.
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