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Published on: October 15, 2013
Development of Burkholderia mallei and pseudomallei vaccines
1Department of Microbiology, Immunology, and Pathology, Regional Center of Excellence in Emerging Diseases and Bioterrorism, Colorado State University Ft. Collins, CO, USA.
Abstract:
Burkholderia mallei and Burkholderia pseudomallei are Gram-negative bacteria that cause glanders and melioidosis, respectively. Inhalational infection with either organism can result in severe and rapidly fatal pneumonia. Inoculation by the oral and cutaneous routes can also produce infection. Chronic infection may develop after recovery from acute infection with both agents, and control of infection with antibiotics requires prolonged treatment. Symptoms for both meliodosis and glanders are non-specific, making diagnosis difficult. B. pseudomallei can be located in the environment, but in the host, B. mallei and B. psedomallei are intracellular organisms, and infection results in similar immune responses to both agents. Effective early innate immune responses are critical to controlling the early phase of the infection. Innate immune signaling molecules such as TLR, NOD, MyD88, and pro-inflammatory cytokines such as IFN-γ and TNF-α play key roles in regulating control of infection. Neutrophils and monocytes are critical cells in the early infection for both microorganisms. Both monocytes and macrophages are necessary for limiting dissemination of B. pseudomallei. In contrast, the role of adaptive immune responses in controlling Burkholderia infection is less well understood. However, T cell responses are critical for vaccine protection from Burkholderia infection. At present, effective vaccines for prevention of glanders or meliodosis have not been developed, although recently development of Burkholderia vaccines has received renewed attention. This review will summarize current and past approaches to develop B. mallei and B. pseudomalllei vaccines, with emphasis on immune mechanisms of protection and the challenges facing the field. At present, immunization with live attenuated bacteria provides the most effective and durable immunity, and it is important therefore to understand the immune correlates of protection induced by live attenuated vaccines. Subunit vaccines have typically provided less robust immunity, but are safer to administer to a wider variety of people, including immune compromised individuals because they do not reactivate or cause disease. The challenges facing B. mallei and B. pseudomalllei vaccine development include identification of broadly protective antigens, design of efficient vaccine delivery and adjuvant systems, and a better understanding of the correlates of protection from both acute and chronic infection.
Insights
Developing vaccines against Burkholderia bacteria, which cause glanders and melioidosis, is crucial. Live attenuated vaccines offer the best protection, but challenges remain in identifying antigens and understanding immune responses for effective prevention.
Area of Science:
- * Microbiology and Immunology
- * Infectious Diseases
- * Vaccine Development
Background:
- * *Burkholderia mallei* and *Burkholderia pseudomallei* cause glanders and melioidosis, respectively, leading to severe pneumonia and chronic infections.
- * Diagnosis is challenging due to non-specific symptoms, and both bacteria are intracellular pathogens requiring prolonged antibiotic treatment.
- * Effective innate immunity, involving signaling molecules and immune cells like neutrophils and monocytes, is critical for initial infection control.
Purpose of the Study:
- * To review current and past strategies for developing vaccines against *B. mallei* and *B. pseudomallei*.
- * To emphasize the immune mechanisms of protection and identify challenges in vaccine development.
- * To explore the role of adaptive immune responses, particularly T cell responses, in vaccine-induced protection.
Main Methods:
- * Review of existing literature on *Burkholderia* vaccine development approaches.
- * Analysis of immune responses, including innate and adaptive immunity, to *B. mallei* and *B. pseudomallei* infections and vaccinations.
- * Examination of challenges in identifying protective antigens and optimizing vaccine delivery and adjuvant systems.
Main Results:
- * Live attenuated bacterial immunization provides the most effective and durable immunity against *Burkholderia* infections.
- * Subunit vaccines offer safety advantages, especially for immunocompromised individuals, but typically induce less robust immunity.
- * T cell responses are critical for protective immunity, highlighting the importance of understanding adaptive immune correlates.
Conclusions:
- * Effective vaccines for glanders and melioidosis are urgently needed, with renewed attention on *Burkholderia* vaccine development.
- * Understanding immune correlates of protection induced by live attenuated vaccines is essential for future vaccine design.
- * Key challenges include identifying broadly protective antigens, improving vaccine delivery/adjuvants, and elucidating protection mechanisms against both acute and chronic infections.
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