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Published on: June 25, 2015
Immune response to recombinant Burkholderia pseudomallei FliC
Sirikamon Koosakulnirand1,2, Phornpun Phokrai2, Kemajittra Jenjaroen3
1Department of Microbiology, Faculty of Science, Mahidol University, Bangkok, Thailand.
Abstract:
Burkholderia pseudomallei is a flagellated Gram-negative bacterium which is the causative agent of melioidosis. The disease poses a major public health problem in tropical regions and diabetes is a major risk factor. The high mortality rate of melioidosis is associated with severe sepsis which involves the overwhelming production of pro-inflammatory cytokines. Bacterial flagellar protein (flagellin) activates Toll-like receptor 5 (TLR5)-mediated innate immune signaling pathways and induces adaptive immune response. However, previous studies of TLR5 signaling in melioidosis have been performed using recombinant flagellin from Salmonella Typhimurium instead of B. pseudomallei. This study aimed to investigate human innate immune response and antibody response against a recombinant B. pseudomallei flagellin (rFliC). We prepared B. pseudomallei rFliC and used it to stimulate HEK-BlueTM-hTLR5 and THP1-DualTM cells to assess TLR5 activation. Subsequently, whole blood stimulation assays with rFliC were performed ex vivo. TLR5-flagellin interactions trigger activation of transcription factor NF-κB in HEK-BlueTM-hTLR5 cells. Pro-inflammatory cytokine (IL-1β, IL-6, and TNF-α) productions from whole blood in response to rFliC differed between fourteen healthy individuals. The levels of these cytokines changed in a dose and time-dependent manner. ELISA was used to determine rFliC-specific antibodies in serum samples from different groups of melioidosis patients and healthy subjects. IgG antibody to rFliC in melioidosis patients with diabetes were higher compared with non-diabetic patients. Our results show that B. pseudomallei flagellin is a potent immune stimulator and that the immune responses to rFliC are different among individuals. This may provide valuable insights toward the potential use of rFliC in vaccine development.
Insights
Burkholderia pseudomallei flagellin strongly stimulates immune responses, with variations observed among individuals. This flagellin shows potential for melioidosis vaccine development, particularly considering differing antibody levels in diabetic patients.
Area of Science:
- * Infectious Diseases
- * Immunology
- * Microbiology
Background:
- * Melioidosis, caused by Burkholderia pseudomallei, is a significant public health concern in tropical areas, with diabetes as a key risk factor.
- * Severe melioidosis sepsis involves excessive pro-inflammatory cytokine production.
- * Bacterial flagellin is known to activate Toll-like receptor 5 (TLR5) and innate/adaptive immunity, but studies often use non-B. pseudomallei flagellin.
Purpose of the Study:
- * To investigate the human innate immune and antibody responses to recombinant B. pseudomallei flagellin (rFliC).
- * To assess TLR5 activation and cytokine production induced by B. pseudomallei rFliC.
- * To evaluate rFliC-specific antibody levels in melioidosis patients, including those with diabetes.
Main Methods:
- * Preparation of B. pseudomallei rFliC.
- * Stimulation of HEK-BlueTM-hTLR5 and THP1-DualTM cells to assess TLR5 activation and NF-κB pathway.
- * Ex vivo whole blood stimulation assays to measure cytokine production (IL-1β, IL-6, TNF-α).
- * Enzyme-linked immunosorbent assay (ELISA) to quantify rFliC-specific IgG antibodies in patient and healthy subject sera.
Main Results:
- * B. pseudomallei rFliC activated TLR5 signaling, leading to NF-κB activation in HEK-BlueTM-hTLR5 cells.
- * Pro-inflammatory cytokine production in whole blood varied among individuals and was dose- and time-dependent.
- * Melioidosis patients with diabetes exhibited higher IgG antibody levels against rFliC compared to non-diabetic patients.
Conclusions:
- * B. pseudomallei flagellin is a potent stimulator of the human immune system.
- * Individual immune responses to rFliC differ significantly.
- * rFliC shows promise as a candidate for developing a melioidosis vaccine.
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