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"Leptospira interrogans - immunology"
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mRNA vaccines targeting Leptospira immunoglobulin-like proteins confer partial protection in a hamster model of leptospirosis
by
Ruxrungtham, Kiat
,
Sangkanjanavanich, Nuttapone
,
Leekitcharoenphon, Ratikarn
in
adjuvants
,
Allergy and Immunology
,
Amino acids
2026
Leptospirosis is a neglected tropical disease with significant global health and economic impacts, particularly in resource-limited regions. This study reports the development of the first mRNA-based vaccines for leptospirosis, targeting the C-terminal region of LigA (LigAc) and the N-terminal region of LigB (LigBn) of Leptospira interrogans serovar Pomona. Transfection of lipid nanoparticle (LNP)-encapsulated mRNA constructs into HEK293T cells confirmed antigen expression and secretion, with proteins exhibiting higher-than-expected molecular weights due to glycosylation. In Jcl:ICR mice, LigAc- and LigBn-mRNA-LNPs elicited rapid and robust antibody responses, with significantly higher IgG titers than recombinant proteins formulated with AddaVax adjuvant. Immune sera from Lig-mRNA-LNP-vaccinated mice promoted complement-mediated killing of pathogenic leptospires in vitro. Moreover, the mRNA-LNP vaccines generated antigen-stimulated IFN-γ–ELISpot responses consistent with Th1-associated cellular activation, similar to recombinant proteins. Protective efficacy was then evaluated in golden Syrian hamsters immunized either intramuscularly or intradermally. Lig-mRNA-LNPs conferred partial protection, with a maximum survival rate of 25 % in LigBn-mRNA-LNPs vaccinated hamsters. The protective rates of Lig-mRNA-LNPs were equivalent to those of recombinant Lig protein formulations. The surviving hamsters showed reduced renal leptospiral colonization and histopathological changes, comparable to those observed in the uniformly surviving killed-leptospires group. These findings establish proof-of-concept for an mRNA vaccine platform against leptospirosis and highlight its potential application pending further optimization.
[Display omitted]
•First mRNA-LNP vaccine approach for leptospirosis, targeting LigAc and LigBn.•The Lig-mRNA-LNPs expressed and secreted glycosylated proteins in HEK293T cells.•The vaccine induced strong IgG responses in mice and promoted complement killing.•In hamsters, the vaccine conferred partial protection and reduced renal pathology.
Journal Article
Innate immune memory through TLR2 and NOD2 contributes to the control of Leptospira interrogans infection
2019
Leptospira interrogans are pathogenic spirochetes responsible for leptospirosis, a worldwide reemerging zoonosis. Many Leptospira serovars have been described, and prophylaxis using inactivated bacteria provides only short-term serovar-specific protection. Therefore, alternative approaches to limit severe leptospirosis in humans and morbidity in cattle would be welcome. Innate immune cells, including macrophages, play a key role in fighting infection and pathogen clearance. Recently, it has been shown that functional reprograming of innate immune cells through the activation of pattern recognition receptors leads to enhanced nonspecific antimicrobial responses upon a subsequent microbial encounter. This mechanism is known as trained immunity or innate immune memory. We have previously shown that oral treatment with Lactobacillus plantarum confers a beneficial effect against acute leptospirosis. Here, using a macrophage depletion protocol and live imaging in mice, we established the role of peritoneal macrophages in limiting the initial dissemination of leptospires. We further showed that intraperitoneal priming of mice with CL429, a TLR2 and NOD2 agonist known to mimic the modulatory effect of Lactobacillus, alleviated acute leptospiral infection. The CL429 treatment was characterized as a training effect since i.) it was linked to peritoneal macrophages that produced ex vivo more pro-inflammatory cytokines and chemokines against 3 different pathogenic serovars of Leptospira, independently of the presence of B and T cells, ii.) it had systemic effects on splenic cells and bone marrow derived macrophages, and iii.) it was sustained for 3 months. Importantly, trained macrophages produced more nitric oxide, a potent antimicrobial compound, which has not been previously linked to trained immunity. Accordingly, trained macrophages better restrict leptospiral survival. Finally, we could use CL429 to train ex vivo human monocytes that produced more cytokines upon leptospiral stimulation. In conclusion, host-directed treatment using a TLR2/NOD2 agonist could be envisioned as a novel prophylactic strategy against acute leptospirosis.
Journal Article
Factors associated with differential seropositivity to Leptospira interrogans and Leptospira kirschneri in a high transmission urban setting for leptospirosis in Brazil
2024
Leptospirosis is a zoonosis caused by pathogenic species of bacteria belonging to the genus Leptospira. Most studies infer the epidemiological patterns of a single serogroup or aggregate all serogroups to estimate overall seropositivity, thus not exploring the risks of exposure to distinct serogroups. The present study aims to delineate the demographic, socioeconomic and environmental factors associated with seropositivity of Leptospira serogroup Icterohaemorraghiae and serogroup Cynopteri in an urban high transmission setting for leptospirosis in Brazil.
We performed a cross-sectional serological study in five informal urban communities in the city of Salvador, Brazil. During the years 2018, 2020 2021, we recruited 2.808 residents and collected blood samples for serological analysis using microagglutination assays. We used a fixed-effect multinomial logistic regression model to identify risk factors associated with seropositivity for each serogroup. Seropositivity to Cynopteri increased with each year of age (OR 1.03; 95% CI 1.01-1.06) and was higher in those living in houses with unplastered walls (exposed brick) (OR 1.68; 95% CI 1.09-2.59) and where cats were present near the household (OR 2.00; 95% CI 1.03-3.88). Seropositivity to Icterohaemorrhagiae also increased with each year of age (OR 1.02; 95% CI 1.01-1.03) and was higher in males (OR 1.51; 95% CI 1.09-2.10), in those with work-related exposures (OR 1.71; 95% CI 1.10-2.66) or who had contact with sewage (OR 1.42; 95% CI 1.00-2.03). Spatial analysis showed differences in distribution of seropositivity to serogroups Icterohaemorrhagiae and Cynopteri within the five districts where study communities were situated.
Our data suggest distinct epidemiological patterns associated with the Icterohaemorrhagiae and Cynopteri serogroups in the urban environment at high risk for leptospirosis and with differences in spatial niches. We emphasize the need for studies that accurately identify the different pathogenic serogroups that circulate and infect residents of low-income areas.
Journal Article
Chimeric lipoproteins for leptospirosis vaccine: immunogenicity and protective potential
by
Maiocchi, Laura de Vargas
,
Tapajóz, Rafael Carracena de Souza
,
Seixas Neto, Amilton Clair Pinto
in
Adjuvants
,
Adjuvants, Immunologic - administration & dosage
,
Aluminum
2024
Leptospirosis, a neglected zoonotic disease, is caused by pathogenic spirochetes belonging to the genus
Leptospira
and has one of the highest morbidity and mortality rates worldwide. Vaccination stands out as one of the most effective preventive measures for susceptible populations. Within the outer membrane of
Leptospira
spp., we find the LIC12287, LIC11711, and LIC13259 lipoproteins. These are of interest due to their surface location and potential immunogenicity. Thorough examination revealed the conservation of these proteins among pathogenic
Leptospira
spp.; we mapped the distribution of T- and B-cell epitopes along their sequences and assessed the 3D structures of each protein. This information aided in selecting immunodominant regions for the development of a chimeric protein. Through gene synthesis, we successfully constructed a chimeric protein, which was subsequently expressed, purified, and characterized. Hamsters were immunized with the chimeric lipoprotein, formulated with adjuvants aluminum hydroxide, EMULSIGEN®-D, Sigma Adjuvant System®, and Montanide™ ISA206VG. Another group was vaccinated with an inactivated
Escherichia coli
bacterin expressing the chimeric protein. Following vaccination, hamsters were challenged with a virulent
L. interrogans
strain. Our evaluation of the humoral immune response revealed the production of IgG antibodies, detectable 28 days after the second dose, in contrast to pre-immune samples and control groups. This demonstrates the potential of the chimeric protein to elicit a robust humoral immune response; however, no protection against challenge was achieved. While this study provides valuable insights into the subject, further research is warranted to identify protective antigens that could be utilized in the development of a leptospirosis vaccine.
Key points
•
Several T- and B-cell epitopes were identified in all the three proteins.
•
Four different adjuvants were used in vaccine formulations.
•
Immunization stimulated significant levels of IgG2/3 in vaccinated animals.
Journal Article
A self-assembled Pirococcus abyssi exosome complex displaying outer membrane proteins of Leptospira interrogans elicits protective immunity against leptospirosis
by
Pedra, Ana Carolina Kurz
,
Maiocchi, Laura de Vargas
,
Arancibia, Paulina Consuelo Morales
in
Allergy and Immunology
,
animal models
,
Animals
2026
Leptospirosis is a widespread zoonosis caused by Leptospira spp. New vaccine strategies are being explored to enhance both the magnitude and duration of protection. In this study, we developed a novel recombinant vaccine formulation, using the Pyrococcus abyssi exosome complex to present immunogenic regions of key Leptospira antigens (LigANI, LigBrep, and LipL32). A co-expression vector containing the P. abyssi exosome proteins fused to the three Leptospira antigens was constructed, generating the EXOLEP (EXOsome + LEPtospira) multivalent complex, and the polyproteins were expressed in Escherichia coli. The stability of EXOLEP was confirmed through in vitro and in vivo assays, demonstrating remarkable resistance, remaining stable at temperatures up to 100 °C and extended shelf life. In hamster model, a hybrid EXOLEP formulation (EXOLEP Copenhageni + Leptospira bacterin from serovar Canicola) provided 80–100 % protection (P < 0.05) against Leptospira serovars Copenhageni and Canicola. Additionally, the hybrid formulation induced a balanced Th1/Th2 immune response, evidenced by upregulation of IFN-γ, TNF-α, IL-10, and TGF-β, along with significant levels (P < 0.05) of IgG1 and IgG2/3 isotypes against all Leptospira antigens. The formulation maintained its efficacy after one year of storage at 4 °C. These results suggest that the EXOLEP hybrid is a promising, cost-effective, and scalable candidate for veterinary leptospirosis vaccines.
Journal Article
Immunoinformatics-Based Designing of a Multi-Epitope Chimeric Vaccine From Multi-Domain Outer Surface Antigens of Leptospira
2021
Accurate information on antigenic epitopes within a multi-domain antigen would provide insights into vaccine design and immunotherapy. The multi-domain outer surface Leptospira immunoglobulin-like (Lig) proteins LigA and LigB, consisting of 12–13 homologous bacterial Ig (Big)-like domains, are potential antigens of Leptospira interrogans . Currently, no effective vaccine is available against pathogenic Leptospira . Both the humoral immunity and cell-mediated immunity of the host play critical roles in defending against Leptospira infection. Here, we used immunoinformatics approaches to evaluate antigenic B-cell lymphocyte (BCL) and cytotoxic T-lymphocyte (CTL) epitopes from Lig proteins. Based on certain crucial parameters, potential epitopes that can stimulate both types of adaptive immune responses were selected to design a chimeric vaccine construct. Additionally, an adjuvant, the mycobacterial heparin-binding hemagglutinin adhesin (HBHA), was incorporated into the final multi-epitope vaccine construct with a suitable linker. The final construct was further scored for its antigenicity, allergenicity, and physicochemical parameters. A three-dimensional (3D) modeled construct of the vaccine was implied to interact with Toll-like receptor 4 (TLR4) using molecular docking. The stability of the vaccine construct with TLR4 was predicted with molecular dynamics simulation. Our results demonstrate the application of immunoinformatics and structure biology strategies to develop an epitope-specific chimeric vaccine from multi-domain proteins. The current findings will be useful for future experimental validation to ratify the immunogenicity of the chimera.
Journal Article
Leptospiral Hemolysins Induce Proinflammatory Cytokines through Toll-Like Receptor 2-and 4-Mediated JNK and NF-κB Signaling Pathways
2012
Infection with pathogenic Leptospira species causes serious systemic inflammation in patients. Although a few leptospiral proinflammatory molecules have been identified, Leptospira likely encodes other unidentified strong inflammation stimulators. The pathogenic L. interrogans genome encodes numerous putative hemolysin genes. Since hemolysins from other bacteria can cause inflammatory reactions, we hypothesized that leptospiral hemolysins may function as proinflammatory stimulators that contribute to the strong inflammation associated with Leptospira infection.
We first used cytokine protein microarrays for systematic analysis of serum cytokine profiles in leptospirosis patients and leptospire-infected mice. We found that IL-1β, IL-6 and TNF-α were the main proinflammatory cytokines in the sera of both the patients and the mice. We then analyzed eight putative hemolysins in L. interrogans strain Lai. The results showed that five of them, Sph1, Sph2, Sph3, HlpA and TlyA were secreted and had hemolytic activity. More importantly, these five hemolysins induced the strong production of IL-1β, IL-6 and TNF-α in human and mouse macrophages (although a bit lower in the latter). Furthermore, blockade of TLR2 or TLR4 with either antibodies or inhibitors of the NF-κB or JNK signaling pathways significantly reduced the production of hemolysin-induced IL-1β, IL-6 and TNF-α. Macrophages isolated from TLR2-, TLR4-or double TLR2-and 4-deficient mice also confirmed that the leptospiral hemolysins that induce proinflammatory cytokines are both TLR2-and TLR4-dependent.
Our findings demonstrate that L. interrogans secretes many hemolysins that function as powerful inducers of proinflammatory cytokines through both TLR2-and TLR4-dependent JNK and NF-κB pathways.
Journal Article
Exposure to live saprophytic Leptospira before challenge with a pathogenic serovar prevents severe leptospirosis and promotes kidney homeostasis
2024
Previous studies demonstrated that Leptospira biflexa , a saprophytic species, triggers innate immune responses in the host during early infection. This raised the question of whether these responses could suppress a subsequent challenge with pathogenic Leptospira . We inoculated C3H/HeJ mice with a single or a double dose of L. biflexa before challenge with a pathogenic serovar, Leptospira interrogans serovar Copenhageni FioCruz (LIC). Pre-challenge exposure to L. biflexa did not prevent LIC dissemination and colonization of the kidney. However, it rescued weight loss and mouse survival thereby mitigating disease severity. Unexpectedly, there was correlation between rescue of overall health (weight gain, higher survival, lower kidney fibrosis marker ColA1) and higher shedding of LIC in urine. This stood in contrast to the L. biflexa unexposed LIC challenged control. Immune responses were dominated by increased frequency of effector T helper (CD4+) cells in spleen, as well as significant increases in serologic IgG2a. Our findings suggest that exposure to live saprophytic Leptospira primes the host to develop Th1 biased immune responses that prevent severe disease induced by a subsequent challenge with a pathogenic species. Thus, mice exposed to live saprophytic Leptospira before facing a pathogenic serovar may withstand infection with far better outcomes. Furthermore, a status of homeostasis may have been reached after kidney colonization that helps LIC complete its enzootic cycle.
Journal Article
Investigation of chronic infection by Leptospira spp. in asymptomatic sheep slaughtered in slaughterhouse
by
Hamond, Camila
,
Costa, Federico
,
Estrela-Lima, Alessandra
in
Abattoirs
,
Animal sciences
,
Animals
2019
The study aimed to evaluate the histopathological characteristics of renal lesions in chronically infected sheep and with low titers of anti-Leptospira antibodies from a slaughterhouse. In the serological analysis, 24.74% (48/194) presented seroreactivity with a titer equal to or greater than 100. Among these seroreactive sheep, titers of 100 were predominant (58.33%, 28/48), with the highest titer being 1,600 (2.08%, 1/48). Serogroup Sejroe (sv. Hardjo) was the most frequent at 35.42% (17/48). Leptospiral DNA was verified in 4.12% (8/194) of the kidney samples tested, and no urine sample was positive. All the samples corresponded to the pathogenic species L. interrogans. The eight amplicons with 202-nucleotides were identical with two mismatches (presented 100% of identity) using the PCR targeting to secY gene. Histological sections of PCR-positive kidneys were submitted to direct detection by the anti-LipL32 immunohistochemistry (IHC) technique. The Leptospira spp. antigen was evident in 62.5% (5/8) of the kidneys. Positive staining was observed in the cytoplasm of tubular cells and in the form of brownish aggregates that adhered to tubular epithelial cells and projected into the lumen. Inflammatory lymphoplasmacytic infiltrate, ranging from mild to moderate, with multifocal distribution, was the predominant finding in seroreactive animals (33.33%, 16/48). The demonstration of the leptospiral antigen lining the renal tubules through IHC of naturally infected sheep confirmed by PCR characterizes renal colonization in a species with the presence of histological changes compatible with leptospirosis.
Journal Article
Navigating cross-reactivity and host species effects in a serological assay: A case study of the microscopic agglutination test for Leptospira serology
by
Lloyd-Smith, James O.
,
Borremans, Benny
,
Guglielmino, Angela H.
in
Agglutination
,
Agglutination Tests
,
American Rescue Plan Act 2021-US
2024
Serology (the detection of antibodies formed by the host against an infecting pathogen) is frequently used to assess current infections and past exposure to specific pathogens. However, the presence of cross-reactivity among host antibodies in serological data makes it challenging to interpret the patterns and draw reliable conclusions about the infecting pathogen or strain.
In our study, we use microscopic agglutination test (MAT) serological data from three host species [California sea lion (Zalophus californianus), island fox (Urocyon littoralis), and island spotted skunk (Spilogale gracilis)] with confirmed infections to assess differences in cross-reactivity by host species and diagnostic laboratory. All host species are known to be infected with the same serovar of Leptospira interrogans. We find that absolute and relative antibody titer magnitudes vary systematically across host species and diagnostic laboratories. Despite being infected by the same Leptospira serovar, three host species exhibit different cross-reactivity profiles to a 5-serovar diagnostic panel. We also observe that the cross-reactive antibody titer against a non-infecting serovar can remain detectable after the antibody titer against the infecting serovar declines below detectable levels.
Cross-reactivity in serological data makes interpretation difficult and can lead to common pitfalls. Our results show that the highest antibody titer is not a reliable indicator of infecting serovar and highlight an intriguing role of host species in shaping reactivity patterns. On the other side, seronegativity against a given serovar does not rule out that serovar as the cause of infection. We show that titer magnitudes can be influenced by both host species and diagnostic laboratory, indicating that efforts to interpret absolute titers (e.g., as indicators of recent infection) must be calibrated to the system under study. Thus, we implore scientists and health officials using serological data for surveillance to interpret the data with caution.
Journal Article