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Assessment of Circulating Immune Complexes During Natural and Experimental Canine Leishmaniasis
Manuela Gizzarelli1, Eleonora Fiorentino2, Nour El Houda Ben Fayala1
1Department of Veterinary Medicine and Animal Production, University of Naples Federico II, Naples, Italy.
Insights
Circulating immune complexes (CICs) increase with canine leishmaniasis (CanL) severity. High CIC levels indicate established infection, correlating with antibody titers and disease progression in dogs.
Area of Science:
- Veterinary Immunology
- Parasitology
- Canine Infectious Diseases
Background:
- Canine leishmaniasis (CanL) involves immune-mediated mechanisms and circulating immune complexes (CICs).
- Defective clearance of CICs can lead to vasculitis and organ deposition in infected dogs.
- Understanding CIC levels is crucial for assessing disease status in CanL.
Purpose of the Study:
- To evaluate serum CIC levels in dogs naturally and experimentally infected with *Leishmania*.
- To correlate CIC levels with clinical signs, antibody titers, and infection status in dogs.
Main Methods:
- Serum samples from 52 untreated beagles were analyzed.
- Dogs were classified into five groups based on health, IFAT titer, and bone marrow PCR results.
- Circulating immune complex (CIC) levels were quantified using an ELISA method.
Main Results:
- Lowest CIC levels were observed in healthy dogs (Groups A and B).
- CIC levels progressively increased with disease severity, reaching highest concentrations in sick dogs (Groups D and E).
- Significant differences in CICs were found between healthy and sick dogs, correlating with antibody titers and disease progression.
Conclusions:
- Serum CIC concentration is a reliable indicator of *Leishmania* infection severity in dogs.
- High CIC levels are specific to established CanL, independent of infection route.
- CIC assessment can aid in monitoring disease progression and immune response in canine leishmaniasis.
Abstract:
Canine leishmaniasis (CanL) is a disease characterized by a large variety of clinical alterations, the majority of which being due to immune mediated mechanisms. Sick dogs usually produce high levels of Leishmania-specific immunoglobulins which may give rise to circulating immune complexes (CICs) whose defective clearance by scavenging macrophages induces vasculitis and their deposition in specific organs. The aim of this study was to assess the serum level of CICs in dogs exposed to natural and experimental infection. Fifty-two sera were examined, belonging to untreated groups of naïve beagles previously studied to assess the performance of anti-leishmanial vaccines under natural (no. 22 dogs) or experimental (no. 30 dogs) transmission. Sera were classified in five groups according to the dog's health condition, IFAT titer, and the bone marrow (BM) nested (n)-PCR result. A: no.10 healthy dogs before the experimental infection; B: no.10 clinically healthy dogs infected experimentally, IFAT negative (= reciprocal titer <160) and n-PCR positive; C: no.10 clinically healthy dogs naturally infected, IFAT positive at titers 160-320 and n-PCR negative; D: no.10 sick dogs experimentally infected, IFAT positive at titer >320 and n-PCR positive; E: no.12 sick dogs naturally infected, IFAT positive at titer >320 and n-PCR positive. CICs levels were assessed by ELISA method (canine CIC assay-Cloude-Clone Corporation, USA). The two groups characterized by negative IFAT (A and B) had the lowest median level of CICs (16.09 and 12.78 μg/ml, respectively). CICs value increased progressively in the group C and reached the highest levels in the groups D and E, both characterized by high antibodies titer and severe disease, independently from the mode of infection. Significant differences in CICs concentration (p < 0.0001) were demonstrated between A, B, and C groups when compared with D or E groups of dogs. No differences were found inside the first three groups, while differences were recorded between the last two groups of sick dogs. CICs serum concentration increased with the progress of leishmaniasis, being significantly correlated with the increase of specific antibodies over time. High CICs levels detectable by commercial ELISA proved specific to an established Leishmania infection in dogs in the absence of other concomitant infections, as demonstrated by the similar trend assessed in experimentally and naturally infected dogs.
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