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Vascular wall injury and inflammation are key pathogenic mechanisms responsible for early testicular degeneration during acute besnoitiosis in bulls.
- Source :
-
Parasites & vectors [Parasit Vectors] 2020 Mar 02; Vol. 13 (1), pp. 113. Date of Electronic Publication: 2020 Mar 02. - Publication Year :
- 2020
-
Abstract
- Background: Bovine besnoitiosis, caused by the apicomplexan parasite Besnoitia besnoiti, is a chronic and debilitating cattle disease that notably impairs fertility. Acutely infected bulls may develop respiratory signs and orchitis, and sterility has been reported in chronic infections. However, the pathogenesis of acute disease and its impact on reproductive function remain unknown.<br />Methods: Herein, we studied the microscopic lesions as well as parasite presence and load in the testis (pampiniform plexus, testicular parenchyma and scrotal skin) of seven bulls with an acute B. besnoiti infection. Acute infection was confirmed by serological techniques (IgM seropositive results and IgG seronegative results) and subsequent parasite detection by PCR and histological techniques.<br />Results: The most parasitized tissue was the scrotal skin. Moreover, the presence of tachyzoites, as shown by immunohistochemistry, was associated with vasculitis, and three bulls had already developed juvenile tissue cysts. In all animals, severe endothelial injury was evidenced by marked congestion, thrombosis, necrotizing vasculitis and angiogenesis, among others, in the pampiniform plexus, testicular parenchyma and scrotal skin. Vascular lesions coexisted with lesions characteristic of a chronic infection in the majority of bulls: hyperkeratosis, acanthosis and a marked diffuse fibroplasia in the dermis of the scrotum. An intense inflammatory infiltrate was also observed in the testicular parenchyma accompanied by different degrees of germline atrophy in the seminiferous tubules with the disappearance of various strata of germ cells in four bulls.<br />Conclusions: This study confirmed that severe acute besnoitiosis leads to early sterility that might be permanent, which is supported by the severe lesions observed. Consequently, we hypothesized that testicular degeneration might be a consequence of (i) thermoregulation failure induced by vascular lesions in pampiniform plexus and scrotal skin lesions; (ii) severe vascular wall injury induced by the inflammatory response in the testis; and (iii) blood-testis barrier damage and alteration of spermatogenesis by immunoresponse.
- Subjects :
- Animals
Antibodies, Protozoan blood
Atrophy
Cattle
Cattle Diseases parasitology
Coccidiosis immunology
Coccidiosis parasitology
DNA, Protozoan isolation & purification
Immunoglobulin G blood
Immunoglobulin M blood
Inflammation parasitology
Male
Sarcocystidae genetics
Sarcocystidae immunology
Sarcocystidae isolation & purification
Scrotum pathology
Seminiferous Tubules parasitology
Seminiferous Tubules pathology
Spermatogenesis
Testicular Diseases parasitology
Testis injuries
Testis parasitology
Cattle Diseases pathology
Coccidiosis pathology
Coccidiosis veterinary
Inflammation pathology
Testicular Diseases pathology
Testis pathology
Subjects
Details
- Language :
- English
- ISSN :
- 1756-3305
- Volume :
- 13
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Parasites & vectors
- Publication Type :
- Academic Journal
- Accession number :
- 32122380
- Full Text :
- https://doi.org/10.1186/s13071-020-3959-9