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1.
J Zoo Wildl Med ; 53(1): 50-59, 2022 Mar.
Article in English | MEDLINE | ID: mdl-35339149

ABSTRACT

Protozoal and bacterial vector-borne infections are frequently diagnosed in domestic felids. However, with the exception of Mycoplasma haemofelis and Cytauxzoon felis, their occurrence in managed nondomestic felids housed in the United States is largely unknown. Following a case in February 2020 of fulminant cytauxzoonosis in an African lion (Panthera leo), EDTA-whole blood samples were collected opportunistically from February 2020 through June 2020 from 34 adult tigers (Panthera tigris) and eight adult African lions from the same sanctuary in eastern Tennessee as well as 14 adult tigers from a zoo in southern Oklahoma. Samples were analyzed for Cytauxzoon felis, Bartonella spp., hemotropic Mycoplasma, Rickettsia spp., Anaplasma spp., Ehrlichia spp., Babesia spp., and Hepatozoon spp. DNA by PCR amplification. All animals were asymptomatic at the time of collection. None of the Oklahoma animals were positive for vector-borne organisms, but these pathogens were detected in tigers at the Tennessee facility, including Cytauxzoon felis (11.8%), "Candidatus Mycoplasma haemominutum" (5.9%), and Ehrlichia ewingii (2.9%). During the study period, two animals developed clinical signs of cytauxzoonosis and were assessed for vector-borne infections as part of their diagnostic evaluation. This study documents the presence of tick-borne diseases in managed nondomestic felids in the southeastern United States and underscores that ectoparasite control measures should be practiced to minimize exposure of carnivores in managed care.


Subject(s)
Babesia , Lions , Tigers , Animals , Babesia/genetics , Oklahoma , Tennessee/epidemiology
2.
Vet Radiol Ultrasound ; 62(2): 141-149, 2021 Mar.
Article in English | MEDLINE | ID: mdl-33245609

ABSTRACT

Cytauxzoon felis is a tick-borne haemoprotozoan parasite that often causes fatal disease in domestic cats. Histological studies have described substantial pulmonary pathology due to cytauxzoonosis. Published reports were not found describing the thoracic radiographic signs associated with acute cytauxzoonosis in cats. The purpose of this retrospective descriptive study was to describe thoracic radiographic findings in a group of felines with confirmed acute cytauxzoonosis. A total of 37 cats with confirmed cytauxzoonosis and with available thoracic radiographs were included. A subset of 7 cats in this sample also had histopathologic evaluation of their lung parenchyma. Thoracic radiographs were retrieved and reviewed. A bronchial pulmonary pattern was identified as the most common finding (n = 27/37; 73%). Other radiographic findings included cardiomegaly (n = 19/37; 51%), interstitial pattern (n = 17/37; 46%), pleural effusion (n = 12/37; 32%), arterial vascular distension (n = 10/37; 27%), arterial and venous distension (n = 10/37; 27%), and venous distension (n = 1/37; 3%). The primary histological features present in 7 cats with additional histopathologic evaluation, similar to previously published studies, were vascular occlusion. Our study suggests that, despite severe histologic evidence of disease, there are no pathognomonic thoracic radiographic findings in cats with acute cytauxzoonosis.


Subject(s)
Cat Diseases/parasitology , Piroplasmida , Protozoan Infections, Animal/diagnostic imaging , Radiography, Thoracic/veterinary , Animals , Cat Diseases/diagnostic imaging , Cats , Lung/diagnostic imaging , Lung/parasitology , Protozoan Infections, Animal/parasitology , Retrospective Studies
3.
Platelets ; 30(1): 88-97, 2019.
Article in English | MEDLINE | ID: mdl-29182425

ABSTRACT

Bleeding heterogeneity amongst patients with immune thrombocytopenia (ITP) is poorly understood. Platelets play a role in maintaining endothelial integrity, and variable thrombocytopenia-induced endothelial changes may influence bleeding severity. Platelet-derived endothelial stabilizers and markers of endothelial integrity in ITP are largely underexplored. We hypothesized that, in a canine ITP model, thrombocytopenia would lead to alterations in the endothelial ultrastructure and that the Von Willebrand factor (vWF) would serve as a marker of endothelial injury associated with thrombocytopenia. Thrombocytopenia was induced in healthy dogs with an antiplatelet antibody infusion; control dogs received an isotype control antibody. Cutaneous biopsies were obtained prior to thrombocytopenia induction, at platelet nadir, 24 hours after nadir, and on platelet recovery. Cutaneous capillaries were assessed by electron microscopy for vessel thickness, the number of pinocytotic vesicles, the number of large vacuoles, and the number of gaps between cells. Pinocytotic vesicles are thought to represent an endothelial membrane reserve that can be used for repair of damaged endothelial cells. Plasma samples were assessed for vWF. ITP dogs had significantly decreased pinocytotic vesicle numbers compared to control dogs (P = 0.0357) and the increase in plasma vWF from baseline to 24 hours correlated directly with the endothelial large vacuole score (R = 0.99103; P < 0.0001). This direct correlation between plasma vWF and the number of large vacuoles, representing the vesiculo-vacuolar organelle (VVO), a permeability structure, suggests that circulating vWF could serve as a biomarker for endothelial alterations and potentially a predictor of thrombocytopenic bleeding. Overall, our results indicate that endothelial damage occurs in the canine ITP model and variability in the degree of endothelial damage may account for differences in the bleeding phenotype among patients with ITP.


Subject(s)
Endothelium/metabolism , Purpura, Thrombocytopenic, Idiopathic/etiology , Purpura, Thrombocytopenic, Idiopathic/metabolism , Animals , Biomarkers , Biopsy , Blood Coagulation , Blood Platelets/metabolism , Blood Platelets/ultrastructure , Disease Models, Animal , Dogs , Endothelium/ultrastructure , Flow Cytometry , Lysophospholipids/blood , Male , Platelet Activation , Platelet Count , Purpura, Thrombocytopenic, Idiopathic/blood , Purpura, Thrombocytopenic, Idiopathic/drug therapy , Sphingosine/analogs & derivatives , Sphingosine/blood , von Willebrand Factor/metabolism
4.
J Clin Microbiol ; 56(9)2018 09.
Article in English | MEDLINE | ID: mdl-29997202

ABSTRACT

Bloodstream infections are a significant cause of morbidity and mortality in critically ill dogs, but due to cost and difficulties in sample acquisition, blood cultures are infrequently obtained. In ill dogs, urine cultures may be recommended as surrogates for blood cultures. In order to determine the outcome agreement between parallel urine and blood cultures, we retrospectively analyzed parallel blood and urine specimens submitted for culture from dogs at the NC State Veterinary Hospital between 2011 and 2016. Positive cultures were reported from 15% of the submitted blood specimens and 23% of the submitted urine specimens. A total of 295 urine and blood samples were submitted in parallel, with positive growth demonstrated in 14 concordant and five discordant pairs. A kappa statistic comparing blood and urine culture outcomes was 0.266 (fair) when all parallel growth was included, including concordant and discordant results, and 0.170 (poor) when restricted to parallel concordant growth. The sensitivity of urine to reflect concordant bloodstream bacterial organisms was 30%, with a specificity of 87%. The positive and negative predictive values were 30% and 88%, respectively. Of dogs with both specimens positive on bacterial culture, 7 of 7 (100%) with suspected urogenital infection sources were concordant. All dogs with discordant bloodstream and urinary infections were immunosuppressed. Urinary coagulase-positive Staphylococcus isolates were most likely to be concordant with bloodstream infections. In conclusion, we found that urine culture is neither a substitute nor a screen for blood culture. Blood cultures should be performed in any potentially septic animal, especially those that are considered immunosuppressed.


Subject(s)
Bacteremia/veterinary , Bacteria/growth & development , Bacteriological Techniques/veterinary , Blood Culture/veterinary , Dog Diseases/diagnosis , Urinalysis/veterinary , Urinary Tract Infections/veterinary , Animals , Bacteremia/diagnosis , Bacteria/isolation & purification , Dog Diseases/blood , Dog Diseases/urine , Dogs , Retrospective Studies , Sensitivity and Specificity , Urinary Tract Infections/diagnosis
5.
Clin Proteomics ; 15: 44, 2018.
Article in English | MEDLINE | ID: mdl-30618510

ABSTRACT

BACKGROUND: Cytauxzoonosis is a disease of felids in North America caused by the tick-transmitted apicomplexan parasite Cytauxzoon felis. Cytauxzoonosis is particularly virulent for domestic cats, but no vaccine currently exists. The parasite cannot be cultivated in vitro, presenting a significant limitation for vaccine development. METHODS: Recent sequencing of the C. felis genome has identified over 4300 putative protein-encoding genes. From this pool we constructed a protein microarray containing 673 putative C. felis proteins. This microarray was probed with sera from C. felis-infected and naïve cats to identify differentially reactive antigens which were incorporated into two expression library vaccines, one polyvalent and one monovalent. We assessed the efficacy of these vaccines to prevent of infection and/or disease in a tick-challenge model. RESULTS: Probing of the protein microarray resulted in identification of 30 differentially reactive C. felis antigens that were incorporated into the two expression library vaccines. However, expression library immunization failed to prevent infection or disease in cats challenged with C. felis. CONCLUSIONS: Protein microarray facilitated high-throughput identification of novel antigens, substantially increasing the pool of characterized C. felis antigens. These antigens should be considered for development of C. felis vaccines, diagnostics, and therapeutics.

6.
J Clin Microbiol ; 53(8): 2517-24, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26019197

ABSTRACT

Cytauxzoon felis is a virulent, tick-transmitted, protozoan parasite that infects felines. Cytauxzoonosis was previously thought to be uniformly fatal in domestic cats. Treatment combining atovaquone and azithromycin (A&A) has been associated with survival rates of over 60%. Atovaquone, a ubiquinone analogue, targets C. felis cytochrome b (cytb), of which 30 unique genotypes have been identified. The C. felis cytb genotype cytb1 is associated with increased survival rates in cats treated with A&A. The purpose of this study was to design a PCR panel that could distinguish C. felis cytb1 from other cytochrome b genotypes. Primer pairs were designed to span five different nucleotide positions at which single-nucleotide polymorphisms in the C. felis cytb gene had been identified. Through the use of high-resolution melt analysis, this panel was predicted to distinguish cytb1 from other cytb genotypes. Assays were validated using samples from 69 cats with cytauxzoonosis for which the C. felis cytb genotypes had been characterized previously. The PCR panel identified C. felis cytb1 with 100% sensitivity and 98.2% specificity. High-resolution melt analysis can rapidly provide prognostic information for clients considering A&A treatment in cats with cytauxzoonosis.


Subject(s)
Cat Diseases/diagnosis , Cytochromes b/genetics , Genotype , Genotyping Techniques/methods , Piroplasmida/isolation & purification , Protozoan Infections, Animal/diagnosis , Protozoan Proteins/genetics , Alleles , Animals , Antiprotozoal Agents/therapeutic use , Atovaquone/therapeutic use , Azithromycin/therapeutic use , Cat Diseases/drug therapy , Cat Diseases/parasitology , Cats , Piroplasmida/drug effects , Piroplasmida/genetics , Polymerase Chain Reaction/methods , Prognosis , Protozoan Infections, Animal/drug therapy , Protozoan Infections, Animal/parasitology , Sensitivity and Specificity , Transition Temperature , Veterinary Medicine/methods
7.
Br J Haematol ; 167(1): 110-20, 2014 Oct.
Article in English | MEDLINE | ID: mdl-25039744

ABSTRACT

Canine immune thrombocytopenia (ITP) is analogous to human ITP, with similar platelet counts and heterogeneity in bleeding phenotype among affected individuals. With a goal of ultimately investigating this bleeding heterogeneity, a canine model of antibody-mediated ITP was developed. Infusion of healthy dogs with 2F9, a murine IgG2a monoclonal antibody to the canine platelet glycoprotein GPIIb (a common target of autoantibodies in ITP) resulted in profound, dose-dependent thrombocytopenia. Model dogs developed variable bleeding phenotypes, e.g. petechiae and haematuria, despite similar degrees of thrombocytopenia. 2F9 infusion was not associated with systemic inflammation, consumptive coagulopathy, or impairment of platelet function. Unexpectedly however, evaluation of cytokine profiles led to the identification of platelets as a potential source of serum interleukin-8 (IL8) in dogs. This finding was confirmed in humans with ITP, suggesting that platelet IL8 may be a previously unrecognized modulator of platelet-neutrophil crosstalk. The utility of this model will allow future study of bleeding phenotypic heterogeneity including the role of neutrophils and endothelial cells in ITP.


Subject(s)
Disease Models, Animal , Purpura, Thrombocytopenic, Idiopathic/diagnosis , Purpura, Thrombocytopenic, Idiopathic/immunology , Animals , Antibodies, Monoclonal/administration & dosage , Antibodies, Monoclonal/adverse effects , Antibodies, Monoclonal/immunology , Blood Platelets/immunology , Blood Platelets/metabolism , Cytokines/blood , Cytokines/metabolism , Dogs , Hemorrhage/immunology , Phenotype , Platelet Count , Purpura, Thrombocytopenic, Idiopathic/blood
8.
J Clin Microbiol ; 52(9): 3447-52, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24920774

ABSTRACT

Bartonella henselae is increasingly associated with a variety of pathological entities, which are often similar in dogs and human patients. Following an acute flea infestation, a dog developed an unusual clinical presentation for canine bartonellosis. Comprehensive medical, microbiological, and surgical interventions were required for diagnosis and to achieve a full recovery.


Subject(s)
Bartonella Infections/veterinary , Bartonella henselae/isolation & purification , Diarrhea/veterinary , Dog Diseases/pathology , Flea Infestations/veterinary , Prostatitis/diagnosis , Steatitis/pathology , Animals , Bartonella Infections/complications , Bartonella Infections/microbiology , Bartonella Infections/pathology , Diarrhea/microbiology , Diarrhea/pathology , Dog Diseases/microbiology , Dogs , Flea Infestations/complications , Male , Prostatitis/microbiology , Prostatitis/pathology , Steatitis/microbiology
9.
J Vet Intern Med ; 38(4): 1958-1981, 2024.
Article in English | MEDLINE | ID: mdl-38752421

ABSTRACT

Immune thrombocytopenia (ITP) is the most common acquired primary hemostatic disorder in dogs. Immune thrombocytopenia less commonly affects cats but is an important cause of mortality and treatment-associated morbidity in both species. Immune thrombocytopenia remains a diagnosis of exclusion for which diagnostic guidelines are lacking. Primary, or non-associative, ITP refers to autoimmune platelet destruction. Secondary, or associative, ITP arises in response to an underlying disease trigger. However, evidence for which comorbidities serve as ITP triggers has not been systematically evaluated. To identify key diagnostic steps for ITP and important comorbidities associated with secondary ITP, we developed 12 Population Evaluation/Exposure Comparison Outcome (PECO) format questions. These questions were addressed by evidence evaluators utilizing a literature pool of 287 articles identified by the panelists using a structured search strategy. Evidence evaluators, using panel-designed templates and data extraction tools, summarized evidence and created guideline recommendations that then were integrated by diagnosis and comorbidity domain chairs. The revised PECO responses underwent a Delphi survey process to reach consensus on final guidelines. A combination of panel expertise and PECO responses were employed to develop algorithms for diagnosis of ITP in dogs and cats, which also underwent 4 iterations of Delphi review. Comorbidity evidence evaluators employed an integrated measure of evidence (IME) tool to determine evidence quality for each comorbidity; IME values combined with evidence summaries for each comorbidity were integrated to develop ITP screening recommendations, which also were subjected to Delphi review. Commentary was solicited from multiple relevant professional organizations before finalizing the consensus. The final consensus statement provides clinical guidelines for the diagnosis of, and underlying disease screening for, ITP in dogs and cats. The systematic consensus process identified numerous knowledge gaps that should guide future studies. This statement is a companion manuscript to the ACVIM Consensus Statement on the Treatment of Immune Thrombocytopenia.


Subject(s)
Cat Diseases , Dog Diseases , Purpura, Thrombocytopenic, Idiopathic , Dogs , Animals , Cats , Dog Diseases/diagnosis , Cat Diseases/diagnosis , Purpura, Thrombocytopenic, Idiopathic/veterinary , Purpura, Thrombocytopenic, Idiopathic/diagnosis , Consensus
10.
Am J Respir Cell Mol Biol ; 48(3): 314-21, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23221047

ABSTRACT

Myristoylated alanine-rich C kinase substrate (MARCKS) is a ubiquitously expressed protein kinase C substrate that has emerged as a potential therapeutic target for the amelioration of mucin secretion and inflammation in patients with chronic obstructive pulmonary disease. MARCKS also plays a key role in regulating the adhesion, migration, and degranulation of neutrophils. Moreover, given its biological role in epithelial and immune cells, we hypothesized that MARCKS may play an integral role in cytokine secretion by neutrophils. Because the amino terminus of MARCKS is highly conserved across vertebrate species, we successfully applied the well-characterized human MARCKS inhibitory peptide, myristoylated N-terminal sequence (MANS), to attenuate the function of MARCKS in isolated canine neutrophils. Pretreatment of canine neutrophils with MANS peptide significantly reduced both mRNA and protein expression in a broad range of LPS-induced cytokines, including IL-8, a chemokine (C-X-C motif) ligand-1 orthologue, and TNF-α, in comparison with untreated cells or those treated with a control peptide. This reduction in cytokine expression was observed even when neutrophils were treated with MANS 2 hours after LPS exposure. The observed reduction in cytokine secretion was not attributable to protein retention or cell death, but was associated with reduced cytokine transcript synthesis. These observations identify MARCKS protein as a promising therapeutic target in the treatment of inflammatory diseases or syndromes attributed to neutrophil influx and inflammatory cytokine production, such as sepsis, acute lung injury, and acute respiratory distress syndrome.


Subject(s)
Interleukin-8/biosynthesis , Interleukin-8/genetics , Intracellular Signaling Peptides and Proteins/metabolism , Membrane Proteins/metabolism , Neutrophils/metabolism , Peptides/pharmacology , Tumor Necrosis Factor-alpha/biosynthesis , Tumor Necrosis Factor-alpha/genetics , Animals , Dogs , Humans , Interleukin-8/metabolism , Lipopolysaccharides/pharmacology , Myristoylated Alanine-Rich C Kinase Substrate , Neutrophils/drug effects , Peptides/metabolism , RNA, Messenger/biosynthesis , RNA, Messenger/genetics , Tumor Necrosis Factor-alpha/metabolism
11.
J Clin Microbiol ; 51(9): 3066-9, 2013 Sep.
Article in English | MEDLINE | ID: mdl-23784135

ABSTRACT

Cytauxzoon felis, an emerging virulent protozoan parasite that infects domestic cats, is treated with atovaquone and azithromycin (A&A). Atovaquone targets parasite cytochrome b. We characterized the C. felis cytochrome b gene (cytb) in cats with cytauxzoonosis and found a cytb genotype that was associated with survival in A&A-treated cats.


Subject(s)
Anti-Infective Agents/pharmacokinetics , Atovaquone/pharmacokinetics , Azithromycin/pharmacokinetics , Cat Diseases/parasitology , Cytochromes b/metabolism , Piroplasmida/metabolism , Protozoan Infections/parasitology , Animals , Anti-Infective Agents/therapeutic use , Atovaquone/therapeutic use , Azithromycin/therapeutic use , Cat Diseases/drug therapy , Cats , Cytochromes b/genetics , Pharmacogenetics , Piroplasmida/genetics , Protozoan Infections/drug therapy
12.
Ticks Tick Borne Dis ; 14(1): 102056, 2023 01.
Article in English | MEDLINE | ID: mdl-36399958

ABSTRACT

Cytauxzoon felis is a tick-borne piroplasmid hemoparasite that causes life-threatening disease in cats. Despite the critical role that ticks play in pathogen transmission, our knowledge regarding the C. felis life cycle remains limited to the feline hosts. Specific life stages of C. felis within the tick host have never been visualized microscopically and previous investigations have been limited to molecular detection by polymerase chain reaction (PCR). Sporozoites are the infectious stage of piroplasmids that are transmitted by ticks. In other tick-borne piroplasmids, sporozoite-based vaccines play a key role in disease prevention and management. We believe sporozoites have similar potential for cytauxzoonosis. Therefore, the objective of this study was to use different molecular and microscopic techniques to detect and evaluate C. felis sporozoites in tick salivary glands (SG). A total of 140 Amblyomma americanum adults that were fed on C. felis-infected cats as nymphs were included for this study. Specifically, dissected SGs were quartered and subjected to C. felis RT-PCR, RNAscope® in situ hybridization (ISH), histology, direct azure staining, and transmission electron microscopy (TEM). Cytauxzoon felis RT-PCR was also performed on half tick (HT) carcasses after SG dissection. Cytauxzoon felis RNA was detected in SGs of 17/140 ticks. Of these, 7/17 ticks had microscopic visualization via ISH and/or TEM. The remaining 10/17 ticks had only molecular detection of C. felis in SGs via RT-PCR without visualization. Cytauxzoon felis RNA was detected solely in HT carcasses via RT-PCR in 9/140 ticks. In ISH-positive tick SGs, hybridization signals were present in cytoplasms of SG acinar cells. TEM captured rare C. felis organisms with characteristic ultrastructural features of sporozoites. This study describes the first direct visualization of any developing stage of C. felis in ticks. Forthcoming studies should employ a combination of molecular and microscopic techniques to investigate the C. felis life cycle in A. americanum.


Subject(s)
Amblyomma , Salivary Glands , Cats , Animals , Microscopy, Electron, Transmission
13.
Parasitol Int ; 95: 102753, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37086887

ABSTRACT

BACKGROUND: Cytauxzoonosis is a life-threatening disease of cats, caused by the tick-borne piroplasmid hemoparasite, Cytauxzoon felis. Current experimental models for cytauxzoonosis rely on either tick transmission or direct injection of infected cat tissues. These models require researchers to directly work with infected ticks or use cats with acute cytauxzoonosis. To improve the feasibility and accessibility, there is a need to establish sharable resources among researchers. In related piroplasmid parasites, sporozoite-based inoculums are routinely produced from tick salivary glands, cryopreserved and distributed to other investigators and facilities. For these parasites, sporozoites have been the basis for vaccine development and in vitro cultivation, both of which remain lacking for C. felis research. If infectious sporozoites can be similarly isolated for C. felis, it would significantly broaden our capabilities to study this parasite. Aims of this study was to determine if C. felis sporozoites inoculums collected from the salivary glands of Amblyomma americanum ticks were capable of inducing cytauxzoonosis in naïve cats. MATERIALS AND METHODS: A. americanum nymphs were acquisition-fed on a donor cat chronically infected with C. felis and allowed to molt to adults. Four groups of adult ticks (n = 50/group) were either stimulation-fed for 4 days on naïve cats or were heated at 37 °C for 4 days. After these treatments, salivary glands (SG) of each group of ticks were collected to create inoculums. Infectivity of these inoculums was then tested by subcutaneous injection into naïve cats. RESULTS: The two naïve cats used for stimulation feeding and as controls both developed cytauxzoonosis, indicating these groups of ticks were capable of producing infectious sporozoites. Of the 2 cats that were injected with SGs from the stimulation-fed ticks, one cat developed cytauxzoonosis and C. felis infection was confirmed by both light microscopy and PCR. The other cat did not develop cytauxzoonosis and only had equivocal evidence of infection. Neither cat injected with SGs from the heated ticks developed cytauxzoonosis. One of these cats had equivocal evidence of infection and one had no evidence of infection. CONCLUSION: This study validates the feasibility of collecting infectious sporozoites from C. felis-infected ticks that can be used to infect naïve cats. While this model requires further optimization, it has the potential to expand resources to study C. felis and further advance research in this field.


Subject(s)
Cat Diseases , Felis , Ixodidae , Piroplasmida , Protozoan Infections, Animal , Ticks , Animals , Cats , Amblyomma , Ixodidae/parasitology , Protozoan Infections, Animal/parasitology , Ticks/parasitology , Piroplasmida/physiology
14.
Ticks Tick Borne Dis ; 14(4): 102162, 2023 07.
Article in English | MEDLINE | ID: mdl-36965259

ABSTRACT

Ticks are important ectoparasites that are capable of transmitting multiple classes of pathogens and are currently linked with many emerging tick-borne diseases worldwide. With increasing occurrences of tick-borne diseases in both humans and veterinary species, there is a continuous need to further our understanding of ticks and the pathogens they transmit. Whole tick histology provides a full scope of the tick internal anatomy, allowing researchers to examine multiple organs of interest in a single section. This is in contrast to other techniques that are more commonly utilized in tick-borne disease research, such as electron microscopy and light microscopy of individual organs. There is a lack of literature describing a practical technique to process whole tick histologic sections. Therefore, the current study aims to provide researchers with a workable protocol to prepare high quality paraffin-embedded whole tick histology sections. Amblyomma americanum adults were used as an example species for this study. After a series of pilot experiments using a combination of various fixatives, softening agents and processing techniques, we elected to compare two common fixatives, 10% neutral-buffered formalin (NBF) and Bouin's solution for whole ticks. Equal numbers of A. americanum unfed adults (n = 10/fixative) were processed identically and their whole tick histology coronal sections were individually scored. Higher scores were assigned to whole tick sections that contained more internal organs that are crucial for tick-borne disease research (e.g. salivary glands and midgut), high integrity of tissues and exoskeleton on the section, and good fixation and staining quality of the tissues. The mean total scores for Bouin's-fixed ticks were significantly higher compared to NBF-fixed ticks (p = 0.001). To further assess our preferred technique, we also demonstrated the feasibility of producing high quality whole tick sections for three other common tick species of medical importance (Rhipicephalus sanguineus, Ixodes scapularis, and Dermacentor variabilis) using Bouin's solution. While this technique may require further optimization for other tick species, we described a feasible protocol that uses commonly available tools, reagents and standard histologic equipment. This should allow any investigator to easily make adjustments to this protocol as needed based on their experimental goals.


Subject(s)
Ixodes , Tick-Borne Diseases , Animals , Humans , Fixatives , Paraffin Embedding
15.
J Am Vet Med Assoc ; 259(S2): 1-4, 2022 05 20.
Article in English | MEDLINE | ID: mdl-35587903

ABSTRACT

In collaboration with the American College of Veterinary Pathologists.


Subject(s)
Pathology, Veterinary , Veterinarians , Animals , Humans , United States
16.
Ticks Tick Borne Dis ; 13(1): 101847, 2022 01.
Article in English | MEDLINE | ID: mdl-34673404

ABSTRACT

Cytauxzoon felis is a tick-borne hemoprotozoan parasite that causes life-threatening disease in domestic cats in the United States. Currently, the platforms for C. felis research are limited to natural or experimental infection of domestic cats. This study aims to develop an alternative model by infecting Amblyomma americanum ticks with C. felis via direct injection. Amblyomma americanum adults were injected with C. felis-infected feline erythrocytes through two routes: directly into the digestive tract through the anal pore (IA injection), or percutaneously into the tick hemocoel (IH injection). RNAscope® in situ hybridization (ISH) was used to visualize the parasites within the ticks at different time points after injection. Four months after injection, ticks were divided into 3 infestation groups based on injection methods and inoculum type and fed on 3 naïve cats to assess the ticks' ability to transmit C. felis. Prior to the transmission challenge, selected ticks from each infestation group were tested for C. felis RNA via reverse transcription-PCR (RT-PCR). In both IA- and IH-injected ticks, ISH signals were observed in ticks up to 3 weeks after injection. The number of hybridization signals notably decreased over time, and no signals were detected by 4 months after injection. Prior to the transmission challenge, 37-57% of the sampled ticks were positive for C. felis RNA via RT-PCR. While the majority of injected ticks successfully attached and fed to repletion on all 3 cats during the transmission challenge, none of the cats became infected with C. felis. These results suggest that injected C. felis remained alive in ticks but was unable to progress to infective sporozoites after injection. It is unclear why this infection technique had been successful for other closely related tick-borne hemoprotozoa and not for C. felis. This outcome may be associated with uncharacterized differences in the C. felis life cycle, the lack of the feeding or molting in our model or absence of gametocytes in the inoculum. Nonetheless, our study demonstrated the potential of using ticks as an alternative model to study C. felis. Future improvement of a tick model for C. felis should consider other tick species for the injection model or utilize infection methods that more closely emulate the natural infection process.


Subject(s)
Cat Diseases , Felis , Ixodidae , Protozoan Infections, Animal , Ticks , Amblyomma , Animals , Cat Diseases/epidemiology , Cats , Ixodidae/parasitology , Protozoan Infections, Animal/parasitology
17.
Vet Parasitol Reg Stud Reports ; 29: 100696, 2022 04.
Article in English | MEDLINE | ID: mdl-35256123

ABSTRACT

A 4.5-month-old, male, North American river otter (Lontra canadensis) from Athens-Clarke County, Georgia, USA being temporarily housed at a rehabilitation facility, presented with a three-day history of lethargy, anorexia, and severe anemia. Antemortem blood smears revealed intraerythrocytic piroplasms. Supportive care and antiparasitic treatments were initiated, but the animal died three days following presentation. Gross necropsy revealed yellow discoloration of all adipose tissue throughout the carcass and a mildly enlarged, diffusely yellow to pale orange liver. Microscopically, moderate, centrilobular hepatocellular degeneration and necrosis were observed, consistent with hypoxia secondary to apparent hemolytic anemia. Piroplasms were frequently observed in red blood cells in histologic sections. The nearly full-length 18S rRNA gene sequence (1588 bp) was identical to a previously described piroplasm from North American river otters from North Carolina. Phylogenetically, based on the 18S rRNA gene sequence, the otter Babesia sp. was in a sister group with a clade that included several strains of Babesia microti-like species including Babesia sp. from badgers (Meles meles), Babesia vulpes, and Babesia sp. from raccoons (Procyon lotor). To better understand the distribution and genetic variability of this Babesia species, otters from four states in the eastern U.S. and California were tested. Overall, 30 of 57 (53%) otters were positive for Babesia sp. None of four otters from California were positive, but prevalences in eastern states were generally high, 5/9 (55%) in Georgia, 7/14 (50%) in South Carolina, 10/17 (59%) in North Carolina, and 8/13 (62%) in Pennsylvania). Partial 18S rRNA gene sequences from all populations were identical to the clinical case sequence. No Babesia sensu stricto infections were detected. There were six unique COI sequences (937 bp) detected in 18 positive otters. The most common lineage (A) was detected in 12 of 18 (67%) samples from Georgia, North Carolina, South Carolina, and Pennsylvania. Lineage B was found in two otters and the remaining lineage types were found in single otters. These six lineages were 99-99.8% similar to each other and were < 88% similar to related parasites such as B. vulpes, B. microti-like species of raccoons, B. microti, and B. rodhaini. Phylogenetically, the Babesia sp. of otters grouped together in a well-supported clade separate from a sister group including B. vulpes from fox (Vulpes vulpes) and domestic dogs. In conclusion, this report demonstrates that this piroplasm is a potential pathogen of North American river otters and the parasite is widespread in otter populations in the eastern United States.


Subject(s)
Babesia microti , Babesia , Babesiosis , Dog Diseases , Otters , Animals , Babesia/genetics , Babesia microti/genetics , Babesiosis/parasitology , Dog Diseases/parasitology , Dogs , Foxes , Male , Otters/parasitology , Prevalence , RNA, Ribosomal, 18S/genetics , Raccoons/parasitology
18.
J Am Vet Med Assoc ; 238(3): 311-7, 2011 Feb 01.
Article in English | MEDLINE | ID: mdl-21281213

ABSTRACT

OBJECTIVE: To determine the prevalence of infectious diseases of animal and zoonotic importance in cats and dogs rescued and transferred from the Gulf Coast region following Hurricane Katrina. DESIGN: Cross-sectional study. ANIMALS: 414 dogs and 56 cats rescued and transferred from the Gulf Coast region within 4 months after the hurricane. PROCEDURES: EDTA-anticoagulated blood and serum samples were tested via PCR and serologic assays for infectious diseases. RESULTS: In dogs, prevalence was highest for anti-West Nile virus (WNV) antibodies (218/390 [55.9%]), Dirofilaria immitis antigen (195/400 [48.8%]), anti-Toxoplasma gondii antibodies (92/366 [25.1%]), and hemotropic mycoplasma DNA (40/345 [11.9%]). The DNA of Bartonella spp, Ehrlichia spp, or Babesia spp or anti-canine influenza virus antibodies were identified in < 2% of dogs. In cats, prevalence was highest for antibodies against Bartonella spp and DNA of Bartonella spp combined (49/55 [89.1 %]), anti-T gondii antibodies (13/55 [23.6%]), hemotropic mycoplasma DNA (5/47 [10.6%]), anti-WNV antibodies (5/48 [10.4%]), D immitis antigen (4/50 [8.0%]), and anti-FIV antibodies (4/56 [7.1%]). A total of 308 (74.4%) dogs and 52 (92.9%) cats had evidence of previous or current vector-borne infections. CONCLUSIONS AND CLINICAL RELEVANCE: Cats and dogs rescued from the disaster region had evidence of multiple infectious diseases. The dispersal of potentially infectious animals to other regions of North America where some infections were not typically found could have contributed to new geographic ranges for these organisms or to underdiagnosis in affected animals because of a low index of suspicion in regions with low disease prevalence.


Subject(s)
Cat Diseases/epidemiology , Communicable Diseases/veterinary , Cyclonic Storms , Disasters , Dog Diseases/epidemiology , Animals , Cat Diseases/transmission , Cats , Communicable Diseases/epidemiology , Communicable Diseases/transmission , Dog Diseases/transmission , Dogs , Female , Male , Prevalence , United States/epidemiology
19.
J Vet Intern Med ; 35(3): 1542-1546, 2021 May.
Article in English | MEDLINE | ID: mdl-33755251

ABSTRACT

An 18-month-old intact male Schnauzer dog was evaluated for chronic, lifelong respiratory tract infections that were unresponsive to administration of a variety of antibiotics and corticosteroids. The dog developed persistent vomiting and diarrhea around 1 year of age that was minimally responsive to diet change, antibiotics, and corticosteroids. Despite supportive care, the dog was ultimately euthanized at 20 months of age due to persistent respiratory and gastrointestinal disease. Whole genome sequencing discovered a deleterious missense A/C mutation within the NAT10 gene, a gene essential for microtubule acetylation, appropriate ciliary development, and cytokinesis. Pipeline analysis of the genomes of 579 dogs from 55 breeds did not detect this mutation. Though never described in veterinary medicine, NAT10 mutation occurs in humans with ciliary aplasia, suggesting a pathophysiological mechanism for this dog and highlighting an associated mutation or possible novel genetic cause of chronic respiratory infections in dogs.


Subject(s)
Dog Diseases , Respiratory Tract Infections , Animals , Dog Diseases/genetics , Dogs , Male , Mutation , Mutation, Missense , Respiratory Tract Infections/genetics , Respiratory Tract Infections/veterinary , Whole Genome Sequencing/veterinary
20.
J Vet Intern Med ; 34(6): 2432-2437, 2020 Nov.
Article in English | MEDLINE | ID: mdl-33146909

ABSTRACT

BACKGROUND: Atovaquone and azithromycin (A&A) with supportive care improve survival rates in cats with cytauxzoonosis. Resistance to atovaquone via parasite cytochrome b gene (cytb) mutations occurs in other Apicomplexan protozoans but is not described in Cytauxzoon felis. OBJECTIVE: To serially characterize the C. felis cytb sequences from a cat that remained persistently infected after A&A treatment. ANIMAL: A cat with naturally occurring C. felis infection. METHODS: Case report of the anemic cat persistently infected with C. felis before, during and after A&A treatment. Cytauxzoon felis cytb genes were amplified and sequenced before, during and after A&A treatment. RESULTS: Cytauxzoon felis was detected before, during and after A&A treatment including samples collected 570 days after treatment. After A&A treatment, the cat's anemia improved slightly. Cytb sequencing revealed only wild-type cytb methionine (M128) in samples collected before treatment. In samples collected after treatment, the cytb coded for isoleucine (M128I) and valine (M128I) at 2- and 4-months after treatment. These M128I and M128V mutations persisted even after a repeat treatment course with a higher dose atovaquone combined with the standard dose of azithromycin. CONCLUSIONS AND CLINICAL IMPORTANCE: This report documents C. felis atovaquone resistance associated with M128 cytb mutations. This study suggests parasites with mutations of cytb M128 can be selected and impart resistance to A&A treatment even with higher atovaquone dosing.


Subject(s)
Cat Diseases , Felis , Protozoan Infections, Animal , Animals , Atovaquone/therapeutic use , Azithromycin/therapeutic use , Cat Diseases/drug therapy , Cats , Cytochromes b/genetics , Mutation
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