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1.
Vet Med Sci ; 10(4): e1537, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39011594

ABSTRACT

OBJECTIVES: The standard treatment for canine and feline meningiomas includes radiotherapy, surgical excision or combined therapy. However, new therapeutic approaches are required due to the possible recurrence or progression of meningiomas despite initial therapy. Adjunctive therapy with synthetic long-acting somatostatin (SST) analogues has been described in humans with SST-expressing tumours. The expression of SST receptors (SSTRs) by feline meningiomas is currently unknown, and there are little data about canine meningiomas. We hypothesized that SSTR is expressed by canine and feline meningiomas (S1). METHODS: Seven canines and 11 felines with histologically confirmed meningiomas underwent STTR screening. RNA expressions of SSTR1, SSTR2, SSTR3 and SSTR5 (canine) and SSTR1-SSTR 5 (feline) in fresh frozen and formalin-fixed and paraffin-embedded (FFPE) samples were investigated using real-time (RT)-qPCR. The expression of SSTR1 and SSTR2 in FFPE samples was evaluated using immunohistochemistry (IHC). The specificity of applied antibodies for canine and feline species was confirmed by western blotting. RESULTS: In canine meningiomas (n = 7), RNA expression of SSTR1, SSTR2 and SSTR5 was detected in all samples; SSTR3 RNA expression was detected in only 33% of samples. In feline meningiomas (n = 12), RNA expression of SSTR1, SSTR4, SSTR5 and SSTR2 was detected in 91%, 46%, 46% and 36% of samples, respectively; SSTR3 was not expressed. Overall, the detection rate was lower in FFPE samples. IHC revealed the expression of SSTR1 and SSTR2 in all samples from both species. However, it is important to exercise caution when interpreting IHC results due to the presence of diffuse background staining. CONCLUSIONS: SSTRs are widely expressed in canine and feline meningiomas, thereby encouraging further studies investigating SSTR expression to conduct trials about the effect of adjunctive therapy with long-acting SST-analogues.


Subject(s)
Cat Diseases , Dog Diseases , Meningioma , Receptors, Somatostatin , Receptors, Somatostatin/metabolism , Receptors, Somatostatin/genetics , Animals , Dogs , Cats , Cat Diseases/metabolism , Cat Diseases/genetics , Meningioma/veterinary , Meningioma/metabolism , Meningioma/genetics , Dog Diseases/metabolism , Dog Diseases/genetics , Meningeal Neoplasms/veterinary , Meningeal Neoplasms/metabolism , Meningeal Neoplasms/genetics , Female , Male
3.
Acta Vet Scand ; 66(1): 35, 2024 Jul 18.
Article in English | MEDLINE | ID: mdl-39026339

ABSTRACT

BACKGROUND: Brachycephalic obstructive airway syndrome (BOAS), observed in many flat-faced dog breeds, is one of the most urgent welfare problems in pedigree dogs. Various breeding schemes against BOAS have been implemented in many countries during recent years, but their impact on breed health remains unknown. The BOAS breeding test, used by the Finnish Kennel Club (FKC), includes an exercise component with a recovery assessment, BOAS grading by a veterinarian that evaluates upper respiratory signs before and after exercise, and a nostril stenosis assessment. The aim of our study was to evaluate BOAS breeding test results and estimate the heritability of the BOAS grade using parent-offspring regression from FKC data collected during 2017-2022. RESULTS: The majority (80%) of dogs (n = 957) participating in FKC BOAS testing were English Bulldogs, French Bulldogs, and Pugs. In 2022, 89-100% of the litters from these three breeds registered with the FKC had at least one parent tested for BOAS. The proportion of dogs failing the exercise test was highest in English Bulldogs (11%), followed by French Bulldogs (4%) and Pugs (3%). In these three breeds, moderate to severe BOAS signs were reported in 28%, 22% and 30% of dogs, respectively. The proportion of moderate to severe nostril stenosis was highest (71%) in Pugs, followed by French Bulldogs (55%), and English Bulldogs (40%). Estimates of heritability for BOAS grade were separately calculated for these three breeds and for all dogs, and the estimates were moderate to high, ranging from 0.39 to 0.58. CONCLUSIONS: The exercise test alone did not sufficiently identify dogs with moderate to severe BOAS signs. To better consider the complex nature of BOAS and breed differences, exercise tolerance, the severity of upper respiratory signs (BOAS grade) and nostril stenosis should all be assessed together in breeding animals. The heritability estimates for veterinary-assessed BOAS grade indicated that BOAS grade could be used in selective breeding to obtain less-affected offspring.


Subject(s)
Breeding , Dog Diseases , Animals , Dogs/genetics , Dogs/physiology , Dog Diseases/genetics , Dog Diseases/physiopathology , Finland , Female , Male , Airway Obstruction/veterinary , Airway Obstruction/genetics , Airway Obstruction/physiopathology , Craniosynostoses/veterinary , Craniosynostoses/genetics , Craniosynostoses/physiopathology
4.
Genes (Basel) ; 15(6)2024 May 23.
Article in English | MEDLINE | ID: mdl-38927597

ABSTRACT

A 23-month-old neutered male dog of unknown ancestry presented with a history of progressive neurological signs that included anxiety, cognitive impairment, tremors, seizure activity, ataxia, and pronounced visual impairment. The clinical signs were accompanied by global brain atrophy. Due to progression in the severity of disease signs, the dog was euthanized at 26 months of age. An examination of the tissues collected at necropsy revealed dramatic intracellular accumulations of autofluorescent inclusions in the brain, retina, and cardiac muscle. The inclusions were immunopositive for subunit c of mitochondrial ATP synthase, and their ultrastructural appearances were similar to those of lysosomal storage bodies that accumulate in some neuronal ceroid lipofuscinosis (NCL) diseases. The dog also exhibited widespread neuroinflammation. Based on these findings, the dog was deemed likely to have suffered from a form of NCL. A whole genome sequence analysis of the proband's DNA revealed a homozygous C to T substitution that altered the intron 3-exon 4 splice site of CLN6. Other mutations in CLN6 cause NCL diseases in humans and animals, including dogs. The CLN6 protein was undetectable with immunolabeling in the tissues of the proband. Based on the clinical history, fluorescence and electron-microscopy, immunohistochemistry, and molecular genetic findings, the disorder in this dog was classified as an NCL resulting from the absence of the CLN6 protein. Screening the dog's genome for a panel of breed-specific polymorphisms indicated that its ancestry included numerous breeds, with no single breed predominating. This suggests that the CLN6 disease variant is likely to be present in other mixed-breed dogs and at least some ancestral breeds, although it is likely to be rare since other cases have not been reported to date.


Subject(s)
Dog Diseases , Neuronal Ceroid-Lipofuscinoses , Neuronal Ceroid-Lipofuscinoses/genetics , Neuronal Ceroid-Lipofuscinoses/veterinary , Neuronal Ceroid-Lipofuscinoses/pathology , Animals , Dogs , Male , Dog Diseases/genetics , Dog Diseases/pathology , RNA Splice Sites/genetics , Membrane Proteins/genetics , Mitochondrial Proton-Translocating ATPases/genetics , Brain/pathology , Brain/metabolism , Mutation
5.
Front Immunol ; 15: 1397590, 2024.
Article in English | MEDLINE | ID: mdl-38933260

ABSTRACT

Chronic inflammatory enteropathy (CIE) is a common condition in dogs causing recurrent or persistent gastrointestinal clinical signs. Pathogenesis is thought to involve intestinal mucosal inflammatory infiltrates, but histopathological evaluation of intestinal biopsies from dogs with CIE fails to guide treatment, inform prognosis, or correlate with clinical remission. We employed single-cell RNA sequencing to catalog and compare the diversity of cells present in duodenal mucosal endoscopic biopsies from 3 healthy dogs and 4 dogs with CIE. Through characterization of 35,668 cells, we identified 31 transcriptomically distinct cell populations, including T cells, epithelial cells, and myeloid cells. Both healthy and CIE samples contributed to each cell population. T cells were broadly subdivided into GZMAhigh (putatively annotated as tissue resident) and IL7Rhigh (putatively annotated as non-resident) T cell categories, with evidence of a skewed proportion favoring an increase in the relative proportion of IL7Rhigh T cells in CIE dogs. Among the myeloid cells, neutrophils from CIE samples exhibited inflammatory (SOD2 and IL1A) gene expression signatures. Numerous differentially expressed genes were identified in epithelial cells, with gene set enrichment analysis suggesting enterocytes from CIE dogs may be undergoing stress responses and have altered metabolic properties. Overall, this work reveals the previously unappreciated cellular heterogeneity in canine duodenal mucosa and provides new insights into molecular mechanisms which may contribute to intestinal dysfunction in CIE. The cell type gene signatures developed through this study may also be used to better understand the subtleties of canine intestinal physiology in health and disease.


Subject(s)
Dog Diseases , Duodenum , Gene Expression Profiling , Single-Cell Analysis , Transcriptome , Animals , Dogs , Duodenum/pathology , Duodenum/immunology , Duodenum/metabolism , Dog Diseases/genetics , Dog Diseases/immunology , Dog Diseases/pathology , Intestinal Mucosa/immunology , Intestinal Mucosa/metabolism , Intestinal Mucosa/pathology , Chronic Disease , Male , Female , T-Lymphocytes/immunology , T-Lymphocytes/metabolism
7.
Anim Genet ; 55(4): 612-620, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38866396

ABSTRACT

Neuronal ceroid lipofuscinosis (NCL) is a group of neurodegenerative disorders that occur in humans, dogs, and several other species. NCL is characterised clinically by progressive deterioration of cognitive and motor function, epileptic seizures, and visual impairment. Most forms present early in life and eventually lead to premature death. Typical pathological changes include neuronal accumulation of autofluorescent, periodic acid-Schiff- and Sudan black B-positive lipopigments, as well as marked loss of neurons in the central nervous system. Here, we describe a 19-month-old Schapendoes dog, where clinical signs were indicative of lysosomal storage disease, which was corroborated by pathological findings consistent with NCL. Whole genome sequencing of the affected dog and both parents, followed by variant calling and visual inspection of known NCL genes, identified a missense variant in CLN6 (c.386T>C). The variant is located in a highly conserved region of the gene and predicted to be harmful, which supports a causal relationship. The identification of this novel CLN6 variant enables pre-breeding DNA-testing to prevent future cases of NCL6 in the Schapendoes breed, and presents a potential natural model for NCL6 in humans.


Subject(s)
Dog Diseases , Mutation, Missense , Neuronal Ceroid-Lipofuscinoses , Neuronal Ceroid-Lipofuscinoses/genetics , Neuronal Ceroid-Lipofuscinoses/veterinary , Animals , Dogs/genetics , Dog Diseases/genetics , Membrane Proteins/genetics , Male , Female
8.
Sci Rep ; 14(1): 14087, 2024 06 18.
Article in English | MEDLINE | ID: mdl-38890407

ABSTRACT

Canine liposarcoma is an uncommon tumor that shares morphological similarities with its human counterpart. In dogs, the genetic features of this tumor are unknown and, based on immunohistochemical studies, amplification of the gene MDM2 and the mutation of TP53 are suspected. In this study 51 cases of primary liposarcomas were immunohistochemically stained for MDM2 and p53 and subjected to fluorescent in situ hybridization and next-generation sequencing to detect MDM2 amplification and TP53 mutations, respectively. MDM2 and p53 were expressed in 21 and 6 cases, respectively. MDM2 amplification and TP53 mutations were identified in 10 and 15 cases, respectively. Statistical analysis revealed an association of the myxoid subtype and the mitotic count with p53 expression and TP53 mutation. No association was found between MDM2 amplification and MDM2 expression or tumor subtype. These results suggest that despite morphological similarities, canine liposarcoma differs from its human counterpart, for which MDM2 amplification is diagnostic for well differentiated and de-differentiated variants, and TP53 mutations are more common in pleomorphic liposarcoma rather than the myxoid one as occur in our cases. Furthermore, canine myxoid liposarcoma likely represents a distinct disease rather than a mere morphological variant.


Subject(s)
Dog Diseases , Liposarcoma , Proto-Oncogene Proteins c-mdm2 , Tumor Suppressor Protein p53 , Proto-Oncogene Proteins c-mdm2/genetics , Proto-Oncogene Proteins c-mdm2/metabolism , Dogs , Animals , Liposarcoma/genetics , Liposarcoma/veterinary , Liposarcoma/pathology , Liposarcoma/metabolism , Tumor Suppressor Protein p53/genetics , Tumor Suppressor Protein p53/metabolism , Dog Diseases/genetics , Dog Diseases/pathology , Mutation , Female , Male , In Situ Hybridization, Fluorescence , High-Throughput Nucleotide Sequencing , Gene Amplification , Immunohistochemistry
9.
J Vet Med Sci ; 86(7): 737-743, 2024 Jul 02.
Article in English | MEDLINE | ID: mdl-38825482

ABSTRACT

Non-neoplastic bone marrow disorders are main causes of non-regenerative anemia in dogs. Despite the high incidence of the diseases, their molecular pathophysiology has not been elucidated. We previously reported that Miniature Dachshund (MD) was a predisposed breed to be diagnosed with non-neoplastic bone marrow disorders in Japan, and immunosuppressive treatment-resistant MDs showed higher number of platelets and morphological abnormalities in peripheral blood cells. These data implied that treatment-resistant MDs might possess distinct pathophysiological features from treatment-responsive MDs. Therefore, we conducted transcriptomic analysis of bone marrow specimens to investigate the pathophysiology of treatment-resistant MDs. Transcriptomic analysis comparing treatment-resistant MDs and healthy control dogs identified 179 differentially expressed genes (DEGs). Pathway analysis using these DEGs showed that "Wnt signaling pathway" was a significantly enriched pathway. We further examined the expression levels of DEGs associated with Wnt signaling pathway and confirmed the upregulation of AXIN2 and CCND2 and the downregulation of SFRP2 in treatment-resistant MDs compared with treatment-responsive MDs and healthy control dogs. This alteration implied the activation of Wnt signaling pathway in treatment-resistant MDs. The activation of Wnt signaling pathway has been reported in human patients with myelodysplastic syndrome (MDS), which is characterized by dysplastic features of blood cells. Therefore, the results of this study implied that treatment-resistant MDs have distinct molecular pathological features from treatment-responsive MDs and the pathophysiology of treatment-resistant MDs might be similar to that of human MDS patients.


Subject(s)
Dog Diseases , Gene Expression Profiling , Dogs , Animals , Dog Diseases/genetics , Dog Diseases/pathology , Gene Expression Profiling/veterinary , Bone Marrow/pathology , Myelodysplastic Syndromes/veterinary , Myelodysplastic Syndromes/genetics , Myelodysplastic Syndromes/pathology , Transcriptome , Male , Female , Wnt Signaling Pathway , Bone Marrow Diseases/veterinary , Bone Marrow Diseases/genetics , Bone Marrow Diseases/pathology
10.
Mol Biol Rep ; 51(1): 651, 2024 May 11.
Article in English | MEDLINE | ID: mdl-38734860

ABSTRACT

BACKGROUND: Canine atopic dermatitis (CAD) is a common genetically predisposed, inflammatory, and pruritic skin disorder that affects dogs globally. To date, there are no specific biomarkers available to diagnose CAD, and the current diagnosis is based on a combination of criteria including patient history, clinical signs, and exclusion of other relevant differential diagnoses. METHODS AND RESULTS: We examined the gene expression of phosphodiesterase 4D (PDE4D) in peripheral blood mononuclear cells (PBMCs), as well as miR-203 and miR-483 in plasma, in three groups: healthy dogs, CAD dogs, and other inflammatory pruritic skin diseases (OIPSD) such as pemphigus foliaceus, scabies, cutaneous lymphoma, and dermatophytosis. Our results showed that PDE4D gene expression in the CAD group is statistically higher compared to those in the healthy and OIPSD groups, suggesting PDE4D may be a specific marker for CAD. Nevertheless, no correlation was found between PDE4D gene expression levels and the lesion severity gauged by CAD severity index-4 (CADESI-4). We also showed that miR-203 is a generic marker for clinical dermatitis and differentiates both CAD and OIPSD inflammatory conditions from healthy controls. CONCLUSIONS: We show that PDE4D is a potential marker to differentiate CAD from non-atopic healthy and OIPSD while miR-203 may be a potential marker for general dermatologic inflammation. Future study of PDE4D and miR-203 on a larger scale is warranted.


Subject(s)
Biomarkers , Cyclic Nucleotide Phosphodiesterases, Type 4 , Dermatitis, Atopic , Dog Diseases , MicroRNAs , Dermatitis, Atopic/genetics , Dermatitis, Atopic/veterinary , Dermatitis, Atopic/blood , Dermatitis, Atopic/diagnosis , Animals , Dogs , MicroRNAs/genetics , MicroRNAs/blood , Cyclic Nucleotide Phosphodiesterases, Type 4/genetics , Cyclic Nucleotide Phosphodiesterases, Type 4/metabolism , Biomarkers/blood , Dog Diseases/genetics , Dog Diseases/diagnosis , Dog Diseases/blood , Male , Leukocytes, Mononuclear/metabolism , Female
11.
Anim Genet ; 55(4): 692-696, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38742646

ABSTRACT

Split paw pad disease is a scarcely defined phenotype characterized by skin lesions on the paw pads of dogs. We studied a family of German Shepherd dogs, in which four dogs developed intermittent paw pad lesions and lameness. The paw pads of two of the affected dogs were biopsied and demonstrated cleft formation in the stratum spinosum and stratum corneum, the outermost layers of the epidermis. Whole genome sequencing data from an affected dog revealed a private heterozygous 18 bp in frame deletion in the KRT5 gene. The deletion NM_001346035.1:c.988_1005del or NP_001332964.1:p.(Asn330_Asp335del) is predicted to lead to a loss of six amino acids in the L12 linker domain of the encoded keratin 5. KRT5 variants in human patients lead to various subtypes of epidermolysis bullosa simplex (EBS). Localized EBS is the mildest of the KRT5-related human diseases and may be caused by variants affecting the L12 linker domain of keratin 5. We therefore think that the detected KRT5 deletion in dogs represents a candidate causal variant for the observed skin lesions in dogs. However, while the clinical phenotype of KRT5-mutant dogs of this study closely resembles human patients with localized EBS, there are differences in the histopathology. EBS is defined by cleft formation within the basal layer of the epidermis while the cleft formation in the dogs described herein occurred in the outermost layers, a hallmark of split paw pad disease. Our study provides a basis for further studies into the exact relation of split paw pad disease and EBS.


Subject(s)
Dog Diseases , Epidermolysis Bullosa Simplex , Keratin-5 , Animals , Dogs , Keratin-5/genetics , Dog Diseases/genetics , Epidermolysis Bullosa Simplex/genetics , Epidermolysis Bullosa Simplex/veterinary , Epidermolysis Bullosa Simplex/pathology , Sequence Deletion , Phenotype , Male , Pedigree , Female
12.
Anim Genet ; 55(4): 687-691, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38752391

ABSTRACT

Variants in RPGRIP1 and MAP9, termed RPGRIP1ins44 and MAP9del respectively, are both associated with a form of canine progressive retinal atrophy referred to as RPGRIP1-CRD and have both been demonstrated to modify the development and progression of this disease. In the current study both variants were genotyped in at least 50 dogs of 132 diverse breeds and the data reveal that both segregate in multiple breeds. Individually, each variant is common within largely non-overlapping subsets of breed, and there is a negative correlation between their frequencies within breeds that segregate both variants. The frequency of both variants exceeds 0.05 in a single breed only, the Miniature Longhaired Dachshund. These data indicate that both variants are likely to be ancient and predate the development and genetic isolation of modern dog breeds. That both variants are present individually at high frequency in multiple breeds is consistent with the hypothesis that homozygosity of either variant alone is not associated with a clinically relevant phenotype, whereas the negative correlation between the two variants is consistent with the application of selective pressure, from dog breeders, against homozygosity at both loci, probably due to the more severe phenotype associated with homozygosity at both loci.


Subject(s)
Dog Diseases , Animals , Dogs/genetics , Dog Diseases/genetics , Breeding , Genotype , Phenotype , Genes, Modifier , Retinal Degeneration/veterinary , Retinal Degeneration/genetics , Homozygote
14.
J Vet Med Sci ; 86(7): 748-755, 2024 Jul 02.
Article in English | MEDLINE | ID: mdl-38811188

ABSTRACT

Nuclear expression of ß-catenin has been reported in canine intestinal epithelial tumors (IETs) and colorectal inflammatory polyps (CIPs) with dysplastic epithelia. However, the role of the Wnt/ß-catenin signaling pathway in these lesions remains unclear. To investigate the association between the nuclear ß-catenin expression and the activation of the Wnt/ß-catenin signaling pathway, immunohistochemistry and mutation analyses were conducted on 64 IETs and 20 CIPs. IETs and CIPs with ß-catenin nuclear and/or cytoplasm immunolabeling were classified as ß-catenin (+). The immunostaining scores of c-Myc and Cyclin D1 and Ki-67 index were significantly higher in ß-catenin (+) cases than in ß-catenin (-) cases. Identical APC mutations (p.E154D and p.K155X) were detected in 6/41 ß-catenin (+) IETs; all 6 of IETs with APC mutations were Jack Russell Terriers. CTNNB1 mutations were detected in 29/42 ß-catenin (+) IETs, 3/11 ß-catenin (+) CIPs, and 2/22 ß-catenin (-) IETs, most of which were hotspots associated with human colorectal carcinoma. In one Miniature Dachshund diagnosed with a CIP that subsequently developed into an IET, the same CTNNB1 mutation was detected in both lesions. The immunohistochemical results suggest that cell proliferative activity in ß-catenin (+) cases may be associated with activation of the Wnt/ß-catenin signaling pathway. The mutation analysis results suggest that CTNNB1 mutations may be associated with cytoplasmic ß-catenin accumulation in IET and CIP. Furthermore, the dysplastic epithelium in CIP may progress to IET through the activation of the Wnt/ß-catenin signaling pathway by the CTNNB1 mutation.


Subject(s)
Dog Diseases , Mutation , Wnt Signaling Pathway , beta Catenin , Animals , Dogs , beta Catenin/genetics , beta Catenin/metabolism , Dog Diseases/genetics , Dog Diseases/pathology , Dog Diseases/metabolism , Wnt Signaling Pathway/genetics , Female , Intestinal Mucosa/metabolism , Intestinal Mucosa/pathology , Male , Immunohistochemistry/veterinary , Intestinal Neoplasms/veterinary , Intestinal Neoplasms/genetics , Intestinal Neoplasms/pathology , Intestinal Neoplasms/metabolism
15.
Sci Rep ; 14(1): 10346, 2024 05 06.
Article in English | MEDLINE | ID: mdl-38710903

ABSTRACT

Mammals are generally resistant to Mycobacterium avium complex (MAC) infections. We report here on a primary immunodeficiency disorder causing increased susceptibility to MAC infections in a canine breed. Adult Miniature Schnauzers developing progressive systemic MAC infections were related to a common founder, and pedigree analysis was consistent with an autosomal recessive trait. A genome-wide association study and homozygosity mapping using 8 infected, 9 non-infected relatives, and 160 control Miniature Schnauzers detected an associated region on chromosome 9. Whole genome sequencing of 2 MAC-infected dogs identified a codon deletion in the CARD9 gene (c.493_495del; p.Lys165del). Genotyping of Miniature Schnauzers revealed the presence of this mutant CARD9 allele worldwide, and all tested MAC-infected dogs were homozygous mutants. Peripheral blood mononuclear cells from a dog homozygous for the CARD9 variant exhibited a dysfunctional CARD9 protein with impaired TNF-α production upon stimulation with the fungal polysaccharide ß-glucan that activates the CARD9-coupled C-type lectin receptor, Dectin-1. While CARD9-deficient knockout mice are susceptible to experimental challenges by fungi and mycobacteria, Miniature Schnauzer dogs with systemic MAC susceptibility represent the first spontaneous animal model of CARD9 deficiency, which will help to further elucidate host defense mechanisms against mycobacteria and fungi and assess potential therapies for animals and humans.


Subject(s)
CARD Signaling Adaptor Proteins , Dog Diseases , Genetic Predisposition to Disease , Genome-Wide Association Study , Mycobacterium avium Complex , Mycobacterium avium-intracellulare Infection , Animals , CARD Signaling Adaptor Proteins/genetics , Dogs , Mycobacterium avium-intracellulare Infection/veterinary , Mycobacterium avium-intracellulare Infection/genetics , Mycobacterium avium-intracellulare Infection/microbiology , Mycobacterium avium Complex/genetics , Dog Diseases/genetics , Dog Diseases/microbiology , Sequence Deletion , Pedigree , Female , Male , Whole Genome Sequencing , Homozygote , Lectins, C-Type/genetics
16.
PLoS One ; 19(5): e0300813, 2024.
Article in English | MEDLINE | ID: mdl-38753730

ABSTRACT

Myxomatous mitral valve disease (MMVD) is the most common cardiovascular disorder in dogs with a high prevalence, accounting for approximately 75% of all canine heart disease cases. MMVD is a complex disease and shows variable progression from mild valve leakage to severe regurgitation, potentially leading to heart failure. However, the molecular mechanisms and age-related changes that govern disease progression, especially at the early stage (B1) before the development of discernable clinical signs, remain poorly understood. In this prospective study, we aimed to compare gene expression differences between blood samples of aged beagle dogs with stage B1 MMVD and those of healthy controls using RNA sequencing. Clinical evaluation was also conducted, which revealed minimal differences in radiographic and echocardiographic measurements despite distinct biomarker variations between the two groups. Comparative transcriptomics revealed differentially expressed genes associated with extracellular matrix remodeling, prostaglandin metabolism, immune modulation, and interferon-related pathways, which bear functional relevance for MMVD. In particular, the top 10 over- and under-expressed genes represent promising candidates for influencing pathogenic changes in MMVD stage B1. Our research findings, which include identified variations in clinical markers and gene expression, enhance our understanding of MMVD. Furthermore, they underscore the need for further research into early diagnosis and treatment strategies, as, to the best of our knowledge, no prior studies have explored the precise molecular mechanisms of stage B1 in MMVD through total RNA sequencing.


Subject(s)
Dog Diseases , Sequence Analysis, RNA , Animals , Dogs , Dog Diseases/genetics , Dog Diseases/pathology , Male , Female , Mitral Valve/pathology , Heart Valve Diseases/genetics , Heart Valve Diseases/veterinary , Heart Valve Diseases/pathology , Transcriptome , Prospective Studies , Gene Expression Profiling
17.
Vet Rec ; 194(12): e3895, 2024 Jun 15.
Article in English | MEDLINE | ID: mdl-38704817

ABSTRACT

BACKGROUND: Pugs commonly present with thoracolumbar myelopathy, also known as pug dog myelopathy (PDM), which is clinically characterised by progressive signs involving the pelvic limbs, no apparent signs of pain and, often, incontinence. In addition to meningeal fibrosis and focal spinal cord destruction, histopathology has confirmed lymphohistiocytic infiltrates in the central nervous system (CNS) in a considerable number of pugs with PDM. Lymphohistiocytic CNS inflammation also characterises necrotising meningoencephalitis (NME) in pugs. This study aimed to investigate the potential contribution of an immunological aetiology to the development of PDM. METHODS: The concentrations of glial fibrillary acidic protein (GFAP) in serum and CSF and of anti-GFAP autoantibodies in CSF were measured with an ELISA. In addition, a commercial test was used for genetic characterisation of the dog leukocyte antigen class II haplotype, which is associated with NME susceptibility. RESULTS: This study included 87 dogs: 52 PDM pugs, 14 control pugs, four NME pugs and 17 dogs of breeds other than pugs that were investigated for neurological disease (neuro controls). Anti-GFAP autoantibodies were present in 15 of 19 (79%) of the PDM pugs tested versus six of 16 (38%) of the neuro controls tested (p = 0.018). All 18 PDM pugs evaluated had detectable CSF GFAP. Serum GFAP was detected in two of three (67%) of the NME pugs and in two of 11 (18%) of the control pugs but not in any of the 40 tested PDM pugs. Male pugs heterozygous for the NME risk haplotype had an earlier onset of clinical signs (70 months) compared to male pugs without the risk haplotype (78 months) (p = 0.036). LIMITATIONS: The study was limited by the lack of healthy dogs of breeds other than pugs and the small numbers of control pugs and pugs with NME. CONCLUSIONS: The high proportion of PDM pugs with anti-GFAP autoantibodies and high CSF GFAP concentrations provide support for a potential immunological contribution to the development of PDM.


Subject(s)
Autoantibodies , Dog Diseases , Glial Fibrillary Acidic Protein , Meningoencephalitis , Spinal Cord Diseases , Animals , Dogs , Dog Diseases/genetics , Dog Diseases/immunology , Meningoencephalitis/veterinary , Meningoencephalitis/genetics , Meningoencephalitis/immunology , Autoantibodies/blood , Glial Fibrillary Acidic Protein/genetics , Glial Fibrillary Acidic Protein/immunology , Male , Spinal Cord Diseases/veterinary , Spinal Cord Diseases/genetics , Female , Genotype , Genetic Predisposition to Disease
18.
Vet Comp Oncol ; 22(2): 295-302, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38659202

ABSTRACT

Canine urothelial carcinoma (UC) and prostate carcinoma (PC) frequently exhibit the BRAFV595E mutation, akin to the BRAFV600E mutation common in various human cancers. Since the initial discovery of the BRAF mutation in canine cancers in 2015, PCR has been the standard method for its detection in both liquid and tissue biopsies. Considering the similarity between the canine BRAFV595E and human BRAFV600E mutations, we hypothesized that immunohistochemistry (IHC) using a BRAFV600E-specific antibody could effectively identify the canine mutant BRAFV595E protein. We tested 122 canine UC (bladder n = 108, urethra n = 14), 21 PC, and benign tissue using IHC and performed digital droplet PCR (ddPCR) on all 122 UC and on 14 IHC positive PC cases. The results from ddPCR and IHC were concordant in 99% (135/136) of the tumours. Using IHC, BRAFV595E was detected in 72/122 (59%) UC and 14/21 (65%) PC. Staining of all benign bladder and prostate tissues was negative. If present, mutant BRAF staining was homogenous, with rare intratumour heterogeneity in three (4%) cases of UC. Additionally, the BRAFV595E mutation was more prevalent in tumours with urothelial morphology, and less common in glandular PC or UC with divergent differentiation. This study establishes that BRAFV600-specific IHC is a reliable and accurate method for detecting the mutant BRAFV595E protein in canine UC and PC. Moreover, the use of IHC, especially with tissue microarrays, provides a cost-efficient test for large-scale screening of canine cancers for the presence of BRAF mutations. This advancement paves the way for further research to define the prognostic and predictive role of this tumour marker in dogs and use IHC to stratify dogs for the treatment with BRAF inhibitors.


Subject(s)
Dog Diseases , Immunohistochemistry , Mutation , Prostatic Neoplasms , Proto-Oncogene Proteins B-raf , Urinary Bladder Neoplasms , Dogs , Animals , Dog Diseases/genetics , Dog Diseases/diagnosis , Dog Diseases/pathology , Proto-Oncogene Proteins B-raf/genetics , Male , Prostatic Neoplasms/veterinary , Prostatic Neoplasms/genetics , Prostatic Neoplasms/diagnosis , Prostatic Neoplasms/metabolism , Prostatic Neoplasms/pathology , Immunohistochemistry/veterinary , Urinary Bladder Neoplasms/veterinary , Urinary Bladder Neoplasms/genetics , Urinary Bladder Neoplasms/metabolism , Urinary Bladder Neoplasms/pathology , Urinary Bladder Neoplasms/diagnosis , Female , Carcinoma/veterinary , Carcinoma/genetics , Carcinoma/pathology , Carcinoma/metabolism , Carcinoma/diagnosis , Carcinoma, Transitional Cell/veterinary , Carcinoma, Transitional Cell/genetics , Carcinoma, Transitional Cell/metabolism , Carcinoma, Transitional Cell/diagnosis , Carcinoma, Transitional Cell/pathology
19.
G3 (Bethesda) ; 14(6)2024 Jun 05.
Article in English | MEDLINE | ID: mdl-38682429

ABSTRACT

In humans, the prevalence of congenital microphthalmia is estimated to be 0.2-3.0 for every 10,000 individuals, with nonocular involvement reported in ∼80% of cases. Inherited eye diseases have been widely and descriptively characterized in dogs, and canine models of ocular diseases have played an essential role in unraveling the pathophysiology and development of new therapies. A naturally occurring canine model of a syndromic disorder characterized by microphthalmia was discovered in the Portuguese water dog. As nonocular findings included tooth enamel malformations, stunted growth, anemia, and thrombocytopenia, we hence termed this disorder Canine Congenital Microphthalmos with Hematopoietic Defects. Genome-wide association study and homozygosity mapping detected a 2 Mb candidate region on canine chromosome 4. Whole-genome sequencing and mapping against the Canfam4 reference revealed a Short interspersed element insertion in exon 2 of the DNAJC1 gene (g.74,274,883ins[T70]TGCTGCTTGGATT). Subsequent real-time PCR-based mass genotyping of a larger Portuguese water dog population found that the homozygous mutant genotype was perfectly associated with the Canine Congenital Microphthalmos with Hematopoietic Defects phenotype. Biallelic variants in DNAJC21 are mostly found to be associated with bone marrow failure syndrome type 3, with a phenotype that has a certain degree of overlap with Fanconi anemia, dyskeratosis congenita, Shwachman-Diamond syndrome, Diamond-Blackfan anemia, and reports of individuals showing thrombocytopenia, microdontia, and microphthalmia. We, therefore, propose Canine Congenital Microphthalmos with Hematopoietic Defects as a naturally occurring model for DNAJC21-associated syndromes.


Subject(s)
Disease Models, Animal , Genome-Wide Association Study , Microphthalmos , Animals , Dogs , Microphthalmos/genetics , Microphthalmos/veterinary , Phenotype , Genotype , Homozygote , Dog Diseases/genetics , Syndrome , Female , Male
20.
Nihon Yakurigaku Zasshi ; 159(4): 192-197, 2024 Jul 01.
Article in Japanese | MEDLINE | ID: mdl-38684401

ABSTRACT

Humans have a highly developed retina and obtain approximately 80% of their external information from vision. Photoreceptor cells, which are located in the outermost layer of the neuroretina and recognize light signals, are highly specialized sensory cilia that share structural and functional features with primary cilia. Genetic disorders of the retina or photoreceptor cells are termed inherited retinal diseases (IRDs) and are caused by variants in one of more than 280 genes identified to date. Among the genes responsible for IRDs, many are shared with those responsible for ciliopathies. In studies of inherited diseases, mouse models are commonly used due to their advantages in breeding, handling, and relative feasibility in creating pathological models. On the other hand, structural, functional, and genetic differences in the retina between mice and humans can be a barrier in IRD research. To overcome the limitations of mouse models, larger vertebrate models of IRDs can be a useful research subject. In particular, canines have retinas that are structurally and functionally similar and eyes that are anatomically comparable to those of humans. In addition, due to their unique veterinary clinical surveillance and genetic background, naturally occurring canine IRDs are more likely to be identified than in other large animals. To date, pathogenic mutations related to canine IRDs have been identified in more than 30 genes, contributing to the understanding of pathogeneses and to the development of new therapies. This review provides an overview of the roles of the canine IRD models in ciliopathy research.


Subject(s)
Ciliopathies , Disease Models, Animal , Retinal Degeneration , Animals , Dogs , Retinal Degeneration/genetics , Retinal Degeneration/therapy , Ciliopathies/genetics , Ciliopathies/therapy , Humans , Dog Diseases/genetics , Dog Diseases/therapy
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