Dog Primary Cells
Dogs represent one of the most clinically relevant large-animal models in veterinary medicine and translational biomedical research. Many naturally occurring canine diseases—including cancer, cardiovascular disorders, metabolic diseases, and neurological conditions—share important pathological and molecular features with their human counterparts. As a result, canine primary cells have become valuable tools for comparative biology, veterinary therapeutics, drug development, and disease mechanism studies.
Our canine primary cell portfolio includes epithelial, endothelial, fibroblast, smooth muscle, immune, stromal, and organ-specific cell populations derived from multiple tissues and physiological systems. These physiologically relevant models support research in veterinary medicine, comparative oncology, immunology, regenerative medicine, toxicology, and translational drug discovery.
Our Canine Primary Cell Portfolio Highlights
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Extensive Organ Coverage
- Liver, kidney, lung, heart, brain, spleen, and gastrointestinal tissues
- Reproductive, endocrine, urinary, and vascular systems
- Bone marrow and immune-related tissues
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Diverse Cellular Lineages
- Epithelial, endothelial, fibroblast, and smooth muscle cells
- Immune and stromal cell populations
- Specialized tissue-resident cell types
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Advanced Veterinary Models
- Hepatocytes, Kupffer cells, and hepatic stellate cells
- Sertoli and Leydig cells
- Bone marrow-derived immune and endothelial cells
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Veterinary Disease Research
Investigate disease mechanisms, tissue pathology, and therapeutic responses in clinically relevant canine models.
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Comparative Oncology
Utilize canine cell systems to study tumor biology, tumor microenvironments, and translational cancer therapies.
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Cardiovascular & Metabolic Studies
Support research involving vascular biology, cardiac remodeling, metabolic regulation, and organ-specific physiology.
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Drug Discovery & Safety Assessment
Evaluate pharmacological activity, cellular responses, and safety profiles using physiologically relevant canine models.
Why are canine primary cells widely used in translational research?
Many naturally occurring canine diseases closely resemble human disorders in terms of pathology, genetics, and clinical progression. This makes canine primary cells valuable tools for bridging veterinary and human biomedical research.
How do canine oncology models complement human cancer research?
Spontaneous tumors in dogs often develop within intact immune systems and complex tissue microenvironments, providing insights into tumor biology, disease progression, and therapeutic responses that may complement human oncology studies.
What applications are supported by canine liver-derived cells?
Canine hepatocytes, Kupffer cells, hepatic stellate cells, and liver endothelial cells are commonly used in studies of metabolism, drug toxicity, fibrosis, inflammation, and liver disease mechanisms.
Why are canine endothelial cells valuable for vascular research?
Our portfolio includes endothelial cells derived from aorta, coronary artery, brain, kidney, retina, lung, and other vascular beds, enabling investigations of angiogenesis, vascular signaling, endothelial barrier function, and cardiovascular disease mechanisms.
Can canine immune cells support immunology studies?
Yes. Canine T lymphocytes, CD14+ monocytes, dendritic cells, macrophages, neutrophils, and peripheral blood-derived cells can be used to investigate immune responses, inflammation, immunotherapies, and host-pathogen interactions.
Are canine primary cells suitable for veterinary drug development?
Absolutely. Canine primary cells provide physiologically relevant in vitro models for evaluating drug efficacy, target engagement, toxicity, and safety profiles during veterinary pharmaceutical development programs.
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Disease
- Acute Lymphocytic Leukemia (ALL) (15)
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- Normal (2466)
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Species: Dog
Source: Liver
Cell Type: Hepatocyte
Disease: Normal
Species: Dog
Source: Bile Duct
Cell Type: Epithelial Cell; Cholangiocyte
Disease: Normal
Species: Dog
Source: Brain
Cell Type: Astrocyte
Disease: Normal
Species: Dog
Source: Blood; Peripheral Blood
Cell Type: T Cell; Lymphocyte
Disease: Normal
Species: Dog
Source: Umbilical Cord; Vein
Cell Type: Endothelial Cell
Disease: Normal
Species: Dog
Source: Peripheral Blood; Blood
Cell Type: Mononuclear Cell
Disease: Normal
Species: Dog
Source: Peripheral Blood; Blood
Cell Type: Monocyte
Disease: Normal
Species: Dog
Source: Cartilage
Cell Type: Chondrocyte
Disease: Normal
Species: Dog
Source: Heart
Cell Type: Cardiomyocyte
Disease: Normal
Species: Dog
Source: Urethra
Cell Type: Epithelial Cell
Disease: Normal
Species: Dog
Source: Blood
Cell Type: Red Blood Cell
Disease: Normal
Species: Dog
Source: Bone Marrow
Cell Type: CD34+ Cell
Disease: Normal
Species: Monkey
Source: Kidney
Cell Type: Epithelial Cell
Disease: Normal
Species: Dog
Source: Aorta
Cell Type: Fibroblast
Disease: Normal
Species: Dog
Source: Artery
Cell Type: Fibroblast
Disease: Normal
Species: Dog
Source: Brain
Cell Type: Fibroblast
Disease: Normal
Species: Dog
Source: Heart
Cell Type: Fibroblast
Disease: Normal
Species: Dog
Source: Colon; Intestine
Cell Type: Fibroblast
Disease: Normal





