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Primary Cells

Primary cells are isolated directly from fresh tissues using enzymatic or mechanical dissociation, without any genetic or artificial modification that could alter native physiology. Researchers can maintain these cells in vitro for a limited number of passages before undergoing replicative senescence. Due to their ability to closely mimic in vivo conditions in in vitro cell culture, primary cells are the gold standard for drug discovery, toxicology screening, disease modeling, and regenerative medicine research.

Our primary cells category encompasses various cell types of human primary cells and animal primary cells, including epithelial cells, fibroblasts, endothelial cells, neurons, stromal cells, immune cells, and more. Human primary cells (also termed primary human cells) are available from various human tissues and biosystems.

Within the digestive system subcategory, you may find primary liver cells, such as human primary hepatocytes. These primary human hepatocytes retain donor-specific metabolic enzyme activities, making them useful research models for drug metabolism and clearance studies. Other animal primary cell models include primary mouse hepatocytes.

Within the immune system subcategory, you can find immune cells of both myeloid and lymphoid lineages, derived from bone marrow, peripheral blood, and other immune tissues. Myeloid-lineage cells include monocytes and their differentiated forms, such as macrophages, including primary human macrophages. Primary human macrophages are used to model inflammatory responses, phagocytosis, and cytokine release. Lymphoid-lineage cells include natural killer cells, T lymphocytes, and B lymphocytes.

For neuroscience research, both neurons and glia cells serve as valuable cell models for studying nervous system function and disease. Primary human neurons are essential for studying neurodegenerative diseases like Alzheimer’s disease, Parkinson’s disease, and amyotrophic lateral sclerosis (ALS). Human primary neurons are also used in research on synaptic function, axonal transport, and neuronal network formation. Primary astrocytes, as a type of glial cell, are widely used to study neuronal support, neuroinflammation, blood-brain barrier support and regulation, and CNS injury responses.

This primary cell category also includes primary cell lines (referred to as finite cell lines or finite-life cell strains). These cells have extended but limited lifespan and retain many characteristics and functions of primary cells. Proper culture of these finite cell lines is critical to maintain phenotype, marker expression, and genetic stability. A typical primary cell line of fibroblasts undergos a limited number of population doublings, often approximately 40-60 (e.g., BJ, WI-38), before reaching cellular senescence.

In addition to human primary cells, Ascent Research also provides primary cells from multiple animal species: mouse primary cells (murine), rat cells, dog cells (canine), chicken cells, porcine cells, monkey cells, and cynomolgus monkey cells (cyno cells) for translational research. These animal-derived primary cells support comparative biology, disease modeling, and translational research.

Ascent Research supports a broad portfolio including epithelial cells, endothelial cells, microvascular endothelial cells, muscle cells, fibroblasts, adipocytes, keratinocytes, immune cells, mesenchymal cells, pericytes, neurons, and glial cells. Researchers seeking to buy human primary cells should prioritize low-passage, well-characterized products with donor information, as these factors help support experimental consistency and biological relevance.

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Mouse Scleral Fibroblasts

Research on the Mouse Scleral Fibroblasts is essential to the study of myopia progression, scleral thinning disorders, glaucoma-associated scleral remodeling, and post-surgical fibrosis. The eye…
Cat. No. ARP0648

Mouse Conjunctival Sac Fibroblasts

Research on the Mouse Conjunctival Sac Fibroblasts is essential to the study of experimental dry eye models, chemical burn-induced fibrosis, graft-versus-host disease ocular manifestations, and…
Cat. No. ARP0647

Mouse Gingival Fibroblasts

Research on the Mouse Gingival Fibroblasts is essential to the study of drug-induced gingival hyperplasia, periodontitis-related tissue destruction, oral lichen planus fibrosis, gingival recession, and…
Cat. No. ARP0646

Mouse Gingival Epithelial Cells

Research on the Mouse Gingival Epithelial Cells is essential to the study of experimental periodontitis models, gingivitis studies, oral mucosal barrier dysfunction, dental plaque-induced inflammation,…
Cat. No. ARP0645

Mouse Retinal Ganglion Cells

Research on the Mouse Retinal Ganglion Cells is essential to the study of glaucoma, optic neuritis, traumatic optic neuropathy, Leber's hereditary optic neuropathy, and anterior…
Cat. No. ARP0644

Mouse Corneal Endothelial Cells

Research on the Mouse Corneal Endothelial Cells is essential to the study of dry eye disease, corneal abrasions/ulcers, infectious keratitis (bacterial/viral/fungal), limbal stem cell deficiency,…
Cat. No. ARP0643

Mouse Scleral Epithelial Cells

Research on the Mouse Scleral Epithelial Cells is essential to the study of scleritis, ocular surface squamous neoplasia, pterygium recurrence, and limbal stem cell deficiency.…
Cat. No. ARP0642

Mouse Tongue Epithelial Cells

Research on the Mouse Tongue Epithelial Cells is essential to the study of oral lichen planus, tongue squamous cell carcinoma, geographic tongue, burning mouth syndrome,…
Cat. No. ARP0640

Mouse Oral Mucosal Epithelial Cells

Research on the Mouse Oral Mucosal Epithelial Cells is essential to the study of chemical-induced oral mucositis, radiation-induced oral ulceration, experimental oral candidiasis, smokeless tobacco…
Cat. No. ARP0639

Mouse Periodontal Ligament Fibroblasts

Research on the Mouse Periodontal Ligament Fibroblasts is essential to the study of periodontal diseases, including periodontitis, orthodontic tooth movement-related root resorption, periodontal ligament degeneration,…
Cat. No. ARP0638

Mouse Retinal Microvascular Endothelial Cells

Research on the Mouse Retinal Microvascular Endothelial Cells is essential to the study of diabetic retinopathy, retinal vein occlusion, and retinopathy of prematurity. The eye…
Cat. No. ARP0637

Mouse Choroidal Fibroblasts

Research on the Mouse Choroidal Fibroblasts is essential to the study of experimental autoimmune uveitis, laser-induced choroidal injury models, diabetic choroidopathy, and retinopathy of prematurity…
Cat. No. ARP0636

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