Save with Cell KITs
Cell KITs combine high-quality primary human cells with their corresponding ready-to-use growth media, offered together as a bundled solution. Each Cell KIT combines primary human cells with the optimal cell culture media to support reliable and reproducible primary cell culture workflows.
By bundling primary human cells with the ideal ready-to-use media, Cell KITs provide a convenient and cost-efficient solution. Compared to sourcing cells and media separately, this bundled approach results in a lower total cost for the complete cell culture setup and provides clear and predictable pricing.
Cell KITs are available across a broad range of research areas, including cardiovascular research, dermatology, immunology, stem cell and regenerative medicine, diabetes research, drug discovery, respiratory research, and renal research.
Each Cell KIT is available in two formats to support different experimental needs:
- Standard package: One vial of primary human cells and one unit of ready-to-use medium
- Plus package: One vial of primary human cells and two units of ready-to-use medium
All Cell KIT components are produced under strict quality and ethical standards at PromoCell’s facility in Heidelberg, ensuring full traceability, donor protection, and compliance with international regulations for human tissue sourcing and data privacy. Donor-specific details, including tissue origin and HLA typing information, are available upon request.
Cell KITs by research area
Our Cell KITs are available for a wide range of human primary cell types, supporting diverse applications across cardiovascular, immunology, dermatology, regenerative medicine, and more.
Cardiovascular research
Large and microvascular endothelial cells, pericytes, smooth muscle cells, and cardiac myocytes are suitable for modeling vascular function, angiogenesis, and cardiac biology.
Dermatology and skin biology
Skin-derived primary cells enable research in regeneration, pigmentation, and hair follicle biology.
Immunology and inflammation
Human blood-derived primary cells are suitable for investigating immune responses, inflammation, and hematopoiesis.
Stem cells and regenerative medicine
Mesenchymal stem cells, bone and cartilage cells, and adipose tissue cells support studies in tissue engineering and differentiation.
Metabolic and diabetes research
Human white preadipocytes isolated from subcutaneous and visceral adipose tissue, including those from donors with type 1 and type 2 diabetes, are suitable for metabolic and adipose tissue studies.
Respiratory research
Airway epithelial cells from nasal, bronchial, tracheal, and small airway tissues are used to model respiratory biology, inflammation, and toxicology.
Renal research
Primary human renal epithelial cells and renal cortical epithelial cells support studies of kidney function, epithelial biology, nephrotoxicity, and renal disease modeling.
Muscle research
Muscle-derived primary cells are useful for studying contractile biology and muscle physiology.