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Matexcel provides reliable, compliant, and customizable bioactive material solutions for the medical, research, and industrial sectors. Leveraging our stable recombinant expression and purification processes, we offer high-purity growth factors that effectively regulate cell proliferation, differentiation, and tissue regeneration. These products are widely used in tissue engineering scaffolds, wound healing, cell culture, organoid development, and regenerative medicine research.
Recombinant growth factors are high-purity, active proteins produced via genetic recombination that precisely regulate cell adhesion, proliferation, migration, and differentiation to guide orderly tissue regeneration. They mimic physiological signals to promote angiogenesis, collagen deposition, and tissue remodeling. Often combined with scaffold materials such as decellularized ECM, they leverage the scaffold's three-dimensional microenvironment and growth factor signaling to construct a regenerative system closely resembling natural tissue.
| Types | Details |
|---|---|
| FGF | Promotes the proliferation and differentiation of fibroblasts, endothelial cells, and chondrocytes, accelerating wound healing, angiogenesis, and cartilage repair. |
| EGF | Stimulates the migration and proliferation of keratinocytes and epithelial cells, significantly shortening the time required for wound re-epithelialization; it is widely used in skin regeneration and aesthetic medicine. |
| NGF | Maintains neuronal survival, promotes axonal growth and myelination, and is used for the repair of peripheral nerve injuries and the treatment of neurodegenerative diseases. |
| HGF | Combines hepatocyte regeneration, epithelial cell proliferation, and anti-fibrotic functions, and is suitable for liver injury repair, renal protection, and tissue and organ reconstruction. |
| KGF | Specifically stimulates the proliferation and differentiation of keratinocytes, enhances skin barrier function, and is used in the treatment of extensive burns, mucosal injuries, and radiation dermatitis. |
| TGF | Regulates cell proliferation, differentiation, and ECM deposition; the TGF-β subtype plays a central role in bone formation, immune regulation, and tissue fibrosis. |
| VEGF | Promoting endothelial cell proliferation, migration, and lumen formation is used for vascularization of ischemic tissues and blood supply reconstruction in tissue engineering. |
| PDGF | Recruits and activates mesenchymal cells, promotes collagen synthesis and vascular maturation, and accelerates chronic wound healing and bone tissue regeneration. |
| CTGF | Mediates downstream effects of TGF-β, regulates fibroblast activation and ECM remodeling, and participates in cartilage development, wound healing, and the regulation of fibrosis. |
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