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Human Fibronectin

Updated: 2026-08-03

Overview

Human Fibronectin is a multifunctional extracellular matrix glycoprotein essential for cellular processes like adhesion, differentiation, and tissue repair. It exists in plasma and cellular forms, with the latter being a key structural component in connective tissues. Fibronectin's dimeric structure enables it to bind simultaneously to cells (via integrins) and extracellular components (e.g., collagen, fibrin), making it indispensable in wound healing and embryogenesis. In biomanufacturing, recombinant or plasma-derived fibronectin is widely used to coat culture surfaces, enhancing attachment for sensitive cell lines (e.g., stem cells). Its role in mediating cell-matrix interactions has also spurred applications in tissue engineering scaffolds and diagnostic assays.

Physical and Chemical Properties

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Fibronectin is a dimeric glycoprotein with subunits linked by disulfide bonds, yielding a molecular weight of ~440-500 kDa. Its modular structure includes Type I-III repeats, each with specific binding domains for heparin, collagen, and cell surfaces. The protein is stable at physiological pH (7-7.4) but susceptible to denaturation at temperatures above 60°C or in strong detergents. In solution, fibronectin forms viscous, colorless preparations. Lyophilized powders retain activity for years when stored at -20°C, while liquid formulations typically require refrigeration. Solubility is high in neutral buffers, though aggregation may occur at concentrations >1 mg/mL without carrier proteins like albumin.

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Main Applications

1. **Cell Culture**: Coating surfaces with 1-10 µg/cm² fibronectin improves attachment for primary cells (e.g., endothelial cells) and fragile lines (e.g., iPSCs). 2. **Wound Healing**: Used in research to study cell migration and in clinical dressings for chronic wounds. 3. **Diagnostics**: Detected as a biomarker in fibrotic diseases or tumor stroma analysis. 4. **Biomaterials**: Incorporated into hydrogels or scaffolds for tissue engineering (e.g., cartilage repair). In B2B contexts, high-purity fibronectin is supplied to biotech firms, CROs, and academic labs, often with certificates of analysis detailing endotoxin levels and biological activity (e.g., cell adhesion assays).

Safety and Storage

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While non-toxic, fibronectin solutions should be handled aseptically to prevent microbial contamination. Wear PPE to avoid exposure to aerosols during reconstitution. Lyophilized vials are stable at -20°C; once reconstituted, aliquot and store at 2-8°C for short-term use (weeks) or at -80°C for long-term preservation. Avoid repeated freeze-thaw cycles, which can degrade functional domains. Suppliers typically provide stability data under specific conditions—verify compatibility with your workflow (e.g., sterile filtration requirements). For disposal, follow local regulations for protein waste.

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B2B Procurement Guide

When sourcing fibronectin, prioritize suppliers with ISO 13485 certification for consistent quality. Key specifications include: - **Purity**: ≥90% by SDS-PAGE (critical for reducing contaminants). - **Endotoxins**: <1 EU/mg (vital for cell therapy applications). - **Activity**: Validated via cell adhesion assays (e.g., using HUVECs). Bulk orders (100+ mg) may qualify for discounts, but confirm batch-to-batch consistency. For regenerative medicine uses, opt for recombinant versions (e.g., human-derived) to minimize zoonotic risks versus animal-sourced alternatives. Lead times vary; some GMP-grade batches require 8-12 weeks for production and QC.

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