Fibronectin Protein
Quick Overview for Fibronectin Protein (ABIN7680466)
Target
See all Fibronectin ProteinsProtein Type
Origin
Source
Purity
Grade
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Purpose
- OsrhFN - Recombinant Human Fibronectin
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Characteristics
- The recombinant Osrh products are expressed in the rice endosperm platform, which is animal-free and has high purity. It avoids the risk of contamination from human or animal-derived viruses and mycoplasma. The rice endosperm platform has high scalability.This product arrives as White lyophilized powder
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Endotoxin Level
- Less than 0.5 EU/ug
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Application Notes
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OsrhFN is generally used in the concentration range of 1-5 micrograms per cm2 of growth surface for attachment or at 5-50 micrograms per ml as a media additive.
(Optimal working dilutions must be determined by end user.) -
Comment
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The recombinant human fibronectin (OsrhFN) was expressed in the rice endosperm platform, which is animal component free and has high purity, and has been demonstrated has the same physical and chemical with the plasma derived Fn. OsrhFN provides a safety solution to replace the plasma derived FN.
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Restrictions
- For Research Use only
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Format
- Lyophilized
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Reconstitution
- For the lyophilized OsrhFN, add sterile 1 mL of Sodium Citrate solution (20 mM Citrate, 250 mM NaCl, pH 7.20) to the vial to reconstitute the Fibronectin (recommended reconstituted concentration is 1 mg/mL), shake gently to dissolve the lyophilized powder. The reconstituted OsrhFN liquid can be made in other aqueous buffer.
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Handling Advice
- Use as soon as possible after opening. Avoid freeze-thaw cycles
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Storage
- -20 °C
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Storage Comment
- Stored at temperatures -20°C for at least 36 months. Upon reconstitution OsrhFN should be stored below -20°C. Use as soon as possible after opening. Please avoid freeze-thaw cycles.
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Expiry Date
- 36 months
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- Fibronectin
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Background
- Fibronectin (FN) is a particularly important and well-studied component of the extracellular matrix, and is known to play a key role in cell adhesion, growth, spreading, migration, differentiation and proliferation. Fn is a 200-250 kDa glycoprotein composed of 2 subunits bound via a disulfide bond. Currently, the Fn is purified from the plasma, which however is limited by the availability of supply.
Target
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