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Recombinant Rat Protein VEGF-A

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Recombinant Rat Protein VEGF-A

Ā 

Predicted Molecular Weight: 20.6 kDa

The recombinant rat VEGF-A protein is designed to exhibit a predicted molecular weight of 20.6 kDa, ensuring consistency and reliability in applications such as cell culture, VEGF-A ELISA standards, and Western blot controls. This protein is lyophilized and shipped at room temperature without any carrier protein, preserving its integrity and ease of use. Reconstitution is simple—just dissolve in sterile PBS containing at least 0.1% carrier protein, such as BSA, or cell assay media to achieve optimal activity.

Ā 

No Endotoxins, TAGS, and Carrier-Free

IBI recombinant proteins, including VEGF-A, are expressed in aĀ Pichia pastoris (yeast) system that offers significant advantages over traditional E. coli systems. This method ensures proper protein folding and post-translational modifications, resulting in superior bioactivity. The recombinant VEGF-A protein is free from endotoxins, HIS-TAGS, and other artificial residues, making it highly pure and functional. VEGF-A plays a crucial role in vasculogenesis and angiogenesis, aiding in oxygen supply restoration and tissue repair through blood vessel formation. Its broad applicability in research ensures accurate modeling of vascular endothelial processes, offering unmatched quality and performance for advanced studies.

Ā 

Predicted Molecular Weight: 20.6 kDa

The recombinant rat VEGF-A protein is designed to exhibit a predicted molecular weight of 20.6 kDa, ensuring consistency and reliability in applications such as cell culture, VEGF-A ELISA standards, and Western blot controls. This protein is lyophilized and shipped at room temperature without any carrier protein, preserving its integrity and ease of use. Reconstitution is simple—just dissolve in sterile PBS containing at least 0.1% carrier protein, such as BSA, or cell assay media to achieve optimal activity.

Ā 

No Endotoxins, TAGS, and Carrier-Free

IBI recombinant proteins, including VEGF-A, are expressed in aĀ Pichia pastoris (yeast) system that offers significant advantages over traditional E. coli systems. This method ensures proper protein folding and post-translational modifications, resulting in superior bioactivity. The recombinant VEGF-A protein is free from endotoxins, HIS-TAGS, and other artificial residues, making it highly pure and functional. VEGF-A plays a crucial role in vasculogenesis and angiogenesis, aiding in oxygen supply restoration and tissue repair through blood vessel formation. Its broad applicability in research ensures accurate modeling of vascular endothelial processes, offering unmatched quality and performance for advanced studies.

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From $61.74

Original: $205.81

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Recombinant Rat Protein VEGF-A—

$205.81

$61.74

Description

Ā 

Predicted Molecular Weight: 20.6 kDa

The recombinant rat VEGF-A protein is designed to exhibit a predicted molecular weight of 20.6 kDa, ensuring consistency and reliability in applications such as cell culture, VEGF-A ELISA standards, and Western blot controls. This protein is lyophilized and shipped at room temperature without any carrier protein, preserving its integrity and ease of use. Reconstitution is simple—just dissolve in sterile PBS containing at least 0.1% carrier protein, such as BSA, or cell assay media to achieve optimal activity.

Ā 

No Endotoxins, TAGS, and Carrier-Free

IBI recombinant proteins, including VEGF-A, are expressed in aĀ Pichia pastoris (yeast) system that offers significant advantages over traditional E. coli systems. This method ensures proper protein folding and post-translational modifications, resulting in superior bioactivity. The recombinant VEGF-A protein is free from endotoxins, HIS-TAGS, and other artificial residues, making it highly pure and functional. VEGF-A plays a crucial role in vasculogenesis and angiogenesis, aiding in oxygen supply restoration and tissue repair through blood vessel formation. Its broad applicability in research ensures accurate modeling of vascular endothelial processes, offering unmatched quality and performance for advanced studies.