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Characterization of receptor binding affinity for vascular endothelial growth factor with interferometric imaging sensor

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Akademik Birimler

Kurum Yazarları

Bakhshpour-Yucel, Monireh

Yazarlar

Ünlü, Neşe Lortlar
Chiodi, Elisa
Diken-Gür, Sinem
Emre, Sinan
Ünlü, M. Selim

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Mdpi

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Wet Age-related macular degeneration (AMD) is the leading cause of vision loss in industrialized nations, often resulting in blindness. Biologics, therapeutic agents derived from biological sources, have been effective in AMD, albeit at a high cost. Due to the high cost of AMD treatment, it is critical to determine the binding affinity of biologics to ensure their efficacy and make quantitative comparisons between different drugs. This study evaluates the in vitro VEGF binding affinity of two drugs used for treating wet AMD, monoclonal antibody-based bevacizumab and fusion protein-based aflibercept, performing quantitative binding measurements on an Interferometric Reflectance Imaging Sensor (IRIS) system. Both biologics can inhibit Vascular Endothelial Growth Factor (VEGF). For comparison, the therapeutic molecules were immobilized on to the same support in a microarray format, and their real-time binding interactions with recombinant human VEGF (rhVEGF) were measured using an IRIS. The results indicated that aflibercept exhibited a higher binding affinity to VEGF than bevacizumab, consistent with previous studies using ELISA and SPR. The IRIS system's innovative and cost-effective features, such as silicon-based semiconductor chips for enhanced signal detection and multiplexed analysis capability, offer new prospects in sensor technologies. These attributes make IRISs a promising tool for future applications in the development of therapeutic agents, specifically biologics.

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Konusu

Intravitreal injection, Macular degeneration, In-vitro, Ranibizumab, Aflibercept, Vegf, Age-related macular degeneration (amd), Vascular endothelial growth factor (vegf), Anti-vegf drug, Aflibercept, Bevacizumab, Interferometric reflectance imaging sensor (iris), Science & technology, Physical sciences, Technology, Chemistry, analytical, Nanoscience & nanotechnology, Instruments & instrumentation, Chemistry, Science & technology - other topics, Instruments & instrumentation

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