ArticleProtein science : a publication of the Protein Society2024
Detection of insulin oligomeric forms by a novel surface plasmon resonance-diffusion coefficient based approach.
Article in Protein science : a publication of the Protein Society, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 3 papers.
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3 citing papers in PubMed, 8 citations in OpenAlex.
- Broad-Spectrum Diffusion Coefficient Measurements via Surface Plasmon Resonance: From Thermodynamics to Protein Conformational Disorders.Chemphyschem : a European journal of chemical physics and physical chemistry · 2025Review
- Label-free determination of diffusion coefficients at the nanoscale through modelling of the Surface Plasmon Resonance signal.PloS one · 2025Article
- Detection of insulin oligomeric forms by a novel surface plasmon resonance-diffusion coefficient based approach.Protein science : a publication of the Protein Society · 2024Article
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Authors and funding
8 authors at 2 institutions in 1 country.
Funding
Abstract
Insulin is commonly used to treat diabetes and undergoes aggregation at the site of repeated injections in diabetic patients. Moreover, aggregation is also observed during its industrial production and transport and should be avoided to preserve its bioavailability to correctly adjust glucose levels in diabetic patients. However, monitoring the effect of various parameters (pH, protein concentration, metal ions, etc.) on the insulin aggregation and oligomerization state is very challenging. In this work, we have applied a novel Surface Plasmon Resonance (SPR)-based experimental approach to insulin solutions at various experimental conditions, monitoring how its diffusion coefficient is affected by pH and the presence of metal ions (copper and zinc) with unprecedented sensitivity, precision, and reproducibility. The reported SPR method, hereby applied to a protein for the first time, besides giving insight into the insulin oligomerization and aggregation phenomena, proved to be very robust for determining the diffusion coefficient of any biomolecule. A theoretical background is given together with the software description, specially designed to fit the experimental data. This new way of applying SPR represents an innovation in the bio-sensing field and expanding the potentiality of commonly used SPR instruments well over the canonical investigation of biomolecular interactions.
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Registered trials
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