The kinetics of insulin aggregation and fibril formation were studied in vitro using Scanning Electron Microscopy (SEM) and Fourier Transform Infrared (FTIR) spectroscopy. Our investigation centered on the protein's morphological and structural changes to better understand the transient molecular configurations that occur during the lag phase. SEM images showed that, already at early incubation stages, a network of disordered pseudo-filaments, ranging in length between 200 and 500 nanometers, develops on the surface of large aggregates. At later stages, fibrils catalyzed by protein aggregates were observed. Principal Component Analysis (PCA) of the FTIR data identified signatures of intramolecular beta-sheet secondary structures forming during the lag phase and at the onset of the exponential growth phase. These absorption bands are linked to secondary nucleation mechanisms due to their transient nature. This interpretation is further supported by a chemical equilibrium model, which yielded a reliable secondary nucleation rate constant, K2, on the order of 104 M-2 s-1.

Ciufolini, G., Filabozzi, A., Capocefalo, A., Ripanti, F., Tavella, A., Imparato, G., et al. (2025). The Catalyzing Effect of Aggregates on the Fibrillation Pathway of Human Insulin: A Spectroscopic Investigation During the Lag Phase. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 26(15) [10.3390/ijms26157599].

The Catalyzing Effect of Aggregates on the Fibrillation Pathway of Human Insulin: A Spectroscopic Investigation During the Lag Phase

Ciufolini G.
Writing – Original Draft Preparation
;
Filabozzi A.
Writing – Review & Editing
;
Carbone M.
Formal Analysis
2025-08-01

Abstract

The kinetics of insulin aggregation and fibril formation were studied in vitro using Scanning Electron Microscopy (SEM) and Fourier Transform Infrared (FTIR) spectroscopy. Our investigation centered on the protein's morphological and structural changes to better understand the transient molecular configurations that occur during the lag phase. SEM images showed that, already at early incubation stages, a network of disordered pseudo-filaments, ranging in length between 200 and 500 nanometers, develops on the surface of large aggregates. At later stages, fibrils catalyzed by protein aggregates were observed. Principal Component Analysis (PCA) of the FTIR data identified signatures of intramolecular beta-sheet secondary structures forming during the lag phase and at the onset of the exponential growth phase. These absorption bands are linked to secondary nucleation mechanisms due to their transient nature. This interpretation is further supported by a chemical equilibrium model, which yielded a reliable secondary nucleation rate constant, K2, on the order of 104 M-2 s-1.
ago-2025
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore FIS/07
Settore PHYS-06/A - Fisica per le scienze della vita, l'ambiente e i beni culturali
English
Con Impact Factor ISI
amyloid fibrils
insulin
lag phase
secondary nucleation
This research was funded by Sapienza Progetti Ateneo Grant Number RM123188E4FE88EF “Infrared Nanospectroscopy of Protein Aggregates in the Initial Steps of the Aggregation Pathways”; Sapienza Progetti Grant Number GA123188D3BCE6EE “Sapienza NanoOptical Microscopy, SNOM”; European Union—NextGenerationEU, Mission 4, Component 1, under the Italian Ministry of University and Research (MUR) National Innovation Ecosystem Grant Number ECS00000041- VITALITY-CUP E13C22001060006.
Ciufolini, G., Filabozzi, A., Capocefalo, A., Ripanti, F., Tavella, A., Imparato, G., et al. (2025). The Catalyzing Effect of Aggregates on the Fibrillation Pathway of Human Insulin: A Spectroscopic Investigation During the Lag Phase. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 26(15) [10.3390/ijms26157599].
Ciufolini, G; Filabozzi, A; Capocefalo, A; Ripanti, F; Tavella, A; Imparato, G; Nucara, A; Carbone, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/434783
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