Evaluating Red Blood Cells' Membrane Fluidity in Diabetes: Insights, Mechanisms, and Future Aspects.

Linda Tartaglione, Alessandro Rizzi, Giuseppe Maulucci, Dario Pitocco, Alessio Abeltino, Duaa Hatem, Cassandra Serantoni, Alessia Riente, Michele Maria De Giulio, Emanuele Rizzo, Lorenzo Lucacchini Paoli, Marco De Spirito

Journal: Diabetes/metabolism research and reviews 2024;41(1):e70011

PMID: 39627974

Abstract

AIMS

This review evaluates the mechanisms underlying red blood cell (RBC) membrane fluidity changes in diabetes mellitus (DM) and explores strategies to assess and address these alterations. Emphasis is placed on developing a comprehensive index for membrane fluidity to improve monitoring and management in diabetic patients.

MATERIALS AND METHODS

We reviewed current literature on RBC membrane fluidity, focussing on lipid composition, glycation, oxidative stress, and lipid transport alterations in diabetic patients. Key methodologies include lipidomics, multi-scale probe assessment, and machine learning integration for standardized fluidity measurement.

RESULTS

Diabetic RBCs exhibit increased membrane fluidity, primarily due to oxidative stress, increased glycation, and dysregulated lipid composition. These alterations contribute to vascular complications and impair RBC functionality. Assessing membrane composition as a nutritional marker provides insights into the metabolic impacts of glycaemic management.

CONCLUSIONS

There is a critical need for a unified and comprehensive membrane fluidity index in DM, which could support personalised interventions through dietary, medicinal, and lifestyle modifications. Future research should prioritise standardising measurement techniques and integrating lipidomic data with machine learning for predictive modelling, aiming to enhance clinical outcomes for diabetic patients.

© 2024 The Author(s). Diabetes/Metabolism Research and Reviews published by John Wiley & Sons Ltd.

Address: Diabetes Care Unit, Fondazione Policlinico Universitario A. Gemelli IRCCS, Rome, Italy.; Catholic University School of Medicine, Rome, Italy.; Dipartimento di Neuroscienze, Sezione di Biofisica, Università Cattolica del Sacro Cuore, Rome, Italy.; Fondazione Policlinico Universitario A. Gemelli IRCSS, Rome, Italy.
Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.