Erythrocyte Plasma Membrane Lipid Composition Mirrors That of Neurons and Glial Cells in Murine Experimental In Vitro and In Vivo Inflammation

Author:

Stanzani Agnese1,Sansone Anna2ORCID,Brenna Cinzia34,Baldassarro Vito Antonio56ORCID,Alastra Giuseppe5,Lorenzini Luca56,Chatgilialoglu Chryssostomos2ORCID,Laface Ilaria3,Ferreri Carla2ORCID,Neri Luca Maria34ORCID,Calzà Laura16ORCID

Affiliation:

1. Department of Pharmacy and Biotechnology (FaBiT), University of Bologna, 40126 Bologna, Italy

2. Institute for Organic Synthesis and Photoreactivity (ISOF), National Research Council (CNR), 40129 Bologna, Italy

3. Department of Translational Medicine, University of Ferrara, 44121 Ferrara, Italy

4. LTTA—Electron Microscopy Center, University of Ferrara, 44121 Ferrara, Italy

5. Department of Veterinary Medical Sciences (DIMEVET), University of Bologna, Ozzano dell’Emilia, 40064 Bologna, Italy

6. Health Science and Technologies, Interdepartmental Center for Industrial Research (HST-ICIR), University of Bologna, Ozzano dell’Emilia, 40064 Bologna, Italy

Abstract

Lipid membrane turnover and myelin repair play a central role in diseases and lesions of the central nervous system (CNS). The aim of the present study was to analyze lipid composition changes due to inflammatory conditions. We measured the fatty acid (FA) composition in erythrocytes (RBCs) and spinal cord tissue (gas chromatography) derived from mice affected by experimental allergic encephalomyelitis (EAE) in acute and remission phases; cholesterol membrane content (Filipin) and GM1 membrane assembly (CT-B) in EAE mouse RBCs, and in cultured neurons, oligodendroglial cells and macrophages exposed to inflammatory challenges. During the EAE acute phase, the RBC membrane showed a reduction in polyunsaturated FAs (PUFAs) and an increase in saturated FAs (SFAs) and the omega-6/omega-3 ratios, followed by a restoration to control levels in the remission phase in parallel with an increase in monounsaturated fatty acid residues. A decrease in PUFAs was also shown in the spinal cord. CT-B staining decreased and Filipin staining increased in RBCs during acute EAE, as well as in cultured macrophages, neurons and oligodendrocyte precursor cells exposed to inflammatory challenges. This regulation in lipid content suggests an increased cell membrane rigidity during the inflammatory phase of EAE and supports the investigation of peripheral cell membrane lipids as possible biomarkers for CNS lipid membrane concentration and assembly.

Funder

POR-FESR BioPhotomic project

Publisher

MDPI AG

Subject

General Medicine

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