Aluminum-Induced Alterations in Purinergic System Parameters of BV-2 Brain Microglial Cells

Author:

Assmann Charles Elias1ORCID,Mostardeiro Vitor Bastianello1,Weis Grazielle Castagna Cezimbra2,Reichert Karine Paula1,de Oliveira Alves Audrei3,Miron Vanessa Valéria1,Bagatini Margarete Dulce4,Palma Taís Vidal1,de Andrade Cinthia Melazzo1,Pillat Micheli Mainardi5,Carvalho Fabiano Barbosa6,Reschke Cristina Ruedell78,da Cruz Ivana Beatrice Mânica39,Schetinger Maria Rosa Chitolina1,Morsch Vera Maria Melchiors1ORCID

Affiliation:

1. Postgraduate Program in Biological Sciences, Toxicological Biochemistry, Department of Biochemistry and Molecular Biology, Federal University of Santa Maria, Santa Maria, RS, Brazil

2. Postgraduate Program in Food Science and Technology, Department of Food Science and Technology, Federal University of Santa Maria, Santa Maria, RS, Brazil

3. Postgraduate Program in Pharmacology, Department of Physiology and Pharmacology, Federal University of Santa Maria, Santa Maria, RS, Brazil

4. Postgraduate Program in Biomedical Sciences, Federal University of Fronteira Sul, Chapecó, SC, Brazil

5. Department of Microbiology and Parasitology, Federal University of Santa Maria, Santa Maria, RS, Brazil

6. Federal University of Health Sciences of Porto Alegre, Porto Alegre, RS, Brazil

7. School of Pharmacy and Biomolecular Sciences, Royal College of Surgeons in Ireland, Dublin, Ireland

8. FutureNeuro Research Centre, Dublin, Ireland

9. Postgraduate Program in Gerontology, Federal University of Santa Maria, Santa Maria, RS, Brazil

Abstract

Aluminum (Al) is ubiquitously present in the environment and known to be a neurotoxin for humans. The trivalent free Al anion (Al3+) can cross the blood-brain barrier (BBB), accumulate in the brain, and elicit harmful effects to the central nervous system (CNS) cells. Thus, evidence has suggested that Al increases the risk of developing neurodegenerative diseases, particularly Alzheimer’s disease (AD). Purinergic signaling has been shown to play a role in several neurological conditions as it can modulate the functioning of several cell types, such as microglial cells, the main resident immune cells of the CNS. However, Al effects on microglial cells and the role of the purinergic system remain elusive. Based on this background, this study is aimed at assessing the modulation of Al on purinergic system parameters of microglial cells. An in vitro study was performed using brain microglial cells exposed to Al chloride (AlCl3) and lipopolysaccharide (LPS) for 96 h. The uptake of Al, metabolism of nucleotides (ATP, ADP, and AMP) and nucleoside (adenosine), and the gene expression and protein density of purinoceptors were investigated. The results showed that both Al and LPS increased the breakdown of adenosine, whereas they decreased nucleotide hydrolysis. Furthermore, the findings revealed that both Al and LPS triggered an increase in gene expression and protein density of P2X7R and A2AR receptors, whereas reduced the A1R receptor expression and density. Taken together, the results showed that Al and LPS altered the setup of the purinergic system of microglial cells. Thus, this study provides new insights into the involvement of the purinergic system in the mechanisms underlying Al toxicity in microglial cells.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Hindawi Limited

Subject

Immunology,General Medicine,Immunology and Allergy

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