Lead-Induced Motor Dysfunction Is Associated with Oxidative Stress, Proteome Modulation, and Neurodegeneration in Motor Cortex of Rats

Author:

Leão Luana Ketlen Reis1ORCID,Bittencourt Leonardo Oliveira1ORCID,Oliveira Ana Carolina Alves1ORCID,Nascimento Priscila Cunha1ORCID,Ferreira Maria Karolina Martins1ORCID,Miranda Giza Hellen Nonato1ORCID,Ferreira Railson de Oliveira1ORCID,Eiró-Quirino Luciana1ORCID,Puty Bruna1ORCID,Dionizio Aline2ORCID,Cartágenes Sabrina Carvalho3ORCID,Freire Marco Aurelio M.4ORCID,Buzalaf Marília Afonso Rabelo2ORCID,Crespo-Lopez Maria Elena5ORCID,Maia Cristiane Socorro Ferraz3ORCID,Lima Rafael Rodrigues1ORCID

Affiliation:

1. Laboratory of Functional and Structural Biology, Institute of Biological Sciences, Federal University of Pará, Belém, Pará, Brazil

2. Department of Biological Sciences, Bauru Dental School, University of São Paulo, Bauru, São Paulo, Brazil

3. Laboratory of Pharmacology of Inflammation and Behavior, Pharmacy Faculty, Institute of Health Sciences, Federal University of Pará, Belém, Pará, Brazil

4. Graduate Program in Health and Society, University of the State of Rio Grande do Norte, Mossoró, Rio Grande do Norte, Brazil

5. Laboratory of Molecular Pharmacology, Institute of Biological Sciences, Federal University of Pará, Belém, Pará, Brazil

Abstract

Lead (Pb) is a toxic metal with great neurotoxic potential. The aim of this study was to investigate the effects of a long-term Pb intoxication on the global proteomic profile, oxidative biochemistry and neuronal density in motor cortex of adult rats, and the possible outcomes related to motor functions. For this, Wistar rats received for 55 days a dose of 50 mg/Kg of Pb acetate by intragastric gavage. Then, the motor abilities were evaluated by open field and inclined plane tests. To investigate the possible oxidative biochemistry modulation, the levels of pro-oxidant parameters as lipid peroxidation and nitrites were evaluated. The global proteomic profile was evaluated by ultraefficiency liquid chromatography system coupled with mass spectrometry (UPLC/MS) followed by bioinformatic analysis. Moreover, it was evaluated the mature neuron density by anti-NeuN immunostaining. The statistical analysis was performed through Student’s t -test, considering p < 0.05 . We observed oxidative stress triggering by the increase in malonaldehyde and nitrite levels in motor cortex. In the proteomic analysis, the motor cortex presented alterations in proteins associated with neural functioning, morphological organization, and neurodegenerative features. In addition, it was observed a decrease in the number of mature neurons. These findings, associated with previous evidences observed in spinal cord, cerebellum, and hippocampus under the same Pb administration protocol, corroborate with the motor deficits in the rats towards Pb. Thus, we conclude that the long-term administration to Pb in young Wistar rats triggers impairments at several organizational levels, such as biochemical and morphological, which resulted in poor motor performance.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Hindawi Limited

Subject

Cell Biology,Ageing,General Medicine,Biochemistry

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