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Matias, D. O.

Publications and source records attributed to Matias, D. O..

2 recordsLinked to original sources

Dietary zinc restriction induces irreversible allodynia in adult mice

IntroductionNeuropathic pain is a debilitating condition highly prevalent worldwide. One of the main factors related to its development is poor nutrition and micronutrient deficiency in the diet. Essential metals, especially divalent ions as zinc, play crucial roles in the neurobiology of the nervous system, including pain signaling and transmission mechanisms, and metabolism control. The present study aimed to understand the impact of zinc in neuropathic pain, evaluating whether restriction and direct repletion of a dietary zinc could change nociceptive behavior and metabolic parameters in adult mice. MethodsAdult male Swiss mice received a zinc-restricted diet for eight weeks. The repletion group received the restricted diet for four weeks followed by normal zinc diet for another four weeks. Mechanical and heat thermal pain sensitivity were assessed using the von Frey filaments and Hargreaves tests, respectively. ResultsZinc restriction resulted in decreased body weight gain and led to an increased mechanical and thermal sensitivity to heat. Dietary zinc repletion reversed the thermal allodynia and increased weight gain, abdominal adipose tissue, and liver weight compared to a normal zinc diet. No changes were observed concerning food and water intake, glycemic profile, pancreatic morphology and plasma amylin, ConclusionsThe reduction in the bioavailability of dietary zinc promotes metabolic and nociceptive changes in adult mice, inducing allodynia characteristic of neuropathic pain.

biochemistry↗

Spatially resolved distribution of pancreatic hormones proteoforms by MALDI-imaging mass spectrometry

Zinc plays crucial role in the immune system and endocrine processes. Dietary zinc restriction leads to the degeneration of the endocrine pancreas resulting in hormonal imbalance in {beta}-cell. Proteostasis may vary depending on the stage of a pathophysiological process, motivating the development of tools aimed at the direct analysis of biological status. Among proteomics methods, MALDI-ToF-MS can serve as a rapid peptidomics tool from analysis of extracts or by histological imaging. Here we report the optimization of MALDI imaging mass spectrometry analysis of thin histological sections from mouse pancreas, allowing the identification of major islet peptide hormones and major accumulated precursors and/or proteolytic products of peptide hormones. Cross-validation of the identified peptide hormones was performed by LC-ESI-MS from pancreatic islet extracts. Mice fed a zinc-restricted diet had a relatively lower amount of peptide intermediates in comparison with the control group. These data provide evidence for complex modulation of proteostasis by an imbalance of micronutrients, directly accessed by MALDI-MSI.

biochemistry↗