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1.
Neurotox Res ; 35(4): 867-882, 2019 May.
Artigo em Inglês | MEDLINE | ID: mdl-30788711

RESUMO

Bisphenol A, a substance commonly used in plastic manufacturing, is relatively well known as an endocrine disruptor, which may bind to estrogen receptors and has multidirectional negative effects on both human and animal organisms. Previous studies have reported that BPA may act on the reproductive organs, but knowledge concerning BPA-induced changes within the nerves located in the uterine wall is extremely scant. The aim of this study was to investigate the impact of various doses of BPA on the parasympathetic nerves located in the corpus and horns of the uterus using a single and double immunofluorescence method. The obtained results have shown that BPA may change not only the expression of vesicular acetylcholine transporter (VAChT-a marker of parasympathetic nervous structures) in the uterine intramural nerve fibers, but also the degree of colocalization of this substance with other neuronal factors, including substance P (SP), vasoactive intestinal polypeptide (VIP), galanin (GAL), and calcitonin gene-related peptide (CGRP). Moreover, BPA caused changes in the density of the overall populations of fibers immunoreactive to the particular neuropeptides mentioned above. The characteristics of the changes clearly depended on the part of the uterus, the neuronal factors studied, and the dosage of BPA. The mechanisms of the observed fluctuations are probably connected with the neurotoxic and/or pro-inflammatory activity of BPA. Moreover, the results have shown that even low doses of BPA are not neutral to living organisms. Changes in the neurochemical characterization of nerves supplying the uterine wall may be the first subclinical sign of intoxication with this substance.


Assuntos
Compostos Benzidrílicos/toxicidade , Fibras Nervosas/efeitos dos fármacos , Neuropeptídeos/metabolismo , Sistema Nervoso Parassimpático/efeitos dos fármacos , Fenóis/toxicidade , Útero/efeitos dos fármacos , Útero/metabolismo , Animais , Peptídeo Relacionado com Gene de Calcitonina/metabolismo , Feminino , Galanina/metabolismo , Fibras Nervosas/metabolismo , Sistema Nervoso Parassimpático/metabolismo , Substância P/metabolismo , Sus scrofa , Útero/inervação , Peptídeo Intestinal Vasoativo/metabolismo , Proteínas Vesiculares de Transporte de Acetilcolina/metabolismo
2.
Reprod Toxicol ; 84: 39-48, 2019 03.
Artigo em Inglês | MEDLINE | ID: mdl-30562551

RESUMO

Bisphenol A (BPA), used in the production of plastic, shows multidirectional negative effects on the living organism. BPA may affect the reproductive and nervous systems; however, its influence on the nerves supplying the uterus has not been studied. During the present study, the impact of BPA on the sympathetic nerves in the uterus was investigated using a double immunofluorescence technique. The results have shown that even low doses of BPA may change the neurochemical characterization of uterine sympathetic nerves, and the severity of these changes depends on the part of the uterus and the dose of the toxic substance. Probably the changes observed during the present study resulted from the neurotoxic and/or pro-inflammatory activity of BPA, but the exact mechanism for the observed fluctuation still remains unknown. The fluctuations of the neurochemical characterization of the uterine intramural nerves may be the first subclinical signs of harmful exposure to BPA.


Assuntos
Compostos Benzidrílicos/toxicidade , Disruptores Endócrinos/toxicidade , Fibras Nervosas/efeitos dos fármacos , Fenóis/toxicidade , Útero/inervação , Animais , Peptídeo Relacionado com Gene de Calcitonina/metabolismo , Feminino , Substância P/metabolismo , Suínos , Útero/metabolismo , Peptídeo Intestinal Vasoativo/metabolismo
3.
Stem Cells Int ; 2017: 3978595, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28298927

RESUMO

Spinal cord injury (SCI) is a devastating neurological condition that affects individuals worldwide, significantly reducing quality of life, for both patients and their families. In recent years there has been a growing interest in cell therapy potential in the context of spinal cord injuries. The present review aims to discuss and compare the restorative approaches based on the current knowledge, available spinal cord restorative cell therapies, and use of selected cell types. However, treatment options for spinal cord injury are limited, but rehabilitation and experimental technologies have been found to help maintain or improve remaining nerve function in some cases. Mesenchymal stem cells as well as olfactory ensheathing cells seem to show therapeutic impact on damaged spinal cord and might be useful in neuroregeneration. Recent research in animal models and first human trials give patients with spinal cord injuries hope for recovery.

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