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1.
Acta cir. bras ; 36(2): e360204, 2021. tab, graf
Article in English | LILACS | ID: biblio-1152699

ABSTRACT

ABSTRACT Purpose To present a model to reproduce the clinical condition, in order to better understand the pathophysiology of neurological impairment related to intoxication. Methods Twenty-five Wistar rats were used and divided into five groups: Shaw group (WHI), water gavage group (WGV), star fruit gavage group (SGV), nephropathic group with water gavage (NPW), nephropathic group with star fruit gavage (NPS).Nephropathic groups were submitted to surgery, developing nephropathy. After surgery, they received preestablished gavage with star fruit juice or water. The electroencephalographic records were evaluated in the experimental nephropathic group that received gavage of star fruit juice. Results To assess the induction of neurotoxicity using electroencephalographic data, the NPS group demonstrated the presence of epileptic seizures associated with star fruit intoxication. Conclusions The experimental model herein presented was adequate to reproduce the clinical condition experienced by nephropathic patients who ingest star fruit juice, establishing, thus, an experimental model utterly important for the study of the neurological toxicity process.


Subject(s)
Animals , Rats , Fruit , Kidney Diseases , Reference Standards , Rats, Wistar , Models, Theoretical
2.
Acta cir. bras ; 35(7): e202000705, 2020. tab, graf
Article in English | LILACS | ID: biblio-1130657

ABSTRACT

Abstract Purpose Studies have demonstrated that star fruit consumption by nephropathic patients triggers severe neurotoxic effects that can lead to convulsions or even death. Brain areas likely susceptible to star fruit poisoning have not been investigated. The objective of the present study was to map possible epileptogenic areas susceptible to star fruit intoxication in nephropathic rats. Methods The study analyzed 25 rats (5 groups). Rats in the experimental group underwent bilateral ureteral obstruction surgery and orogastric gavages with star fruit juice. An electroencephalogram was used to confirm convulsive seizures. Urea and creatinine levels were used to confirm the uremia model. Immunohistochemical analysis was used to map cells with c-Fos protein (c-Fos+ cells) to identify brain areas with increased neuronal activity. Control groups included non-nephropathic and nephropathic rats that did not receive star fruit. Results A statistically significant increase (p<0.01) in c-Fos+ cells was noted in nephropathic animals receiving star fruit juice compared to control groups, in brain areas commonly related to epileptogenic neural circuits including the hippocampus, amygdala, rhinal cortex, anterior cingulate area, piriform area, and medial dorsal thalamus. Conclusion These data corroborate the neurotoxic capacity of star fruit in nephropathic patients.


Subject(s)
Humans , Animals , Rats , Proto-Oncogene Proteins c-fos , Fruit , Kidney Diseases , Brain , Cerebral Cortex , Proto-Oncogene Proteins c-fos/metabolism , Proto-Oncogene Proteins c-fos/metabolism , Fruit/poisoning , Fruit/poisoning , Hippocampus , Kidney Diseases , Kidney Diseases/complications
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