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Featured researches published by Kesia Palma-Rigo.


Frontiers in Physiology | 2017

A High Fat Diet during Adolescence in Male Rats Negatively Programs Reproductive and Metabolic Function Which Is Partially Ameliorated by Exercise

Carlos Ibáñez; Rafaela P. Erthal; Fernanda M. Ogo; Maria N. C. Peres; Henrique Rodrigues Vieira; Camila Conejo; Laize Peron Tófolo; Flávio Andrade Francisco; Sandra da Silva Silveira; Ananda Malta; Audrei Pavanello; Isabela Peixoto Martins; Paulo Henrique Olivieri da Silva; Lucas Paulo Jacinto Saavedra; Géssica D. Gonçalves; Veridiana Mota Moreira; Vander Silva Alves; Claudinéia Conationi da Silva Franco; Carina Previate; Rodrigo Mello Gomes; Renan de Oliveira Venci; Francielle R. S. Dias; James A. Armitage; Elena Zambrano; Paulo Cezar de Freitas Mathias; Glaura Scantamburlo Alves Fernandes; Kesia Palma-Rigo

An interaction between obesity, impaired glucose metabolism and sperm function in adults has been observed but it is not known whether exposure to a diet high in fat during the peri-pubertal period can have longstanding programmed effects on reproductive function and gonadal structure. This study examined metabolic and reproductive function in obese rats programmed by exposure to a high fat (HF) diet during adolescence. The effect of physical training (Ex) in ameliorating this phenotype was also assessed. Thirty-day-old male Wistar rats were fed a HF diet (35% lard w/w) for 30 days then subsequently fed a normal fat diet (NF) for a 40-day recovery period. Control animals were fed a NF diet throughout life. At 70 days of life, animals started a low frequency moderate exercise training that lasted 30 days. Control animals remained sedentary (Se). At 100 days of life, biometric, metabolic and reproductive parameters were evaluated. Animals exposed to HF diet showed greater body weight, glucose intolerance, increased fat tissue deposition, reduced VO2max and reduced energy expenditure. Consumption of the HF diet led to an increase in the number of abnormal seminiferous tubule and a reduction in seminiferous epithelium height and seminiferous tubular diameter, which was reversed by moderate exercise. Compared with the NF-Se group, a high fat diet decreased the number of seminiferous tubules in stages VII-VIII and the NF-Ex group showed an increase in stages XI-XIII. HF-Se and NF-Ex animals showed a decreased number of spermatozoa in the cauda epididymis compared with animals from the NF-Se group. Animals exposed to both treatments (HF and Ex) were similar to all the other groups, thus these alterations induced by HF or Ex alone were partially prevented. Physical training reduced fat pad deposition and restored altered reproductive parameters. HF diet consumption during the peri-pubertal period induces long-term changes on metabolism and the reproductive system, but moderate and low frequency physical training is able to recover adipose tissue deposition and reproductive system alterations induced by high fat diet. This study highlights the importance of a balanced diet and continued physical activity during adolescence, with regard to metabolic and reproductive health.


Cellular Physiology and Biochemistry | 2013

Early Overfeed-Induced Obesity Leads to Brown Adipose Tissue Hypoactivity in Rats

Douglas Lopes de Almeida; Gabriel Sergio Fabricio; Amanda Bianchi Trombini; Audrei Pavanello; Laize Peron Tófolo; Tatiane Aparecida Ribeiro; Paulo Cezar de Freitas Mathias; Kesia Palma-Rigo

Background/Aims: Brown adipose tissue activation has been considered a potential anti-obesity mechanism because it is able to expend energy through thermogenesis. In contrast, white adipose tissue stores energy, contributing to obesity. We investigated whether the early programming of obesity by overfeeding during lactation changes structure of interscapular brown adipose tissue in adulthood and its effects on thermogenesis. Methods: Birth of litters was considered day 0. On day 2, litter size was adjusted to normal (9 pups) and small (3 pups) litters. On day 21, the litters were weaned. A temperature transponder was implanted underneath interscapular brown adipose tissue pads of 81-day-old animals; local temperature was measured during light and dark periods between days 87 and 90. The animals were euthanized, and tissue and blood samples were collected for further analysis. The vagus and retroperitoneal sympathetic nerve activity was recorded. Results: Small litter rats presented significant lower interscapular brown adipose tissue temperature during the light (NL 37.6°C vs. SL 37.2°C) and dark (NL 38°C vs. SL 37.6°C) periods compared to controls. Morphology of small litter brown adipose tissue showed fewer lipid droplets in the tissue center and more and larger in the periphery. The activity of vagus nerve was 19,9% greater in the small litter than in control (p<0.01), and no difference was observed in the sympathetic nerve activity. In adulthood, the small litter rats were 11,7% heavier than the controls and presented higher glycemia 13,1%, insulinemia 70% and corticosteronemia 92,6%. Conclusion: Early overfeeding programming of obesity changes the interscapular brown adipose tissue structure in adulthood, leading to local thermogenesis hypoactivity, which may contribute to obesity in adults.


Toxicology | 2016

Acephate exposure during a perinatal life program to type 2 diabetes.

Tatiane Aparecida Ribeiro; Kelly Valério Prates; Audrei Pavanello; Ananda Malta; Laize Peron Tófolo; Isabela Peixoto Martins; Júlio Cezar de Oliveira; Rosiane Aparecida Miranda; Rodrigo Mello Gomes; Elaine Vieira; Claudinéia Conationi da Silva Franco; Luiz Felipe Barella; Flávio Andrade Francisco; Vander Silva Alves; Sandra da Silva Silveira; Veridiana Mota Moreira; Gabriel Sergio Fabricio; Kesia Palma-Rigo; Deborah M. Sloboda; Paulo Cezar de Freitas Mathias

Acephate has been used extensively as an insecticide in agriculture. Its downstream sequelae are associated with hyperglycemia, lipid metabolism dysfunction, DNA damage, and cancer, which are rapidly growing epidemics and which lead to increased morbidity and mortality rates and soaring health-care costs. Developing interventions will require a comprehensive understanding of which excess insecticides during perinatal life can cause insulin resistance and type 2 diabetes. A Wistar rat animal model suggests that acephate exposure during pregnancy and lactation causes alterations in maternal glucose metabolism and programs the offspring to be susceptible to type 2 diabetes at adulthood. Therapeutic approaches based on preventive actions to food contaminated with insecticides during pregnancy and lactation could prevent new cases of type 2 diabetes.


Scientific Reports | 2017

Maternal low intensity physical exercise prevents obesity in offspring rats exposed to early overnutrition

Tatiane Aparecida Ribeiro; Laize Peron Tófolo; Isabela Peixoto Martins; Audrei Pavanello; Júlio Cezar de Oliveira; Kelly Valério Prates; Rosiane Aparecida Miranda; Claudinéia Conationi da Silva Franco; Rodrigo Mello Gomes; Flávio Andrade Francisco; Vander Silva Alves; Douglas Lopes de Almeida; Veridiana Mota Moreira; Kesia Palma-Rigo; Elaine Vieira; Gabriel Sergio Fabricio; Marcos Ricardo da Silva Rodrigues; Wilson Rinaldi; Ananda Malta; Paulo Cezar de Freitas Mathias

Low intensity exercise during pregnancy and lactation may create a protective effect against the development of obesity in offspring exposed to overnutrition in early life. To test these hypotheses, pregnant rats were randomly assigned into 2 groups: Sedentary and Exercised, low intensity, on a rodent treadmill at 30% VO2Max /30-minute/session/3x/week throughout pregnancy and the lactation. Male offspring were raised in small litters (SL, 3 pups/dam) and normal litters (NL, 9 pups/dam) as models of early overnutrition and normal feed, respectively. Exercised mothers showed low mesenteric fat pad stores and fasting glucose and improved glucose-insulin tolerance, VO2max during lactation and sympathetic activity. Moreover, the breast milk contained elevated levels of insulin. In addition, SL of sedentary mothers presented metabolic dysfunction and glucose and insulin intolerance and were hyperglycemic and hyperinsulinemic in adulthood. SL of exercised mothers showed lower fat tissue accretion and improvements in glucose tolerance, insulin sensitivity, insulinemia and glycemia. The results suggest that maternal exercise during the perinatal period can have a possible reprogramming effect to prevent metabolic dysfunction in adult rat offspring exposed to early overnutrition, which may be associated with the improvement in maternal health caused by exercise.


Scientific Reports | 2016

Neonatal treatment with scopolamine butylbromide prevents metabolic dysfunction in male rats.

Ananda Malta; Aline Amenencia de Souza; Tatiane Aparecida Ribeiro; Flávio Andrade Francisco; Audrei Pavanello; Kelly Valério Prates; Laize Peron Tófolo; Rosiane Aparecida Miranda; Júlio Cezar de Oliveira; Isabela Peixoto Martins; Carina Previate; Rodrigo Mello Gomes; Claudinéia Conationi da Silva Franco; Maria Raquel Marçal Natali; Kesia Palma-Rigo; Paulo Cezar de Freitas Mathias

We tested whether treatment with a cholinergic antagonist could reduce insulin levels in early postnatal life and attenuate metabolic dysfunctions induced by early overfeeding in adult male rats. Wistar rats raised in small litters (SLs, 3 pups/dam) and normal litters (NLs, 9 pups/dam) were used in models of early overfeeding and normal feeding, respectively. During the first 12 days of lactation, animals in the SL and NL groups received scopolamine butylbromide (B), while the controls received saline (S) injections. The drug treatment decreased insulin levels in pups from both groups, and as adults, these animals showed improvements in glucose tolerance, insulin sensitivity, vagus nerve activity, fat tissue accretion, insulinemia, leptinemia, body weight gain and food intake. Low glucose and cholinergic insulinotropic effects were observed in pancreatic islets from both groups. Low protein expression was observed for the muscarinic M3 acetylcholine receptor subtype (M3mAChR), although M2mAChR subtype expression was increased in SL-B islets. In addition, beta-cell density was reduced in drug-treated rats. These results indicate that early postnatal scopolamine butylbromide treatment inhibits early overfeeding-induced metabolic dysfunctions in adult rats, which might be caused by insulin decreases during lactation, associated with reduced parasympathetic activity and expression of M3mAChR in pancreatic islets.


International Journal of Endocrinology | 2016

Maternal Diet Supplementation with n-6/n-3 Essential Fatty Acids in a 1.2 : 1.0 Ratio Attenuates Metabolic Dysfunction in MSG-Induced Obese Mice

Josiane Morais Martin; Rosiane Aparecida Miranda; Luiz Felipe Barella; Kesia Palma-Rigo; Vander Silva Alves; Gabriel Sergio Fabricio; Audrei Pavanello; Claudinéia Conationi da Silva Franco; Tatiane Aparecida Ribeiro; Jesuí Vergílio Visentainer; Elton Guntendeorfer Banafé; Clayton Antunes Martin; Paulo Cezar de Freitas Mathias; Júlio Cezar de Oliveira

Essential polyunsaturated fatty acids (PUFAs) prevent cardiometabolic diseases. We aimed to study whether a diet supplemented with a mixture of n-6/n-3 PUFAs, during perinatal life, attenuates outcomes of long-term metabolic dysfunction in prediabetic and obese mice. Seventy-day-old virgin female mice were mated. From the conception day, dams were fed a diet supplemented with sunflower oil and flaxseed powder (containing an n-6/n-3 PUFAs ratio of 1.2 : 1.0) throughout pregnancy and lactation, while control dams received a commercial diet. Newborn mice were treated with monosodium L-glutamate (MSG, 4 mg g−1 body weight per day) for the first 5 days of age. A batch of weaned pups was sacrificed to quantify the brain and pancreas total lipids; another batch were fed a commercial diet until 90 days of age, where glucose homeostasis and glucose-induced insulin secretion (GIIS) as well as retroperitoneal fat and Lee index were assessed. MSG-treated mice developed obesity, glucose intolerance, insulin resistance, pancreatic islet dysfunction, and higher fat stores. Maternal flaxseed diet-supplementation decreased n-6/n-3 PUFAs ratio in the brain and pancreas and blocked glucose intolerance, insulin resistance, GIIS impairment, and obesity development. The n-6/n-3 essential PUFAs in a ratio of 1.2 : 1.0 supplemented in maternal diet during pregnancy and lactation prevent metabolic dysfunction in MSG-obesity model.


Nutritional Neuroscience | 2018

Treatment with soy isoflavones during early adulthood improves metabolism in early postnatally overfed rats

Pamelli Silva; Tatiane Aparecida Ribeiro; Laize Peron Tófolo; Kelly Valério Prates; Flávio Andrade Francisco; Sandra da Silva Silveira; Ananda Malta; Denise Alves Lopes; Rosiane Aparecida Miranda; Kesia Palma-Rigo; Rosana Torrezan; Paulo Cezar de Freitas Mathias

Purpose: The incidences of obesity and related diseases have reached epidemic proportions, and new therapeutic approaches are needed. Soy isoflavones have been identified as an important dietary factor for preventing and treating metabolic dysfunction. This study examined the effects of high doses of isoflavone on glucose and fat metabolism in a model of programmed obesity and evaluated its effects on the autonomic nervous system. Methods: Litters of Wistar rats were standardized at nine pups per dam in normal litters (NL) or reduced to three pups per dam at the third day of life (P3) in small litters (SL) to induce postnatal overfeeding. Gavage with a soy bean isoflavone mixture (1 g/day) diluted in water was started at P60 and continued for 30 days. The control animals received vehicle gavage. At P90, biometric and metabolic parameters as well as direct autonomic nerve activity were measured. Results: Increases in glycaemia and insulinaemia observed in SL rats were reduced by isoflavone treatment, which also caused lower glucose-induced insulin secretion by pancreatic islets. Sympathetic activity in the major splanchnic nerve was increased, while vagus nerve activity was reduced by isoflavone treatment. The dyslipidaemia induced by overfeeding in SL rats was restored by isoflavone treatment. Conclusion: The present study shows that treatment with isoflavone reduces adiposity and improves glucose and lipid metabolism. Collectively, these effects may depend on autonomic changes.


International Journal of Endocrinology | 2018

Stevia Nonsweetener Fraction Displays an Insulinotropic Effect Involving Neurotransmission in Pancreatic Islets

Silvano Piovan; Audrei Pavanello; Giuliana Maria Ledesma Peixoto; Camila Cristina Ianoni Matiusso; Ana Maria Praxedes de Moraes; Isabela Peixoto Martins; Ananda Malta; Kesia Palma-Rigo; Claudinéia Conationi da Silva Franco; Paula Gimenez Milani; Antonio Sérgio Dacome; Silvio Claudio da Costa; Paulo Cezar de Freitas Mathias; Cecília Edna Mareze-Costa

Stevia rebaudiana (Bert.) Bertoni besides being a source of noncaloric sweeteners is also an important source of bioactive molecules. Many plant extracts, mostly obtained with ethyl acetate solvent, are rich in polyphenol compounds that present insulinotropic effects. To investigate whether the nonsweetener fraction, which is rich in phenolic compounds isolated from Stevia rebaudiana with the solvent ethyl acetate (EAF), has an insulinotropic effect, including interference at the terminals of the autonomic nervous system of the pancreatic islets of rats. Pancreatic islets were isolated from Wistar rats and incubated with EAF and inhibitory or stimulatory substances of insulin secretion, including cholinergic and adrenergic agonists and antagonists. EAF potentiates glucose-stimulated insulin secretion (GSIS) only in the presence of high glucose and calcium-dependent concentrations. EAF increased muscarinic insulinotropic effects in pancreatic islets, interfering with the muscarinic receptor subfamily M3. Adrenergic inhibitory effects on GSIS were attenuated in the presence of EAF, which interfered with the adrenergic α 2 receptor. Results suggest that EAF isolated from stevia leaves is a potential therapy for treating type 2 diabetes mellitus by stimulating insulin secretion only in high glucose concentrations, enhancing parasympathetic signal transduction and inhibiting sympathetic signal transduction in beta cells.


Frontiers in Physiology | 2018

Aerobic exercise training attenuates tumor growth and reduces insulin secretion in Walker 256 tumor-bearing rats

Veridiana Mota Moreira; Claudinéia Conationi da Silva Franco; Kelly Valério Prates; Rodrigo Mello Gomes; Ana Maria Praxedes de Moraes; Tatiane Aparecida Ribeiro; Isabela Peixoto Martins; Carina Previate; Audrei Pavanello; Camila Cristina Ianoni Matiusso; Douglas Lopes de Almeida; Flávio Andrade Francisco; Ananda Malta; Laize Peron Tófolo; Sandra da Silva Silveira; Lucas Paulo Jacinto Saavedra; Kátia Gama de Barros Machado; Paulo Henrique Olivieri da Silva; Gabriel Sergio Fabricio; Kesia Palma-Rigo; Helenir Medri de Souza; Flaviane de Fatima Silva; Giuliana Regina Biazi; Tais Susane Pereira; Elaine Vieira; Rosiane Aparecida Miranda; Júlio Cezar de Oliveira; Luiz Delmar da Costa Lima; Wilson Rinaldi; Maria Ida Ravanelli

Aerobic exercise training can improve insulin sensitivity in many tissues; however, the relationship among exercise, insulin, and cancer cell growth is unclear. We tested the hypothesis that aerobic exercise training begun during adolescence can attenuate Walker 256 tumor growth in adult rats and alter insulin secretion. Thirty-day-old male Wistar rats engaged in treadmill running for 8 weeks, 3 days/week, 44 min/day, at 55–65% VO2max until they were 90 days old (TC, Trained Control). An equivalently aged group was kept inactive during the same period (SC, Sedentary Control). Then, half the animals of the SC and TC groups were reserved as the control condition and the other half were inoculated with Walker 256 cancer cells, yielding two additional groups (Sedentary Walker and Trained Walker). Zero mortalities were observed in tumor-bearing rats. Body weight (BW), food intake, plasma glucose, insulin levels, and peripheral insulin sensitivity were analyzed before and after tumor cell inoculation. We also evaluated tumor growth, metastasis and cachexia. Isolated pancreatic islets secretory activity was analyzed. In addition, we evaluated mechanic sensibility. Our results showed improved physical performance according to the final workload and VO2max and reduced BW in trained rats at the end of the running protocol. Chronic adaptation to the aerobic exercise training decreased tumor weight, cachexia and metastasis and were associated with low glucose and insulin levels and high insulin sensitivity before and after tumor cell inoculation. Aerobic exercise started at young age also reduced pancreatic islet insulin content and insulin secretion in response to a glucose stimulus, without impairing islet morphology in trained rats. Walker 256 tumor-bearing sedentary rats also presented reduced pancreatic islet insulin content, without changing insulin secretion through isolated pancreatic islets. The mechanical sensitivity test indicated that aerobic exercise training did not cause injury or trigger inflammatory processes prior to tumor cell inoculation. Taken together, the current study suggests that aerobic exercise training applied during adolescence may mitigate tumor growth and related disorders in Walker 256 tumor-bearing adult rats. Improved insulin sensibility, lower glucose and insulin levels and/or reduced insulin secretion stimulated by glucose may be implicated in this tumor attenuation.


Endocrine | 2018

Maternal low-protein diet during lactation combined with early overfeeding impair male offspring’s long-term glucose homeostasis

Douglas Lopes de Almeida; Fernando Salgueiro Simões; Lucas Paulo Jacinto Saavedra; Ana Maria Praxedes de Moraes; Camila Cristina Ianoni Matiusso; Ananda Malta; Kesia Palma-Rigo; Paulo Cesar de Freitas Mathias

PurposeThe early-life nutritional environment affects long-term glucose homeostasis, we investigated the effects of maternal low-protein diet combined with postnatal early overfeeding on the male offspring’s glucose homeostasis in adulthood.MethodsOnly male rats were used, and their delivery was considered postnatal-day 0 (PN0). Wistar rats’ dams were divided into control (NP) or low-protein diet (LP). LP dams remained on the diet until PN14, after which all animals were supplied with the control diet. At PN2, litters were adjusted to 9 (control-NL) or 3 (postnatal-overfeeding-PO) pups, resulting in four experimental groups: NP-NL, NP-PO, LP-NL, and LP-PO. Litters were weaned on PN21. At PN80, a batch of animals from all experimental groups underwent surgery for cannula implantation, followed by intravenous glucose tolerance test (ivGTT), but the insulinogenic index (ISI) was calculated. At PN81, animals were euthanized and tissues were collected.ResultsLP-diet and early postnatal-overfeeding were effective in promoting the expected biometric outcomes at PN21 and PN81, but the LP-PO animals present a biometric profile similar to the control (NP-NL) group. Postnatal-overfeeding increased fasting glycemia in LP-PO animals (p < 0.01). In the ivGTT, postnatal-overfeeding elevated the glycemia (p < 0.0001), exacerbated in LP-PO animals (p < 0.0001). Insulinemia was reduced by both, maternal LP-diet and postnatal-overfeeding, with a higher degree of reduction in LP-PO animals (p < 0.0001). Maternal LP-diet and postnatal-overfeeding reduced the ISI (p < 0.0001). Factors interaction lead the LP-PO to a lower ISI compared to all other groups (p < 0.0001).ConclusionsThe combination of low-protein diet in breastfeeding dams with postnatal overfeeding disturbed the offspring’s glucose metabolism in adulthood.

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Ananda Malta

Universidade Estadual de Maringá

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Audrei Pavanello

Universidade Estadual de Maringá

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Laize Peron Tófolo

Universidade Estadual de Maringá

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Tatiane Aparecida Ribeiro

Universidade Estadual de Maringá

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Isabela Peixoto Martins

Universidade Estadual de Maringá

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Júlio Cezar de Oliveira

Universidade Federal de Mato Grosso

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Flávio Andrade Francisco

Universidade Estadual de Maringá

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