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Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats

BACKGROUND: Obesity is a worldwide epidemic with more than 600 million affected individuals. Human studies have demonstrated some alterations in brains of otherwise healthy obese individuals and elevated risk of neurodegenerative disease of old age; these studies have also pointed to slightly dimini...

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Autores principales: Setkowicz, Zuzanna, Gaździńska, Agata, Osoba, Joanna J., Karwowska, Karolina, Majka, Piotr, Orzeł, Jarosław, Kossowski, Bartosz, Bogorodzki, Piotr, Janeczko, Krzysztof, Wyleżoł, Mariusz, Gazdzinski, Stefan P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4598109/
https://www.ncbi.nlm.nih.gov/pubmed/26447788
http://dx.doi.org/10.1371/journal.pone.0139987
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author Setkowicz, Zuzanna
Gaździńska, Agata
Osoba, Joanna J.
Karwowska, Karolina
Majka, Piotr
Orzeł, Jarosław
Kossowski, Bartosz
Bogorodzki, Piotr
Janeczko, Krzysztof
Wyleżoł, Mariusz
Gazdzinski, Stefan P.
author_facet Setkowicz, Zuzanna
Gaździńska, Agata
Osoba, Joanna J.
Karwowska, Karolina
Majka, Piotr
Orzeł, Jarosław
Kossowski, Bartosz
Bogorodzki, Piotr
Janeczko, Krzysztof
Wyleżoł, Mariusz
Gazdzinski, Stefan P.
author_sort Setkowicz, Zuzanna
collection PubMed
description BACKGROUND: Obesity is a worldwide epidemic with more than 600 million affected individuals. Human studies have demonstrated some alterations in brains of otherwise healthy obese individuals and elevated risk of neurodegenerative disease of old age; these studies have also pointed to slightly diminished memory and executive functions among healthy obese individuals. Similar findings were obtained in animal models of obesity induced by high fat diet. On the other hand, low carbohydrate high fat diets are currently promoted for losing weight (e.g., Atkin’s style diets). However, the long-term effects of such diets are not known. Additionally, high fat diets leading to (mild) ketonemia were shown to improve brain function in elderly humans and in some animal models. AIM: To evaluate the hypothesis that long-term use of a high fat diet was associated with decreases in spatial memory, smaller hippocampi and hippocampi metabolite concentrations in Wistar rats. METHODS: Twenty five male Wistar rats were put on high fat diet (HFD; 60% calories from fat, 30% from carbohydrates) on their 55(th) day of life, while 25 control male rats (CONs) remained on chow. Adequate levels of essential nutrients were provided. Both groups underwent memory tests in 8-arm radial maze at 3(rd), 6(th), 9(th), and 12(th) month. (1)H magnetic resonance spectroscopy was employed to measure concentrations of tNAA (marker of neuronal integrity) at one month and one year, whereas MRI was used to evaluate hippocampal volumes. RESULTS: Obese rats (OBRs) consumed similar amount of calories as CONs, but less proteins. However, their protein intake was within recommended amounts. Throughout the experiment OBRs had statistically higher concentrations of blood ketone bodies than CONs, but still within normal values. At post-mortem assessment, OBRs had 38% larger fat deposits than CONs (p<0.05), as evaluated by volume of epididymis fat, an acknowledged marker of fat deposits in rats. Contrary to our expectations, OBRs had better scores of memory behavioral tasks than CONs throughout the experiment. At one year, their hippocampi were by 2.6% larger than in CONs (p = 0.05), whereas concentration of tNAA was 9.8% higher (p = 0.014). CONCLUSION: Long-term HFD in our study resulted in better memory, larger hippocampal volumes, as well as higher hippocampal metabolite concentrations, possibly due to increased levels of blood ketone bodies. The results should be interpreted with caution, as results from animal models do not necessarily directly translate in human condition.
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spelling pubmed-45981092015-10-20 Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats Setkowicz, Zuzanna Gaździńska, Agata Osoba, Joanna J. Karwowska, Karolina Majka, Piotr Orzeł, Jarosław Kossowski, Bartosz Bogorodzki, Piotr Janeczko, Krzysztof Wyleżoł, Mariusz Gazdzinski, Stefan P. PLoS One Research Article BACKGROUND: Obesity is a worldwide epidemic with more than 600 million affected individuals. Human studies have demonstrated some alterations in brains of otherwise healthy obese individuals and elevated risk of neurodegenerative disease of old age; these studies have also pointed to slightly diminished memory and executive functions among healthy obese individuals. Similar findings were obtained in animal models of obesity induced by high fat diet. On the other hand, low carbohydrate high fat diets are currently promoted for losing weight (e.g., Atkin’s style diets). However, the long-term effects of such diets are not known. Additionally, high fat diets leading to (mild) ketonemia were shown to improve brain function in elderly humans and in some animal models. AIM: To evaluate the hypothesis that long-term use of a high fat diet was associated with decreases in spatial memory, smaller hippocampi and hippocampi metabolite concentrations in Wistar rats. METHODS: Twenty five male Wistar rats were put on high fat diet (HFD; 60% calories from fat, 30% from carbohydrates) on their 55(th) day of life, while 25 control male rats (CONs) remained on chow. Adequate levels of essential nutrients were provided. Both groups underwent memory tests in 8-arm radial maze at 3(rd), 6(th), 9(th), and 12(th) month. (1)H magnetic resonance spectroscopy was employed to measure concentrations of tNAA (marker of neuronal integrity) at one month and one year, whereas MRI was used to evaluate hippocampal volumes. RESULTS: Obese rats (OBRs) consumed similar amount of calories as CONs, but less proteins. However, their protein intake was within recommended amounts. Throughout the experiment OBRs had statistically higher concentrations of blood ketone bodies than CONs, but still within normal values. At post-mortem assessment, OBRs had 38% larger fat deposits than CONs (p<0.05), as evaluated by volume of epididymis fat, an acknowledged marker of fat deposits in rats. Contrary to our expectations, OBRs had better scores of memory behavioral tasks than CONs throughout the experiment. At one year, their hippocampi were by 2.6% larger than in CONs (p = 0.05), whereas concentration of tNAA was 9.8% higher (p = 0.014). CONCLUSION: Long-term HFD in our study resulted in better memory, larger hippocampal volumes, as well as higher hippocampal metabolite concentrations, possibly due to increased levels of blood ketone bodies. The results should be interpreted with caution, as results from animal models do not necessarily directly translate in human condition. Public Library of Science 2015-10-08 /pmc/articles/PMC4598109/ /pubmed/26447788 http://dx.doi.org/10.1371/journal.pone.0139987 Text en © 2015 Setkowicz et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Setkowicz, Zuzanna
Gaździńska, Agata
Osoba, Joanna J.
Karwowska, Karolina
Majka, Piotr
Orzeł, Jarosław
Kossowski, Bartosz
Bogorodzki, Piotr
Janeczko, Krzysztof
Wyleżoł, Mariusz
Gazdzinski, Stefan P.
Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats
title Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats
title_full Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats
title_fullStr Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats
title_full_unstemmed Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats
title_short Does Long-Term High Fat Diet Always Lead to Smaller Hippocampi Volumes, Metabolite Concentrations, and Worse Learning and Memory? A Magnetic Resonance and Behavioral Study in Wistar Rats
title_sort does long-term high fat diet always lead to smaller hippocampi volumes, metabolite concentrations, and worse learning and memory? a magnetic resonance and behavioral study in wistar rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4598109/
https://www.ncbi.nlm.nih.gov/pubmed/26447788
http://dx.doi.org/10.1371/journal.pone.0139987
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