Abstract

The age-related effects of fasting on lipolysis, the production of ketone bodies, and plasma insulin levels were studied in male 3-, 8-, and 32-week-old Sprague-Dawley rats. The rats were divided into fasting and control groups. The 3-, 8- and 32-week-old rats tolerated fasting for 2, 5, and 12days, respectively. Fasting markedly reduced the weights of perirenal and periepididymal white adipose tissues in rats in the three age groups. The mean rates of reduction in both these adipose tissue weights during fasting periods were higher in the order of 3>8>32-week-old rats. Fasting transiently increased plasma free fatty acid (FFA), total ketone body, β-hydroxybutyrate, and acetoacetate concentrations in the rats in the three age groups. However, plasma FFA, total ketone body, β-hydroxybutyrate, and acetoacetate concentrations in the 3-week-old rats reached maximal peak within 2days after the onset of fasting, although these concentrations in the 8- and 32-week-old rats took more than 2days to reach the maximal peak. By contrast, the augmentation of plasma FFA, total ketone body, β-hydroxybutyrate, and acetoacetate concentrations in the rats in the three age groups had declined at the end of each experimental period. Thus, the capacity for fat mobilization was associated with tolerance to fasting. Plasma insulin concentrations in the rats in the three age groups were dramatically reduced during fasting periods, although basal levels of insulin were higher in the order of 32>8>3week-old rats. These results suggest that differences in fat metabolism patterns among rats in the three age groups during prolonged fasting were partly reflected the metabolic turnover rates, plasma insulin levels, and amounts of fat storage.

Highlights

  • Lipolysis during fasting is a crucial adaptive response to supply free fatty acid (FFA) as an energy substrate to peripheral tissues, and is known to be hormonally regulated [1,2,3,4]

  • Plasma insulin concentrations in the rats in the three age groups were dramatically reduced during fasting periods, basal levels of insulin were higher in the order of 32 [ 8 [ 3 week-old rats. These results suggest that differences in fat metabolism patterns among rats in the three age groups during prolonged fasting were partly reflected the metabolic turnover rates, plasma insulin levels, and amounts of fat storage

  • We previously demonstrated that fasting-induced reductions of plasma glucose and triglyceride concentrations showed clearly different patterns among 3, 8- and 32-week-old rats [19]

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Summary

Introduction

Lipolysis during fasting is a crucial adaptive response to supply free fatty acid (FFA) as an energy substrate to peripheral tissues, and is known to be hormonally regulated [1,2,3,4]. Environ Health Prev Med (2012) 17:157–163 energy substrates to glucose in a variety of tissues, such as brain, heart, kidney, and skeletal muscles [2, 5,6,7,8,9,10]. Ketone bodies play essential roles in adaptive responses to fasting, fasting ketonuria is commonly observed in women and is associated with a growing risk of diabetic ketoacidosis [14]. Little evidence for this has been obtained so far

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