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Body Composition and Metabolic Caging Analysis in High Fat Fed Mice
Published on: May 24, 2018
MCH-/- mice are resistant to aging-associated increases in body weight and insulin resistance
Justin Y Jeon1, Richard L Bradley, Efi G Kokkotou
1Division of Endocrinology, Department of Medicine, Beth Israel Deaconess Medical Center, Boston, MA 02215, USA.
Abstract:
Ablation of the hypothalamic peptide, melanin-concentrating hormone (MCH), leads to a lean phenotype and resistance to diet-induced obesity. Observation of MCH(-/-) mice at older ages suggested that these effects persist in mice >1 year old. Leanness secondary to caloric restriction is known to be associated with improved glucose tolerance as well as an overall increase in life span. Because the MCH(-/-) model represents leanness secondary to increased energy expenditure rather than caloric restriction, we were interested in determining whether this model of leanness would be associated with beneficial metabolic effects at older ages. To assess the effects of MCH ablation over a more prolonged period, we monitored male and female MCH(-/-) mice up to 19 months. The lean phenotype of MCH(-/-) mice persisted over the duration of the study. At 19 months, MCH(-/-) male and female mice weighed 23.4 and 30.8% less than their wild-type counterparts, a result of reduced fat mass in MCH(-/-) mice. Aged MCH(-/-) mice exhibited better glucose tolerance and were more insulin sensitive compared with wild-type controls. Aging-associated decreases in locomotor activity were also attenuated in MCH(-/-) mice. We also evaluated two molecules implicated in the pathophysiology of aging, p53 and silent inflammatory regulator 2 (Sir2). We found that expression of the tumor suppressor protein p53 was higher in MCH(-/-) mice at 9 and 19 months of age. In contrast, expression of Sir2 was unchanged. In aggregate, these findings suggest that MCH ablation improves the long-term outcome for several indicators of the aging process.
Insights
Ablating melanin-concentrating hormone (MCH) in mice results in a lean phenotype and improved metabolic health, even in old age. This suggests MCH plays a key role in aging and metabolic regulation.
Area of Science:
- Neuroendocrinology
- Metabolic Research
- Aging Biology
Background:
- Melanin-concentrating hormone (MCH) is a hypothalamic peptide influencing energy balance.
- MCH ablation leads to leanness and resistance to diet-induced obesity.
- Previous observations suggested these effects persist in aged mice.
Purpose of the Study:
- To investigate the long-term metabolic and aging-related effects of MCH ablation in mice.
- To determine if MCH deficiency confers beneficial metabolic outcomes at older ages.
- To assess the impact of MCH ablation on aging biomarkers.
Main Methods:
- Monitoring male and female MCH(-/-) mice and wild-type controls up to 19 months of age.
- Assessing body weight, fat mass, glucose tolerance, and insulin sensitivity.
- Measuring locomotor activity and evaluating the expression of p53 and silent inflammatory regulator 2 (Sir2).
Main Results:
- MCH(-/-) mice maintained a lean phenotype, with significantly reduced body weight and fat mass compared to controls at 19 months.
- Aged MCH(-/-) mice showed improved glucose tolerance and insulin sensitivity.
- Locomotor activity decline was attenuated, and p53 expression was elevated in MCH(-/-) mice.
Conclusions:
- MCH ablation confers persistent leanness and improved metabolic health in aged mice.
- MCH deficiency appears to attenuate age-associated metabolic decline and may influence aging pathways.
- These findings highlight MCH as a potential target for interventions related to aging and metabolic disorders.
