Obesity, a major health problem, is gradually transforming into a global epidemic. The current obesity treatment with long term efficacy is the bariatric surgery, however, the operative risk of this procedure is high and the post-operative iotrogeny may be important. Obesity is most often associated to the feeding behavior which depends on hypothalamic integration of peripheral signals such as leptin and glucose. High levels of circulating leptin are detected in obese patients. These elevated leptin levels fail to reduce appetite or increase energy expenditure. The mechanism underlying this non-integration of peripheral signals remains to be identified. The ratio of leptin levels in the cereprospinal fluid (CSF) and in the periphery is drastically decreased in obese patients when compared to lean individuals, therefore a defective transport of circulating leptin into the brain via the CSF is maybe linked to obesity.
We hypothesize that the alteration of leptin transport into the CSF of obese patients could be modulated by drugs such as metformin which is widely used worldwide to treat diabetes. This study is monocentric, prospective, one-arm type and interventional. The main objective isto evaluate the impact of metformin on the transport of leptin into the CSF of obese patients. We propose to show a variation of CSF leptin / serum leptin before and after metformin treatment and study its association with changes in hypothalamic metabolic activity, cognitive and appetite-related behaviors and ratio of other metabolic signals. This would support the hypothesis of modulation of resistance to peripheral leptin by metformin and thus uncover a new indication for metformin treatment towards the management of obesity. For this purpose, volunteers will be subjected to blood sampling via venipuncture, CSF collection via lumbar puncture, MRI assessments and questionnaires (cognitive tests, food survey and feeding behavior) before and after a 3-month metformin treatment.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
31
Day 1 to day 3: 500 mg/day Day 4 to day 6: 500 mg/twice a day Day 7 to day 9: 500 mg three times a day Day 10 until next lumbar puncture : 850 mg three times a day
Centre hospitalier d'Arras
Arras, France
RECRUITINGcerebrospinal fluid /plasma leptin ratio
Time frame: 3 months
cerebrospinal fluid /plasma glucose ratio
Time frame: at day 0, 3 months
cerebrospinal fluid /plasma glucagon like peptide 1 (GLP1) ratio
Time frame: at day 0, 3 months
cerebrospinal fluid /plasma insulin ratio
Time frame: 3 months
cerebrospinal fluid /plasma ghrelin ratio
Time frame: at day 0, 3 months
Cerebrospinal fluid levels of Agouti-Related Peptide (AgRP)
Time frame: at day 0, 3 months
Plasma levels of Agouti-Related Peptide (AgRP)
Time frame: at day 0, 3 months
Cerebrospinal fluid levels of proopiomelanocortin (POMC)
Time frame: at day 0, 3 months
Plasma levels of proopiomelanocortin (POMC)
Time frame: at day 0, 3 months
Cerebrospinal fluid levels of neuropeptide Y (NPY)
Time frame: at day 0, 3 months
Plasma levels of neuropeptide Y (NPY)
Time frame: at day 0, 3 months
Cerebrospinal fluid levels of leptin soluble receptor
Time frame: at day 0, 3 months
Plasma levels of leptin soluble receptor
Time frame: at day 0, 3 months
Apparent diffusion coefficient (ADC)
Apparent diffusion coefficient (ADC) is a measure of the magnitude of diffusion (of water molecules) within tissue, and is commonly clinically calculated using Magnetic resonance imaging (MRI). An ADC of a tissue is expressed in units of mm2/s
Time frame: at day 0, 3 months
Hypothalamic concentration of N-acetyl-aspartate (NAA)
This concentration will be measure by spectroscopy
Time frame: at day 0, 3 months
Hypothalamic concentration of creatine
This concentration will be measure by spectroscopy
Time frame: at day 0, 3 months
Hypothalamic concentration of Choline
This concentration will be measure by spectroscopy
Time frame: 3 months
Hypothalamic concentration of Glutamine / glutamate
This concentration will be measure by spectroscopy
Time frame: at day 0, 3 months
Hypothalamic concentration of gamma-aminobutyric acid (GABA)
This concentration will be measure by spectroscopy
Time frame: at day 0, 3 months
Weight
Time frame: at day 0, 3 months
Abdominal circumference
Time frame: 3 months
Percentage of body fat
This parameter will measure by bioelectrical impedance analysis (BIA). A weak electric current flows through the body and the voltage is measured in order to calculate impedance (resistance) of the body.
Time frame: at day 0, 3 months
Fat free mass (Kg)
This parameter will measure by bioelectrical impedance analysis (BIA). A weak electric current flows through the body and the voltage is measured in order to calculate impedance (resistance) of the body.
Time frame: at day 0, 3 months
Energy expenditure
This parameter will measure by indirect calorimetry (kCal / 24h)
Time frame: at day 0, 3 months
Score of the Three Factor Eating Questionnaire (TFEQ)
The TFEQ contains 51 items and measures three dimensions of eating behavior: * cognitive restraint of eating' (Factor I - 21 items) * disinhibition (Factor II - 16 items) * hunger (Factor III - 14 items) Each item scores either 0 or 1 point. The minimum score for factors I-II-III is therefore 0-0-0, the possible maximum score 21-16-14
Time frame: 3 months
Score of the Dutch Eating Behaviour Questionnaire (DEBQ)
This is a 33-item self-report questionnaire to assess three distinct eating behaviors in adults: (1) emotional eating, (2) external eating, and (3) restrained eating. Items on the DEBQ range from 1 (never) to 5 (very often), with higher scores indicating greater endorsement of the eating behavior.
Time frame: at day 0, 3 months
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