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Animals have to adapt to seasonal variations in food resources and temperature. Hibernation is one of the most efficient means used by animals to cope with harsh winter conditions, wherein survival is achieved through a significant decrease in energy expenditure. The hibernation period is constituted by a succession of torpor bouts (hypometabolism and decrease in body temperature) and periodic arousals (eumetabolism and euthermia). Some species feed during these periodic arousals, and thus show different metabolic adaptations to fat-storing species that fast throughout the hibernation period. Our study aims to define these metabolic adaptations, including hormone (insulin, glucagon, leptin, adiponectin, GLP-1, GiP) and metabolite (glucose, free fatty acids, triglycerides, urea) profiles together with body composition adjustments. Syrian hamsters were exposed to varied photoperiod and temperature conditions mimicking different phases of the hibernation cycle: a long photoperiod at 20 °C (LP20 group), a short photoperiod at 20 °C (SP20 group), and a short photoperiod at 8 °C (SP8). SP8 animals were sampled either at the beginning of a torpor bout (Torpor group) or at the beginning of a periodic arousal (Arousal group). We show that fat store mobilization in hamsters during torpor bouts is associated with decreased circulating levels of glucagon, insulin, leptin, and an increase in adiponectin. Refeeding during periodic arousals results in a decreased free fatty acid plasma concentration and an increase in glycemia and plasma incretin concentrations. Reduced incretin and increased adiponectin levels are therefore in accordance with the changes in nutrient availability and feeding behavior observed during the hibernation cycle of Syrian hamsters.  相似文献   
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The apprehension of the factors that affect long term regulation of energy balance is indispensable to understand the rise in obesity prevalence as well as to delineate levers to prevent it. Accurate measurements of energy balance are however challenging during free‐living conditions. Recent studies proposed urinary C‐peptide, a metabolic byproduct of insulin synthesis, as reliable noninvasive assessment of energy balance. These studies were in fact essentially based on correlations between urinary C‐peptide and energy intake and only focused on nonhuman primates. During a bed‐rest study conducted in 16 healthy women in a controlled environment, we tested the existence of a relationship between 24 h‐urinary C‐peptide and energy balance in humans. Daily energy intake and body mass, body composition (dual‐energy X‐ray absorptiometry (DXA)) and total energy expenditure (doubly labeled water (DLW) method) was measured and energy balance was calculated as the difference between energy intake and expenditure. Urinary C‐peptide was positively correlated with bed‐rest‐induced changes in fat mass (r2 = 0.285; P = 0.03) and energy balance assessed at the end of the bed‐rest (r2 = 0.302; P = 0.027). However, in this tightly controlled environment, urinary C‐peptide only accounted for 30% of variations in energy balance. No relationship was noted between urinary C‐peptide and body or fat mass both at baseline and at the end of the bed‐rest. These results indicate that urinary C‐peptide cannot be used as an accurate biomarker of energy balance in the general human population in free‐living conditions.  相似文献   
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Roost  Thibaut  Schies  Jo-Ann  Girondot  Marc  Robin  Jean-Patrice  Lelong  Pierre  Martin  Jordan  Siegwalt  Flora  Jeantet  Lorène  Giraudeau  Mathieu  Le Loch  Guillaume  Bejarano  Manola  Bonola  Marc  Benhalilou  Abdelwahab  Murgale  Céline  Andreani  Lucas  Jacaria  François  Campistron  Guilhem  Lathière  Anthony  Martial  François  Hielard  Gaëlle  Arqué  Alexandre  Régis  Sidney  Lecerf  Nicolas  Frouin  Cédric  Lefebvre  Fabien  Aubert  Nathalie  Flora  Frédéric  Pimentel  Esteban  Lafolle  Rachelle  Thobor  Florence  Arthus  Mosiah  Etienne  Denis  Lecerf  Nathaël  Allenou  Jean-Pierre  Desigaux  Florian  Larcher  Eugène  Larcher  Christian  Curto  Alberto Lo  Befort  Joanne  Maceno-Panevel  Myriane  Lepori  Muriel  Chevallier  Pascale  Chevallier  Tao  Meslier  Stéphane  Landreau  Anthony  Habold  Caroline  Le Maho  Yvon  Chevallier  Damien 《EcoHealth》2022,19(2):190-202

Fibropapillomatosis (FP) threatens the survival of green turtle (Chelonia mydas) populations at a global scale, and human activities are regularly pointed as causes of high FP prevalence. However, the association of ecological factors with the disease’s severity in complex coastal systems has not been well established and requires further studies. Based on a set of 405 individuals caught over ten years, this preliminary study provides the first insight of FP in Martinique Island, which is a critical development area for immature green turtles. Our main results are: (i) 12.8% of the individuals were affected by FP, (ii) FP has different prevalence and temporal evolution between very close sites, (iii) green turtles are more frequently affected on the upper body part such as eyes (41.4%), fore flippers (21.9%), and the neck (9.4%), and (iv) high densities of individuals are observed on restricted areas. We hypothesise that turtle’s aggregation enhances horizontal transmission of the disease. FP could represent a risk for immature green turtles’ survival in the French West Indies, a critical development area, which replenishes the entire Atlantic population. Continuing scientific monitoring is required to identify which factors are implicated in this panzootic disease and ensure the conservation of the green turtle at an international scale.

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A method of perfusion-fixation with formalin is here presented which is based upon well established physiological principles. It represents an attempt to preserve more accurately the structure and relationships of nervous tissue found in the living state. The essential points include the following: (1) Perfusion at an hydrostatic pressure equivalent to the mean arterial pressure of the animal to be fixed to maintain the normal patency of the vascular bed. For the guinea pig, it is approximately 70 mm. Hg; for the cat and monkey, it is approximately 120 mm. Hg. (2) The addition of a colloid to the perfusion fluid which will exert an osmotic pressure equal to the hydrostatic pressure in the capillaries and thus prevent edema. Gum acacia is used in this method. Its concentration depends upon the hydrostatic pressure to be used: for 70 mm. Hg, in the guinea pig it is 2.4%; for 122 mm. Hg, in the cat and the monkey, it is 5.6% gum acacia. (3) The addition of an electrolyte to the perfusion fluid to make it isotonic to the tissue fluid and thus prevent a disturbance in the distribution of water in the animal with resultant tissue distortion. NaCl (0.9%) is used in this method. (4) For further fixation or for preservation of the tissues, they are placed in a solution of 10% formalin which contains 0.9% NaCl to minimize swelling.  相似文献   
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