Hypothalamic neuropeptide mechanisms for regulating energy balance: from rodent models to human obesity

被引:83
作者
Mercer, JG [1 ]
Speakman, JR
机构
[1] Rowett Res Inst, Aberdeen Ctr Energy Regulat & Obes, Aberdeen AB21 9SB, Scotland
[2] Univ Aberdeen, Dept Zool, Aberdeen AB24 2TZ, Scotland
基金
英国生物技术与生命科学研究理事会;
关键词
body mass; body weight; body weight set point; Siberian hamster; phodopus; photoperiod; hypothalamic neuropeptides; leptin; melanocortin;
D O I
10.1016/S0149-7634(00)00053-1
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
In small rodents there is compelling evidence of a lipostatic system of body mass regulation in which peripheral signals of energy storage are decoded in the hypothalamus. The ability of small mammals to defend an appropriate mass against imposed energy imbalance has implicated hypothalamic neuroendocrine systems in body mass regulation. The effect of the neuropeptide systems involved in this regulation is primarily compensatory. However, small mammals can also effect changes in the level of body mass that they will defend, as exemplified by seasonal species. Regulatory control over fat mass may be relatively loose in humans; the sizes of long-term storage depots may not themselves be regulated, but rather may be a consequence of temporal variations in the matching of supply and demand. Whether food intake is regulated to match energy demand, or to match demand and to regulate storage, it is clear that physiological defects or genetic variation in hypothalamic and peripheral feedback systems will have profound implications for fat storage. Study of mechanisms implicated in energy homeostasis in laboratory rodents is likely to continue to identify targets for pharmacological manipulation in the management of human obesity. (C) 2001 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:101 / 116
页数:16
相关论文
共 124 条
[41]  
Hill RA, 1998, BEHAVIOUR, V135, P411
[42]   Intraflock variation in the speed of escape-flight response on attack by an avian predator [J].
Hilton, GM ;
Cresswell, W ;
Ruxton, GD .
BEHAVIORAL ECOLOGY, 1999, 10 (04) :391-395
[43]   Several mutations in the melanocortin-4 receptor gene including a nonsense and a frameshift mutation associated with dominantly inherited obesity in humans [J].
Hinney, A ;
Schmidt, A ;
Nottebom, K ;
Heibült, O ;
Becker, I ;
Ziegler, A ;
Gerber, G ;
Sina, M ;
Görg, T ;
Mayer, H ;
Siegfried, W ;
Fichter, M ;
Remschmidt, H ;
Hebebrand, J .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1999, 84 (04) :1483-1486
[44]   ENERGETIC RESERVES OF MARSH TITS (PARUS-PALUSTRIS) - FOOD AND FAT STORAGE IN RESPONSE TO VARIABLE FOOD-SUPPLY [J].
HURLY, TA .
BEHAVIORAL ECOLOGY, 1992, 3 (02) :181-188
[45]   Targeted disruption of the melanocortin-4 receptor results in obesity in mice [J].
Huszar, D ;
Lynch, CA ;
FairchildHuntress, V ;
Dunmore, JH ;
Fang, Q ;
Berkemeier, LR ;
Gu, W ;
Kesterson, RA ;
Boston, BA ;
Cone, RD ;
Smith, FJ ;
Campfield, LA ;
Burn, P ;
Lee, F .
CELL, 1997, 88 (01) :131-141
[46]   Obesity and impaired prohormone processing associated with mutations in the human prohormone convertase 1 gene [J].
Jackson, RS ;
Creemers, JWM ;
Ohagi, S ;
RaffinSanson, ML ;
Sanders, L ;
Montague, CT ;
Hutton, JC ;
ORahilly, S .
NATURE GENETICS, 1997, 16 (03) :303-306
[47]   Interacting appetite-regulating pathways in the hypothalamic regulation of body weight [J].
Kalra, SP ;
Dube, MG ;
Pu, SY ;
Xu, B ;
Horvath, TL ;
Kalra, PS .
ENDOCRINE REVIEWS, 1999, 20 (01) :68-100
[48]   Serum leptin and regional cerebral blood flow during exposure to food in obese and normal-weight women [J].
Karhunen, LJ ;
Lappalainen, RI ;
Vanninen, EJ ;
Kuikka, JT ;
Uusitupa, MIJ .
NEUROENDOCRINOLOGY, 1999, 69 (03) :154-159
[49]  
KAYE WH, 1991, J CLIN PSYCHIAT, V52, P21
[50]   Body weight set-points: Determination and adjustment [J].
Keesey, RE ;
Hirvonen, MD .
JOURNAL OF NUTRITION, 1997, 127 (09) :S1875-S1883