Sherpa brain glucose metabolism and defense adaptations against chronic hypoxia

被引:43
作者
Hochachka, PW
Clark, CM
Monge, C
Stanley, C
Brown, WD
Stone, CK
NIckles, RJ
Holden, JE
机构
[1] UNIV BRITISH COLUMBIA,DEPT PSYCHIAT,VANCOUVER,BC V6T 1Z4,CANADA
[2] UNIV BRITISH COLUMBIA,SPORTS MED DIV,VANCOUVER,BC V6T 1Z4,CANADA
[3] UNIV PERUANA CAYETANO HEREDIA,DEPT PHYSIOL,LIMA 100,PERU
[4] UNIV WISCONSIN,DEPT MED PHYS RADIOL & MED,MADISON,WI 53706
关键词
hypoxia adaptation; positron-emission tomography; Quechua; altitude adaptation;
D O I
10.1152/jappl.1996.81.3.1355
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The brain of hypoxia-tolerant vertebrates is known to survive extreme oxygen limitation at least in part because of very low rates of ATP utilization and ATP production. To assess whether similar adaptations are involved in healthy humans during hypoxia adaptations over generational time, we initially used positron-emission tomography measurements of glucose metabolic rates in the brain of Quechuas, whose ancestors have been indigenous to the Andes at altitudes between similar to 3,300 and 4,500 m for several hundred years, Workers in this field generally believe that the lineage of Sherpas has been indigenous to the Himalayas for even longer and that Sherpas and other peoples indigenous to the Tibetan plateau are perhaps the most exquisitely hypoxia adapted of all humans. For this reason, in this study we extended our database to include Sherpas. With the use of the same protocols as before, two metabolic states were analyzed: I)the presumed normal (hypoxia-adapted) state, monitored as soon as possible after subjects left the Himalayas and 2) the deacclimated state, monitored after 3 wk at low altitudes. Positron-emission tomography measurements of 2-[F-18]deoxy-2-fluoro-D-glucose metabolic rates, quantified in 26 regions of the brain, indicated that the Sherpas' brain metabolism differed significantly from that of Quechuas but was essentially identical to that of lowlanders. Region-by-region patterns were similar in all three groups, indicating that the regional organization of glucose metabolism in the brain is a conservative, relatively constant characteristic.
引用
收藏
页码:1355 / 1361
页数:7
相关论文
共 30 条
[1]  
CLARK CM, 1992, J NUCL MED, V33, P157
[2]   SUBSTRATE DEPENDENCE OF ENERGY-METABOLISM IN ISOLATED GUINEA-PIG CARDIAC-MUSCLE - A MICROCALORIMETRIC STUDY [J].
DAUT, J ;
ELZINGA, G .
JOURNAL OF PHYSIOLOGY-LONDON, 1989, 413 :379-397
[3]  
DOLL CJ, 1993, SURVIVING HYPOXIA, P389
[4]   Are Himalayan Sherpas better protected against brain damage associated with extreme altitude climbs? [J].
Garrido, E ;
Segura, R ;
Capdevila, A ;
Pujol, J ;
Javierre, C ;
Ventura, JL .
CLINICAL SCIENCE, 1996, 90 (01) :81-85
[5]   CORTICAL ATROPHY AND OTHER BRAIN MAGNETIC-RESONANCE-IMAGING (MRI) CHANGES AFTER EXTREMELY HIGH-ALTITUDE CLIMBS WITHOUT OXYGEN [J].
GARRIDO, E ;
CASTELLO, A ;
VENTURA, JL ;
CAPDEVILA, A ;
RODRIGUEZ, FA .
INTERNATIONAL JOURNAL OF SPORTS MEDICINE, 1993, 14 (04) :232-234
[6]   BRAIN GLUCOSE-METABOLISM IN HYPOBARIC HYPOXIA [J].
HARIK, SI ;
LUST, WD ;
JONES, SC ;
LAURO, KL ;
PUNDIK, S ;
LAMANNA, JC .
JOURNAL OF APPLIED PHYSIOLOGY, 1995, 79 (01) :136-140
[7]   HYPOXIA INCREASES GLUCOSE-TRANSPORT AT BLOOD-BRAIN-BARRIER IN RATS [J].
HARIK, SI ;
BEHMAND, RA ;
LAMANNA, JC .
JOURNAL OF APPLIED PHYSIOLOGY, 1994, 77 (02) :896-901
[8]  
Hochachka P. W., 1984, BIOCH ADAPTATION, P1
[9]   DEFENSE STRATEGIES AGAINST HYPOXIA AND HYPOTHERMIA [J].
HOCHACHKA, PW .
SCIENCE, 1986, 231 (4735) :234-241
[10]   METABOLIC AND WORK EFFICIENCIES DURING EXERCISE IN ANDEAN NATIVES [J].
HOCHACHKA, PW ;
STANLEY, C ;
MATHESON, GO ;
MCKENZIE, DC ;
ALLEN, PS ;
PARKHOUSE, WS .
JOURNAL OF APPLIED PHYSIOLOGY, 1991, 70 (04) :1720-1730