The source of fatty acids incorporated into proliferating lymphoid cells in immune-stimulated lymph nodes

被引:39
作者
Pond, CM [1 ]
Mattacks, CA [1 ]
机构
[1] Open Univ, Dept Biol Sci, Milton Keynes MK7 6AA, Bucks, England
关键词
perinodal adipose tissue; paracrine interactions; adipocyte site-specific properties; popliteal; mesenteric;
D O I
10.1079/BJN2002784
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
To explore the hypothesis that proliferating lymphoid cells in immune-stimulated lymph nodes obtain nutrients locally from adjacent adipose tissue, adult guinea pigs were fed for 6 weeks on standard chow or on chow supplemented with 100 g suet, sunflower oil or fish oil/kg. All the guinea pigs ate standard chow for the last 5 d, during which swelling of one popliteal lymph node was stimulated by repeated local injection of lipopolysaccharide. The fatty acid compositions of phospholipids in both popliteal and in several mesenteric lymph nodes, and of triacylglycerols in eleven samples of adipose tissue defined by their anatomical relations to lymph nodes, were determined by GC. The proportions of fatty acids in the phospholipids extracted from the stimulated popliteal node correlated best with those of triacylglycerols in the surrounding adipocytes, less strongly with those of adipocytes elsewhere in depots associated with lymphoid tissue, but not with those of nodeless depots. The composition of triacylglycerols in the perinodal adipose tissue changed under local immune stimulation. We conclude that proliferating lymphoid cells in activated lymph nodes obtain fatty acids mainly from the triacylglycerols in adjacent perinodal adipose tissue. Immune stimulation prompts changes in the fatty acid composition of the triacylglycerols of adipocytes in node-containing depots that equip the adipose tissue for provisioning immune responses. Such local interactions show that specialised adipocytes can act as an interface between whole-body and cellular nutrition, and may explain why mammalian adipose tissue is partitioned into a few large and many small depots.
引用
收藏
页码:375 / 382
页数:8
相关论文
共 41 条
[1]   INCORPORATION OF FATTY-ACIDS BY CONCANAVALIN A-STIMULATED LYMPHOCYTES AND THE EFFECT ON FATTY-ACID COMPOSITION AND MEMBRANE FLUIDITY [J].
CALDER, PC ;
YAQOOB, P ;
HARVEY, DJ ;
WATTS, A ;
NEWSHOLME, EA .
BIOCHEMICAL JOURNAL, 1994, 300 :509-518
[2]  
Calder PC, 2001, NESTLE NUTR WORKS SE, V45, P137
[3]   SITE-SPECIFIC DIFFERENCES IN THE FATTY-ACID COMPOSITION OF HUMAN ADIPOSE-TISSUE [J].
CALDER, PC ;
HARVEY, DJ ;
POND, CM ;
NEWSHOLME, EA .
LIPIDS, 1992, 27 (09) :716-720
[4]  
CALDER PC, 1993, OMEGA 3 FATTY ACIDS, P293
[5]   DIETARY-FAT - EXOGENOUS DETERMINATION OF MEMBRANE-STRUCTURE AND CELL-FUNCTION [J].
CLANDININ, MT ;
CHEEMA, S ;
FIELD, CJ ;
GARG, ML ;
VENKATRAMAN, J ;
CLANDININ, TR .
FASEB JOURNAL, 1991, 5 (13) :2761-2769
[6]   Effects of protein-energy malnutrition and human immunodeficiency virus-1 infection on essential fatty acid metabolism in children [J].
Decsi, T ;
Koletzko, B .
NUTRITION, 2000, 16 (06) :447-453
[7]  
DIENER E, 1970, TRANSPLANT P, V2, P309
[8]   Adipose tissue distribution pattern in patients with familial partial lipodystrophy (Dunnigan variety) [J].
Garg, A ;
Peshock, RM ;
Fleckenstein, JL .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1999, 84 (01) :170-174
[9]  
Geerling BJ, 1999, AM J GASTROENTEROL, V94, P410, DOI 10.1111/j.1572-0241.1999.869_a.x
[10]  
Goodpaster BH, 2000, ANN NY ACAD SCI, V904, P18