CAPILLARY FILTRATION COEFFICIENT IN TYPE-II (NON-INSULIN-DEPENDENT) DIABETES

被引:16
作者
JAAP, AJ
SHORE, AC
GAMBLE, J
GARTSIDE, IB
TOOKE, JE
机构
[1] Diabetes Research Laboratories, Postgraduate Medical School, University of Exeter, Exeter
[2] Department of Physiology, Charing Cross and Westminster Medical School, London
基金
英国惠康基金;
关键词
D O I
10.1016/1056-8727(94)90060-4
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Changes in microvascular permeability may be important in the pathogenesis of diabetic microangiopathy. In order to assess microvascular fluid permeability, the capillary filtration coefficient was determined in the forearm of 24 normotensive type II diabetic patients with minimal evidence of microangiopathy and satisfactory glycemic control, and 24 age- and sex-matched control subjects, using a sensitive strain gauge plethysmographic system. The median capillary filtration coefficient was not significantly different in the type II diabetic patients and control subjects [5.3 (3.2 - 9.1) x 10(-3) mL . min-1. 100 g tissue -1 . mm Hg-1 versus 5.4 (3.5 - 8.0) x 10(-3) mL . min-1. 100 g tissue-1. mm Hg-1, p = 0.98)]. There were no correlations between capillary filtration coefficient and age, blood pressure, body mass index, duration of diabetes, glycemic control, or the presence of microvascular complications. These findings contrast with type I diabetes, where capillary filtration coefficient is elevated at an early stage in the disease, and lend support to the theory that there are differences in early microvascular functional abnormalities between type I and type II diabetes. (Journal of Diabetes and Its Complications 8;2:111-116, 1994.)
引用
收藏
页码:111 / 116
页数:6
相关论文
共 35 条
[1]  
Tooke, Microvascular haemodynamics in diabetes mellitus, Clin Sci, 70, pp. 119-125, (1986)
[2]  
Parving, Viberti, Keen, Christiansen, Lassen, Haemodynamic factors in the genesis of diabetic microangiopathy, Metabolism, 32, pp. 943-949, (1983)
[3]  
Zatz, Brenner, Pathogenesis of diabetic microangiopathy: The haemodynamic view, Am J Med, 80, pp. 443-453, (1986)
[4]  
Kohner, Hamilton, Saunders, Sutcliffe, Bulpitt, The retinal blood flow in diabetes, Diabetologia, 11, pp. 27-33, (1975)
[5]  
Christiansen, Gammelgaard, Tronier, Svendsen, Parving, Kidney function and size in diabetics, before and during initial insulin treatment, Kidney Int, 21, pp. 683-688, (1982)
[6]  
Sandeman, Shore, Tooke, Relation of skin capillary pressure in patients with insulin-dependent diabetes to complications and metabolic control, N Engl J Med, 327, pp. 760-764, (1992)
[7]  
Jaap, Shore, Gartside, Gamble, Tooke, Increased microvascular fluid permeability to water in young type 1 (insulin-dependent) diabetic patients, Diabetologia, 36, pp. 648-652, (1993)
[8]  
Parving, Noer, Deckert, Evrin, Nielsen, Lyngsoe, Mogensen, Rorth, Svendsen, Trap-Jensen, Lassen, The effect of metabolic regulation on microvascular permeability to small and large molecules in short-term juvenile diabetics, Diabetologia, 12, pp. 161-166, (1976)
[9]  
Alpert, Coffman, Balodimos, Koncz, Soeldner, Capillary permeability and blood flow in skeletal muscle of patients with diabetes mellitus and genetic prediabetes, N Engl J Med, 286, pp. 454-460, (1972)
[10]  
Parving, Rasmussen, Subcutaneous Interstitial Fluid Albumin Concentration in Long-Term Diabetes Mellitus, Scandinavian Journal of Clinical & Laboratory Investigation, 32, pp. 167-173, (1973)