VISCOUS AND OSMOTICALLY MEDIATED CHANGES IN FLUID MOVEMENT ACROSS SYNOVIUM IN RESPONSE TO INTRAARTICULAR ALBUMIN

被引:15
作者
LEVICK, JR
MCDONALD, JN
机构
[1] Department of Physiology, St. George’s Hospital Medical School, London
基金
英国惠康基金;
关键词
D O I
10.1006/mvre.1994.1006
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Fluid exchange in synovial joints involves both interstitial and transcapillary flow. Here the influence of intraarticular albumin, a normal component of intraarticular fluid, on net transsynovial flow was explored by infusing albumin solutions into the synovial cavity of rabbit knees and recording net flow across the synovial lining. The latter is a discontinuous cell layer possessing matrix-filled intercellular spaces and fenestrated capillaries. Albumin solutions (10-250 g·liter-1) of known oncotic pressure and viscosity were infused at a constant pressure between 3 and 18 cm H2O, either in vivo or post mortem. The rate of absorption (outflow) of Krebs solution from the cavity at the same pressure was measured as the control. Albumin reduced the net rate of absorption of fluid from the joint cavity (Qs). The reduction in Qsin vivo, expressed as a fraction of control, was greater than the fractional reduction in the fluidity of the albumin solution (i.e., 1/relative viscosity). At high albumin concentrations in vivo, the net flow reversed direction and became a net filtration into the joint cavity. The change in Qs per unit change in intraarticular oncotic pressure was then 29.7 × 10-3 μl · min-1 · cm H2O-1. Even when there was continuous net outflow across the lining, however, as at lower albumin concentrations or higher joint pressures, the intraarticular albumin became diluted compared with the infusate. When synovial blood flow was stopped by killing the animal, albumin had less effect on net transsynovial outflow than that in vivo. Outflow was still reduced by albumin but the fractional reduction was now less than the fractional reduction in bulk fluidity. Also, intraarticular dilution was less marked postmortem than in vivo. The observations were compatible with the view that the net transsynovial flow in vivo comprised two opposing flows, namely, capillary (fenestral) filtration into the joint cavity and interstitial flow from cavity to subsynovium. These two flows were affected oppositely by albumin: filtration was enhanced by the oncotic pressure of albumin in the pericapillary interstitium, whereas interstitial flow was reduced by the effect of albumin on fluidity. The results also raised the issues of whether fenestral filtration reduces nearby interstitial albumin concentration and how interstitial and bulk-phase fluidities are related. © 1994 Academic Press.
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页码:68 / 89
页数:22
相关论文
共 50 条
[1]  
ASHHURST DE, 1991, J RHEUMATOL, V18, P1669
[2]  
Auckland K, 1993, PHYSIOL REV, V73, P1
[3]   The manner of removal of proteins from normal joints [J].
Bauer, W ;
Short, CL ;
Bennett, GA .
JOURNAL OF EXPERIMENTAL MEDICINE, 1933, 57 (03) :419-433
[4]   TRANSPORT OF FLUID AND MACROMOLECULES IN TUMORS .4. A MICROSCOPIC MODEL OF THE PERIVASCULAR DISTRIBUTION [J].
BAXTER, LT ;
JAIN, RK .
MICROVASCULAR RESEARCH, 1991, 41 (02) :252-272
[5]  
Bert JL, 1984, HDB PHYSL CARDIOVASC, VIV, P521
[6]   DIRECT MEASUREMENT OF INTERSTITIAL CONVECTION AND DIFFUSION OF ALBUMIN IN NORMAL AND NEOPLASTIC TISSUES BY FLUORESCENCE PHOTOBLEACHING [J].
CHARY, SR ;
JAIN, RK .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (14) :5385-5389
[7]  
COMPER WD, 1987, ADV MICROCIRCULAT, V13, P47
[8]  
Curry F.-R.E., 1984, HDB PHYSL CARDIOVASC, P309
[9]  
EDLUND T, 1949, ACTA PHYSL SCAND S62, V18, P1
[10]  
FURTH R, 1949, J SCI INSTRUM, V22, P61