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Biomedical subjects

A Remuzzi

Publications and source records attributed to A Remuzzi.

At least 37 records · Page 2Linked to original sources

Dissociation between antiproteinuric and antihypertensive effect of angiotensin converting enzyme inhibitors in rats.

To clarify whether angiotensin converting enzyme (ACE) inhibitors prevent progressive renal injury directly by their antihypertensive effect we administered the ACE inhibitor lisinopril to male MWF/Ztm rats as a single daily dose that lowered blood pressure for only 9 of 24 h. We investigated the effects of this treatment in short- and long-term studies and compared them with another antihypertensive drug, the calcium channel blocker nitrendipine, given to partially control blood pressure as done with the ACE inhibitor. In untreated animals systemic hypertension, proteinuria, and glomerulosclerosis developed spontaneously with age, and lisinopril reduced systemic hypertension and prevented proteinuria and glomerular lesions. Nitrendipine, despite similar blood pressure control, was ineffective in preventing both proteinuria and glomerulosclerosis. After 2 mo of treatment glomerular capillary pressure was significantly reduced by lisinopril and slightly but significantly increased by nitrendipine, compared with untreated controls. The ultrafiltration coefficient was significantly higher in lisinopril than in controls and not significantly changed by nitrendipine. With both drugs, however, glomerular hemodynamic effects were observed only at a few hours after administration and were abolished before the next administration. No significant changes in glomerular tuft volume were observed in treated and untreated animals after 2 and 6 mo of observation. Thus ACE inhibitor, despite only partial control of systemic blood pressure, effectively prevented proteinuria and glomerular injury. Comparable blood pressure control obtained with a calcium channel blocker was not associated with renal protection. These results suggest that ACE inhibitors could protect glomerular microcirculation by a mechanism that is not directly related to their antihypertensive action.

Alpha-Globulins

Effects of angiotensin-converting enzyme inhibition on glomerular capillary wall ultrastructure in MWF/Ztm rats.

Previous studies have documented that treatment with angiotensin-converting enzyme (ACE) inhibitors prevents spontaneous proteinuria and enhances the glomerular ultrafiltration coefficient in male MWF/Ztm rats. The aim of this study was to study whether these beneficial effects of ACE inhibitors on glomerular capillary wall function are derived from the preservation of its ultrastructure. Conventional morphometrical analysis of kidney tissue, by light and electron microscopy, was used to quantify glomerular structural changes in the male MWF/Ztm rats treated with the ACE inhibitor cilazapril for 2 and 6 months and in age-matched untreated controls. At the end of the observation periods, both systolic blood pressure and urinary protein excretion were significantly reduced in treated animals as compared with controls. Glomerular volume increased significantly with time but was comparable in control and in treated rats. Surface area available for filtration (measured as peripheral capillary wall) was comparable in control and in treated animals at the same time and increased significantly with time only in treated rats. Mesangial volume was significantly higher in cilazapril-treated animals than in controls after 2 months of treatment and was comparable after 6 months. ACE inhibitor treatment did not induce significant ultrastructural changes such as basement membrane thickness, configuration of epithelial podocytes, and the width and the frequency of the epithelial slit diaphragms. These results indicate that the previously observed increase in the glomerular ultrafiltration coefficient by an ACE inhibitor in these animals is not the consequence of changes in filtering surface area but likely reflects an increase in membrane hydraulic permeability.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors

Recombinant versus high-sensitivity conventional thromboplastin: a randomized clinical study in patients on oral anticoagulation.

A prospective, randomized, double-blind clinical trial was carried out in a single center to compare the clinical and laboratory quality of oral anticoagulant therapy monitored with recombinant tissue factor (RTF) or with a sensitive, human-derived, conventional thromboplastin (CT) in the PT test. Seven hundred and fifty-seven consecutive patients receiving oral anticoagulation for various indications were randomized to RTF (n = 379) or CT (n = 368) for 6 months. Total follow-up was 167 and 153 patient-years for RTF and TP groups respectively. Fifty-six bleeding events were observed: 31 in the RTF group and 25 in the TP group. The incidence of bleeding was 18.5 and 16.5% pt-yrs for RTF and TP patients respectively (n.s.). The event-free follow-up curves were not significantly different between the two groups. The laboratory quality of oral anticoagulation was evaluated with the "last check in file" method: therapeutic INR was found in the same proportion of RTF and TP patients (70.2% vs 68.8%). Our study shows that RTF is as effective as a sensitive, conventional thromboplastin for monitoring oral anticoagulation.

Administration, Oral

Thrombotic and hemorrhagic complications in patients with mechanical heart valve prosthesis attending an anticoagulation clinic.

This study evaluated the advantage of an anticoagulation clinic in terms of the improvement of the clinical quality of oral anticoagulation (i.e. prevention of thromboembolism and low rate of hemorrhagic complications). The incidence of thromboembolic events and major hemorrhagic complications was assessed in a series of 271 patients on oral anticoagulation for mechanical heart valve prosthesis before and after their enrollment in our anticoagulation clinic from January 1987 to December 1990. Risk factors for hemostatic events were also analyzed. The incidence of major hemostatic complications was significantly lower when patients attended the clinic: 1.0 vs 4.9%/pt-yr for hemorrhage and 0.6 vs 6.6%/pt-yr for thrombosis. This depended on three main factors: better dose regulation of warfarin, continuous patient education and early identification of clinical conditions potentially at risk for thrombosis and hemorrhage. Only previous hemorrhagic or thromboembolic events were recognized as major risk factors for hemostatic complications. In conclusion, our study shows that an anticoagulation clinic offers a real advantage to patients with mechanical heart valve prosthesis in terms of prevention of thromboembolic events and hemorrhagic complications.

Administration, Oral

Supernatant of endothelial cells exposed to laminar flow inhibits mesangial cell proliferation.

We investigated the effects of culture medium conditioned with endothelial cells exposed to hemodynamic shear forces on modulation of mesangial cell (MC) growth. Confluent monolayers of bovine aortic endothelial cells, grown in medium containing 10% fetal calf serum, were exposed to static or to laminar flow conditions for 24 h using a cone-and-plate device. Endothelial cell-conditioned medium was used to study the growth of bovine MC by [3H]thymidine uptake. The proliferative response of MC to fresh medium (containing 10% fetal calf serum) and to culture medium from endothelial cells under static flow [66.7 +/- 34.1 vs. 73.9 +/- 30.0 counts/min (cpm) x 10(-3)] was comparable. In contrast, medium conditioned with endothelial cells exposed to laminar shear stress of 8 dyn/cm2 almost completely abolished MC proliferation (5.8 +/- 6.9 cpm x 10(-3), P < 0.01). To establish whether this effect is due to endothelial cell production of a substance that inhibits MC proliferation or simply to metabolization of serum growth factors in the culture medium, we performed shear stress experiments using serum free medium and we added 10% fetal calf serum after shear exposure just before the proliferation assay. In this condition a significant antiproliferative effect of endothelial cell supernatant under laminar flow was obtained (27.7 +/- 23.4 vs. 68.8 +/- 45.8 cpm x 10(-3), laminar vs. static, P < 0.05), suggesting that endothelial cells under shear stress effectively produce a factor that inhibits MC proliferation. These results would suggest that local glomerular capillary blood flow could play a role in the regulation of MC mitogenesis.

Animals

Rolling and adhesion of human tumor cells on vascular endothelium under physiological flow conditions.

We investigated the interaction of different human tumor types with resting and IL-1-activated human umbilical vein endothelial cells under laminar flow conditions using a parallel plate flow chamber. Three tumor cell lines (the HT-29M colon carcinoma, the OVCAR-3 ovarian carcinoma, and the T-47D breast carcinoma) showed limited adhesion to unstimulated endothelial cells at any of the shear stress levels tested, while rolling and massive adhesion of tumor cells were observed on IL-1-activated endothelial cells. Three other tumor cell lines (the A375M and A2058 melanomas and the MG-63 osteosarcoma) did not adhere on resting endothelial cells at high shear stress (> 1.5 dyn/cm2) and started to adhere with decreasing shear stress; the number of adherent cells increased steeply on IL-1-activated endothelial cells, but no cell rolling was observed even at the highest shear stress. These mechanisms of tumor cell interaction with endothelial cells were analyzed in detail using the HT-29M colon carcinoma and the A375M melanoma. Incubation of activated endothelial cells with a monoclonal antibody against E-selectin inhibited rolling and adhesion of HT-29M, but had no effect on the adhesion of A375M cells; monoclonal antibody against vascular cell adhesion molecule-1 reduced the adhesion of A375M cells and had no effect on HT-29M. The selective interaction of these two molecules with tumor cells was confirmed by measuring the adhesion of tumor cells on immobilized soluble proteins. On E-selectin-coated surfaces, HT-29M cells rolled during perfusion experiments without subsequent adhesion, while A375M cells did not adhere. On vascular cell adhesion molecule-1-coated surfaces, HT-29M cells neither adhered nor rolled, while A375M cells adhered massively without rolling. Under flow conditions, therefore, cells from different tumor types interact with the endothelial surface by different mechanisms, depending on adhesion molecules expressed on the tumor and endothelial cell surface.

Breast Neoplasms

Short- and long-term effect of angiotensin II receptor blockade in rats with experimental diabetes.

The short- and long-term effects of specific angiotensin II (AII) receptor blockade on the evaluation of glomerular injury in moderately hyperglycemic diabetic rats were studied. Three groups of animals were used, a control group, a group of diabetic rats treated with insulin, and a group of insulin-treated diabetic rats receiving the AII receptor antagonist losartan in drinking water. After 4 to 6 wk of observation, diabetic rats showed higher systolic blood pressure and GFR than normal controls. Losartan treatment prevented both systolic blood pressure and GFR rise. Three other groups of rats, similarly treated for a 1-yr period, were used for renal functional and morphologic evaluation. Diabetic animals had higher urinary protein excretion and glomerulosclerosis incidence than did normal controls. Losartan significantly prevented proteinuria and glomerulosclerosis. Evaluation of the sieving properties of the glomerular membrane by Ficoll fractional clearance showed an important increase in the filtration of this marker in diabetic animals, as compared with that in controls, and almost complete prevention of this change in losartan-treated animals. Theoretical analysis of fractional clearance data with a heteroporous model of glomerular size-selectivity showed that in diabetic animals the size of membrane pores was increased uniformly, as compared with that in controls. These changes were completely prevented by the AII receptor antagonist. The results presented here strongly indicate that reduction of AII activity plays a crucial role in the preservation of glomerular structure and function and suggest that the favorable effects previously observed with angiotensin-converting enzyme inhibition in this model depend directly on the reduction of AII activity.

Angiotensin Receptor Antagonists

Albumin treatment reduces in vitro platelet deposition to PMMA dialysis membrane.

We investigated in an in vitro system the effect of albumin on the interaction between circulating platelets and artificial membranes used for hemodialysers. Using a recently described method we evaluated platelet adhesion to polymethylmethacrylate (PMMA) and cuprophan (CU) hollow-fibers. Deposition of washed radiolabelled platelets on these two membranes was measured in small dialysis filters with or without previous perfusion with an albumin solution. Also measured was the amount of albumin that adhered to the membranes after perfusion of the filters with radiolabelled albumin. Platelet deposition to PMMA was significantly reduced by albumin treatment (from 1070 +/- 498 to 296 +/- 174 plt/mm2, P < 0.01). Platelet deposition on the CU membrane was comparable with and without albumin pre-perfusion (141 +/- 70 vs. 152 +/- 100 plt/mm2). Deposition of radiolabelled albumin was higher on PMMA than on CU membrane. Thus, higher adsorption of this protein, observed in our in vitro system, might explain the lower platelet deposition found on the PMMA rather than on the CU membrane. These results suggest that platelet interactions with PMMA during dialysis could be improved by treating the dialyser with albumin before blood contact. However, before this treatment is used clinically further experimental studies are required to confirm that our in vitro observation also applies to in vivo conditions.

Biocompatible Materials

Renal protective effect of angiotensin-converting enzyme inhibition in aging rats.

Aging in rats with intact kidneys is associated with changes in selective glomerular permeability to macromolecules resulting in proteinuria and progressive glomerular sclerosis. We have previously reported that angiotensin-converting enzyme (ACE) inhibition in Munich Wistar Fromter/Ztm (MWF/Ztm) rats resulted in a significant reduction of proteinuria, in respect to untreated animals, and that treated animals were protected against the development of glomerular sclerotic lesions. The present study was designed to establish whether ACE inhibition protects against glomerular injury in male Sprague-Dawley rats, which develop spontaneous proteinuria and glomerulosclerosis with age. The effect of ACE inhibition was tested when proteinuria was already present. Four-month treatment with the ACE inhibitor perindopril prevented the increase in systolic blood pressure, compared with vehicle-treated animals, and significantly decreased urinary protein excretion of aging rats. Partial protection of the development of glomerular sclerosis was also observed.

Aging

Three-dimensional reconstructed glomerular capillary network: blood flow distribution and local filtration.

We developed a mathematical model to simulate blood flow and filtration in individual capillary segments of a glomerular network reconstructed from a normal Munich-Wistar (MW) rat. Three-dimensional geometric reconstruction was obtained by semithin serial sections (1 micron) of one glomerulus after perfusion fixation of kidney. Photomicrographs of each section were digitized and processed, using a computer-based image-analysis system, to derive the topological organization of the capillary network and mean diameter and length of individual capillary segments. Blood flow rate in capillary segments was calculated using a theoretical model that considers apparent viscosity of blood in small capillaries as a function of local rheological parameters, partition of cells at bifurcations, and local filtration dependent on transmembrane hydraulic and oncotic pressure gradients along the network. In accord with previous observations, the topological organization of the capillary network disclosed a three-lobular structure. The ultrafiltration coefficient (Kf) calculated for the euvolemic MW rat with the present network approach was compared with that derived from a theoretical model that assumes identical capillaries in parallel. The latter model is shown to underestimate Kf, particularly under conditions in which filtration pressure equilibrium is approached. Calculation of local blood flow and filtration along the network indicates a heterogeneous distribution of these parameters and that some parts of the capillary network operate at filtration pressure equilibrium even if the overall network operates at filtration disequilibrium.

Animals

Pathophysiologic implications of proteinuria in a rat model of progressive glomerular injury.

BACKGROUND: Males of a substrain of Munich-Wistar rats (MWF/Ztm), selected for their large number of superficial glomeruli, develop spontaneous proteinuria with age, whereas females of this strain have a normal urinary protein excretion rate. EXPERIMENTAL DESIGN: We investigated the relationship between functional and structural glomerular alterations in four groups of male and female MWF/Ztm rats, respectively at 20 and 35 weeks of age. Systolic blood pressure, urinary protein excretion and composition of urinary proteins were periodically measured during the study. At the end of the observation period, renal function was evaluated with solute clearance technique and kidney tissue processed for morphologic and morphometrical analysis using light and electron microscopy. RESULTS: Systolic blood pressure in males was significantly higher than in females, and progressed toward systemic hypertension with age. Urinary protein excretion became spontaneously abnormal in males. About 50% of urinary proteins consisted of albumin, whereas 35% was a sex-dependent low molecular weight protein. Albumin excretion increased with age in these animals, whereas excretion of the sex-dependent protein decreased. Urinary protein excretion in females was significantly lower than in males of the same age, remaining near normal levels. No decline in renal function with age was observed in all animal groups. Glomerular structural alterations developed progressively with age in males, leading to important glomerular and tubular alterations. Female rats maintained almost intact glomerular morphology until the end of the study. Morphometric analysis showed an important increase in glomerular volume with age in males but not in females. This glomerular tuft enlargement was the result of an increase in the number of glomerular cells and a concomitant increase in cell volume. CONCLUSIONS: Male MWF/Ztm rats develop spontaneously systemic hypertension, proteinuria of glomerular origin, and glomerulosclerosis. Female rats develop less severe hypertension and are protected from proteinuria and glomerulosclerosis.

Aging

Low-protein diet and glomerular size-selective function in membranous glomerulopathy.

We studied the effect of dietary protein restriction on glomerular function and proteinuria in nine patients with membranous nephropathy. Patients were randomly assigned to a 3-month period of a normal protein diet (NPD, 1.3 mg/kg/d) or of a low-protein diet (LPD, 0.6 mg/kg/d), in a cross-over design. Dietary protein restriction did not affect glomerular filtration rate (47.8 +/- 10.7 and 49.0 +/- 13.5 mL/min/1.73 m2, LPD and NPD, respectively) and renal plasma flow (456 +/- 119 and 499 +/- 161 mL/min/1.73 m2, LPD and NPD, respectively), nor did it significantly improve glomerular permselective function, as shown by urinary protein excretion (3.1 +/- 2.2 and 3.5 +/- 2.8 g/d, LPD and NPD, respectively) and fractional clearance of albumin, IgG, and neutral dextran molecules of graded molecular size (radii ranging from 2.8 to 6.0 nm). These results indicate that reduction of protein intake to 0.6 g/kg/d does not improve glomerular size selectivity in membranous nephropathy. Thus, in current clinical practice, a protein-restricted diet does not appear to be effective in reducing proteinuria in this category of patients.

Adult

Morphometrical analysis of glomerular changes induced by cyclosporine in the rat.

Functional and morphologic techniques were used to study the renal changes induced by a long-term exposure of normal rats to cyclosporine A (CsA), as well as their potential reversibility. CsA treatment for 3 months resulted in a significant (P less than 0.01) reduction of glomerular filtration rate (GFR) as compared with vehicle-treated animals. Histological examination of the kidneys showed mild glomerular damage characterized by ischemic lesions, increased mesangial matrix, and intracapillary hypercellularity in the CsA-treated group, but not in the vehicle-treated group. Proximal tubular abnormalities and limited areas of interstitial fibrosis were also present in the CsA group. A complete reconstruction of glomerular corpuscle was used to evaluate the consequence of CsA-induced renal ischemia on capillary tuft volume. The results showed that in rats administered CsA for 3 months glomerular volume distribution was shifted toward small glomeruli. Prolongation of CsA administration for 5 months did not result in a further decrease in GFR, and was associated with the appearance of a subset of glomeruli that became larger than normal. We have also investigated whether, once established, CsA-induced renal injury is reversible. In rats that were administered CsA for 3 months and then treatment discontinued for 2 months, GFR returned to pretreatment values and partial reversibility of morphologic changes was observed. Morphometric analysis showed that 2 months after withdrawal of CsA, glomerular volume distribution was almost comparable to that observed in vehicle-treated animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Angiotensin converting enzyme inhibition improves glomerular size-selectivity in IgA nephropathy.

Clearances of uncharged dextrans of broad size distribution were used to evaluate the effects of a 30 day course of enalapril on glomerular barrier function in 10 patients with IgA nephropathy and proteinuria (from 1.4 to 5.6 g/day). Dextran clearance experiments were repeated three times: before enalapril therapy, after 30 days of enalapril and again 30 days after enalapril withdrawal. GFR, but not RPF, was significantly reduced by enalapril (basal 38.3 +/- 11.9, enalapril 30.2 +/- 12.6 ml/min/1.73 m2) and returned to basal values after enalapril withdrawal. Urinary protein excretion and fractional clearance of albumin were both significantly reduced by enalapril (basal 2.3 +/- 1.1 g/day and 102 +/- 90 x 10(-5), enalapril 1.2 +/- 0.6 g/day and 51 +/- 23 x 10(-5), respectively) and returned to basal values after enalapril withdrawal. Transglomerular passage of large dextrans (radii 54 to 62 A), but not of lower size (26 to 42 A) were significantly lowered by enalapril. When enalapril was withdrawn the dextran-sieving profile returned comparable to the baseline levels. A theoretical analysis of dextran-sieving profiles indicated that enalapril lowered the radius of largest membrane pores. This effect was independent from glomerular hemodynamic changes. We conclude that angiotensin converting enzyme inhibitors (CEI) in humans with IgA nephropathy reduces urinary protein excretion by a primary action on the intrinsic glomerular membrane properties enhancing barrier size-selective function. The hypofiltration associated with enalapril therapy in these patients, which was eliminated by its withdrawal, has to be taken into account as a possible undesired effect of CEI in long-term treatment.

Adult

Nature and extent of glomerular injury induced by cyclosporine in heart transplant patients.

We sought to clarify whether low-dose cyclosporine (5.0 +/- 2.2 mg/kg/day) given for more than two years to prevent cardiac graft rejection induced glomerular injury and to quantify the extent of the lesions. After renal hemodynamic studies, renal biopsy specimens were obtained from 10 patients on cyclosporine and analyzed by a novel morphometric technique consisting of a tridimensional reconstruction of the glomerular tuft. Autopsy kidney specimens from three patients with no clinical history of renal disease, and from four patients who died with dilatative cardiomyopathy served as controls. The glomerular filtration rate and renal plasma flow were significantly depressed below normal values in transplant recipients given cyclosporine, averaging 35 +/- 8 and 325 +/- 94 ml/min/1.73 m2, respectively. Conventional light microscopy of specimens from controls and from patients who died with dilatative cardiomyopathy did not reveal renal structural abnormalities. By contrast kidney specimens from cyclosporine-treated patients had obliterative arteriolopathy and ischemic-type changes, with thickening and wrinkling of glomerular capillary wall. Morphometrical analysis of 28 control glomeruli and 40 glomeruli from patients with dilatative cardiomyopathy showed glomerular capillary tuft volumes (VCT) ranging between 1.2 and 2.3 microns 3 x 10(-6), whereas of 102 glomeruli from cyclosporine-treated patients 42.1% had VCT lower than 1.2 microns 3 x 10(-6) and 24.4% VCT higher than 2.3 microns 3 x 10(-6).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Renoprotective effect of low iron diet and its consequence on glomerular hemodynamics.

It has been reported that anemia limits renal injury in rats with reduced renal mass. We studied the effect of a low iron diet, given to reduce hematocrit, on urinary protein excretion and glomerular function in male MWF/Ztm rats, which spontaneously develop proteinuria and glomerular sclerosis. At 20 weeks of age, micropuncture and glomerular volume measurements were performed in untreated rats fed standard chow and in rats fed an isocaloric diet with low iron (5 mg/kg) content. Two additional groups of rats were used for total kidney function and glomerular volume evaluation at 35 weeks of age. At 20 weeks of age animals on low iron diet showed significantly (P less than 0.01) reduced hematocrit (46 +/- 5% vs. 54 +/- 2%) and proteinuria (60 +/- 15 vs. 225 +/- 34 mg/24 hr) than control animals, and no statistically significant differences were observed in single nephron hemodynamics. At 35 weeks of age rats on low iron diet had significantly lower proteinuria than age matched controls (222 +/- 68 vs. 411 +/- 71 mg/24 hr, P less than 0.01) and developed less glomerular sclerosis (mean percentage of sclerotic glomeruli was respectively 14 +/- 7% and 31 +/- 17%, P less than 0.05). Glomerular volume was comparable in animals on the low iron diet and in controls both at 20 and 35 weeks of age. These data indicate that low iron diet protected male MWF/Ztm rats against glomerular injury without significant effects on glomerular hemodynamics and on glomerular volume.

Anemia, Hypochromic

Platelet-activating factor alters glomerular barrier size selectivity for macromolecules in rats.

The effect of platelet-activating factor (PAF) on glomerular permeability to macromolecules was investigated in the isolated kidneys from normal male Sprague-Dawley rats perfused at constant pressure. Compared with basal values, infusion of PAF (10 nM final concentration) into the isolated kidneys induced a progressive and significant increase in protein excretion (6.7 +/- 2.7 vs. 40.7 +/- 10.4 micrograms/min, P less than 0.01), completely reversible 20 min after PAF infusion was discontinued (8.5 +/- 1.3 micrograms/min). In additional experiments, during PAF infusion the fractional clearance of small neutral dextrans (radius 24-48 A), defined as the ratio of the clearance of neutral dextrans to the clearance of creatinine, was comparable to preinfusion values, whereas fractional clearance of large dextrans (greater than 50 A) was significantly elevated (P less than 0.005) above preinfusion values. The specific PAF receptor antagonist L 652731 completely prevented the increased fractional clearance of large dextrans induced by PAF. Finally, lowering Ca2+ concentration in the perfusion medium from 2.5 to less than 0.1 mM markedly reduced proteinuria in isolated kidneys exposed to PAF (80.0 +/- 10.3, 42.8 +/- 3.1, and 22.0 +/- 7.6 micrograms/min, respectively, for 2.5, 1.25, and less than 0.1 mM). These results indicate that in isolated perfused kidneys 1) PAF-induced proteinuria is a functional phenomenon reversible on discontinuing PAF infusion, 2) PAF modifies glomerular size-selective properties by increasing transmural passage of large dextran molecules, and 3) PAF-induced change in glomerular permselective properties is dependent on Ca2+ concentration in the extracellular medium.

Animals