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Glomerular filtration dynamics in the dog during elevated plasma colloid osmotic pressure.

To determine if the glomerular filtration coefficient (Kf) of the dog is influenced by changes in plasma colloid osmotic pressure (COP), we conducted micropuncture experiments in dogs given concentrated albumin solutions. In one group (N = 9), filtration dynamics were evaluated following infusion of 450 to 600 ml of a 25% bovine albumin solution. To minimize the effects of acute volume expansion, we also achieved high COP levels in another group (N = 7) by albumin loading on the day prior to the experiment. In all experiments, renal arterial pressure was reduced to approximately 90 mm Hg to minimize potential errors that might lead to overestimation of single nephron filtration rate (SNGFR) and glomerular pressure (GP). In the acutely expanded dogs, COP increased to 23.0 +/- (SEM) 0.9 mm Hg, SNGFR was 59 +/- 6 nl/min, estimated GP was 61.0 +/- 2.0 mm Hg, proximal tubule pressure (PTP) was 23.0 +/- 1.6 mm Hg, and superficial filtration fraction (SFF) was 0.13 +/- 0.02. A similarly reduced whole kidney filtration fraction was also observed, due almost entirely to a marked increase in renal blood flow. When compared to noninfused control dogs (N = 13), Kf was significantly higher in the dogs with elevated COP, being 5.3 +/- 0.6 nl/min/mm Hg as compared to 3.4 +/- 0.3 nl/min/mm Hg. Average effective filtration pressure (EFP) was 12 +/- 1mm Hg, and EFP at the efferent end of the glomerular capillaries was 8.9 +/- 1.2 mm Hg. In the group infused on the prior day, COP was 20.0 +/- 0.8 mm Hg, SFF was 0.26 +/- 0.01, SNGFR was 70 +/-8 nl/min, GP was 59 +/- 2 mm Hg, and PTP was 19.0 +/- 1.5 mm Hg. Average EFP was 15 +/- 1 mm Hg, and EFP at the efferent end of the capillaries was 7.5 +/- 0.7 mm Hg. kf was 4.85 +/- 0.66 nl/min/mm Hg, a value significantly higher than that obtained in control dogs having a COP of 15.0 +/- 0.6 mm Hg. Furthermore, one group of control dogs (N = 4), expanded with an isooncotic albumin solution, did not exhibit significant changes in Kf even though the degree of plasma volume expansion was similar to the group expanded with concentrated albumin solution. These experiments are consistent with previous findings obtained in the rat that Kf is influenced by the COP, although the changes in Kf appear to be less than they are in the rat. The data indicate that even under these conditions of elevated COP, the filtration process in the dog is characterized by positive filtration pressures throughout the length of the glomerular capillaries.

Albumins

Differentiation of lymphoid cells: the non-mitogenic induction of immunoglobulin production by thymus cell extract and thymus cell culture filtrate.

The cell-free medium in which thymocytes have been cultured (filtrate) as well as sonic lysates of thymocytes (extract) enhance immunoglobulin production when added to spleen cells during tissue culture. In spite of the requirement for foetal calf serum in the culture medium, production of the enhancing factor in thymocyte culture filtrates occurred even in the presence of a variety of metabolic inhibitors including NaN3, puromycin and hydroxyurea. Although DNA synthesis is required as a prelude to the induction of immunoglobulin production, two lines of evidence indicate that the enhancement produced in response to filtrate and extract occurs via a non-mitogenic process. First, neither cell-free agent was mitogenic toward spleen cells. Secondly, the enhancement of immunoglobulin production due to filtrate or extract was observed even in the presence of inhibitors of DNA synthesis. Multiple functions for thymocytes in the induction of immunoglobulin production are indicated by the findings that thymocytes restore immunoglobulin production of anti-thymocyte serum-treated spleen cells, whereas filtrate and extract, alone or in combination, do not have this capability. Furthermore, filtrate and extract failed to enhance the induction of DNP-group-specific antibody production by cells incubated with DNP-protein, but filtrate and extract could partially restore anti-DNP antibody production of such anti-thymocyte serum-treated cells. The role of thymocytes, filtrate and extract in the antigen-independent and the antigen-dependent induction of immunoglobulin production is discussed.

Animals

Regulation of glomerular filtration and proximal tubule reabsorption.

In this review current hypotheses for the regulation of filtration rate and the subsequent reabsorption of that filtrate by the proximal tubule are discussed. In the rat the filtration rate is highly plasma flow dependent because of the phenomenon of filtration equilibrium. On the other hand, in man and dog filtration rate is much less dependent on renal plasma flow. In these species glomerular capillary pressure rather than glomerular plasma flow may be the primary determinant of filtration. Three hypotheses for the autoregulation of glomerular filtration are discussed. Of these the myogenic theory, which holds that increases in perfusion pressure result in an intrinsic contraction of the smooth muscle in the walls of the afferent arterioles, remains the best, if not completely adequate, explanation for the phenomenon. The role of a macula densa feedback mechanism is controversial, although data are presented which strongly militate against this hypothesis. Similarly, the prostaglandins, although important in determining vascular resistance, probably do not mediate autoregulation. Two prevalent hypotheses for the regulation of fluid reabsorption by the proximal tubule, the physical factor hypothesis and the humoral hypothesis, are discussed. Data presented indicate that peritubule Starling forces have a marked effect on isotonic reabsorption by the proximal tubule in the presence of volume expansion and enhanced backleak into the proximal tubule lumen. However, in hydropenia and diminished backleak, changes in peritubule capillary Starling forces have little effect on proximal sodium reabsorption. Thus, the physical factor mechanism is a rather insensitive regulator of proximal reabsorption in the absence of volume expansion. Hormones known to regulate sodium transport per se, such as aldosterone, have no effect on sodium reabsorption by the proximal tubule. In contrast, those hormones primarily regulating anion reabsorption in the proximal tubule, such as parathyroid hormone, have significant effects on fluid reabsorption. Thus, the humoral regulation of anion reabsorption has secondary effects on proximal sodium reabsorption.

Adrenalectomy

Effect of Fusarium isolates and their filtrates on respiratory rate and chemical analysis of squash plants.

The highly pathogenic isolate stimulated the emergence of the squash seedlings first, caused, however, the highest death rate of the seedlings finally. Fusarium isolates and their culture filtrates inhibited the respiratory rate of squash plants significantly. However, F. oxysporum isolates inhibited respiration more than F. solani isolates. Seasonal changes of respiration decline show that the respiratory rate decreased with plant growth in the case of infested soil and of plants injected with culture filtrates. However, spraying Fusarium culture filtrates on the foliage gave opposite results when the plants grew older. Fusarium solani isolates decreased nitrogen content of squash stems and leaves, while F. oxysporum isolates gave reverse results. Injecting Fusarium culture filtrate into the plant decreased nitrogen content of both stems and leaves, while spraying the foliage with the filtrates increased nitrogen content more than that of the control. Phosphorus content of the stems of squash plants, sown in infested soil, was less than in the control when the plants were treated with F. solani and higher when they were treated with F. oxysporum isolates. On the other hand, the phosphorus content of squash leaves was higher than in the control. In the case of injected plants, however, the phosphorus content in stems and leaves was equal to that of the control or less, and with sprayed plants it was higher than in the control. Infesting the soil with Fusarium isolates and spraying the foliage with their culture filtrates increased potassium content of squash stems and leaves, while injecting the filtrates into the plants decreased potassium content of both stems and leaves.

Fusarium

The effects of dopamine and a low protein diet on glomerular filtration rate and renal plasma flow in the aged kidney.

The aims of this study were to determine the effects of dopamine and a low protein diet on glomerular filtration rate and effective renal plasma flow in the aged kidney. Effective renal plasma flow was measured using 125I-labelled hippuran and glomerular filtration rate using 51Cr-labelled EDTA. Low-dose continuous intravenous dopamine 3 micrograms.kg-1.min-1 in 10 healthy elderly volunteers caused a significant increase in effective renal plasma flow but not in the mean glomerular filtration rate when compared with baseline. However, glomerular filtration rate did increase substantially in 5 subjects (mean 14.4, SD 1.3). This implied that the elderly kidney was working maximally without reserve capacity in half the elderly. Since renal function is likely to be even more reduced in elderly patients with congestive cardiac failure, dopamine infusions may have little place in this condition in some older patients. A low protein diet (0.69 g.kg-1) in the same volunteers reduced glomerular filtration rate, suggesting that protein restriction may help to reduce the increased filtration rate in the remaining nephrons, thereby leading to structural and functional preservation in the aged kidney.

Age Factors

Variability of Alternaria alternata: biochemical and immunological characteristics of culture filtrates from seven isolates.

Biochemical variability of culture filtrates from the common allergenic mold Alternaria alternata was studied. Differences between culture filtrates from 7 different isolates and between 4 batches of culture filtrate from the same isolate were observed, suggesting the unreliability of presently employed biochemical methods in the routine standardization of mold allergens and the possibility of difficulties in developing standard techniques for their purification. Dextranases, cellulases, and agarases, found in one culture filtrate, may be a further source of problems in laboratory techniques employing A. alternata. The proportions of nitrogen:carbohydrate:dialyzed dry weight were different in culture filtrates from each isolate. Polysaccharides in culture filtrates from 3 of the 7 isolated contained glucose, mannose, xylose, galactose, and a fifth, unidentified sugar. Polysaccharides from one isolate lacked xylose, and the fifth sugar was not demonstrable in 4 of the isolates. Despite the biochemical differences, extensive antigenic cross-reactivity between different isolates was found in precipitin studies and inhibition of antibody binding.

Alternaria

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

[Comparative characteristics of cell-free filtrates of Shigella flexneri of different virulence].

It was shown for the first time that the virulent Sh. flexneri strain grown on Luria broth differed from the avirulent one by the yield of readily released surface-located complexes--lipopolysaccharide (determined by rhamnose) and protein into the filtrate. There was no distinct correlation between the strain virulence and the content of rhamnose-determined lipopolysaccharide in the filtrate; growing bacteria in the presence of Ca and Mg ions had no significant influence on the lipopolysaccharide release into the filtrate. Protein release into the cell-free filtrate was thrice that in the virulent shigella strain than in the avirulent one. When bacteria were grown in the presence of Ca ions protein release from the virulent strain increased 1.5-fold and changed but little in the avirulent culture. Cell-free filtrates of the virulent strain produced toxic action on L tissue culture cells; in conjunctival infection of guinea pigs they caused some reduction of the LD50 of the virulent strain and sharply aggravated the course of the infectious process. Heating of the filtrate at 100 degrees C for 15 min decreased their toxic action on L cells. The data obtained indicated that the active biological factor revealed in the virulent strain of Sh. flexneri was protein or its derivative.

Animals

A filtration model for study of leukocyte transit in the microcirculation.

In order to study characteristics of leukocytes which would be important determinants of their flow in the microcirculation, a model system was tested which utilizes in vitro filtration of leukocytes. Normal human peripheral blood leukocytes (85-90% granulocytes) were studied with filters with uniform 8 mum pore size. Studies were performed to determine the effects of EDTA, temperature, hydrostatic pressure, pH, and osmolarity on filtration. Filterability was optimal at 0.2% EDTA, 10 cm hydrostatic pressure, neutral pH, isotonicity, and at room temperature. Filtration was slowed greatly at leukocyte concentrations exceeding 25 X 10(9)/liter. When leukocyte membranes were altered by formalin fixation, filtration slowed greatly, indicating that deformability is an important determinant of flow through small orifices. When mixtures of erythrocytes and leukocytes were filtered, there was a paradoxically enhanced transit of leukocytes compared to filtration of leukocytes alone, indicating interactions between these cells which alter flow. These studies serve to characterize this model system which can be used to study the contribution to flow in the microcirculation of both normal and pathological leukocytes.

Adult

Studies on the filtration properties of isolated renal basement membranes.

1. The filtration properties of films of renal basement membrane were studied in vitro using pressure filtration chambers. 2. Retention of cytochrome c by the films was found to be dependent upon the filtration pressure indicating that it was transferred across the films by convective as well as diffusive flow. In contrast, serum albumin was transferred by diffusive movement only. 3. When solutions containing both cytochrome c and IgG were filtered it was found that increasing the filtration pressure reduced the flux of cytochrome c across the films. A similar phenomenon occurred when serum was filtered, less protein passed through the films at high filtration pressures. These phenomena are explained by concentration-polarisation effects. 4. The flux of cytochrome c through the films was found to decrease in a non-linear manner as the films thickness was increased. With thin films, the flux of cytochrome c increased in a non-linear manner as the concentration of the protein in the overstanding solution was increased. With thicker films the flux was linearly dependent on concentration. These findings are interpreted as supporting the view that movement of cytochrome c occurs, at least in part, by convective flow.

Animals

Does increased glomerular filtration rate or disturbed tubular function early in the course of childhood type 1 diabetes predict the development of nephropathy?

To clarify whether glomerular hyperfiltration or disturbances in renal tubular function may be early markers of the later development of nephropathy a follow-up study was performed in 34 young Type 1 diabetic patients, who had originally been investigated 12 years previously. The initial median age was 14 (range 7-18) years and median diabetes duration 7 (2-14) years. At initial examination only one of the 34 diabetic patients exhibited increased urinary albumin excretion rate. The median glomerular filtration rate was increased (136 vs 107 ml min-1 1.73 m-2; p less than 0.0001) and median threshold concentration of phosphate per litre of glomerular filtrate was decreased (1.27 vs 1.76 mmol l-1; p less than 0.0001) in the diabetic group as compared to that of 28 healthy children. At follow-up 17 patients showed increased urinary albumin excretion rate and the median glomerular filtration rate in this group was significantly lower than that of 17 patients with normal urinary albumin excretion rate (108 vs 125 ml min-1 1.73 m-2; p less than 0.05). However, no relationships were found between the increased urinary albumin excretion (incipient and/or overt diabetic nephropathy) at follow-up to either the initial glomerular filtration rate (134 vs 137 ml min-1 1.73 m-2; p greater than 0.05) or to renal tubular function assessed from urinary excretion rate of beta 2-microglobulin (0.059 vs 0.069 microgram min-1; p greater than 0.05) and the renal threshold concentration of phosphate per litre of glomerular filtrate (1.29 vs 1.22 mmol l-1; p greater than 0.05).

Adolescent

Determinants of glomerular filtration rate in the dog.

Micropuncture techniques were used to evaluate the determinants of glomerular filtration in hydropenic dogs. Stop-flow and servo-null techniques were used to estimate the glomerular capillary and proximal tubule hydrostatic pressures. The validity of stop-flow estimates was verified by comparisons with direct puncture of glomerular capillaries in Munich-Wistar rats. Efferent arteriolar oncotic pressure was calculated from the filtration fraction and systemic protein concentrations. This calculation was verified in separate experiments by measurement of the protein concentration in blood collected directly from efferent arterioles. In 14 dogs, estimated glomerular capillary pressure (GCP) averaged 65.8 +/- 2.9 mmHg and proximal tubule pressure (PT) averaged 20.5 +/- 1.3 mmHg. The net hydrostatic filtration pressure (GCP - PT) of 45.3 +/- 2.7 mmHg was significantly higher than the efferent arteriolar oncotic pressure (piEA) of 33.2 +/- 2.8 mmHg (P less than .001). These findings indicate that filtration dynamics in the dog are characterized by filtration pressure disequilibrium.

Animals

[Renal filtration function indices and their correction in myocardial infarct].

Glomerular filtration was examined by way of a radioisotope technique using Yb169-labelled ethylenediaminetetracetic acid. The method permits to conduct the examinations without radio-isotope equipment at the bedside of myocardial infarction patients, which is of great practical convenience. The study was conducted in 65 myocardial infarction patients and in 14 control individuals. Glomerular filtration was studied dynamically in different age-groups, in patients with acute and recurrent myocardial infarction with due regard of concomitant hypertension and complications. A correlation of the disorders in glomerular filtration and the age of the patients was revealed. The lowest figures of glomerular filtration were received in patients with myocardial infarction complicated by circulatory insufficiency and, especially, cardiogenic shock. The indices of glomerular filtration correlated with the circulating blood volume and venous pressure not in all patients.

Adult

Subcutaneous capillary filtrate collector for measurement of blood glucose.

The capillary filtrate collector (CFC) is a device that creates an ultrafiltrate at 50-100 microliters/h from subcutaneous capillaries, and carries this filtrate out of the body for chemical analysis. From inside out, components include three looped hollow fiber ultrafiltration membranes, a polytetrafluoroethylene (PTFE) cuff, polyurethane tubing, a "Y" connector leading to a sampling port, a hub, and a needle placed into a 5 ml vacutainer tube. Animal studies have demonstrated that the CFC filtrate glucose level is exactly that of blood at the time the filtrate is created. The authors have performed clinical trials to determine the correlation of blood glucose and CFC glucose levels, and the time delay between contemporary samples. Seven diabetic patients wore the CFC device, tubing, and vacutainer tube for 1 month. In home monitored diabetic patients, fingerstick glucose measurements were performed at the usual daily schedule. The vacutainer was then evacuated, and this average sample analyzed and compared with the average of prior blood glucose levels. An optical device then was applied to measure the linear velocity of CFC fluid through external tubing, and predict the time for fluid to pass from fibers to the sampling port (average, 25 min). Capillary filtrate collector samples drawn at this time had glucose concentrations that generally correlated with blood levels. In diabetic patients on hemodialysis, the vacutainer was evacuated at the start of each treatment, and CFC and blood samples were drawn every 20 min during the treatment. Comparison of glucose-versus-time curves indicated a reasonable correlation between blood and CFC samples, with a delay related to flow rate (which declined 50% during dialysis).(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Glucose

Atrial natriuretic peptide increases human capillary filtration and venous distensibility.

OBJECTIVE: The main aim of this study was to examine whether atrial natriuretic peptide (ANP) alters capillary filtration and venous distensibility. DESIGN: The study was designed to examine the local effects of i.a. infusion of ANP upon capillary filtration and venous distensibility in human forearms of eight healthy volunteers. METHODS: Using a water plethysmograph, we measured venous distensibility and capillary filtration from changes in forearm volume when transmural venous pressure was increased in a stepwise manner and held constant during i.a. infusion of saline, ANP and sodium nitroprusside (SNP). The doses of ANP and SNP were chosen to double baseline forearm blood flow obtained during saline infusion. RESULTS: ANP and SNP infusion both increased venous distensibility to the same extent compared with saline infusion. Capillary filtration was greater during ANP than during saline or SNP infusion. Small vein pressure was comparable during infusion of the two drugs. CONCLUSION: Our results suggest that ANP increases venous distensibility and capillary filtration in human forearms.

Adult

Filtration of buffy coat free red cell concentrates in additive solution.

Leukocyte poor RCC's (LP-RCC) are indicated in chronically transfused patients in order to prevent non-hemolytic transfusion reactions and HLA alloimmunization. In this study buffy coat free red cell concentrates (BCF-RCC) in additive solution (SAG-M) stored for four weeks were leukocyte depleted by filtration with three different filter systems (Erypur Optima (E), Sepacell R500 B (S) and, Pall RC, 50 TM (P)). The BCF-RCC's were prepared using 'bottom and top (BAT)' systems and automatic separation containing about 20% leukocytes and 5% platelets of fresh whole blood. The leukocyte concentration could be reduced to less than 5 x 10(6) per RCC with all filter systems equally: Leukocytes/RCC's: E .58 +/- .94, S .36 +/- .55, P .55 +/- .69 x 10(6). The leukocyte depletion was even in case of filtering two RCC's through one filter (double filtration) efficient enough in order to keep leukocyte contamination below the 'critical immunogenic load for leukocytes (CILL)'. But significant differences concerning the damage of red cells (free hemoglobin, LDH, HBDH) were measured which were even considerable: free hemoglobin E = 3.69 +/- 2.28, S = 1.31 +/- 1.24, P = 3.58 +/- 2.34 g/l. Double filtration was only performed with filter system S showing the best blood compatibility. But the second BCF-RCC also showed considerable hemolysis. Therefore, double filtration of RCC's only seems to be indicated under optimal conditions with blood compatible filters for selected patients. Bed side filtration cannot be recommended because of the risk of hemolysis that makes quality control necessary.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Component Removal

Complications and management of the filtration bleb.

Filtration surgery is the commonest operation performed for closed angle or open angle glaucoma when medical treatment or laser trabeculoplasty has failed to control the intraocular pressure. It is characterized by the formation of an artificial drainage fistula between the anterior chamber and subconjunctival space. The successful operation is evidenced by the appearance of a subconjunctival filtration bleb which in turn depends on the patency of this pathway. Despite numerous modification, the procedure trabeculectomy first described by Sugar in 1961 and later on popularized by Watson and Cairns in 1968 is the most popular filtration surgery performed nowadays. It is a safe, relatively easy operation which carries a success rate of around 76% to 84% with a small complication rate. Repeat filtration surgery, however, is often less successful, making a successful initial surgery critically important. A successful outcome of filtration surgery can be enhanced by preoperative preparation, meticulous technique with modification for individual case, and early identification and prompt treatment of the complications arisen.

Anterior Chamber

Mathematical model of the filtration in the vascular network of the ophidian glomerulus.

The present work is a mathematical model of the fluid filtration in the glomerular network occurring in snakes. The model is based on the differential form of Starling's hypothesis and takes into account the angioarchitecture of the network and the behaviour on the microrheology of blood with nucleated red cells. The model predicts the hemodynamics and the transvascular fluxes in each vascular segment within the network. The model is applied to a vascular network of the glomerulus of the garter snake. A value of 0.593 microns/(s.mmHg) was determined for the hydraulic conductivity of the glomerular capillaries using the geometrical data of the network together with experimental data for the pressures and the blood flow rate reported in the literature. The analysis shows that the local filtration rates cover a wide range. In some of the vascular segments, the filtration leads to such a high increase in colloid-osmotic pressure that the level of the transvascular hydrostatic pressure difference is reached. Mathematical simulations of the variation of the glomerular blood flow rate due to vasoactivity of preglomerular arterioles show the effect on the filtration rate and the hemorheologic parameters.

Animals