PubMed HealthSearch

Biomedical subjects

G B Ryan

Publications and source records attributed to G B Ryan.

At least 19 recordsLinked to original sources

Immunohistochemical localization of transthyretin in glomerular peripolar cells of newborn sheep.

Purified transthyretin has been isolated from sheep serum. Antiserum raised against this protein has been used with an indirect immunoperoxidase histochemical technique to identify transthyretin in newborn lamb kidney tissue. Transthyretin was found in proximal tubule cells and in glomerular peripolar cells. Preabsorption studies using purified transthyretin protein indicate that the immunoreactivity of the antiserum is specific to transthyretin.

Animals

Renin processing studied by immunogold localization of prorenin and renin in granular juxtaglomerular cells in mice treated with enalapril.

Immunogold techniques were used to investigate renin processing within granular juxtaglomerular cells following short-term (6 h and 1 day) and long-term (4 weeks) enalapril treatment in female BALB/c mice. In control animals, renin protein labelling was localized to all types of granules (proto-, polymorphous, intermediate and mature) and to transport vesicles, whilst prorenin labelling was found in all these sites except mature granules, confirming that active renin is localized to mature granules only. Following short-term enalapril treatment, the exocytosis of renin protein from mature granules was increased. Long-term enalapril treatment resulted in increased numbers of transport vesicles and all types of granules, consistent with increased synthesis and storage of renin. More large intermediate granules contained discrete regions labelled for prorenin. Renin protein was exocytosed from individual and multiple granules, whilst prorenin was exocytosed from proto- and intermediate granules. It is concluded that under normal conditions prorenin is secreted constitutively by bulk flow from transport vesicles. On the other hand, active renin is secreted regulatively from mature granules. In conditions of intense stimulation (angiotensin-converting enzyme inhibition treatment), increased synthesis of prorenin leads to enhanced secretion of prorenin by both constitutive and regulative pathways. Under these conditions, the conversion of prorenin to active renin is increased, with increased secretion of active renin occurring in a regulative manner. Furthermore, the localization of prorenin to one discrete region of large intermediate granules leads us to conclude, that cleavage of the prosegment of renin occurs with the transition of intermediate to mature granules.

Animals

Total numbers of glomeruli and individual glomerular cell types in the normal rat kidney.

Alterations in numbers of glomeruli and glomerular cells occur in various renal disorders. Although values for these parameters have previously been reported for several species, the estimates have often been biased due to assumptions regarding glomerular and/or nuclear size and shape. Other studies have used tedious serial-section reconstruction methods. In the present study, unbiased stereological methods were used to estimate total numbers of glomeruli and individual glomerular cell types in normal rats. The kidneys of seven adult Sprague-Dawley rats were perfused with 4% paraformaldehyde and 1% glutaraldehyde in phosphate buffer and embedded in either glycol-methacrylate (for light microscopy, LM) or Epon/Araldite (for transmission electron microscopy, TEM). Total glomerular number was estimated using an LM physical disector/fractionator combination; the total number of cells per average glomerulus was estimated using an LM optical disector/Cavalieri combination; and TEM physical disectors were used to count individual cell types. The normal rat kidney was found to contain 31,764 +/- 3667 (mean +/- SD) glomeruli. An average glomerulus contained 674 +/- 129 cells, of which 181 +/- 53 were epithelial cells (podocytes), 248 +/- 53 were endothelial cells, and 245 +/- 45 were mesangial cells. An average renal corpuscle contained 117 +/- 27 parietal epithelial cells. Following sectioning and staining, less than 6.5 h was needed to obtain the above estimates for a single animal, with coefficients of variation (SD as a percent of the mean) ranging from 10% to 25%. The unbiased stereological methods used in the present study constitute an unbiased, precise and cost-efficient set of quantitative tools for assessing glomerular morphology in health and disease.

Animals

Membranous glomerulonephritis associated with sarcoidosis.

Two patients with sarcoidosis involving pulmonary hilar lymph nodes developed the nephrotic syndrome. Renal biopsy in both cases showed membranous glomerulonephritis. In one patient, there was an associated renal vein thrombosis.

Adult

The distribution of albumin and immunoglobulin G in the glomerular capillary wall in aminonucleoside nephrosis.

Using an ultrastructural immunoperoxidase technique, the distribution of endogenous albumin and immunoglobulin G was examined in superficial glomeruli of Munich-Wistar rats with aminonucleoside nephrosis. In glomerular capillaries in which the external surface of the glomerular basement membrane (GBM) was completely covered with spread expanses of epithelial cytoplasm, albumin and IgG were distributed normally, with no detectable penetration beyond the endothelial fenestrae. However, at sites of focal loss of the epithelial covering of the GBM, both albumin and IgG were found to penetrate the GBM. These results suggest that, in this experimental model, plasma proteins leak into the urine at sites of glomerular epithelial denudation.

Albumins

Binding of anti-actin autoantibodies to platelets.

Normal platelets incubated with anti-actin autoantibodies (AAA) (from the serum of patients with chronic aggressive hepatitis) do not show binding of these antibodies as seen by indirect immunofluorescence. AAA serum does not inhibit thrombin-induced clot retraction, despite the binding of the antibodies to platelets in the clot. Similarly, AAA serum does not affect "reversible" or "irreversible" aggregation (induced by ADP, collagen or epinephrine), despite the binding of the antibodies to platelet actin under such circumstances. AAA also bind to platelets when aggregation is inhibited by EDTA. The incubation of "reversibly" aggregated platelet with AAA results in a small but definite binding of AAA to platelets. These findings suggest that during "irreversible" and/or "reversible" aggregation, changes take place at the surface of platelets which expose the antigen at the surface of the cell.

Actins

An ultrastructural study of the mechanisms of proteinuria in rat nephrotoxic nephritis.

Nephrotoxic nephritis was induced in Sprague-Dawley and Munich-Wistar rats by the injection of rabbit antirat kidney serum. A biphasic pattern of proteinuria was induced: the heterologous phase with a peak of proteinuria occurring at 10 to 16 hours, and the autologous phase with a peak at 10 to 15 days. For morphologic studies, glomeruli were fixed by perfusion, or by drip-fixation during good blood flow. In the heterologous phase, glomerular endothelial detachment or loss and leukocytic infiltration were prominent. In the autologous phase, focal detachment of glomerular endothelium and epithelium was commonly found. At sites of endothelial loss, in both phases, endogenous albumin (demonstrated by an ultrastructural immunoperoxidase technique), but not intravenously injected ferritin, showed abnormally deep penetration into the glomerular basement membrane. At sites of epithelial loss, found in the autologous phase, both albumin and ferritin were detected throughout the glomerular basement membrane. It is proposed that, in glomerular disease, leakage of plasma proteins may occur across the glomerular basement membrane at sites of endothelial or epithelial detachment.

Albumins

Distribution of endogenous albumin in the rat glomerulus: role of hemodynamic factors in glomerular barrier function.

Using an ultrastructural immunoperoxidase technique, the distribution of endogenous albumin in the rat glomerulus was delineated under normal and abnormal hemodynamic conditions. Superficial glomeruli in anesthetized Munich-Wistar rats were rapidly fixed in situ by applying glutaraldehyde to the renal surface. Fixed tissue slices were treated with anti-rat albumin Fab fragments conjugated to horseradish peroxidase (HRP), and were then subjected to the Graham-Karnovsky ultrastructural peroxidase localization procedure. During normal blood flow, dense reaction product specific for albumin was largely confined to the glomerular capillary lumen and endothelial fenestrae, with only small amounts detectable in the lamina rara interna, and none deeper in the basement membrane (GBM) or in the urinary space. If cortical tissue was subjected to routine immersion fixation, or if fixation was performed in situ after ligation of the renal artery, reaction product was detected throughout the GBM and in the urinary space. If fixation was performed in situ after ligation of the renal artery and vein (or artery, vein and ureter), reaction product was found in the GBM and, in very large amounts, in the urinary space. If blood flow was restored for ten minutes after five minutes of renal pedicle (artery and vein) occlusion, the distribution of albumin returned to normal. Thus, glomerular barrier function depends upon the maintenance of normal blood flow conditions.

Animals

Glomerular permeability to proteins. Effects of hemodynamic factors on the distribution of endogenous immunoglobulin G and exogenous catalase in the rat glomerulus.

The distribution of endogenous immunoglobulin G (IgG) and exogenous catalase was delineated in the rat glomerulus under normal and abnormal hemodynamic conditions. IgG was identified by an ultrastructural immunoperoxidase technique using antirat IgG Fab fragments conjugated to horseradish peroxidase; catalase was identified by a cytochemical reaction. When superficial glomeruli in anesthetized Munich-Wistar rats were rapidly fixed in situ by dripping glutaraldehyde onto the renal surface, IgG and catalase were largely confined to the glomerular capillary lumen, with only small amounts in the lamina rara interna immediately beneath the endothelial fenestrae, and none deeper in the basement membrane (GBM) or in the urinary space. If cortical tissue was subjected to routine immersion fixation, or if fixation was performed in situ after ligation of the renal artery, IgG and catalase were found throughout the GBM but not in the urinary space. If fixation was performed in situ after ligation of the renal artery and vein (or artery, vein, and ureter), IgG and catalase were found in the GBM and in the urinary space. If blood flow was restored for 10 minutes after 5 minutes of occlusion of the renal artery and vein, the distribution of IgG and catalase returned to that seen during good blood flow, i.e. neither showed significant penetration beyond the endothelial layer. Thus, as was found previously for albumin, glomerular barrier function for IgG and catalase depends upon the maintenance of normal blood flow conditions. We propose that such conditions impose functional restrictions may be mediated by molecular sieving phenomena during normal ultrafiltration across the GBM, perhaps in association with concentration-polarization or charge effects or both. The epithelial slit pores may significantly modulate solute flux across the GBM by controlling the over-all rate of hydrodynamic flow during ultrafiltration.

Animals

Absence of enhanced intimal thickening in the response of the carotid arterial wall to endothelial injury in hypercholesterolemic rats.

Young male Sprague-Dawley rats fed a high cholesterol, thyroid-suppressive diet were subjected to drying injury of carotid artery endothelium; animals were sacrificed at various times up to 3 months after injury, and the vessels were examined by light, scanning, and transmission electron microscopy. The diet induced marked elevation of serum cholesterol mainly present in lipoproteins of density less than 1.063. The morphology and degree of intimal thickening in the injured carotids of such animals were compared with the changes found in control groups of normolipemic rats. In the control groups, endothelium was completely regenerated between 7 and 14 days; intimal thickening was present at 14 days and at later stages and contained smooth muscle cells without lipid. In the cholesterol-fed animals, endothelial regeneration and intimal thickening occurred as in the controls with the following additional features: in the zone of intimal thickening in the injured segment, lipid was present in smooth muscle cells and, at later stages, in the extracellular matrix; undifferentiated mononuclear cells were also noted in the thickened intima and, at 3 months, were found adhering to normal and regenerated endothelium. However, no differences were found between control and hypercholesterolemic rats with respect to the degree of intimal thickening within the injured segment; enhancement of the smooth muscle proliferative response was not evident in the hypercholesterolemic rats. Our findings suggest that this form of hypercholesterolemia and its associated hyperlipoproteinemia may not be directly responsible for rat smooth muscle proliferation following endothelial denudation. They also indicate that hyperlipemia does not necessarily cause persistence of myointimal hyperplasia in arteries.

Animals

Isolation of phagocytic cells from the rat renal glomerulus.

A method is described for the dissociation of rat glomerular cells in vitro. Isolated endothelial cells were characterized by the persistence of fenestrae. Mesangial cells showed a variety of morphologic appearances; if dissociation was performed after an intravenous injection of ferritin, such cells were identified by the presence of large ferritin-filled vacuoles. Intact epithelial cells were rarely seen, presumably because they did not survive the separation procedure. In culture, a high proportion of cells adhered to glass surfaces, were phagocytic, and had labeled heavily in vivo with ferritin; they were, thus, considered to be mesangial in origin. Receptors for immunoglobulin (Fc) and complement (c3) were also detected in such cells after 24 hours in culture, but not immediately after dissociation. Our findings suggest that a population of isolated glomerular cells, probably comprising mainly mesengial cells, is highly phagocytic and has the potential to develop Fc and C3 receptors. We propose that this technique offers a useful approach for the delineation of glomerular cell properties and functions.

Animals

An ultrastructural study of the mechanisms of proteinuria in aminonucleoside nephrosis.

Sprague-Dawley rats injected i.v. with a single dose of puromycin aminonucleoside (PAN) developed massive proteinuria five days later. Electron microscopic studies of perfusion-fixed glomeruli showed that loss of epithelial foot processes and their replacement by flattened expanses of epithelial cytoplasm began at two days and was extensive by four days after the injection of PAN. At and after five days (correlating with the onset and persistence of massive proteinuria), areas of focal loss of the epithelial covering on the outside of the glomerular basement membrane (GBM) were observed in 30% of glomeruli. Intravenously administered ferritin was distributed normally in most sections of the GBM of nephrotic animals, but abnormally deep penetration of particles was observed in GBM segments that lacked an external covering of epithelium. The same changes were found following in situ fixation of superficially placed glomeruli of Munich-Wistar rats with PAN nephrosis. We propose that the massive, early proteinuria in PAN nephrosis may be primarily due to a glomerular epithelial lesion, leading to scattered focal defects in the external covering of the GBM. Increased bulk flow of glomerular filtrate across the GBM in such areas may explain the highly selective proteinuria found in this form of the nephrotic syndrome.

Animals

Substructure of the glomerular slit diaphragm in freeze-fractured normal rat kidney.

In the renal glomerulus, the narrow slits between adjacent epithelial podocytes are bridged by a diaphragm (2, 8, 11). In rat and mouse kidneys fixed by perfusion with tannic acid and glutaraldehyde (TAG), it has recently been discovered that this diaphragm has a highly ordered, isoporous substructure (9). It consists of a regular array of alternating cross bridges extending from the podocyte plasma membranes to a centrally running filament. This zipperlike pattern results in two rows of rectangular pores, approximately 40 X 140 A in cross section, dimensions consistent with the proposed role of the diaphragm as an important filtration barrier to plasma proteins (6). In the present study, we found in freeze-cleaved and in freeze-etched normal rat glomeruli that the surface of the slit diaphragm has an appearance conforming to the pattern found in sectioned material.

Animals

Endothelial regeneration in the rat carotid artery and the significance of endothelial denudation in the pathogenesis of myointimal thickening.

A new model was developed to study endothelial regeneration and the effects of endothelial denudation in large arteries. Complete endothelial loss was produced in a sharply defined, unbranched segment of the rat common carotid artery by brief drying with a gentle stream of air along the lumen of the vessel. Platelets became attached to the denuded surface, but no polymorphonuclear or mononuclear leukocytic adherence or infiltration was observed. Regeneration occurred by the ingrowth, from each end of the denuded segment, of sheets of rapidly dividing endothelial cells. Endothelial replacement was complete by 7 to 10 days after drying. It was also noted that, by 14 days after drying, a striking myointimal thickening developed in the central region of the denuded segment. This central region was the last area to be covered with new endothelium; while still denuded, the region showed edema and signs of cellular proliferation in the innermost medial layer. The myointimal thickening consisted of smooth muscle-like cells in a fibroelastic stroma in the deeper zones, and a layer of rounded, relatively undifferentiated cells in the superficial zones. Progressive regression and condensation of the thickening was observed between 14 days and 3 months. In this model, the clear demarcation and completeness of endothelial denudation in the arterial segment allow study of the over-all process of endothelial replacement, avoiding the confusion imposed by islands of residual endothelium or contributions from branch vessels. The results suggest that the new endothelium in this situation is derived from each end of the segment. In addition, because the method of inducing denudation does not cause significant damage to the underlying media (as shown by the absence of inflammatory cell attachment or infiltration), the model offers a unique opportunity to study the relationship between endothelial loss and changes in the vessel wall. The correlation between the duration of endothelial denudation and the extent of myointimal thickening suggests that sustained insudation of certain, as yet undefined, factors from the lumen may provoke cellular proliferation in the arterial wall. Further investigation of this model should provide information relevant to the pathogenesis of the fibromuscular thickenings of human atherosclerosis.

Animals