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Biomedical subjects

J Floege

Publications and source records attributed to J Floege.

At least 91 records · Page 5Linked to original sources

The effect of mutant beta 2-microglobulins on the conformation of HLA-B27 detected by antibody and by CTL.

The arthritis-predisposing HLA-B27 consists of a heavy chain, a small peptide, and the monomorphic beta 2-microglobulin (beta 2-m). CTLs and a mAb, Ye-2, which recognize the complex with specificities both for the heavy chain and for the peptide, are available. The beta 2-m is in noncovalent association with the heavy chain at multiple points and is exchangeable with free beta 2-m outside of the complex. The purpose of our experiments was to test whether mutant beta 2-m capable of modulating HLA-B27 activity could be created. Eighteen recombinant mutants of the human beta 2-m were experimentally generated. In 14 of these, mutations were at or near residues that are either contact residues or interface residues with the heavy chain. Relative to the parent beta 2-m, two-thirds of the mutants showed reduced ability to exchange into HLA-B27 complexes. However, at least four of them induced more than 80% decrease in Ye-2 Ab reactivity. Two mutants were able to induce a minor decrease in susceptibility to lysis by four CTL clones. One of the CTL clones was autoreactive. Two of the CTL clones were specific for HLA-B27 cells experimentally infected with arthritis-causing Yersinia enterocolitica. These results indicate that certain beta 2-m residues play an indirect role in peptide presentation, although they are not directly associated with the peptide residues.

Amino Acid Sequence↗

Renal proliferative and phenotypic changes in rats with two-kidney, one-clip Goldblatt hypertension.

Angiotensin II (AII) is a vasoconstrictive peptide with hypertrophic and mitogenic effects on many cell types. Previous studies have shown that in vivo administration of AII in rats results in proliferation of, and phenotypic changes in, many renal cell populations, but in doses also causing hypertension. Thus, it was not possible to differentiate nonhemodynamic from hypertensive effects of AII. Therefore, we studied rats with renin-dependent, AII-mediated hypertension (the two-kidney, one-clip Goldblatt model; mean systolic blood pressure 238 +/- 48 v 140 +/- 6 mm Hg in sham-operated controls). The unclipped kidneys, which were exposed to high blood pressure, developed significant glomerular and tubulointerstitial injury, tubulointerstitial cell proliferation, dense focal interstitial monocyte-macrophage influx, increased deposition of types I and IV collagen, as well as increased cellular expression of desmin and actin, in tubulointerstitial areas when examined at 11 weeks. In contrast, clipped kidneys, protected from hypertension but with high local renin expression, had minimal abnormalities. These studies suggest that in this model increased renin, and presumably AII, does not mediate significant proliferative or phenotypic changes in the kidney in the absence of hypertension at 11 weeks.

Angiotensin II↗

Human renal cortical interstitial cells with some features of smooth muscle cells participate in tubulointerstitial and crescentic glomerular injury.

In most forms of renal injury, even those due to a primary glomerular process, the extent of tubulointerstitial scarring is a critical determinant of renal functional reserve and prognosis. Yet, little is known about the functional characteristics of the interstitial cells that mediate the processes of chronic tubulointerstitial injury. In this study, tissues from normal kidney (N = 7), from nephrectomies removed for allograft rejection (N = 14) and chronic pyelonephritis (N = 2), and from a cohort of 128 biopsies exhibiting a range of glomerulopathies and tubulointerstitial injury were characterized with antibodies to mesenchymal cells (alpha-smooth muscle actin, desmin) by immunohistology. Selected normal kidneys were also studied by immunoelectron microscopy. Normal adult kidneys contain a widespread population of cortical interstitial cells that constitutively express alpha-smooth muscle actin but not desmin. Immunoelectron microscopy shows that these cells are fibroblasts and not capillary endothelial cells or leukocytes. It has previously been shown that these cells constitutively express platelet-derived growth factor receptor beta and the p75 nerve growth factor receptor. Accumulations of cells expressing smooth muscle actin were identified at sites of chronic tubulointerstitial injury in allograft and pyelonephritic kidneys. The cohort of 128 renal biopsies also revealed accumulations of muscle actin-expressing cells at sites of interstitial injury. These findings demonstrate that a population of interstitial cells with some muscle-like features can be identified in normal kidneys.(ABSTRACT TRUNCATED AT 250 WORDS)

Actins↗

On the specificity of assays to detect circulating immunoglobulin A-fibronectin complexes: implications for the study of serologic phenomena in patients with immunoglobulin A nephropathy.

Immunoglobulin A (IgA)-fibronectin complexes have been proposed as specific serologic markers of IgA nephropathy. They have been detected by the use of ELISA composed of an immobilized antifibronectin antibody (or albumin as a negative control) and an enzyme-conjugated anti-IgA antibody (antifibronectin capture assay). By the use of this type of assay, plasma samples from 32 normal controls, 38 IgA nephropathy patients, and 81 patients with other types of glomerulonephritis were analyzed. Extinction values in IgA nephropathy patients were higher (P = 0.06) than in patients with other glomerulonephritis types and significantly higher than in normals. Markedly lower values were obtained when the plates were coated with albumin. However, when the antifibronectin antibody was replaced by normal IgG or F(ab')2 fragments, almost identical extinctions were measured. The use of different antifibronectin antibodies, IgG, ELISA plates, or blocking regimens did not modify these results. Extinction values could not be suppressed by the addition of exogenous fibronectin. Similar extinctions were observed when plasma samples were replaced by physiologic concentrations of fibronectin-free IgA. Extinction values measured in the plasma samples correlated significantly with IgA concentrations in plasma as analyzed by nephelometry. A collagen binding assay, a second type of assay used to measure IgA-fibronectin complexes, also allowed the detection of fibronectin-free IgA, and again, extinctions measured in plasma could not be suppressed by exogenous fibronectin. In conclusion, both antifibronectin capture ELISA and collagen binding assays do not specifically detect only IgA-fibronectin complexes, but also total plasma IgA, which is frequently, but nonspecifically, elevated in IgA nephropathy.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Effects of rhGH and rhIGF-1 on renal growth and morphology.

It is known that in rodents recombinant human growth hormone (rhGH) and recombinant human insulin-like growth factor (rhIGF-1) increase renal mass. It is uncertain, however, whether renal mass increases in proportion to body growth, or whether renal growth is stimulated selectively. In 120 to 150 g female Sprague-Dawley rats, we measured the effects of rhGH and rhIGF-1 and their combination by the following parameters: kidney weight/body weight ratio, DNA/protein ratio, mRNA of GH receptor and of IGF-1, mitosis index and PCNA (by immunohistology), zonal architecture and glomerular diameter by micromorphometry. Both rhGH and rhIGF-1 dose-dependently increased renal weight and body weight over vehicle treated controls. With rhGH, liver dry weight/body weight ratio increased, but kidney dry weight/body weight ratio remained unchanged (0.99 +/- 0.06 x 10(-3) vs. 1.02 +/- 0.07 in vehicle controls). In contrast, a significant increase of kidney dry weight/body weight ratio was seen in rats treated with rhIGF-1 (1.3 +/- 0.21 x 10(-3). Addition of high doses of rhGH to high doses of rhIGF-1 caused no further increase of the ratio despite a significant further increase of body weight. rhGH increased the abundance of renal GH receptor mRNA (0.46 +/- 0.32 amol/microgram DNA vs. 0.08 +/- 0.07 in controls) and of IGF-1 mRNA (1.35 +/- 0.5 pg/micrograms DNA vs. 0.35 +/- 0.17), whereas no change was seen with IGF-1 treatment. rhGH and rhIGF-1 increased kidney DNA/protein ratio, mitoses and PCNA expression in various renal structures.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Heparin suppresses mesangial cell proliferation and matrix expansion in experimental mesangioproliferative glomerulonephritis.

Proliferation and extracellular matrix (ECM) overproduction by glomerular mesangial cells characterizes many types of glomerulonephritis and often precedes the development of glomerulosclerosis. Heparin is a potent inhibitor of mesangial cell growth in vitro. We examined whether standard heparin can inhibit mesangial cell proliferation in vivo in the mesangioproliferative anti-Thy 1.1 nephritis. Untreated control rats were compared to rats infused with heparin either early (day -2 to 1) or late (day 2 to 5) after induction of anti-Thy 1.1 nephritis. The results show that heparin treatment significantly reduced mesangial cell proliferation regardless of when it was initiated. Heparin (either early or late treatment) also reduced mesangial basic fibroblast growth factor (bFGF) expression and platelet-derived growth factor (PDGF) receptor up-regulation as reflected by immunostaining, whereas PDGF B-chain expression was reduced only by late heparin treatment. Furthermore, heparin treatment markedly inhibited the mesangial matrix expansion for a variety of ECM proteins, including laminin, type I and IV collagen, fibronectin and entactin. Heparin did not affect the initial mesangiolysis, glomerular macrophage influx, deposition of anti-Thy 1.1 IgG or fibrinogen, or the glomerular platelet influx. These results suggest that heparin, via its antiproliferative rather than anticoagulant effect, can inhibit mesangial cell proliferation, overexpression of polypeptide growth factors, and ECM protein overproduction in vivo. The beneficial effect of heparin can be demonstrated even if treatment is initiated after the development of nephritis. By virtue of these properties, heparin may be an effective agent in the treatment of human mesangioproliferative disease and in the prevention of glomerulosclerosis.

Animals↗

Cytokines in renal inflammation.

Cytokines play pivotal roles in most physiologic and pathologic processes. This paper reviews recent data on the role of cytokines in mediating renal inflammatory diseases. These data show that cytokines are involved in every phase of inflammatory injury. Cytokines induce expression of major histocompatibility complex class II and adhesion molecules on renal cells and are thereby involved in antigen presentation and leukocyte localization. Cytokines also induce the synthesis of leukocyte chemoattractants, eg, interleukin-8 and monocyte chemotactic peptide-1, in renal cells. Finally, cytokines, and in particular, platelet-derived growth factor and transforming growth factor-beta, appear to play a role in the long-term consequences of renal inflammation such as the induction of cell proliferation and the accumulation of extracellular matrix, both of which characterize glomerular and tubulointerstitial fibrosis. Better understanding of the disturbances of the cytokine network in renal inflammation may ultimately lead to novel therapeutic approaches to renal disease.

Animals↗

Infusion of platelet-derived growth factor or basic fibroblast growth factor induces selective glomerular mesangial cell proliferation and matrix accumulation in rats.

Mesangial cell (MC) proliferation and extracellular matrix expansion are involved in the pathogenesis of glomerulosclerosis and renal failure. In vitro, PDGF and basic fibroblast growth factor (bFGF) regulate MC proliferation and/or matrix production. To elucidate the role of PDGF and bFGF in vivo, equimolar concentrations of recombinant PDGF-BB or bFGF or vehicle were infused intravenously into rats over a 7-d period. Rats were either nonmanipulated ("normals") or had received a subnephritogenic dose of anti-MC antibody ("anti-Thy 1.1 rats") before the infusion period. Glomerular cell proliferation (anti-proliferating cell nuclear antigen immunostaining) on days 2, 4, and 7 was unchanged in vehicle-infused normals or anti-Thy 1.1 rats. PDGF infusion increased glomerular cell proliferation 32-fold in anti-Thy 1.1 rats and an 11-fold in normals on day 2. bFGF increased glomerular cell proliferation fourfold in anti-Thy 1.1 rats but was ineffective in normals. Induction of cell proliferation in all kidneys was limited to the glomerulus. The majority of proliferating cells were identified as MC by double immunolabeling. No significant proteinuria, glomerular leukocyte, or platelet influx developed in any group. Glomerular matrix expansion with increased deposition of type IV collagen, laminin, and fibronectin, as well as upregulated laminin and collagen IV mRNA expression was confined to PDGF-infused anti-Thy 1.1 rats. These results show that PDGF and, to a lesser degree, bFGF are selective MC mitogens in vivo and that previous subclinical injury can enhance this MC response. The data thereby support a role of these cytokines in the pathogenesis of glomerulosclerosis.

Animals↗

Role of platelet-derived growth factor in glomerular disease.

An approach for establishing a role for a growth factor in glomerular disease is presented. Using platelet-derived growth factor (PDGF) as an example, there is strong evidence to support the hypothesis that PDGF is a mediator of mesangial cell proliferation in glomerulonephritis. This includes evidence that (1) PDGF is a mitogen for mesangial cells in culture; (2) PDGF is expressed in both experimental and human glomerulonephritis in which mesangial cell proliferation occurs; (3) infusion of PDGF into rats induces mesangial cell proliferation and a hypercellular lesion; and (4) inhibition of PDGF in a model of experimental nephritis significantly reduces the mesangial cell proliferation. However, these data do not answer the question of whether or not the inhibition of PDGF in human diseases would be beneficial in the long term, because some cell proliferation is likely required for normal healing and repair. Further studies will be necessary to resolve this issue.

Animals↗

Visceral glomerular epithelial cells can proliferate in vivo and synthesize platelet-derived growth factor B-chain.

In glomerular diseases associated with antibody- and complement-mediated injury to endothelial and mesangial cells, cell proliferation is an important early response that precedes matrix accumulation and glomerulosclerosis. In contrast, in diseases in which the visceral glomerular epithelial cell (vGEC) is the principal target of injury, cell proliferation is not a recognized consequence, although vGECs respond in vitro to a variety of growth factors and inflammatory mediators. To explore the possibility that low levels of vGEC proliferation may occur and participate in such diseases, serial studies were done in the passive Heymann nephritis model of membranous nephropathy, in which the vGEC is the primary target of antibody- and C5b-9-mediated injury. The results showed mitotic figures and positive staining for the proliferating cell nuclear antigen in cells whose location defined them as vGECs. The proliferating cell nuclear antigen-positive cells at the edge of the capillary wall were confirmed to be vGECs by double-immunostaining with antibodies to SPARC/osteonectin, which preferentially label vGECs in passive Heymann nephritis. Proliferation of vGECs in vivo was preceded by increased glomerular expression of platelet-derived growth factor (PDGF) B-chain protein and messenger RNA, both of which localized to vGECs. PDGF B-chain protein and messenger RNA were also detected in cultured vGECs. PDGF receptor beta-subunit protein or messenger RNA could not be demonstrated in vGECs in vivo or in vitro, and no growth response of cultured vGECs to PDGF was noted. These results suggest that proliferation of vGECs does occur in a model of glomerular injury induced by antibody and C5b-9 on vGECs. VGEC proliferation and production of PDGF may be involved in the restoration of the capillary wall but could also contribute to local capillary wall injury and proliferation of other cells in Bowman's capsule, interstitium, and tubules.

Animals↗