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Biomedical subjects

P E Brenchley

Publications and source records attributed to P E Brenchley.

At least 19 recordsLinked to original sources

Angiogenic cytokines in patients with idiopathic interstitial pneumonia.

BACKGROUND: Angiogenesis has been implicated in the pathogenesis of idiopathic interstitial pneumonia (IIP). The aim of this study was to examine the relationship between plasma concentrations of the angiogenic cytokines interleukin 8 (IL-8), vascular endothelial growth factor (VEGF), and endothelin-1 (ET-1) and clinical parameters of disease progression over a 6 month period to identify potential aetiological mediators and prognostic markers of disease activity in patients with IIP. METHODS: Forty nine patients with IIP (40 men) were recruited to the study. Plasma cytokine measurements, pulmonary function tests, and high resolution computed tomography (HRCT) scans were performed on recruitment and after 6 months. Plasma cytokine measurements were also performed in 15 healthy volunteers for control purposes. RESULTS: Patients with IIP had significantly higher median (IQR) baseline concentrations of IL-8 and ET-1 than controls (155 (77-303) pg/ml v 31 (0-100) pg/ml, p<0.001) and (1.21 (0.91-1.88) pg/ml v 0.84 (0.67-1.13) pg/ml, p<0.01), respectively. Baseline concentrations of IL-8, ET-1, and VEGF were significantly related to the baseline HRCT fibrosis score (r = 0.42, p<0.005; r = 0.39, p<0.01; and r = 0.42, p<0.005, respectively). Patients with IIP who developed progressive disease had significantly higher baseline levels of IL-8 (345 (270-497) pg/ml v 121 (73-266) pg/ml, p = 0.001) and VEGF (1048 (666-2149) pg/ml v 658 (438-837) pg/ml, p = 0.019). Over 6 months the change in VEGF was significantly related to the change in HRCT fibrosis score (r = 0.565, p = 0.035) and negatively related to the change in forced vital capacity (r = -0.353, p = 0.035).

Adult↗

Vascular endothelial growth factor expression correlates with tumour grade and vascularity in gliomas.

AIMS: Tumour vascularity and vascular endothelial growth factor (VEGF) expression were studied in 41 primary brain tumours of astrocytic and oligodendroglial origin, in order to define the potential role of VEGF in the vascularization and growth of these tumours. METHODS AND RESULTS: Two commercial monoclonal antibodies to the VEGF protein (from R&D Systems and NeoMarkers), raised against different isoforms, were utilized. Each monoclonal antibody consistently detected the expression of VEGF in different cell types. The R&D Systems antibody only produced surface staining of endothelial cells in tumour capillaries, whereas staining with the Neomarkers antibody was largely confined to tumour cell cytoplasm. High levels of staining were seen with the R&D Systems and NeoMarkers antibodies in 13 and 14 of 15 glioblastomas, respectively, four and three of five oligodendrogliomas, four and seven of 10 anaplastic astrocytomas, one and three of six low-grade astrocytomas and none and none of five pilocytic astrocytomas. There was a close correlation between VEGF expression, tumour vascularity and grade. CONCLUSIONS: These findings support a role for VEGF in the angiogenesis of glioblastoma, anaplastic astrocytoma and oligodendroglioma. The distinct immunoreactivities of the two commercial monoclonal antibodies indicate either there is expression of different splice variants of VEGF or that the epitopes are differentially revealed during synthesis, secretion and receptor-binding of the growth factor. This highlights the importance of using more than one antibody in the evaluation of tissue VEGF expression.

Astrocytoma↗

Mesangial IgA1 in IgA nephropathy exhibits aberrant O-glycosylation: observations in three patients.

BACKGROUND: In IgA nephropathy (IgAN), circulating IgA1 molecules display an abnormal pattern of O-glycosylation. This abnormality may potentially contribute to mesangial IgA1 deposition, but this is unproven because the O-glycosylation of mesangial IgA1 has not been analyzed. METHODS: IgA1 was eluted from glomeruli isolated from the kidneys of three IgAN patients obtained after nephrectomy or at postmortem. Serum from these patients, other patients with IgAN, and controls was subjected to the same treatment as the glomerular eluates. The O-glycosylation of eluted and serum IgA1 was measured by lectin binding using an enzyme-linked immunosorbent assay-based system. RESULTS: In all three cases, the lectin binding of IgA1 eluted from the glomeruli of IgAN patients was markedly higher than that of the serum IgA1 of the same individual, and also all but one of a series of serum IgA1 samples from other patients and controls. CONCLUSIONS: The higher lectin binding of glomerular compared with serum IgA1 suggests that O-glycosylated IgA1 molecules abnormally and selectively deposit in the kidney. These results provide the first evidence that mesangial IgA1 is abnormally O-glycosylated, and support a direct role for abnormal IgA1 O-glycosylation in the mechanism of mesangial IgA deposition in IgAN.

Adult↗

Plasma transforming growth factor beta(1) and platelet activation: implications for studies in transplant recipients.

BACKGROUND: Evidence from animal models supports the hypothesis that dysregulated transforming growth factor beta(1) (TGF beta(1)) expression plays a role in chronic allograft rejection, the progression of diabetic nephropathy and fibrotic glomerulopathies. However, more evidence is required to support this hypothesis in man, and the current literature concerning blood TGF beta(1) levels in clinical studies is highly confused. We have investigated: (i) the hypothesis that the widespread practice of activating clinical samples prior to measurement of TGF beta(1) is detecting the platelet-released pool of TGF beta(1), artefactually generated on venepuncture and unrepresentative of the real circulating in vivo TGF beta(1) pool; and (ii) the effect of different immunosuppressive drugs on apparent TGF beta(1) plasma levels. METHODS: The effect of two different venepuncture procedures on plasma TGF beta(1) was compared in 10 healthy volunteers, one procedure designed to minimize platelet activation and the other representing standard venepuncture practice in a clinic situation. Blood samples from 52 renal transplant recipients on either cyclosporine or tacrolimus immunosuppression were taken by standard venepuncture to investigate the effect of immunosuppressive drugs on plasma TGF beta(1). Plasma TGF beta(1) and beta thromboglobulin were measured by ELISA. RESULTS: Among 10 healthy volunteers who underwent two different methods of venepuncture, eight of 10 had undetectable levels of TGF beta(1) (<100 pg/ml) under conditions that minimize platelet activation. In contrast, all 10 paired plasma samples collected by vacutainer had measurable TGF beta(1) (median 7.70 ng/ml, interquartile range 5.87-13.64 ng/ml) following acid/ urea activation. The median beta TG level (a measure of platelet degranulation) was 0.71 microg/ml (interquartile range 0.53-1.19 microg/ml) in the special collections compared with 3.39 microg/ml (interquartile range 2.27-4.33 microg/ml) in the vacutainer samples (P=0.0029). Among 52 allograft recipients there was a significantly higher mean TGF beta(1) level in plasma from patients on cyclosporine therapy compared with patients on tacrolimus (28,090+/-26,860 pg/ml vs 7173+/-10 610 pg/ml, respectively; P<0.002). Mean plasma beta TG levels were also significantly higher during cyclosporine therapy compared with tacrolimus (8.14+/-5.54 microg/ml vs 3.66+/-3.32 microg/ml, respectively; P<0.002). However, when TGF beta(1) values were corrected for the degree of platelet activation (by factoring with beta TG) there was no significant difference between TGF beta(1) levels on cyclosporine or tacrolimus (4117+/-2993 pg/microg beta TG vs 2971+/-658 pg/microg beta TG, respectively; P=0.294). CONCLUSIONS: To avoid erroneous hypotheses concerning TGF beta(1) and perpetuating confusion in the literature over levels in health and disease, it is imperative that proper internal controls for platelet activation are used. The effects of experimental treatments and drugs on platelet biology must be rigorously controlled when attempting to measure and interpret plasma levels of TGF beta(1) in clinical practice.

Adult↗

Identification of polymorphisms within the vascular endothelial growth factor (VEGF) gene: correlation with variation in VEGF protein production.

Dysregulated vascular endothelial growth factor (VEGF) expression has been implicated as a major contributor to the development of a number of common disease pathologies. The aim of this study was to establish the extent of genetic variability within the VEGF gene and to determine whether this genetic variation influenced levels of VEGF protein expression. The promoter region and exon 1 of the VEGF gene were screened for polymorphisms using single-stranded conformation (SSCP) polymorphism analysis and direct PCR-sequencing. We identified 15 novel sequence polymorphisms most of which were rare. Eleven of these polymorphisms were single base substitutions, three were single base insertions and one was a two base deletion. Thirteen of the polymorphisms were located within the promoter and two in the 5' untranslated region (5'UTR) of the gene. We established PCR-RFLP typing systems for ten of the polymorphisms. For the two common polymorphisms at -460 and +405, we developed a combined sequence specific priming (SSP) PCR typing system to determine the cis/trans orientation of each allele and hence, ascertain haplotypes. A significant correlation was observed between lipopolysaccharide (LPS) stimulated peripheral blood mononuclear cell (PBMC) VEGF protein production and genotype for the +405 polymorphism.

5' Untranslated Regions↗

Placenta growth factor (PlGF) induces vascular endothelial growth factor (VEGF) secretion from mononuclear cells and is co-expressed with VEGF in synovial fluid.

The aims of this study were (i) to determine whether PlGF, VEGF and PlGF/VEGF heterodimers are detected in synovial fluid (SF) and plasma samples from patients with a range of arthropathies; (ii) to describe whether any correlation exists between SF PlGF, VEGF and PlGF/VEGF heterodimer levels and the total and differential SF leucocyte counts; and (iii) to investigate the regulation of peripheral blood mononuclear cell (PBMC) VEGF secretion by stimuli relevant to inflammatory joints. PlGF, VEGF and PlGF/VEGF heterodimer levels were measured in the SF and plasma of patients with a range of arthropathies and normal controls by ELISA. Western blotting for PlGF was performed on SF from three patients with rheumatoid arthritis (RA) and primary inflammatory arthropathies. VEGF was quantified in cell culture supernatants after stimulation with lipopolysaccharide (LPS), PlGF or cobalt ions of PBMC isolated from RA patients and controls. PlGF and VEGF were detected in all SF samples. PlGF/VEGF heterodimers were detected in 10.2% of SF samples, most frequently in RA samples. Western blotting confirmed the presence of PlGF in RA SF. PlGF was detected in 52% of RA and 31% of control plasma samples, and VEGF was detected in 38% of RA and 38% of control plasma samples. PlGF/VEGF heterodimers were detected in 21% of RA samples and none of the control samples. In primary inflammatory arthropathy patients, SF PlGF and VEGF levels correlated significantly with the SF total leucocyte count and the neutrophil count. PlGF was the most potent inducer of PBMC VEGF production in both RA and control subjects. This is the first report of the detection of PlGF and PlGF/VEGF heterodimers in the SF of patients with inflammatory arthropathies, and we have shown for the first time that PlGF up-regulates PBMC VEGF production. PlGF may therefore play a key role in the production of VEGF in the inflammatory joint.

Adolescent↗

Mast cells: the forgotten cells of renal fibrosis.

BACKGROUND/AIMS: Mast cells, when activated, secrete a large number of fibrogenic factors and have been implicated in the development of fibrotic conditions of the liver, lung, and skin. There is evidence that renal fibrosis is closely linked with a chronic inflammatory cell infiltrate within the interstitium, but a potential role for mast cells in this process has yet to be defined. Therefore, the numbers of mast cells in normal and fibrotic kidneys with various pathologies were investigated. METHODS: Mast cells were quantified in renal transplants showing acute and chronic rejection and cyclosporin toxicity, kidneys removed for chronic pyelonephritis, and renal biopsies from patients with IgA nephropathy, membranous nephropathy, and diabetic nephropathy. Mast cells were stained using two methods: acid toluidine blue detected less than 30% of the mast cells revealed by immunohistochemistry for mast cell tryptase. RESULTS: Mast cells were scarce or absent in normal kidney (median, 1.6 mast cells/mm2) but numerous throughout the cortex and medulla in all specimens that showed fibrosis. They were almost entirely confined to the renal interstitium. Mast cells were present in large numbers in biopsies from patients with membranous nephropathy (median, 21.7 mast cells/mm2) and diabetic nephropathy (median, 29.2 mast cells/mm2), which were selected on the basis of showing chronic injury. In 24 unselected IgA nephropathy biopsies there was a close correlation between numbers of mast cells and the extent of interstitial fibrosis (r = 0.771; p < 0.0001). In renal transplant biopsies, mast cells were associated with allograft fibrosis in chronic rejection (median, 27.1 mast cells/mm2) and chronic cyclosporin toxicity (median, 10.6 mast cells/mm2) but not acute rejection (median, 2.7 mast cells/mm2) or acute cyclosporin toxicity (median, 2.0 mast cells/mm2). There was no detectable increase in mast cell numbers during acute rejection in those transplants that subsequently progressed to chronic rejection. In some biopsies the mast cells were largely intact, but in most cases some or all were degranulated. CONCLUSIONS: An increased number of mast cells is a consistent feature of renal fibrosis, whatever the underlying pathology, and the number of mast cells correlates with the extent of interstitial fibrosis. This suggests that mast cells might play a pathogenetic role in the fibrotic process.

Acute Disease↗

Peripheral blood mononuclear cells from patients with rheumatoid arthritis spontaneously secrete vascular endothelial growth factor (VEGF): specific up-regulation by tumour necrosis factor-alpha (TNF-alpha) in synovial fluid.

This study was designed to investigate VEGF production from peripheral blood mononuclear cells (PBMC) from patients with rheumatoid arthritis (RA) compared with healthy controls and to identify the predominant cellular source in PBMC isolated from RA patients. The regulation of PBMC VEGF production by cytokines and synovial fluid (SF) was studied. PBMC were isolated from RA patients and healthy controls and stimulated with lipopolysaccharide (LPS), IL-1beta, IL-4, IL-6, IL-8, IL-10, TNF-alpha and transforming growth factor-beta (TGF-beta) isoforms for varying time points up to 72 h at 37 degrees C/5% CO2. The effect of SF on VEGF secretion by PBMC was also studied. Supernatant VEGF levels were measured using a flt-1 receptor capture ELISA. RA patients had significantly higher spontaneous production of VEGF compared with controls, and monocytes were identified as the predominant cellular source. RA PBMC VEGF production was up-regulated by TGF-beta isoforms and TNF-alpha and down-regulated by IL-4 and IL-10, with no effect observed with IL-1beta, IL-6 and IL-8. Antibody blocking experiments confirmed that TNF-alpha and not TGF-beta isoforms in SF increased VEGF secretion by RA PBMC. These results emphasize the importance of monocytes as a source of VEGF in the pathophysiology of RA. Several cytokines known to be present in SF can modulate the level of VEGF secretion, but the predominant effect of SF in VEGF up-regulation is shown to be dependent on TNF-alpha.

Arthritis, Rheumatoid↗

Circulating vascular endothelial growth factor is not increased during relapses of steroid-sensitive nephrotic syndrome.

BACKGROUND: An uncharacterized circulating factor that increases vascular permeability has previously been described in childhood steroid-sensitive nephrotic syndrome (SSNS). The aim of this study was to determine whether this factor is vascular endothelial growth factor (VEGF), the recently described endothelial cell mitogen and enhancer of vascular permeability. METHODS: Plasma and urine VEGF levels were measured in children with SSNS in both relapse and remission and in normal age- and sex-matched controls. Semiquantitative reverse transcriptase-polymerase chain reaction studies investigating VEGF mRNA expression were performed on peripheral blood mononuclear cells isolated from children with SSNS in relapse and controls. In two experimental models (one-hour and three-day follow-up postinfusion), Sprague-Dawley rats were intravenously administered 50 microg rVEGF to determine whether this induced either proteinuria or glomerular histologic change. RESULTS: Plasma VEGF levels and urine VEGF/creatinine ratios were not elevated in SSNS relapse compared with remission and control samples. Peripheral blood mononuclear cell VEGF mRNA expression was no different in SSNS patients compared with controls. The administration of VEGF to rats induced an acute reversible fall in systemic blood pressure but did not result in the development of either proteinuria or glomerular histologic change. CONCLUSION: Increased circulating VEGF levels are not responsible for the proteinuria observed during relapses of SSNS. Further studies are warranted to investigate intrarenal VEGF expression.

Adrenal Cortex Hormones↗

Vascular endothelial growth factor mRNA expression in minimal change, membranous, and diabetic nephropathy demonstrated by non-isotopic in situ hybridisation.

AIM: To investigate vascular endothelial growth factor (VEGF) mRNA expression in glomerular disease in the context of heavy proteinuria. METHODS: Non-radioisotopic in situ hybridisation was performed using a cocktail of 12 deoxyoligonucleotides complementary to VEGF mRNA labelled during solid phase synthesis with 2,4-dinitrophenyl. Archival renal biopsies were studied from cases of minimal change nephropathy, membranous nephropathy, diabetic nephropathy, and controls, matched for age, sex, race, and storage time. Hybrid detection used NBT/BCIP colorimetric development. RESULTS: More VEGF mRNA positive glomerular cells per unit cross sectional diameter were seen in minimal change nephropathy (mean (SEM), 19.35 (1.5)) compared with controls (12.6 (1.73)), p < 0.01. In contrast, fewer were seen in diabetic nephropathy (5.93 (0.97)) compared with controls (9.97 (1.25)), p < 0.03. Analysis of membranous nephropathy (10 (1.62)) showed no difference from controls (10.98 (1.51)), NS. In addition, in minimal change nephropathy there was a significant correlation between 24 hour protein excretion at the time of biopsy and the number of VEGF mRNA cells per glomerulus (r = 0.08, p = 0.01). CONCLUSIONS: Using non-radioisotopic in situ hybridisation, VEGF mRNA is almost exclusively expressed by visceral glomerular epithelial cells. Abnormal numbers of cells are seen in both minimal change and diabetic nephropathy. As VEGF exists in a number of functionally distinct isoforms, further study of qualitative VEGF isoform expression in diagnostic groups is indicated.

Diabetic Nephropathies↗

Activated human neutrophils express vascular endothelial growth factor (VEGF).

The neutrophil (PMN) influx in the acute inflammatory response is associated with a local increase in vascular permeability and oedema. Vascular endothelial growth factor (VEGF), a growth factor known to have potent vascular permeability-enhancing properties in addition to being an endothelial cell mitogen and a chemo-attractant for mononuclear cells, has previously been shown to be expressed by mononuclear cells and platelets, though PMN VEGF expression has not been reported. PMNs isolated from healthy adult volunteers (n = 16) were incubated for 4 h at 37 degrees C in the presence of tumour necrosis factor alpha (TNF-alpha) (5 ng/ml) and serum opsonized zymozan (SOZ) (500 micrograms/ml). Supernatant VEGF levels were measured using a sandwich antibody capture immuno-assay. Median (interquartile range) VEGF levels were significantly increased in PMN supernatants following stimulation with both TNF-alpha [347 pg/ml (264-385 pg/ml)] and SOZ [506 pg/ml (407-593 pg/ml)] compared with control values [78 pg/ml (78-87 pg/ml)]. Time course experiments with SOZ stimulated PMNs showed that the majority of VEGF production occurred within the first hour (1 h mean VEGF level 318 pg/ml, 4 h mean VEGF level 451 pg/ml). RT-PCR studies showed that PMNs express mRNA for the two common VEGF splice variants, VEGF121 and VEGF165. PMN VEGF production may be central to the classic acute phase response to injury and the chemo-attraction of other leukocytes to the source of injury.

Adult↗

An association between antibodies specific for endothelial cells and renal transplant failure.

Human leucocyte antigen (HLA)-specific antibodies, present at the time of transplant, cause renal transplant rejection but cases of rejection of HLA-identical renal transplants indicate that antibodies to non-HLA antigens may also be detrimental. There is increasing evidence that antibodies to antigens present on endothelial cells and monocytes, and on endothelial cells alone, are associated with transplant rejection. We investigated 105 patients with failed renal transplants for the presence of endothelial cell reactive antibodies and compared them with 94 successful transplant patients to determine the role of non-HLA antibodies in transplant failure. Patient sera were tested by enzyme-linked immunoabsorbent assay (ELISA) using as a target fixed cells either from the endothelial/epithelial cell line EAHy.926 or primary cultures of human umbilical vein endothelial cells. Antibody binding was detected using an alkaline phosphatase-conjugated anti-human immunoglobulin G (IgG) antibody. Fourteen of the 105 failed transplant patients had endothelial cell-reactive antibodies as compared with only three of the 94 patients with successful transplants (Fisher's exact test, p = 0.02). Antibody-positive sera were absorbed with the epithelial cell line A549 to remove antibodies directed against the epithelial component of EAHy.926 and with a pool of lymphoblastoid cell line cells to remove HLA-specific antibodies. Absorption did not reduce antibody activity showing the antibodies to be directed against endothelial cell determinants. Antibody-positive sera were also tested by flow cytometry against the monocyte cell line THP-1 and 13 of the 14 patients were negative. In conclusion, we have demonstrated the presence of IgG antibodies directed against endothelial cell determinants in renal transplant recipients in association with renal transplant failure.

Absorption↗

Vascular endothelial growth factor (VEGF) is released from platelets during blood clotting: implications for measurement of circulating VEGF levels in clinical disease.

1. Dysregulated vascular endothelial growth factor (VEGF) expression has been reported in several pathological states based upon evidence of elevated serum VEGF levels. Using two immunoassays for VEGF, this study determines normal plasma and serum VEGF ranges, determines which are more likely to reflect circulating VEGF levels and investigates a potential contribution of VEGF from platelets to VEGF levels detected in serum. 2. The presence of soluble VEGF receptor, sflt-1, at a molar excess of 7:1 significantly reduced measured VEGF levels in both assays. Serum VEGF levels were higher than plasma levels in children [(mean +/- S.E.M.) 306.1 +/- 39.4 versus 107.4 +/- 24.9 pg/ml, P < 0.0001] and adults (249.4 +/- 46.4 versus 76.1 +/- 10.7 pg/ml, P < 0.0001). Serum VEGF increased with clotting time (P = 0.0005 t0 compared with 2 h samples); plasma VEGF levels were not affected by time between sampling and centrifugation. 3. Calcium-induced clotting of platelet-rich but not platelet-poor plasma induced VEGF release with a proportional response between platelet count and VEGF level and isolated platelets released significant quantities of VEGF upon incubation with thrombin. Reverse transcriptase-PCR studies confirmed that platelets express VEGF121 and VEGF165 mRNA. 4. These data suggest that plasma is the preferred medium to measure VEGF levels; a significant and highly variable platelet-mediated secretion of VEGF during the clotting process invalidates the use of serum as an indicator of circulating VEGF levels in disease states.

Adult↗