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Biomedical subjects

G H Neild

Publications and source records attributed to G H Neild.

At least 37 records · Page 2Linked to original sources

Renal transplantation following renal failure due to urological disorders.

BACKGROUND: Renal allograft outcome, during an 8 year period (1985-1992), has been assessed in 56 renal transplants performed in 55 patients who had end-stage renal failure as a consequence of urological abnormalities. The abnormalities were: primary vesicoureteric reflux (VUR) or renal dysplasia (26 patients); posterior urethral valves (PUV) (15); neuropathic bladders (6); vesico-ureteric tuberculosis (5); bladder exstrophy (3); and prune belly syndrome (1). Six patients had augmented bladders, and eight transplants were performed in seven patients with urinary diversions. RESULTS: Overall, 1 and 5 year actuarial graft survival was 89 and 66%, with mean creatinine of 154 micromol/l +/- 11 (SE) and 145 +/- 9 respectively. Patients with abnormal bladders or conduits (n = 28) had worse graft function than those with normal bladders (n = 28) although graft survival was not significantly different in the two groups at 1 and 5 years: 93 and 75% with normal bladders vs 86 and 57% with abnormal systems. Symptomatic urinary tract infections were common in the first 3 months after transplantation (63%); fever and systemic symptoms occurred in 39% with normal bladders and 59% with abnormal bladders. Urinary tract infection directly contributed to graft loss in six patients with abnormal bladders, but had no consequences in those with normal bladders. CONCLUSIONS: Abnormal bladders must be assessed urodynamically before transplantation, and after transplantation adequacy of urinary drainage must be re-assessed frequently. Prophylactic antibiotics are now given for the first 6 months and urinary tract infections must be treated promptly. With these measures, good results, similar to those of patients without urological problems, can be obtained.

Adolescent↗

Nature and biological significance of free radicals generated during bicarbonate hemodialysis.

This study investigates evidence of oxidative stress during bicarbonate hemodialysis by measuring total glutathione and lipid peroxidation products in plasma, and characterizes the free radicals produced by neutrophils from healthy volunteers when incubated in vitro with increasing concentrations of bicarbonate. Blood samples were taken from nine hemodialysis patients before and after two hemodialysis sessions. Plasma hydroperoxides and total glutathione were measured. A significant increase was found in total glutathione (1.04 +/- 0.4 versus 2.11 +/- 0.9 microM, P < 0.001) and hydroperoxides by ferrous oxidation in xylenol orange version 2 method (4.6 +/- 0.53 versus 6.4 +/- 0.63 microM, P < 0.001) after hemodialysis, which indicated increased oxidative injury during hemodialysis. Normal neutrophils, activated by contact adhesion, produced a dose-dependent increase in free radical production (measured by luminol-enhanced chemiluminescence) when incubated with increasing concentrations of bicarbonate (up to 35 mM). Bicarbonate had the same effect on the chemiluminescence of a cell-free hypoxanthine/acetaldehyde system generating superoxide, but not on a glucose oxidase/myeloperoxidase system generating hydrogen peroxide and hypochlorous acid. These findings are consistent with (1) the hypothesis that superoxide generated during hemodialysis reacts with bicarbonate to form the toxic carbonate and formate radicals and (2) our previous observation that some patients undergoing bicarbonate (but not lactate) dialysis have increased plasma concentrations of formate after hemodialysis. It is suggested that the increased plasma total glutathione and hydroperoxide concentrations are a result of lipid peroxidation by these species. These reactive radicals can initiate lipid peroxidation and contribute to the cardiovascular complications of hemodialysis patients.

Aged↗

Induction of nitric oxide synthesis in J774 cells lowers intracellular glutathione: effect of modulated glutathione redox status on nitric oxide synthase induction.

Under pathological conditions, the induction of nitric oxide synthase (NOS) in macrophages is responsible for NO production to a cytotoxic concentration. We have investigated changes to, and the role of, intracellular glutathione in NO production by the activated murine macrophage cell line J774. Total glutathione concentrations (reduced, GSH, plus the disulphide, GSSG) were decreased to 45% of the control 48 h after cells were activated with bacterial lipopolysaccharide plus interferon gamma. This was accompanied by a decrease in the GSH/GSSG ratio from 12:1 to 2:1. The intracellular decrease was not accounted for by either GSH or GSSG efflux; on the contrary, rapid export of glutathione in control cells was abrogated during activation. The loss of intra- and extracellular glutathione indicates either a decrease in synthesis de novo, or an increase in utilization, rather than competition for available NADPH. All changes in activated cells were prevented by pretreatment with the NOS inhibitor L-N-(1-iminoethyl)ornithine. Basal glutathione levels in J774 cells were manipulated by pretreatment with (1) buthionine sulphoximine (glutathione synthase inhibitor), (2) acivicin (gamma-glutamyltranspeptidase inhibitor), (3) bromo-octane (glutathione S-transferase substrate) and (4) diamide/zinc (thiol oxidant and glutathione reductase inhibitor). All treatments significantly decreased the output of NO following activation. The degree of inhibition was dependent on (i) duration of treatment prior to activation, (ii) rate of depletion or subsequent recovery and (iii) thiol end product. The level of GSH did not significantly affect the production of NO, after induction of NOS. Thus, glutathione redox status appears to plays an important role in NOS induction during macrophage activation.

Adenosine Triphosphate↗

The true clinical significance of renography in nephro-urology.

Isotopic renography is a non-invasive technique used routinely by the clinician to provide information about kidney structure and function. Whilst there is no doubt of its value in the accurate measurement of glomerular filtration rate and in the detection of parenchymal abnormalities, its role in the diagnosis of renovascular disease (especially in patients with renal insufficiency), the exclusion of obstruction and the evaluation of the patient with either acute renal failure or renal transplant dysfunction remains unproven. In part, this reflects a failure to standardise protocols and rigorously evaluate diagnostic techniques. Recent developments in ultrasound, computerised X-ray tomography and nuclear magnetic resonance now present the clinician with rival techniques and emphasise the need for the clinical development of isotopic renography.

Acute Kidney Injury↗

The use of povidone iodine in exit site care for patients undergoing continuous peritoneal dialysis (CAPD).

Exit site infection is a major risk factor for the development of peritonitis in continuous ambulatory peritoneal dialysis. The frequency of infection can be reduced by scrupulous exit site care with or without topical antiseptics. A randomized trial was performed of 149 catheters in 130 patients to assess any additional benefits conferred by the use of povidine iodine dry powder spray at dressing changes over an existing strict protocol of exit care. Exit infections occurred in 14 (18%) of 77 patients using spray and in 15 (21%) of 72 patients not using spray. The risk of peritonitis was also similar in each group. The proportion of infections caused by Staphylococcus aureus was reduced in the spray group, but those caused by Pseudomonas aeruginosa were increased. Rash occurred in 6% of those using the spray. The use of the spray did not therefore seem justified.

Aged↗

Cyclosporin nephrotoxicity following cardiac transplantation.

The greatest change in GFR in response to treatment with cyclosporin occurs in the first 3-6 months and the magnitude of the decrement in the first year (or perhaps the first few months) appears to be a vital indicator of future problems. However, the apparent stabilization of renal function, particularly when monitored only by plasma creatinine, can conceal progressive tubulointerstitial injury, and increasing proteinuria is an ominous sign. Although lower doses of cyclosporin and careful monitoring of renal function may be helpful, there is at present no pharmacological intervention to protect or reverse the reduction in GFR that occurs. We believe that the vascular lesion induced by cyclosporin is fundamental, with early and initially reversible cyclosporin-induced vasospasm leading to progressive vascular damage with activation of endothelial cells and increased platelet interactions. Amongst other determinants, the renal response to this vasculopathy will depend on the balance between the presence of vasoactive factors with the vasoconstrictors promoting interstitial fibrosis and the vasodilators inhibiting proliferation. It is likely that the kidneys of heart-transplant recipients are chronically ischaemic and as a consequence their renin-angiotensin systems massively activated, which may further sensitize their kidneys to cyclosporin. Overproduction of angiotensin II, associated with the DD ACE genotype, has already been associated with poor prognosis in diabetic and IgA nephropathy. It is interesting to speculate that this ACE genotype, which is associated with a poor outcome in non-ischaemic heart disease can influence renal sensitivity to cyclosporin and predict the development of morphological injury. Extension of these experimental findings into the clinical arena with a placebo-controlled trial of early introduction of ACE inhibitor therapy in recipients of cardiac transplants would be timely.

Cyclosporine↗

Uroscopy in the 21st century: high-field NMR spectroscopy.

From the experiments described, it can be seen that there are different research approaches that can be taken and these are summarized in Table 1. Whereas much scientific research is principally hypothesis led, there remains, nevertheless, an important place for exploratory research. High resolution NMR can measure, directly and simultaneously, a wide range of endogenous metabolites in biological fluids and has the unique capability of providing structural information on the metabolites detected. It has proved to be a powerful research tool with which to study inherited metabolic diseases, renal disease, drug metabolism, and toxicity, and can be used to monitor the effects of drug therapy. For instance, by using a library of experimental toxins one can map the metabolic profile of site-specific nephron injury. With this approach in man one could eventually take an unknown disease such as Balkan nephropathy and predict the initial site of tubular injury, the mode of injury and therefore the kind of toxin capable of producing that injury. NMR spectroscopic techniques are still advancing rapidly, with ever increasing sensitivity and sophistication of NMR pulse sequences to enhance structural elucidation in complex mixtures. Given the advances in directly coupled HPLC-NMR and even HPLC-NMR-mass spectroscopy it is likely that these technologies in conjunction with pattern recognition will make major contribution to our understanding of renal processes and provide new diagnostic insights in the 21st century.

Forecasting↗

Nitric oxide-mediated vasodilation in human pregnancy.

The maternal circulation vasodilates during pregnancy. We investigated the contribution of nitric oxide to this vasodilatation. Using venous occlusion plethysmography, we measured the effect of nitric oxide synthase inhibition on hand blood flow during human pregnancy. We compared the response to a brachial artery infusion of the nitric oxide synthase inhibitor N(G)-monomethyl-L-arginine (L-NMMA) with the response to norepinephrine in three groups of women: nonpregnant, early pregnant (9-15 wk), and late pregnant (36-41 wk). Basal hand blood flow increased significantly during late pregnancy compared with nonpregnant and early pregnant subjects (P = 0.007). L-NMMA produced a greater reduction in hand blood flow in both pregnant groups compared with nonpregnant controls (P = 0.0003). Norepinephrine produced an attenuated response in late pregnancy compared with nonpregnant and early pregnant women (P = 0.0029). If other vascular beds respond in the same way as the hand, the gestational increase in vasoconstrictor response to L-NMMA that we observed implicates increased generation of nitric oxide in the fall of peripheral vascular resistance during healthy human pregnancy.

Enzyme Inhibitors↗

Acquired perforating dermatosis and diabetic nephropathy--a case report and review of the literature.

A case of acquired perforating dermatosis associated with diabetic nephropathy is described. The case is unusual in that the dermatosis first developed approximately 1 year after renal transplantation rather than at a time when renal function was more severely impaired or during haemodialysis. There was a partial response to treatment with isotretinoin but the use of this drug was limited by the development of hyperlipidaemia. The relevant literature is reviewed.

Adult↗

Urinary proton magnetic resonance studies of early ifosfamide-induced nephrotoxicity and encephalopathy.

Ifosfamide is an oxazophosphorine widely used in the treatment of cancer in children and adults. Nephrotoxicity and neurotoxicity are major side effects. The aim of this study was to use high-resolution proton nuclear magnetic resonance (1H NMR) spectroscopy of urine to identify novel biochemical markers of ifosfamide-induced toxicity. Urine samples were collected from 10 nonencephalopathic patients (who had not previously received nephrotoxic chemotherapy) immediately prior to the first ifosfamide dose and at timed intervals for up to four treatment cycles. The findings were compared with those for urine samples collected from five patients during acute encephalopathic episodes. 1H NMR urinalysis identified a series of characteristic time-related changes in the excretion profiles of low molecular weight endogenous metabolites during ifosfamide therapy. These changes included a decreased excretion of hippurate and an increased excretion of glycine, histidine, glucose, lactate, and trimethylamine-N-oxide. Two nonencephalopathic patients had marked but transient glutaric or adipic aciduria during the second cycle of ifosfamide treatment. Urinary retinol-binding protein rose acutely after each treatment cycle but usually returned to baseline levels. Maximum renal toxicity was observed by the fourth treatment cycle. The ratio of the urinary excretion of the uroprotectant mesna (active form) to dimesna (inactive form) correlated with the degree of renal toxicity. For the encephalopathic patients, the ifosfamide-induced changes in the urinary low molecular weight metabolite profile were similar to those for the nonencephalopathic group. In contrast to previous reports, none of the encephalopathic group developed glutaric aciduria, and i.v. methylene blue did not reverse neurotoxicity in the two patients who received it. The results suggest that ifosfamide nephrotoxicity involves both cortical and medullary regions of the nephron and that the urinary mesna:dimesna ratio may be important in assessing the degree of cytoprotection. This study demonstrates that 1H NMR can provide novel biochemical information on ifosfamide-induced toxicity and will be of value in the optimization of ifosfamide therapy.

Adult↗

Cyclosporin nephrotoxicity in heart and lung transplant patients.

Twenty-two patients with heart, lung or heart and lung transplants maintained on cyclosporin for periods ranging from 3 months to 10 years developed renal insufficiency which was investigated by renal biopsy. The histopathological changes were: (i) severe vascular and glomerular damage due to thrombotic microangiopathy (TM); (ii) a form of focal segmental glomerulosclerosis (FSGS); (iii) glomerular ischaemia. Rather than being separate entities, these changes appeared to represent a spectrum of pathology, some biopsies showing all three forms of glomerular injury. In all cases the glomerular changes were accompanied by arteriolar and arterial pathology, and we identified novel ultrastructural changes in the arteriolar endothelial basal lamina. Tubular atrophy was a consistent feature, the severity of which reflected the severity of the glomerular sclerosis, and which appeared to be a consequence of glomerular loss. Our findings are consistent with the nephrotoxic effects of cyclosporin being mediated chiefly via damage to preglomerular vessels and glomerular capillary endothelium. From an analysis of the clinical aspects of these cases, the effects of cyclosporin appear to be to some extent idiosyncratic, and therefore not entirely preventable, but strict monitoring of blood cyclosporin levels is essential to minimize the risk of permanent renal damage. Monitoring urinary protein in addition to plasma creatinine may detect the onset of FSGS, as proteinuria precedes creatinine elevation.

Adult↗

Nuclear magnetic resonance and high-performance liquid chromatography-nuclear magnetic resonance studies on the toxicity and metabolism of ifosfamide.

A combination of high-resolution nuclear magnetic resonance (NMR) and high-performance liquid chromatography (HPLC)-NMR spectroscopic methods has been used to analyse urine from humans and rats treated with the anticancer drug ifosfamide. It was possible to detect a range of abnormal endogenous metabolites in urine after ifosfamide administration to human subjects undergoing cancer therapy and to relate the metabolic perturbations to the nephrotoxic effects of the drug. Changes observed by 1H NMR included increases in levels of urinary glucose, glycine, alanine, histidine, lactate, acetate, succinate, and trimethylamine-N-oxide and decreases in the levels of hippurate and citrate. Additional evidence was gained that ifosfamide-induced nephrotoxicity might be related to the level of oxidation of the coadministered drug mesna. By using both directly coupled continuous-flow 31P HPLC-NMR spectroscopy to determine the retention times of the phosphorus-containing metabolites and, subsequently, stop-flow 1H HPLC-NMR of the urine, it was possible to isolate and identify on-line the metabolites ifosfamide mustard, 4-hydroxy-ifosfamide, 2-dechloroethylifosfamide, and the parent compound itself. These studies illustrate the potential of combining 1H NMR spectroscopy of biofluids and HPLC-NMR spectroscopy for the investigation of drug metabolism and toxicity in humans and animals.

Animals↗

Role of a copper (I)-dependent enzyme in the anti-platelet action of S-nitrosoglutathione.

1. S-nitrosoglutathione (GSNO) is a potent and selective anti-platelet agent, despite the fact that its spontaneous rate of release of nitric oxide (NO) is very slow. Our aim was to investigate the mechanism of the anti-aggregatory action of GSNO. 2. The biological action of GSNO could be mediated by NO released from S-nitrosocystylglycine, following enzymatic cleavage of GSNO by gamma-glutamyl transpeptidase. The anti-aggregatory potency of GSNO was not, however, altered by treatment of target platelets with the gamma-glutamyl transpeptidase inhibitor acivicin (1 mM). gamma-Glutamyl transpeptidase is not, therefore, involved in mediating the action of GSNO. 3. The rate of breakdown of S-nitrosoalbumin was increased from 0.19 +/- 0.086 nmol min-1 to 1.52 +/- 0.24 nmol min-1 (mean +/- s.e.mean) in the presence of cysteine (P < 0.05, n = 4). Inhibition of platelet aggregation by S-nitrosoalbumin was also significantly increased by cysteine (P < 0.05, n = 4), suggesting that the biological activity of S-nitrosoalbumin is mediated by exchange of NO from the protein carrier to form the unstable compound cysNO. Breakdown of GSNO showed a non-significant acceleration in the presence of cysteine, from 0.56 +/- 0.22 to 1.77 +/- 0.27 nmol min-1 (mean +/- s.e.mean) (P = 0.064, n = 4), and its ability to inhibit platelet aggregation was not enhanced by cysteine. This indicates that the anti-platelet action of GSNO is not dependent upon transnitrosation to form cysNO. 4. Platelets pretreated with the copper (I)-specific chelator bathocuproine disulphonic acid (BCS), then resuspended in BCS-free buffer, showed resistance to the inhibitory effect of GSNO. These findings suggest that BCS impedes the action of GSNO by binding to structures on the platelet, rather than by chelating free copper in solution. 5. Release of NO from GSNO was catalysed enzymatically by ultrasonicated platelet suspensions. This enzyme had an apparent K(m) for GSNO of 12.4 +/- 2.64 microM and a Vmax of 0.21 +/- 0.03 nmol min-1 per 10(8) platelets (mean +/- s.e.mean, n = 5). It was inhibited by BCS, but not by the iron chelator bathophenathroline disulphonic acid, nor by acivicin. 6. We conclude that the stable S-nitrosothiol compound GSNO may exert its anti-platelet action via enzymatic, rather than spontaneous release of NO. This is mediated by a copper-dependent mechanism. The potency and platelet-selectivity of GSNO may result from targeted NO release at the platelet surface.

Analysis of Variance↗