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Biomedical subjects

D C Houghton

Publications and source records attributed to D C Houghton.

At least 19 recordsLinked to original sources

Malignant transformation of angiomyolipoma.

Angiomyolipomas are well recognized but uncommon tumors that can involve the kidney. To our knowledge a well documented case of malignant change of angiomyolipoma has never been reported. We report a case of renal angiomyolipoma and leiomyosarcoma with a clearly identified transition of benign to malignant elements seen in the resected tissue.

Adult

Cloxacillin-induced acute tubulo interstitial nephritis.

OBJECTIVE: To report a case of possible cloxacillin-induced acute tubulo interstitial nephritis (AIN). CASE SUMMARY: A 15-year-old male patient presented with hypertension, edema, lumbar pain, sterile pyuria, eosinophiluria (ten percent), and severe renal dysfunction three months after the ingestion of cloxacillin. A renal biopsy revealed diffuse edema and inflammatory infiltrate of the interstitium (five percent eosinophils). He received four sessions of peritoneal dialysis with dramatic improvement in urinary output and renal function. His biochemical parameters returned to normal values 21 days after admission, without the use of glucocorticosteroids. DISCUSSION: Published case reports on AIN induced by penicillin and related drugs are reviewed and compared. The role of interstitial edema in acute renal failure associated with drug-induced AIN is mentioned. CONCLUSIONS: AIN is a rare but significant complication of therapy with penicillin and related drugs. The clinical picture is similar for all of these drugs, but skin rash and fever are absent in AIN induced by cloxacillin and cloxacillin-related drugs. Dialysis improved the patient's urinary output and renal function. Beta-lactam antibiotics should be avoided in patients with cloxacillin-induced AIN.

Adolescent

Germline mutations in the Wilms' tumor suppressor gene are associated with abnormal urogenital development in Denys-Drash syndrome.

Denys-Drash syndrome is a rare human condition in which severe urogenital aberrations result in renal failure, pseudohermaphroditism, and Wilms' tumor (nephroblastoma). To investigate its possible role, we have analyzed the coding exons of the Wilms' tumor suppressor gene (WT1) for germline mutations. In ten independent cases of Denys-Drash syndrome, point mutations in the zinc finger domains of one WT1 gene copy were found. Nine of these mutations are found within exon 9 (zinc finger III); the remaining mutation is in exon 8 (zinc finger II). These mutations directly affect DNA sequence recognition. In two families analyzed, the mutations were shown to arise de novo. Wilms' tumors from three individuals and one juvenile granulosa cell tumor demonstrate reduction to homozygosity for the mutated WT1 allele. Our results provide evidence of a direct role for WT1 in Denys-Drash syndrome and thus urogenital system development.

Acute Kidney Injury

Cyclosporine-induced renal dysfunction: correlations between cellular events and whole kidney function.

The main adverse reaction to the immunosuppressive drug cyclosporine is dose-dependent renal dysfunction. Although renal vasoconstriction without major tubular dysfunction is usually noted, recent studies have demonstrated an inhibition of renal cortical microsomal protein synthesis. Sprague-Dawley rats and appropriate pair-fed controls were given cyclosporine orally in doses of 5, 10, 25, and 50 mg/kg/day for periods up to 10 days. A dose-dependent decline in glomerular filtration rate and effective renal plasma flow was maximal by day 3 and did not worsen despite continued dosing. Microsomal protein synthesis as measured by [3H]leucine incorporation was also depressed in a dose-dependent fashion; however, inhibition did not reach the nadir until day 4, 1 day after renal dysfunction was established. When cyclosporine was discontinued, microsomal protein synthesis was normalized by 4 days after drug withdrawal; in contrast, the return of glomerular filtration rate and effective renal plasma flow to normal required 8 days after drug discontinuation. Tubular function as measured by fractional excretion of lithium, enzymuria, and urinary osmolality was well maintained despite the depression of renal hemodynamics. There was no evidence of tubular necrosis by light or electron microscopy. Although cyclosporine produces reductions in renal microsomal protein synthesis, measured by "run-off" translation assays, these effects appear unlikely to be the direct cause of acute renal dysfunction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Plasma clearance of 51Cr-EDTA as an estimator of glomerular filtration rate in conscious rats.

A method is described whereby the plasma clearance of 51Cr-EDTA is used to estimate the glomerular filtration rate (GFR) in conscious rats. EDTA clearance rates were calculated based on one and two exponential disappearance curves and compared in groups of animals studied under conditions of normal, high and low GFR. Like previously described related methodologies, this technique obviates the need for urine collections and marker infusions for GFR estimates. An important added advantage is that it provides the opportunity to study animals free of the effects of anesthetic, supine position and surgical stress.

Animals

Diagnosis and characterization of non-Hodgkin's lymphoma in a patient with acute renal failure.

This case illustrates the relatively rare occurrence of malignant lymphoma presenting as acute renal failure due to renal parenchymal infiltration. To our knowledge, it is the first report in which the phenotype of a non-Hodgkin's lymphoma was established using renal biopsy tissue. The dangers of treatment of renal lymphoma in the patient whose disease has not been adequately characterized have been noted by Coggins.

Acute Kidney Injury

Polyaspartic acid prevents experimental aminoglycoside nephrotoxicity.

The influence of the polyamino acid polyaspartic acid (PAA) on experimental aminoglycoside nephrotoxicity was determined. PAA prevented all measured functional and pathologic evidence of gentamicin nephrotoxicity for less than or equal to 27 d of study. All the animals given PAA, either alone or with gentamicin, developed prominent cytoplasmic vacuoles in the cells of the renal proximal convoluted tubules; the vacuoles in rats given just PAA differed from those observed in rats given PAA plus gentamicin. Rats given PAA plus gentamicin accumulated roughly 10 times more renal aminoglycoside as did rats given gentamicin alone. Immunohistochemical localization studies confirmed the presence of increased amounts of gentamicin in the cytoplasm of the tubular cells of animals given gentamicin plus PAA. PAA did not alter the in vitro antimicrobial activity of gentamicin versus Escherichia coli or Pseudomonas aeruginosa. These studies demonstrate the ability of PAA to prevent experimental gentamicin nephrotoxicity.

Animals

The influence of tobramycin dosage regimens on nephrotoxicity, ototoxicity, and antibacterial efficacy in a rat model of subcutaneous abscess.

The influence of dosage regimen on the nephrotoxicity, ototoxicity, and antibacterial efficacy of tobramycin was assessed in Fisher rats with Pseudomonas aeruginosa subcutaneous abscesses. A subcutaneous tobramycin dose of 10 mg/kg every 4 h resulted in peak and trough serum concentrations that approximated those currently recommended for patients. Subsequently, the influence of this subcutaneous dosage regimen was compared with three other regimens that administered the same total daily dose: 20 mg every 8 h, 30 mg every 12 h, and 60 mg every 24 h. Renal injury was assessed by measuring inulin clearance and in vivo synthesis of renal DNA and by histopathology. Cochlear histology was also assessed. The number of P. aeruginosa per abscess was quantitated. In animals with infected abscesses, there was a consistent trend of greater kidney injury with the more-frequent dosage regimens. There was no evidence of cochlear toxicity in any group. All regimens were equally effective in reducing the number of P. aeruginosa in subcutaneous abscesses.

Abscess

Microsomal protein synthesis inhibition: an early manifestation of gentamicin nephrotoxicity.

Aminoglycoside antibiotics achieve bacterial killing by binding to bacterial ribosomes and inhibiting protein synthesis. To examine whether similar mechanisms could be present in renal tubular cells prior to the onset of overt proximal tubular necrosis due to these drugs, we isolated microsomes from Fischer rats given 20 mg/kg gentamicin every 12 h subcutaneously for 2 days and from vehicle-injected controls. Concomitant studies of renal structure, function, and mitochondrial respiration were carried out. [3H]leucine incorporation into renal microsomes of treated animals was reduced by 21.9% (P less than 0.01), whereas brain and liver microsomes from the same animals were unaffected. Gentamicin concentration in the renal microsomal preparation was 56 micrograms/ml, a value 7- to 10-fold above concentrations necessary to inhibit bacterial growth. Conventional renal function studies were normal (blood urea, serum creatinine, creatinine clearance). Treated animals showed only a mild reduction of inulin clearance, 0.71 compared with 0.93 ml.min-1.100 g-1 in controls (P less than 0.05), and an increase in urinary excretion of N-acetylglucosaminidase of 20 compared with 14.8 units/l (P less than 0.05). Renal slice transport of p-aminohippuric acid, tetraethylammonium, and the fractional excretion of sodium were well preserved. There was no evidence, as seen by light microscopy, of proximal tubular necrosis. Mitochondrial cytochrome concentrations were normal and respiratory activities only slightly reduced. Processes similar to those responsible for bacterial killing could be involved in experimental gentamicin nephrotoxicity before overt cellular necrosis.

Animals

Chronic tubulointerstitial nephritis and renal insufficiency associated with long-term "subtherapeutic" gentamicin.

To determine whether long-term "subtherapeutic" concentrations of aminoglycoside produce chronic tubulointerstitial nephropathy, Fisher rats were given gentamicin, 20 mg/kg/day, for up to 6 months via indwelling osmotic infusion pumps. Studies included renal histology, autoradiographic quantitation of renal cell tritiated thymidine uptake, renal function and renal cortical gentamicin assay. Acute proximal tubular injury, without tubular necrosis, followed by recovery, occurred during the first month. Subsequently only mild, nonprogressive tubulointerstitial changes and a twofold increase in tubular cell turnover were observed. Inulin clearance fell more than 50% during the 6 months of treatment compared with 10% in age-matched controls. Serum creatinine and creatinine clearance overestimated glomerular filtration rate during treatment and did not distinguish treated animals from controls. During the month after 6 months of gentamicin, tubular microcystic changes and active tubulointerstitial nephritis developed, with a continued fall in inulin clearance. In summary, gentamicin, in "subtherapeutic" doses, produces mild chronic tubulointerstitial nephritis with progressive renal failure. Cessation of treatment is associated with microcystic and inflammatory changes, suggesting that the renal response to tubular injury can be dissociated from the amount of toxin in the renal cortex. Keeping serum aminoglycoside levels below accepted therapeutic range for 6 months did not preclude nephrotoxicity.

Animals

Modification of experimental nephrotoxicity with fish oil as the vehicle for cyclosporine.

Cyclosporine-associated renal dysfunction is well recognized. While renal vasoconstriction appears to be a major pathogenic factor, the precise mechanism responsible for the altered hemodynamics is unclear. To investigate whether alterations in renal eicosanoid metabolism could be involved, we substituted fish oil rich in eicosapentaenoic acid (EPA), an inhibitor of cyclooxygenase metabolites, for the conventional olive oil cyclosporine vehicle. Male rats were pretreated with 1.0 cc fish oil or olive oil by gavage. After 14 days, cyclosporine (12.5 mg/cc vehicle) was added to the oil and animals received cyclosporine 50 mg/kg for an additional 14 days. Pair-fed control animals received fish oil or olive oil alone. Glomerular filtration rate (GFR) was severely reduced in the cyclosporine-in-olive-oil (CSA + OO) group (0.28 +/- .05 ml/min/100 g) vs. olive oil (OO) controls (0.70 +/- .04) (P less than 0.001). While GFR was reduced in the cyclosporine-in-fish oil group (CSA + FO) vs. fish oil (FO) controls (0.47 +/- .07 vs. 0.74 +/- .04), it was significantly higher than in the CSA + OO group (P less than 0.05). Trough whole-blood cyclosporine levels were not significantly different in the two groups. While CSA + OO appeared to elevate renal cortical content of thromboxane B2 (65.7 +/- 7.3 pg/mg tissue vs. 46.9 +/- 5.3 for OO), both the CSA + FO and FO groups had reduced levels (31.1 +/- 2.7 and 29.5 +/- 2.3, respectively). In addition, there was a striking reduction in proximal tubular vacuolar changes in the CSA +/- FO vs. CSA + OO group. We conclude that the use of EPA-rich fish oil as the vehicle for cyclosporine results in improved renal function and morphology and is associated with depressed renal cortical levels of vasoconstrictor thromboxane B2.

Animals

Cyclosporine-induced acute renal dysfunction in the rat. Evidence of arteriolar vasoconstriction with preservation of tubular function.

Dose-related cyclosporine-induced renal dysfunction is the most frequent adverse effect noted with this exciting immunosuppressive drug. To investigate pathogenetic factors involved, we studied renal tubular function and afferent arteriolar morphology during severe experimental cyclosporine-induced reduction in glomerular filtration rate. Pair-fed male rats were given cyclosporine 50 mg/kg or olive oil vehicle alone by gavage for periods of 3-14 days. Glomerular filtration rate declined progressively, reaching a nadir of 0.18 +/- .05 ml/min/100 g vs. .86 +/- .03 ml/min/100 g in controls at 14 days (P less than 0.001). Despite the severe reduction in glomerular filtration rate there was no difference in fractional sodium excretion, fractional lithium excretion, enzymuria, or in vitro renal cortical slice uptake of tetraethylammonium in cyclosporine and vehicle-treated animals. Light microscopy showed vacuolar changes without evidence of tubular necrosis at 7 and 14 days in cyclosporine-treated rats. Progressive decline in the diameter of the afferent arteriole was noted by scanning electron microscopy. By day 14 the lumenal diameter of afferent arterioles from cyclosporine-treated animals was 8.9 +/- 0.4 micron vs. 13.5 +/- 0.4 micron in controls (P less than 0.05). We conclude that afferent arteriolar vasoconstriction rather than direct tubular injury is a major pathogenetic factor in experimental cyclosporine nephrotoxicity.

Acute Kidney Injury

Renal mitochondrial integrity during continuous gentamicin treatment.

Rats were given gentamicin over a period of 21 days. At 5, 10, 14 and 21 days renal cortical mitochondria were isolated, and respiratory and Ca2+ transport functions and cytochrome concentrations were determined. The mitochondrial data were correlated with indicators of deteriorating renal function and tissue gentamicin accumulation. During the first 10 days of chronic gentamicin treatment, mitochondrial cytochrome oxidase and cytochrome c concentrations declined significantly. This decline was followed by a partial spontaneous recovery by days 14 and 21. Cytochrome b concentration was not significantly different from normal. Parallel with the cytochrome concentration changes, State 3 respiratory activities with all substrates studied and the rates of Ca2+ accumulation declined during the first 10 days and recovered spontaneously thereafter. It is concluded that chronic gentamicin treatment leading to renal failure inhibits mitochondrial energy-linked functions, which inhibition is induced by rate-limiting synthesis of those mitochondrial respiratory chain enzymes coded outside the mitochondrion.

Adenosine Triphosphate

Modification of experimental aminoglycoside nephrotoxicity.

Some of the factors that modify experimental aminoglycoside nephrotoxicity are reviewed. Maneuvers ready to be tested for effectiveness in the clinical use of these drugs are highlighted. The use of concomitant penicillins and changes in dosing strategy seem to be particularly exciting new leads toward elimination of clinical aminoglycoside nephrotoxicity.

Aminoglycosides

Vancomycin enhancement of experimental tobramycin nephrotoxicity.

The influence of vancomycin on tobramycin nephrotoxicity was assessed in male Fischer rats. Treatment groups included controls receiving diluent and groups receiving vancomycin alone at a dosage of 200 mg/kg (body weight) per day, tobramycin alone at a dosage of 80 mg/kg per day, and a combination of vancomycin and tobramycin at the above dosages. All regimens were injected on a twice-a-day schedule. The animals were sacrificed on days 1, 3, 10, 14, 17, and 21. When compared with controls, animals receiving vancomycin alone exhibited no detectable renal toxicity. Compared with the case with controls, tobramycin alone was toxic, as manifested by lower mean animal weights, increased blood urea nitrogen concentrations on days 14 and 17 (P less than 0.005), increased serum creatinine concentrations on days 17 and 21 (P less than 0.005), and the presence of renal cortical tubular necrosis and regeneration. When compared with tobramycin alone, the combination of vancomycin and tobramycin caused earlier and more severe toxicity. By day 10, the magnitude of weight loss, the rise in blood urea nitrogen, and the increase in serum creatinine concentration were all greater in the rats given the combination of vancomycin plus tobramycin than in the animals given tobramycin alone (P less than 0.005). In addition, there was more proximal tubular necrosis and regeneration in rats given vancomycin plus tobramycin compared with those given tobramycin alone. In this animal model, vancomycin alone caused no detectable renal injury, tobramycin alone produced minimal proximal tubular damage, and the combination of vancomycin and tobramycin resulted in a greater degree of kidney injury than observed with tobramycin alone.

Animals