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Biomedical subjects

John P Johnson

Publications and source records attributed to John P Johnson.

11 recordsLinked to original sources

Hydrostatic pressure-regulated ion transport in bladder uroepithelium.

The effect of hydrostatic pressure on ion transport in the bladder uroepithelium was investigated. Isolated rabbit uroepithelium was mounted in modified Ussing chambers and mechanically stimulated by applying hydrostatic pressure across the mucosa. Increased hydrostatic pressure led to increased mucosal-to-serosal Na+ absorption across the uroepithelium via the amiloride-sensitive epithelial Na+ channel. In addition to this previously characterized pathway for Na+ absorption, hydrostatic pressure also induced the secretion of Cl- and K+ into the mucosal bathing solution under short-circuit conditions, which was confirmed by a net serosal-to-mucosal flux of 36Cl- and 86Rb+. K+ secretion was likely via a stretch-activated nonselective cation channel sensitive to 100 microM amiloride, 10 mM tetraethylammonium, 3 mM Ba2+, and 1 mM Gd3+. Hydrostatic pressure-induced ion transport in the uroepithelium may play important roles in electrolyte homeostasis, volume regulation, and mechanosensory transduction.

Animals↗

Effect of altered Na+ entry on expression of apical and basolateral transport proteins in A6 epithelia.

In several in vivo settings, prolonged alterations in the rate of apical Na+ entry into epithelial cells alter the ability of these cells to reabsorb Na+. We previously modeled this load dependence of transport in A6 cells by either decreasing Na+ entry via apical Na+ removal or amiloride or enhancing Na+ entry by chronic short-circuiting (Rokaw MD, Sarac E, Lechman E, West M, Angeski J, Johnson JP, and Zeidel ML. Am J Physiol Cell Physiol 270: C600-C607, 1996). Inhibition of Na+ entry by either method was associated with striking downregulation of transport rate as measured by short-circuit current (Isc), which recovered to basal levels of transport over a period of hours. Conversely, upregulation of Na+ entry by short-circuiting resulted in a sustained increase in transport rate that also returned to basal levels over a period of hours. The current studies were undertaken to determine whether these conditions were associated with alterations in either the whole cell content or apical membrane distribution of sodium channel (ENaC) subunits or on basolateral expression of either of the subunits of the Na+-K+-ATPase. We compared these effects to those achieved by chronic upregulation of Na+ transport by aldosterone. Whole cell levels of ENaC subunits were measured by immunoblot following 18-h inhibition of Na+ entry achieved by either tetramethylammonium replacement of Na+ or apical amiloride or after an 18-h increase in Na+ entry achieved by chronic short-circuiting. None of these maneuvers significantly altered the whole cell content of any of the ENaC subunits compared with control cells. We then examined the effects of these maneuvers on apical membrane ENaC expression using domain-specific biotinylation and immunoblot. Inhibition of Na+ entry by either method was associated with a profound decrease in apical membrane beta-ENaC without significant changes in apical membrane alpha-or gamma-ENaC amounts. Restoration of apical Na+ and/or removal of amiloride resulted in return of Isc to control levels over 2 h and coincided with return of apical beta-ENaC to control levels without change in apical alpha- or gamma-ENaC. Stimulation of Na+ transport by short-circuiting, in contrast, did not significantly alter apical membrane composition of any of the ENaC subunits. Basolateral expression of Na+-K+-ATPase was also measured by biotinylation and immunoblot and was unchanged under all conditions. Aldosterone increased basolateral expression of the alpha-subunit of Na+-K+-ATPase. These results suggest that chronic downregulation of transport is mediated, in part, by a selective decrease in apical membrane ENaC expression, consistent with our previous observations of noncoordinate regulation of ENaC expression under varying transport conditions in A6 cells. The chronic increase in the rate of Na+ entry is not associated with any of the changes in transporter density at either apical or basolateral membrane seen with aldosterone, suggesting that these two mechanisms of augmenting transport are completely distinct.

Aldosterone↗

Levofloxacin-induced granulomatous interstitial nephritis.

The authors report the case of a 47-year-old woman in whom a systemic illness developed characterized by fever, malaise, abnormal liver function results, and acute renal failure after treatment for presumed urinary tract infection with levofloxacin. Because of suspicion of an allergic drug reaction, all medications were discontinued, but the patient remained febrile with renal failure for 18 days. Complete workup for presumed vasculitis, autoimmune illness, or infectious etiologies was negative, and the patient underwent both renal and liver biopsy. Liver biopsy results showed nonspecific changes. Renal biopsy disclosed extensive granulomatous interstitial nephritis with associated granulomatous vasculitis. The patient was begun on oral steroids with rapid defervescence of fever and progressive normalization of renal function. The authors discuss the association of granulomatous nephritis with drugs and review the known nephrotoxicity of fluoroquinolones.

Female↗

Endogenously expressed epithelial sodium channel is present in lipid rafts in A6 cells.

The epithelial sodium channel (ENaC) present in the kidney collecting duct, distal colon, and the lung is responsible for salt reabsorption and whole body volume regulation. It is composed of three homologous subunits, alpha, beta, and gamma, and mutations to these subunits can lead to the salt wasting disease pseudohypoaldosteronism type I, associated with decreased channel density at the plasma membrane or to the hypertensive disorder, Liddle's syndrome, in which channel residency time at the plasma membrane is enhanced. Regulation of ENaC trafficking and turnover is therefore critical to sodium homeostasis. In this study we examined whether ENaC is present in the cholesterol-enriched microdomains commonly called lipid rafts, in the endogenously expressing A6 cell line. We demonstrate that a fraction of alpha, beta, and gamma ENaC is present in detergent-insoluble membranes, that subunits exist in membranes that float on discontinuous sucrose density gradients, and that methyl-beta-cyclodextrin treatment causes a redistribution of ENaC subunits to higher density membranes. Furthermore, chronic aldosterone stimulation results in a shift in the membrane density of all three subunits. Biotinylation of apical membrane proteins revealed that ENaC is present in lipid rafts on the plasma membrane. In conclusion, these results show that ENaC is present in lipid rafts both intracellularly and on the cell surface. Raft association may be important for trafficking and/or function of the channel.

Cells, Cultured↗

A case of segmental paternal isodisomy of chromosome 14.

Uniparental disomy of chromosome 14 (UPD 14) results in one of two distinct abnormal phenotypes, depending upon the parent of origin. This discordance may result from the reciprocal over-expression and/or under-expression of one or more imprinted genes. We report a case of segmental paternal isodisomy for chromosome 14 with features similar to those reported in other paternal disomy 14 cases. Microsatellite marker analysis revealed an apparent somatic recombination event in 14q12 leading to proximal biparental inheritance, but segmental paternal uniparental isodisomy distal to this site. Analysis of monochromosomal somatic cell hybrids containing either the paternally inherited or the maternally inherited chromosome 14 revealed no deletion of the maternally inherited chromosome 14 and demonstrated the presence of paternal sequences from D14S121 to the telomere on both chromosomes 14. Thus, the patient has paternal isodisomy for 14q12-14qter. Because the patient shows most of the features associated with paternal disomy 14, this supports the presence of the imprinted domain(s) distal to 14q12 and suggests that the proximal region of chromosome 14 does not contain imprinted genes that contribute significantly to the paternal UPD 14 phenotype.

Abnormalities, Multiple↗

Thyroid hormone in the treatment of post-transplant acute tubular necrosis (ATN).

Delayed graft function (DGF) in cadaver kidney transplants is a common problem and is often due to acute tubular necrosis (ATN). DGF in transplants may have a deleterious effect on long-term graft survival. Since thyroid hormone has been shown to hasten recovery from ATN in experimental models, we designed a trial to determine if a defined course of triiodothyronine (T3) would improve the short- or long-term outcome of patients with DGF in cadaveric transplants. A prospective, randomized, placebo controlled, double blind trial of T3 was carried out in patients with DGF in cadaveric renal transplants. End-points were percentage requiring dialysis, percentage recovering function, time to recovery and length of hospital stay. Long-term outcomes were percentage grafts functioning at 1 year and mean serum creatinine at 1 year. Forty-four patients were randomized to receive either T3 or placebo. Three patients were dropped from each group when early biopsies disclosed that DGF was due to rejection. The groups were well matched by age, cold ischemia time of the graft, and percentage reactivity to a random panel of antigens. Baseline thyroid function studies, including T3, reverse T3 (rT3), and thyroid stimulating hormone (TSH) levels, were similar between the two groups and typical of 'euthyroid-sick syndrome'. T3 had no effect on percentage requiring dialysis, time to recovery, percentage recovering function, or length of stay. At 1 year follow-up, graft function was similar in both groups and significantly lower than that seen in patients with good initial function. Thyroid hormone, given early in the course of DGF in cadaver kidney recipients, had no effect on the course of DGF. Long-term graft function is impaired in patients who experience post-transplant DGF compared to those who have good initial function.

Adult↗

Renal failure in the ICU: comparison of the impact of acute renal failure and end-stage renal disease on ICU outcomes.

BACKGROUND: Acute renal failure (ARF) is associated with a persistent high mortality in critically ill patients in intensive care units (ICUs). Most studies to date have focused on patients with established, intrinsic ARF or relatively severe ARF due to multiple factors. None have examined outcomes of dialysis-dependent chronic renal failure [end-stage renal disease (ESRD)] patients in the ICU. We examined the incidence and outcomes of ARF in the ICU using a standard definition and compared these to outcomes of ICU patients with either ESRD or no renal failure. We sought to determine the impact of renal dysfunction and/or loss of organ function on outcome. METHODS: We prospectively scored 1530 admissions to eight ICUs over a 10-month period for illness severity at ICU admission using the Acute Physiological and Chronic Health Evaluation (APACHE III) evaluation tool. Patients were defined as having ARF based on the definition of Hou et al (Am J Med 74:243-248,1983) designed to detect significant measurable declines in renal function based on serum creatinine. ESRD patients were identified as being chronically dialysis-dependent prior to ICU admission and the remainder had no renal failure. Clinical characteristics at ICU admission and ICU and hospital outcomes were compared between the three groups. RESULTS: We identified 254 cases of ARF, 57 cases of ESRD and 1219 cases of no renal failure for an incidence of ARF of 17%. Roughly half the ARF patients had ARF at ICU admission and the remainder developed ARF during their ICU stay. Only 11% of ARF patients required dialysis support. ARF patients had significantly higher acute illness severity scores than those with no renal failure, whereas patients with ESRD had intermediate severity scores. ICU mortality was 23% for patients with ARF, 11% for those with ESRD, and 5% for those with no renal failure. There was no difference in outcome between patients who had ARF at ICU admission and those who developed ARF in the ICU. Patients with ARF severe enough to require dialysis had a mortality of 57%. APACHE III predicted outcome very well in patients with no renal failure and patients with ARF at the time of scoring but underpredicted mortality in those who developed ARF after ICU admission and overestimated mortality in patients with ESRD. CONCLUSIONS: ARF is common in ICU patients and has a persistent negative impact on outcomes, although the majority of ARF is not severe enough to require dialysis support. The mortality of patients with ARF from all causes is almost exactly similar to that noted using the same criteria two decades ago. More profound ARF requiring dialysis continues to have an even greater mortality. Nevertheless, acute declines in renal function are associated with a mortality that is not well explained simply by loss of organ function. The majority of ARF patients who did not require dialysis still had a considerably higher mortality than the ESRD patients, all of whom required dialysis; while ARF patients who did require dialysis had a much higher morality than ESRD patients. APACHE III performs well and captures the mortality of patients with ARF at the time of scoring. Development of ARF after scoring has a profound effect on standardized mortality. We were unable to identify a unique mortality associated with ARF, but the presence of measurable renal insufficiency continues to be a sensitive marker for poor outcome.

APACHE↗

The clinical and morphologic spectrum of renal cryoglobulinemia.

We review the clinical and histologic features of 17 patients with cryoglobulinemia and renal disease. Most cases were associated with evidence of hepatitis C virus (HCV), although a significant minority had no evidence of HCV. The most common histologic pattern for renal involvement was membranoproliferative glomerulonephritis, which was seen in both HCV-positive and HVC-negative patients. Clinical presentation was variable, including nephrotic syndrome, unexplained elevations of serum creatinine, acute renal failure, or extrarenal manifestations. All patients had type II or type III cryoglobulins and all had low serum complements at presentation. Liver function abnormalities in HCV-positive patients were mild. No clinical or laboratory features beyond hepatitis serologies were helpful in distinguishing between HCV-positive and HCV-negative patients. All but 1 HCV-positive patient were treated with interferon (IFN) in either standard or high dosage, and this treatment was largely ineffective. Five of 11 HCV-positive patients progressed to renal failure. HCV patients treated with cyclophosphamide did not develop active liver disease. In all HCV-negative patients, renal function stabilized or improved, and 5 of 6 were treated with cyclophosphamide. In our series, there is limited experience with IFN-ribavirin therapy, which was not well tolerated. Renal cryoglobulinemia is an uncommon illness of diverse etiologies and clinical presentations. Morphologic presentation is also varied. IFN alone is often inadequate therapy for HCV-associated cryoglobulinemia. Experience with IFN-ribavirin in this entity is limited, but has shown promise in hepatic disease and has shown efficacy in HCV-associated cryoglobulinemia. Cyclophosphamide is the treatment of choice for HCV-negative patients and can be used safely in most HCV-positive patients if they fail IFN or IFN-ribavirin therapy, or if they require more aggressive therapy during periods of rapid clinical progression.

Adult↗

Aldosterone.

Aldosterone plays a pivotal role in electrolyte and fluid homeostasis and thus control of blood pressure. The "classical" view of aldosterone action is that it targets epithelia of the distal colon and renal nephron to stimulate Na(+) (re)absorption and K(+) secretion. In these cells, aldosterone binds steroid receptors, promoting translocation to the nucleus, where they modulate gene expression with the induced proteins stimulating transport. This "genomic" action is dependent on transcription and translation and has a latency of 0.5-1.0 h. Recently, more rapid actions of aldosterone that are independent of transcription and translation have been described. These "nongenomic" actions are mediated by a distinct receptor that is insensitive to inhibitors of the classical mineralocorticoid receptor, such as spironolactone. The present review describes advances in our understanding of the classical model of aldosterone action as well as those that broaden this model to encompass nongenomic actions, nonepithelial targets, production of aldosterone outside of the adrenal gland, novel mechanisms of specificity, and novel mechanisms for mediating genomic actions.

Aldosterone↗

Effect of immunosuppressive agents on glucocorticoid receptor function in A6 cells.

Immunosuppressive agents such as FK-506 and rapamycin inhibit aldosterone- stimulated Na+ transport in A6 cells. Concentration dependence is consistent with the known affinities of these agents for immunophilins. The inhibition was also dependent on time, requiring preincubation with FK-506 or rapamycin before inhibition was seen. The present studies were designed to determine whether this inhibition was pretranscriptional and whether it was due to an effect on either receptor translocation or nuclear accumulation. Because transport effects of steroids in A6 cells are mediated by glucocorticoid receptors (GRs), we examined the transcriptional response of GR-regulated reporters transfected into these cells. Preincubation of cells with FK-506 and rapamycin completely blocked reporter gene activation, whereas preincubation with cyclosporin A partially inhibited this activation. A minimum of 8 h of preincubation was required before the effect was seen. Using a transiently transfected green fluorescent protein-GR construct, we examined the effect of FK-506 and rapamycin on GR translocation. GR translocation induced by dexamethasone was extremely rapid (<5 min) and was largely unaffected by FK-506 or rapamycin but was completely blocked by geldanamycin. Digital deconvolutions revealed a punctate nuclear accumulation of GR, which was still seen after preincubation with immunosuppressive agents. These agents clearly inhibit steroid action by blocking GR-stimulated gene transcription, but this effect is not mediated by altered translocation or nuclear accumulation of receptors. Inhibition of steroid-regulated gene transcription by immunosuppressive agents may explain the electrolyte abnormalities seen in patients receiving these drugs.

Active Transport, Cell Nucleus↗

Continuous versus intermittent renal replacement therapy: a meta-analysis.

OBJECTIVE: Patients with critical illness commonly develop acute renal failure requiring mechanical support in the form of either continuous renal replacement therapy (CRRT) or intermittent hemodialysis (IRRT). As controversy exists regarding which modality should be used for most patients with critically illness, we sought to determine whether CRRT or IRRT is associated with better survival. DESIGN: We performed a meta-analysis of all prior randomized and observational studies that compared CRRT with IRRT. Studies were identified through a MEDLINE search, the authors' files, bibliographies of review articles, abstracts and proceedings of scientific meetings. Studies were assessed for baseline characteristics, intervention, outcome and overall quality through blinded review. The primary end-point was hospital mortality, assessed by cumulative relative risk (RR). MEASUREMENTS AND RESULTS: We identified 13 studies ( n=1400), only three of which were randomized. Overall there was no difference in mortality (RR 0.93 (0.79-1.09), p=0.29). However, study quality was poor and only six studies compared groups of equal severity of illness at baseline (time of enrollment). Adjusting for study quality and severity of illness, mortality was lower in patients treated with CRRT (RR 0.72 (0.60-0.87), p<0.01). In the six studies with similar baseline severity, unadjusted mortality was also lower with CRRT (RR 0.48 (0.34 -0.69), p<0.0005). CONCLUSIONS: Current evidence is insufficient to draw strong conclusions regarding the mode of replacement therapy for acute renal failure in the critically ill. However, the life-saving potential with CRRT suggested in our secondary analyses warrants further investigation by a large, randomized trial.

Critical Care↗