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At least 19 recordsLinked to original sources

[Peritoneal dialysis in patients with polycystic kidneys].

Polycystic kidney disease is a relative contraindication for active treatment with peritoneal dialysis (PD). We have treated 10 end stage kidney disease patients with PD, 4 with intermittent PD and 6 with CAPD. PD was successful in most of these patients. The following complications recurred: a marked increase in arterial blood pressure occurred in one patient, epileptiform fits appeared three times in a patient due to hypocalcemia; renal cancer was documented in a patient after two months on PD. Our results support the view that in selected cases peritoneal dialysis could be successfully used in end-stage polycystic kidney disease.

Aged↗

Lillian Jean Kaplan International Prize for advancement in the understanding of polycystic kidney disease. Understanding polycystic kidney disease: a systems biology approach.

Understanding polycystic kidney disease: A systems biology approach. Fluid secretion was discovered in the mammalian nephron in the early 1970s upon a chance observation. This finding aroused interest in the possibility that a similar process might be involved in the filling of renal epithelial cysts. A research strategy was formulated to understand the life cycle of human renal cysts using a systems biology approach. A not-for-profit foundation was begun to increase the number of researchers in the United States and abroad working on the polycystic kidney disease (PKD) problem. Primary outcomes related to PKD include (1). explication of the transport mechanisms underlying the transepithelial secretion of chloride, sodium and fluid, and the regulation of that secretion by cyclic adenosine monophosphate (AMP); (2). the discovery that cyclic AMP stimulates the proliferation of cyst epithelial cells through activation of of B-Raf and the mitogen-activated protein (MAP) kinase pathway; and (3). the discovery that normal medullary collecting ducts secrete solutes and fluid under the control of cyclic AMP. The Polycystic Kidney Disease Foundation has become an international leader in promoting the research of these disorders and is a strong advocate for increased translation of fundamental laboratory discoveries to the care of the millions of patients with PKD.

Animals↗

[Autosomal dominant polycystic kidney disease. Case report of a 20 kg polycystic kidney].

Polycystic kidneys can reach huge dimensions as a result of their continuous growth and thus lead to a "mechanical problem." We report on a 69-year-old patient with enormous polycystic kidneys having been treated for 4 years with standard hemodialysis. In the last 12 months, the patient was suffering from a deterioration of his condition and progressively developed cachexy. The preoperative status of the multi-morbid patient jeopardized operability. It was decided to perform bilateral nephrectomy with a Chevron incision on the right side. The right kidney weighed 11 kg, the left 9 kg. There were no postoperative problems. The massive relief resulted in an impressive improvement of this risk-patient's fitness and quality of life. There is a clear indication of unilateral nephrectomy in case of a renal transplantation. The role and necessity of a bilateral nephrectomy in the event of polycystic kidneys is discussed based on the respective literature.

Aged↗

Isolated polycystic liver disease as a distinct genetic disease, unlinked to polycystic kidney disease 1 and polycystic kidney disease 2.

Polycystic liver disease (PLD) is proven to occur either sporadically or in association with autosomal dominant polycystic kidney disease (ADPKD), whereas the existence of an isolated (i.e., without any kidney cyst) familial form is disputed. We describe a family with definitely isolated PLD transmitted through three generations and exclude the linkage of the disease to the genetic markers of PKD1 and PKD2, the two main loci responsible for ADPKD. These findings strongly support the existence of PLD as a genetic disease distinct from the known forms of ADPKD.

Cysts↗

Immature ovaries and polycystic kidneys in the congenital polycystic kidney mouse may be due to abnormal sex steroid metabolism.

Ke 6 is a 17beta-hydroxysteroid dehydrogenase (17betaHSD) that is expressed in the kidneys and gonads. The expression of this gene is markedly reduced in three murine models of recessive polycystic kidney disease, a developmental disorder, where some nephrons within the affected kidneys develop into huge fluid-filled cysts while the non-cystic nephrons atrophies by apoptosis. Here, we show that in the cpk/cpk mouse, which have polycystic kidneys, the female reproductive organs also fail to mature properly and remain arrested at an early stage of development. Direct measurement of 17betaHSD activity showed a severe reduction in estrogen and androgen metabolism within gonadal and non-gonadal tissues of the cpk/cpk mouse. Using immunofluorescent staining we localized the expression of the Ke 6 protein within the female mouse reproductive organs. Our findings suggest that estrogen/androgen metabolism may play an important role in the development of the urogenital systems.

17-Hydroxysteroid Dehydrogenases↗

Adult, fetal, and polycystic kidney expression of polycystin, the polycystic kidney disease-1 gene product.

The polycystic kidney disease-1 gene, which is mutated in the majority of patients with autosomal dominant polycystic kidney disease, has been identified. The protein encoded by this gene, polycystin, has no homology with any gene known thus far. To gain more insight into the function of polycystin, we raised antibodies against synthetic peptides and a fusion protein corresponding to the sequence of two different fragments of polycystin. Two of the antibodies were capable of immunoprecipitating an in vitro transcription and translation product corresponding to a fragment of polycystin. In the cyst-lining epithelium of polycystic kidney disease-1 patients, a strong staining was observed. In normal adult and embryonic kidney tissues, expression was seen in the epithelium of all tubular structures and in the glomerular parietal and visceral epithelium (podocytes), although the podocytes were mainly recognized on cryosections and not on paraffin sections. A double-labeled immunofluorescence with one of the polycystin antibodies and the monoclonal antibody 8G8 ascertained that within the glomerular tuft podocytes were recognized.

Adult↗

[Cystic kidneys (autosomal dominant polycystic kidney disease)].

Polycystic kidney disease is a rather common genetic disorder, with an estimated amount of 8 to 10% of patients in the dialysis population. Meanwhile the defective gene of autosomal dominant polycystic kidney disease [ADPKD], another common terminus for this disorder, has been localized on the short arm of chromosome 16. The genetic disorder is not strictly localized on the kidney, whereas other organ systems like cardiac valves, brain arteries, liver, colon, etc. may be involved in the disease process. Hypertension is an early and common feature of the disease and its probably an important factor for progression of renal failure in ADPKD. Not all carriers of the ADPKD-trait progress to endstage renal failure, about 50% at the age of 50 years. Patients with ADPKD have a good prognosis in renal replacement therapy programs such as dialysis or renal transplantation.

Adolescent↗

Expression of differentiation antigens and growth-related genes in normal kidney, autosomal dominant polycystic kidney disease, and renal cell carcinoma.

Cellular differentiation and mRNA levels of genes involved in kidney growth were investigated in normal kidney cells, cyst-lining epithelial cells of polycystic kidney disease, and renal carcinoma cells (RCC). All cells comparatively studied exhibited an antigenic phenotype of proximal tubular cells as shown by the expression of a panel of brush border membrane enzymes and kidney-associated cell surface antigens. The epithelial developmental antigen Exo-1 was expressed in 50% to 80% of cyst-lining epithelia in polycystic kidney tissue and in 20% to 30% of polycystic kidney cells cultured in vitro. Normal kidney cells and RCC were negative under identical culture conditions. The expression of antigen Exo-1 is associated with hyperproliferation in an epithelial tissue compartment composed of cells which have not yet reached their terminal differentiation state. Increased amounts of mRNA of the growth factor receptor system of epidermal growth factor (EGF) receptor and its ligand transforming growth factor (TGF)-alpha were associated with the malignant phenotype of RCC. Increased expression of EGF receptor and TGF-alpha, although less prominent, were also observed in polycystic kidney cells compared with normal kidney cells. In conclusion, the expression of Exo-1 in cyst-lining epithelial cells of autosomal dominant polycystic kidney disease (ADPKD) and the altered regulation of TGF-alpha and EGF receptor in these cells contribute to the hypothesis that hyperproliferation is an underlying pathogenic mechanism of ADPKD.

Antibodies, Monoclonal↗

Polycystin, the polycystic kidney disease 1 protein, is expressed by epithelial cells in fetal, adult, and polycystic kidney.

Polycystic kidney disease 1 (PKD1) is the major locus of the common genetic disorder autosomal dominant polycystic kidney disease. We have studied PKD1 mRNA, with an RNase protection assay, and found widespread expression in adult tissue, with high levels in brain and moderate signal in kidney. Expression of the PKD1 protein, polycystin, was assessed in kidney using monoclonal antibodies to a recombinant protein containing the C terminus of the molecule. In fetal and adult kidney, staining is restricted to epithelial cells. Expression in the developing nephron is most prominent in mature tubules, with lesser staining in Bowman's capsule and the proximal ureteric bud. In the nephrogenic zone, detectable signal was observed in comma- and S-shaped bodies as well as the distal branches of the ureteric bud. By contrast, uninduced mesenchyme and glomerular tufts showed no staining. In later fetal (>20 weeks) and adult kidney, strong staining persists in cortical tubules with moderate staining detected in the loops of Henle and collecting ducts. These results suggest that polycystin's major role is in the maintenance of renal epithelial differentiation and organization from early fetal life. Interestingly, polycystin expression, monitored at the mRNA level and by immunohistochemistry, appears higher in cystic epithelia, indicating that the disease does not result from complete loss of the protein.

Adult↗

Recent advances in the understanding of polycystic kidney disease.

Polycystic kidney disease is characterized by localized autonomous cellular proliferation, compartmentalized fluid accumulation within the cysts, and intraparenchymal fibrosis of the kidney. The clinical features include renal failure, liver cysts, and vascular and cardiac valve abnormalities. Recent developments have extended our understanding of cyst formation, fluid secretion, and the genetics of polycystic kidney disease. Two causal genes for polycystic kidney disease, PKD1 and PKD2, that are responsible for greater than 95% of cases of autosomal dominant polycystic kidney disease, have been identified and sequenced. The mechanisms of cystogenesis are being uncovered and the phenotypic features of cystic epithelial cells are being discovered. This review describes recent advances made in the molecular biology of the genetic causes of polycystic kidney disease. The mechanistic details of cystogenesis are discussed and contrasted with the paradigms that guide current experimental approaches.

Animals↗

Transplantation of a cadaveric polycystic kidney in a patient with autosomal dominant polycystic kidney disease: long-term outcome.

INTRODUCTION: Kidneys from donors affected by autosomal dominant polycystic kidney disease (ADPKD) were considered unusable for transplantation. To the best of our knowledge, seven cases worldwide have now been described in the English literature since 1967 suggesting such donor organs may be acceptable under certain conditions. Most of these reports have only short-term follow-up. METHODS: We provide a review of these patients and share our experience with an ADPKD patient who had a cadaveric ADPKD transplant and has been closely followed for 10 years. RESULTS: During the 10-year period, the patient had three transplant biopsies without complication. This creatinine is currently 1.2 mg/dL. Serial computed tomography imaging indicated that the cystic disease slowly progressed during this time period. He eventually developed intractable pain in his native left kidney and underwent a laparoscopic nephrectomy. CONCLUSIONS: Normal functioning cadaveric kidneys that show early signs of polycystic kidney disease should be considered acceptable for renal donation. These organs provide the recipient a safe, reasonable period of graft survival and have not been shown to cause adverse effects.

Biopsy↗