[Lupus nephritis, mycophenolate, and cytomegalovirus infection].
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Biomedical subjects
Publications and source records attributed to A Carreño.
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BACKGROUND: The publication in 2003 of the K/DOQI Clinical Practice Guidelines for Bone Metabolism and Disease in Chronic Kidney Disease recommended targets levels for serum iPTH, Ca, P, and CaxP product. However, many patients do not achieved these target ranges. It is necessary to known the percentage of patients out of range in order to prevent the development of bone disease and to reduce mortality and morbidity. OBJECTIVES: To know the degree of control of Ca-P metabolism in haemodialysis patients in our haemodilalysis facilities and the achievement of target levels recommended by K/DOQI Guidelines. PATIENTS AND METHODS: We have retrospectively investigated in 190 prevalent haemodialysis patients (males 58.2%, ratio M/F 1.4, mean age 70 years, range 17-87 years, at least 3 months in haemodialysis) the serum levels of Ca, albumin-corrected serum Ca, P, CaxP product and iPTH in all analitycal determinations performed in 2004. In each patient we have obtained the average (and median) of these serum markers. Cut-off levels were carried out following the recommendations of the K/DOQI Guidelines. RESULTS: The average of serum Ca and albumin-corrected serum Ca is normal (means +/- SD = 8.9 +/- 0.6 mg/dL and 9.2 +/- 0.7 mg/dL, respectively); however, 53.7% has normal values, 9.1% hypocalcemia and 37.1% hypercalcemia. The average of serum P is also normal (mean +/- SD = 5.0 +/- 1.3 mg/dL); however, only 57.2% has normal values, and 11.7% has hypophosphoremia and the remaining 31, 1% hyperphosphoremia. The CaxP product is normal (mean +/- SD = 46.3 +/- 13.3 mg2/mL2), 4.9% with low values and 23.4% with high values. The median of serum iPTH is 253 pg/mL, but only 31.1% of them have normal values, 25.1% low range values and 43.7% has hyperparathyroidism; 9.3% with iPTH higher than 800 pg/mL. The percentage of patients with hyperphosphoremia is higher in the group with iPTH higher than 300 pg/mL (23.3% vs. 40%, chi2, p= 0.006). In patients with PTHi in normal range, 3.6% have low CaxP product and the remaining 17.8% high CaxP product. Overall, only 25% of patients falls within recommended ranges for all indicators of mineral metabolism and 17% has all serum markers outside these recommendations. CONCLUSIONS: The degree of control of mineral metabolism in haemodyalisis patients if clearly insufficient and a large percentage of them do not achieved the recommended serum targets recommended by K/DOQI Guidelines. This groups of patients are exposed to a increased risk for oseous and cardiovascular morbimortality. The analysis of adequacy must be performed with percentage of patients out of range in order to apply new therapeutical strategies.
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PURPOSE: To demonstrate our experience using internal devices for unidirectional distraction osteogenesis in treating different mandibular hypoplasias (with or without maxillary deformities). An algorithmic table for diagnosis, and treatment planning is presented. PATIENTS AND METHODS: Twenty internal distraction devices were used in 16 patients with mandibular hypoplasia. Deficiency in length of the mandible was calculated on three-dimensional computed tomography scans. The device was activated by a transcutaneous pin on the fifth postoperative day. Distraction was achieved at rates of 0.5 mm/12 h. After a variable period of consolidation the devices were removed. Mean follow-up was 18 months. RESULTS: Successful distraction osteogenesis was achieved in all patients. No premature consolidation or pseudoarthrosis was observed. Improvement of facial aesthetics was produced in all cases. Final occlusion was excellent in those cases where no simultaneous maxillary deformity was present. Orthodontic treatment was applied in all cases. Results remained stable one year postoperatively. CONCLUSIONS: The occlusal results obtained in this series show that we can plan distraction as a definitive treatment in cases with isolated mandibular hypoplasia. When an additional maxillary deformity is present, mandibular distraction must be performed first if indicated, but a maxillary procedure will be necessary later.
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Several cases of systemic amyloidosis associated with polymyalgia rheumatica (PMR) or giant-cell arteritis (GCA) have been described. Nevertheless, the type of amyloid deposit has not been characterized in most of them. Here we report on two patients with PMR (one with associated GCA) who developed nephrotic syndrome and end-stage renal failure caused by massive amyloid deposition. Immunohistochemical analysis showed that the amyloid deposits were of AA type (secondary amyloidosis) in both cases.
We report 12 patients belonging to five different families in whom persistent isolated microhematuria was associated with hypercalciuria and/or hyperuricosuria. Four patients had episodes of gross hematuria, three patients had passed renal stones, and a history of nephrolithiasis was obtained in four of the families (80%). Calcium oxalate and uric acid crystals were commonly observed in the urine sediments. Urinary erythrocytes had a normal appearance on phase-microscopic examination. Reduction of calciuria and uricosuria by thiazide diuretics, allopurinol, forced fluid intake, and dietetic measures led to a persistent normalization of urine sediment with complete disappearance of hematuria. Determination of calcium and uric acid urinary excretions should be included in the study of familial hematuria.
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The investigation of processes of ischemia in different organ tissues is very important for the development of methods of protection and preservation during surgical procedures. Electrical impedance spectroscopy was used to distinguish between different tissues and their degree of ischemia. We describe mathematical methods used to adjust experimental data to Cole-Cole models for one-circle and two-circle impedance loci and a study of the main parameters for representing the behavior of ischemia in time. In vivo and in situ postmortem measurements of different tissues from pigs are shown in the 100 Hz to 1 MHz range. The Cole parameters that best characterize the ischemia are R0 and fc.
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