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Biomedical subjects

J Chanliau

Publications and source records attributed to J Chanliau.

At least 19 recordsLinked to original sources

[Infection peritonitis in patients undergoing continuous ambulatory peritoneal dialysis: microbiological review during an four-year period].

The purpose of this study was to analyse the microbiological characteristics of infectious peritonitis in patients undergoing continuous ambulatory peritoneal dialysis. This study was conducted at the CHU Nancy from 1999 to 2002. The diagnosis of peritonitis was based on cloudy peritoneal effluent (>100 cells per mm(3)) with an elevated leukocyte count (>50%), on isolation of bacteria or fungi and on symptoms such as abdominal discomfort or pain. The majority of infections associated with continuous ambulatory peritoneal dialysis were caused by Gram-positive bacteria (68%), Gram-negative bacteria (31%), and Candida (1%). The coagulase-negative staphylococci were the most common cause of peritonitis. The antibiotic sensitivity of species corresponded to community-acquired isolation.

Aged↗

Mobilization of lead from bone in end-stage renal failure patients with secondary hyperparathyroidism.

BACKGROUND: It is now recognized that long-term exposure to even low levels of lead may increase bone lead content. Lead can then be released in toxicologically significant amounts during critical states of increased bone turnover. METHODS: Two patients with end-stage renal failure, one on haemodialysis and the other on continuous ambulatory peritoneal dialysis (CAPD), had been exposed to lead and developed secondary hyperparathyroidism. An edetate calcium disodium (EDTA) test was performed in combination with haemofiltration or CAPD before and after parathyroidectomy. RESULTS: Before parathyroidectomy, both patients had low delta aminolaevulinic acid dehydrase (ALA-D) and high concentrations of chelated lead. After parathyroidectomy, there was a dramatic decrease in chelated lead and the ALA-D returned to normal. CONCLUSION: Secondary hyperparathyroidism increases mobilization of bone lead in dialysis patients with an elevated lead burden. This may cause toxic effects.

Aged↗

Amyloid and non-amyloid carpal tunnel syndrome in patients receiving chronic renal dialysis.

OBJECTIVE: To determine the prevalence of amyloid deposits among patients with carpal tunnel syndrome (CTS) receiving dialysis, and to investigate the factors associated with amyloid and non-amyloid CTS. METHODS: Subjects for this prospective study were dialysis patients who underwent surgery for CTS in the same surgical unit between 1989 and 1997. CTS was diagnosed from clinical and electromyographic (EMG) findings. Systematic standard radiographs and laboratory data were also obtained. Surgical investigations included systematic macroscopic examination and biopsy of the epineurium, flexor retinaculum, synovium, and flexor tendon sheaths. Samples were stained for amyloid and examined by plain and polarized light microscopy, immunohistochemistry, and electron microscopy. RESULTS: Forty-one samples from 30 patients (11 bilateral cases) were examined. Amyloid deposits were found in 26 samples from 18 patients (7 M, 11 F). Fifteen samples from 12 patients (3 M, 9 F) showed no amyloid deposits. Amyloid CTS was statistically significantly associated with arthralgia and longterm dialysis [mean 13.3 (range 5.5-23) vs 7.5 yrs (range 3 mo-14 yrs)] in non-amyloid CTS. Flexor tenosynovitis and carpal bone erosion occurred more frequently in amyloid CTS. There were no statistically significant differences between the 2 groups in clinical, laboratory or EMG findings, type of dialysis membrane, or frequency of ipsilateral fistula. Only amyloid CTS was recurrent. CONCLUSION: Amyloid deposits were confirmed microscopically in 63.4% of patients. The relatively large number of cases of non-amyloid CTS without signs of dialysis associated arthropathy suggests that CTS is not a satisfactory criterion for diagnosis of dialysis arthropathy or beta2-microglobulin amyloidosis unless the presence of amyloid has been confirmed or duration of dialysis treatment has been at least 15 years.

Adult↗

[Adequate peritoneal dialysis: limitations of continuous ambulatory peritoneal dialysis (CAPD), place of automated peritoneal dialysis (APD)].

Recent epidemiological studies show a slowing down of the global growth of CAPD which is not compensated by the considerable development of APD. These modifications are the result of the arrival of technologies which allow new strategies as well as an improved knowledge of the adequate dialysis dose for PD. The re-evaluation of the adequate clearance targets show that CAPD does not deliver an adequate dialysis dose for anuric patients but it remains an excellent technique for patients with residual renal function. APD and mixed techniques (APD with automated diurnal exchange(s), CAPD with automated nocturnal exchange) can deliver an adequate dialysis dose if the peritoneal permeability is not too low and if the prescription is adapted to each patient. The growth of CAPD seems to be slowing down due to a better knowledge of its limitations. However the development of APD does not seem to be related to the increasing knowledge of its possibilities. The development of automated techniques, prescribed as substitute treatments, depends on a precise evaluation of the cost/efficiency/quality of life index, compared to the reference treatment which is iterative hemodialysis.

Humans↗

Measurement of hydrostatic intraperitoneal pressure: a necessary routine test in peritoneal dialysis.

This paper summarizes our clinical studies on hydrostatic intraperitoneal pressure (IPP), showing the interest of this measurement in routine clinical practice. IPP can easily be measured routinely be a simple and safe method: the measure of the column of dialysate in the peritoneal dialysis (PD) line before drainage, with point 0 located on the midaxillary line. The normal value is 12 +/- 2 cm of water (cm H2O) with an intraperitoneal volume (IPV) of 2 L, with linear increases of 2.2 cm H2O for each additional liter. IPP must be measured to estimate the tolerance of IPV: the maximal permissible IPV is reached for an IPP of 18 cm H2O, squaring with a decrease of 20% in vital capacity and sometimes arising before clinical symptomatology. However, IPP measured at rest could not predict PD mechanical complications (hernias, dialysis leakages, hemorrhoids, etc.), which are more dependent on parietal previous history or predisposition. IPP is significantly higher during the first three days after peritoneal catheter implantation (17 +/- 3 cm H2O) than during the 12 following days (10 +/- 4 cm H2O). It is recommended to postpone the start of PD until after catheter implantation, and patients should remain supine for the first three days. On the other hand, IPP strongly reduces the overall ultrafiltration (UF) volume: an increase of 1 cm H2O in IPP caused a decrease of 70 mL in global UF after two hours. Therefore, IPP should be measured in diagnosis of losses of UF. However, UF loss during peritonitis is not due to an increase of IPP.

Ascitic Fluid↗

How to reach optimal creatinine clearances in automated peritoneal dialysis.

This paper summarizes the basis of prescription for automated peritoneal dialysis (APD) established during a French national conference on APD. Clinical results and literature data show that peritoneal clearances are closely determined by peritoneal permeability and hourly dialysate flow rate, independently of dwell time or number of cycles. With APD, peritoneal creatinine clearance increases according to the hourly dialysate flow rate to a maximum (plateau), then decreases because of the multiplication of the drain-fill times. The hourly dialysate flow giving the maximum peritoneal creatinine clearance is defined as the "maximal effective dialysate flow" (MEDF). MEDF is higher for high peritoneal permeabilities: MEDF is 1.8 and 4.2 L/hr with nocturnal tidal peritoneal dialysis (TPD) for a 4-hr creatinine dialysate-to-plasma ratio (D/P) of 0.50 and 0.80, respectively. With nightly intermittent peritoneal dialysis (NIPD), MEDF is 1.6 and 2.3 L/hr for a D/P of 0.50 and 0.78, respectively. Under these conditions, tidal modalities can only be considered as a way to increase the MEDF. Using the MEDF concept for an identical APD session duration, the maximal weekly normalized peritoneal creatinine clearance can vary by 340% when 4-hr D/P varies from 0.41 to 0.78. APD is not recommended when 4-hr creatinine D/P is lower than 0.50. However, the limits of this technique may be reached at higher peritoneal permeabilities in anurics because of the duration of sessions and/or the additional exchanges required by these patients.

Capillary Permeability↗

Prevalence and epidemiology of hepatitis C infection in patients on peritoneal dialysis in France. French PD centers.

We performed a cross-sectional study to establish the hepatitis C virus (HCV) serologic status for all French patients undergoing peritoneal dialysis (PD) on January 1, 1995. We listed a total of 1508 patients, and the exhaustiveness rate was about of 75% of the whole French PD population treated at this date. Only 47 of the 1508 patients were anti-HCV positive (HCV+): the global HCV prevalence was 3.12%. HCV+ patients were treated by PD for a longer time than HCV-patients (4 +/- 4 vs 2 +/- 2 years; p < 0.001); 89% of the HCV+ patients received blood transfusions; 60% had been previously treated by hemodialysis, and 26% previously received a kidney transplantation. In 49% of the HCV+ patients, HCV antibodies were discovered before the start of the peritoneal dialysis program, and a seroconversion was observed in only 4 (0.27%) of them during the PD treatment. All these patients received blood transfusion. In patients without past history of hemodialysis or transplantation (exclusively treated by PD), HCV prevalence was 1.5%, not far off that of the general population. Peritoneal dialysis seems not to be an additional risk factor for hepatitis C infection in France.

Blood Transfusion↗

[Connectology for treatment by peritoneal dialysis for chronic renal insufficiency].

With the exception of the simple Luer or Spike type systems all of the presently used CAPD devices have a system for intraluminal sterilization and/or an handling assist device. The sterilizing process can be chemical (antiseptics), physical (heat or ultraviolet (UV) light) or mechanical (flush effect). Studies comparing various peritoneal dialysis devices have led to results which diverge greatly, and are not always controlled. Synthesis of these studies shown that disconnect systems (DS) seemed to be not more effective against bacteriological contamination than the last generations of UV non-disconnect (NDS) systems. Efficacy of heat sterilization NDS must be confirmed. The choice of a NDS does not result only from a medical indication.

Humans↗

Elevated body lead burden from drinking water in end-stage chronic renal failure.

Delta aminolaevulinic acid dehydratase (ALA-D) who assayed in 66 patients with end-stage renal failure who live in a region where there is a high risk of lead poisoning from drinking water (Vosges mountains). Sixty patients received dialysis and six underwent renal transplantation. Results were compared to those obtained in 366 control subjects with normal renal function hospitalized in a department of Internal Medicine and living in the same geographical area. The ALA-D level was significantly lower in dialysed patients (0.40 +/- 20) than in controls (0.57 +/- 0.31) (P = 0.0014). Transplant recipients had ALA-D levels comparable to subjects with normal renal function (0.59 +/- 0.37). In this high-risk population an EDTA test was performed in 74 subjects (with normal renal function and 17 dialysis patients in combination with haemofiltration for the latter patients. In the two study groups a negative correlation was found between ALA-D and the amount of lead chelated during the 24 h following administration of EDTA (r = -0.77 and -0.88 respectively). In subjects who live in an area of endemic lead poisoning, the incidence of elevated body lead burden from drinking water was similar in the group with normal renal function and in the group of dialysed patients (18.6 and 8.3% respectively). This study shows (i) that in dialysis patients, measurement of ALA-D represents an accurate screening test for lead overload, provided that the lower threshold of normal is lowered from 0.40 to 0.20, and (ii) that diagnosis and treatment are possible by administering EDTA in conjunction with haemofiltration or CAPD.

Aged↗

APD: clinical measurement of the maximal acceptable intraperitoneal volume.

In automated peritoneal dialysis (APD) patients treated with 3-L dwell, intraperitoneal volumes can easily be increased up to 4 or 4.5 L using hypertonic solutions without objective control of their good tolerance. In 20 adult patients treated with continuous ambulatory peritoneal dialysis (CAPD) in good conditions, hydrostatic intraperitoneal pressure (IPP) and pulmonary vital capacity (VC) were measured in strict supine position, after infusing isotonic dialysate in 0.5-L increments from 2 up to 5 L as tolerated, according to intraperitoneal volumes (IPV). None of the patients had cardiac or pulmonary dysfunction. IPP was measured following a routine method previously described. In all cases, experience was stopped when IPP increased over 20 cm H2O and/or VC decreased over 25%. IPV is linearly and positively correlated with IPP (p < 0.0001), and negatively with VC (p = 0.0012), but the reliability of VC is less than that of IPP, particularly in old patients. Clinical symptomatology of bad IPV tolerance never occurred alone and was always associated with an increase in IPP over 20 cmH2O and/or a decrease in VC over 25%. The maximal acceptable IPV is better defined by an IPP less than 18 cmH2O, according with a decrease in VC of less than 20%. Routine measurement of IPP can be used to determine maximal IPV and for optimal PD prescription.

Adult↗