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Biomedical subjects

A Pilo

Publications and source records attributed to A Pilo.

At least 19 recordsLinked to original sources

Normalization of peripheral thyroid hormone metabolism induced by successful chronic amiodarone treatment in patients with ventricular arrhythmias.

Amiodarone, an antiarrhythmic agent, is also known to have important effects on the peripheral metabolism of thyroid hormones; the relationship between these two effects of the drug, however, is not well established. We tested the hypothesis that the antiarrhythmic effect of amiodarone might be mediated by its effect on the metabolism of thyroid hormones. Peripheral thyroid hormone metabolism was investigated using a double-tracer ([125I]-T4 and [131I]-T3) procedure in 10 normal volunteers and 10 euthyroid patients with complex ventricular arrhythmias before and during 6 months' amiodarone treatment. The underlying cardiac disease was coronary artery disease in four cases, dilated cardiomyopathy in three and idiopathic arrhythmias in three. In all but one patient with complex ventricular arrhythmias amiodarone treatment resulted in a reduction of > or = 80% of premature ventricular contractions and complete suppression of episodes of ventricular pairs or ventricular tachycardia. In all cases successful treatment with amiodarone was accompanied by normalization of all kinetic parameters: T4 to T3 conversion ratio and T3/T4 molar ratio of production decreased to mean values of 24.7 +/- 17.5% and 0.35 +/- 0.22% respectively, whereas T4 production rate increased (mean value 75.9 +/- 30.0 nmol day-1 m-2). Our kinetic data indicate that long-term therapy with amiodarone, when effective in suppressing cardiac arrhythmias, also reduces peripheral T4 to T3 conversion, hence restoring the normal peripheral thyroid hormone metabolic pattern. In conclusion, our study confirms that the antiarrhythmic action of amiodarone may be (at least partially) mediated by its action on thyroid hormone metabolism, and may justify the hypothesis that an altered peripheral metabolism of thyroid hormones may play a role in the pathogenesis of complex ventricular arrhythmias.

Aged

Progress report of an external quality assessment scheme for cyclosporine assay.

Beginning in 1987, an external quality assessment (EQA) scheme for cyclosporine (CsA) assay was organized by our Institute and supported by National Research Council (CNR); in 1991, the CNR EQA joined the French CsA interlaboratory program organized by Service de Radiopharmacie et Radioanalyse, University of Lyon. During the last 2 years (1993 and 1994 cycles), > 170 laboratories (from seven European countries) participated in this survey, assaying 44 control samples prepared from pooled blood of heart- and renal-transplant patients; normal pools added with known amounts of CsA were also distributed. During the whole EQA period, a trend toward the use of specific and nonisotopic techniques has been observed. In 1994, 91% of the collected results have been produced by specific methods [high-pressure liquid chromatography (HPLC) or specific immunoassays developed to assay the native molecule of CsA without its metabolites];in the same cycle, the fully automated techniques [TDx, fluorescence polarization immunoassay (FPIA), and enzyme-multiplied immunoassay (EMIT)] accounted for 73% of total results. CsA concentration measured by monoclonal specific immunoassays [(TDx FPIA, radioimmunoassay (RIA) Cyclo-Trac, and EMIT] was well correlated with those from HPLC (r = 0.99-1.00); results from EMIT were very close to those from HPLC, whereas results from RIA Cyclo-Trac and TDx were slightly overestimated (10-20%). Nonspecific methods (TDx polyclonal and nonspecific RIA Cyclo-Trac) measured CsA concentrations 3-4 times higher than those found by HPLC. The cross-reactivity of CsA metabolites in specific immunoassays was estimated from data of patients' samples and spiked samples; an interference of 6% in RIA Cyclo-Trac, 7% in EMIT, and 26% in TDx FPIA was found. The precision coefficient of variation (CV% between laboratory and between assay) of the methods observed in the 1994 EQA cycle was 9.5 for TDx polyclonal FPIA, 10.4 for TDx monoclonal FPIA, 10.5 for EMIT, 10.6 for RIA specific Cyclo-Trac, 14.2 for RIA nonspecific Cyclo-Trac, and 15.2 for HPLC.

Antibodies, Monoclonal

Performance of immunoassays for ca 19-9, ca 15-3 and ca 125 tumour markers evaluated from an international quality assessment survey.

Data collected in the 1993 and 1994 cycles of an international External Quality Assessment (EQA) programme were cumulatively analysed to evaluate the analytical performance of the methods currently in use for routine assay of mucinous tumour markers CA 19-9, CA 15-3 and CA 125. On average the between-laboratory variability was 14.7 and 15.8 CV% for CA 15-3 and CA 125 respectively. For CA 19-9, a markedly worse between-laboratory variability (on average 27.2 CV%) was found; the agreement of CA 19-9 results worsened in the last few years when new isotopic techniques became available. The variability component attributable to systematic differences between methods/kits was relatively small for CA 15-3 and CA 125 (17% and 21% of the total variability), while it was markedly larger for CA 19-9 (45% of the total variability). The precision of the methods/kits most often used in the survey ranged from 9.6 to 13.9 CV% for CA 125 and from 10.8 to 14.1 CV% for CA 15-3. For these two tumour markers the precision of the traditional IRMAs does not appear to be different from that of the new fully automated non-isotopic techniques. The precision of CA 19-9 methods was on average worse from (11.9 to 19.2 CV%), even though the precision of the two automated systems was better than that of IRMAs. In conclusion, the results of this study indicate that the between-laboratory agreement for CA 15-3 and CA 125 assays appears satisfactory while the CA 19-9 assay shows larger differences between methods and is affected by poorer precision of kits.

Antigens, Tumor-Associated, Carbohydrate

Altered tissue degradation and distribution of atrial natriuretic peptide in patients with idiopathic dilated cardiomyopathy and its relationship with clinical severity of the disease and sodium handling.

BACKGROUND: Atrial natriuretic peptide (ANP) has been suggested to play an important role in heart failure, preserving cardiorenal homeostasis through maintenance of the sodium balance and inhibition of the detrimental effects of the neurohormonal vasoconstrictor system. The current study was designed to investigate whether there is a disturbed renewal and distribution of ANP in patients with idiopathic dilated cardiomyopathy (IDC) with differing clinical severity of disease. METHODS AND RESULTS: We used a tracer method to perform a cross-sectional study of 15 IDC patients with differing clinical severity (New York Heart Association functional class I to III), prospectively divided into two groups according to their functional class (group 1, classes I and II; group 2, classes II-III and III). Eleven normotensive, nonobese male volunteers also were studied as a control group. Main ANP kinetic parameters were derived from the disappearance curve of the labeled hormone after the bolus injection of [125I]-labeled ANP. A high-performance liquid chromatography technique was used to separate the radiolabeled hormone in each plasma sample. Patients in group 1 showed higher ANP metabolic clearance rate (MCR) (2731.9 +/- 726.2 mL.min-1.m-2) than patients of group 2 (1718.4 +/- 621.2 mL.min-1.m-2) and control subjects (1873.1 +/- 551.2 mL.min-1.m-2). ANP disposal (MCR) positively correlated with biological hormonal effect (urinary sodium excretion) both in control subjects and in patients. In IDC patients of both groups, however, MCR values were always higher (approximately doubled) than the values found in control subjects at the corresponding sodium excretion. This finding indicates that a reduced ANP biological activity is associated with hormone degradation in patients. Moreover, patients of group 2 showed significantly higher ANP production rates (395.6 +/- 183.8 ng.min-1.m-2) than group 1 (166.0 +/- 139.0 ng.min-1.m-2) and control subjects (130.7 +/- 105.4 ng.min-1.m-2) despite a marked reduction in sodium excretion. Patients with IDC showed a progressive reduction in the total distribution volume (group 1, 19.8 +/- 5.8 L/m2; group 2, 12.7 +/- 6.9 L/m2; control subjects, 27.0 +/- 11.6 L/m2) of the hormone; this probably was due to a reduction in exchanges of ANP with peripheral tissues. CONCLUSIONS: Our study demonstrates a markedly altered degradation and distribution of ANP in patients with IDC, even in those at the early stage of clinical disease (classes I and II, group 1) who have ANP plasma levels in the normal range.

Adult

In vivo measurement of ANP overall turnover and identification of its main metabolic pathways under steady state conditions in humans.

Using a tracer method, we evaluated, in vivo, the main turnover parameters and the main metabolic pathways of ANP in 10 normal subjects. HPLC was used to purify the labeled hormone and the principal labeled metabolites present in venous plasma samples collected at determined times after tracer injection. The main ANP kinetic parameters were derived from the disappearance curves of [125I] ANP, which were satisfactorily fitted by a biexponential function in all subjects. Newly produced ANP initially distributes in a large, plasma equivalent space (10.9 +/- 3.6 l/m2 body surface); the hormone rapidly leaves this space due to both degradation and to distribution in peripheral spaces. The mean residence time in the body (19.4 +/- 19.8 min) and the plasma equivalent total distribution volume (28.2 +/- 11.5 l/m2) indicate that ANP is also widely distributed outside the initial space in humans (circulating ANP is no more than 1/15 of the body pool). Metabolic clearance rate values were distributed across a wide range (from 740 ml/min/m2 to 2581 ml/min/m2, mean 1849 ml/min/m2), and were shown to strongly correlate (R = 0.962) with the daily urinary excretion of sodium. A complete separation of labeled ANP from its labeled metabolites was achieved by the HPLC technique; at least 3 different peaks due to labeled metabolites in vivo produced from the injected [125I]ANP1-28 were found. The first chromatographic peak eluted showed an identical elution time to monoiodotyrosine. At least two other peaks due to in vivo generated labeled metabolites were well identified in the chromatograms: one peak (coeluting with labeled COOH-terminal tripeptide, H-Phe-Arg-Tyr-OH) was eluted ahead and one (coeluting with labeled peptide fragments ANP7-28, ANP13-28, and ANP18-28) behind the elution peak of the labeled ANP. The peak of labeled tyrosine appearing in the plasma ranged between 3 and 5 min after tracer injection; the other two peaks of radioiodinated metabolites showed their highest activity in the first sample (1.5 min), suggesting an earlier occurrence of their peaks. These labeled metabolites seem to be intermediate peptides, between the intact circulating form of the hormone and the final labeled metabolite (tyrosine), which is the last amino acid of the peptide hormone, produced in vivo after injection of the tracer.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult

Increased transcapillary escape rate of albumin in microalbuminuric type II diabetic patients.

OBJECTIVE: To evaluate microvascular permeability by the transcapillary escape rate of albumin (TERalb) in type II diabetic patients with normo- and microalbuminuria. RESEARCH DESIGN AND METHODS: The TERalb has been measured following intravenous injection of 125I-labeled human serum albumin in 32 normotensive type II diabetic patients and 9 healthy control subjects matched for sex and age. Type II diabetic subjects were grouped in normoalbuminuric, albumin excretion rate (AER) < 20 micrograms/min (n = 18), and microalbuminuric, AER 20-200 micrograms/min (n = 14) categories. RESULTS: In type II diabetic patients, no differences were noted between normo- and microalbuminuric groups for known diabetes duration (8.3 +/- 5.9 vs. 11.7 +/- 8.0 years), blood pressure (BP) (129/76 +/- 16/8 vs. 131/76 +/- 14/5 mmHg), current metabolic control (HbA1c: 8.0 +/- 1.4 vs. 8.5 +/- 1.6%), and serum lipids. However, previous 2-year mean HbA1c levels were significantly higher in microalbuminuric patients (8.7 +/- 1.45 vs. 7.6 +/- 1.29%; P < 0.05). The TERalb was similar in control subjects and normoalbuminuric patients (5.16 +/- 1.09 vs. 5.71 +/- 1.66 %/h) and significantly higher in the microalbuminuric group (8.98 +/- 1.35 %/h; P < 0.0001). The increased leak of albumin was not explained by differences in diabetes duration, BP, or metabolic control at the time of investigation and was independently related to the presence of microalbuminuria (r = 0.63, percent explained variance approximately 40) and mean "historical" HbA1c (multiple r = 0.705; total explained variance approximately 50%). CONCLUSIONS: Type II diabetic patients with microalbuminuria show an increased TERalb, i.e., a widespread microvascular damage that may be important in the pathogenesis of long-term complications. Our findings may contribute to the explanation of why albuminuria seems to be an independent cardiovascular risk factor in type II diabetes.

Albuminuria

Kinetic study of atrial natriuretic peptide in patients with idiopathic dilated cardiomyopathy: evidence for resistance to biologic effects of the hormone even in patients with mild myocardial involvement.

Atrial natriuretic peptide (ANP) kinetics was studied in 12 patients with idiopathic dilated cardiomyopathy at different sodium excretion (30-175 mmol/day) and variable degrees of hemodynamic dysfunction [New York Heart Association (NYHA) class range I-III] to investigate whether differences in renewal and distribution of this hormone (as compared with those of a control group) play a role in pathogenesis and evolution of heart failure. [125I]Labeled ANP was injected as a bolus, and a high-performance liquid chromatography (HPLC) procedure was used to purify the labeled hormone in venous plasma samples collected for < or = 50 min after injection; the main ANP kinetic parameters were then derived from the disappearance curve of the labeled hormone. As in controls, a positive linear regression between ANP metabolic clearance rate (MCR, ml/min/m2) values and daily urinary excretion of sodium (NaUE, mmol/day) was noted in patients. The different linear regression coefficients between normal subjects (MCR = 365 +/- 8.08 NaUE, r = 0.986, p < 0.0001) and patients (MCR = 497 + 18.5 NaUE, r = 0.867, p = 0.001) indicate that in patients a higher peptide clearance rate is needed to obtain the same biologic effect (sodium excretion) and suggest that resistance to biologic effects of the hormone exists in patients at an early stage of disease (NYHA class I). When the efficiency of the ANP system in excreting sodium was expressed as the ratio of NaUE to ANP production rate (PR = MCR x ANP plasma concentration, microgram/day/m2) patients showed significantly lower values (p = 0.0126) than normal volunteers, thus confirming resistance to the hormone effects. Significantly lower values for ANP total distribution volume (16.5 +/- 8.4 L/m2), mean residence time in the sampling space (4.04 +/- 1.14 min), mean residence time in the body (7.25 +/- 2.13 min), and fewer recycles through the initial (sampling) space (0.27 +/- 0.16) were noted in patients, indicating an altered mechanism regulating distribution of the hormone. The positive correlations between ANP MCR (L/min/m2) values and cardiac index (CI, L/min/m2) (MCR = -1.24 + 1.17 CI, r = 0.689, p = 0.0092) and between initial distribution volume (IDV, L/m2) and CI (IDV = -11.2 + 6.85 CI, r = 0.730, p = 0.0046) in all patients indicate that hemodynamic factors contribute to the progressive reduction in MCR and IDV values throughout the progression of myocardial involvement.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult

Analytical performance of CA 19.9, CA 125 and CA 15.3 assays as observed through an external quality assessment program.

Immunoassays of the tumor markers CA 19.9, CA125 and CA 15.3 are generally acknowledged to be a useful tool in the management of cancer patients. As a consequence, many methods developed by different companies are now commercially available. However, discrepancies have been described in the results of marker determinations even when the same monoclonal antibody was used. An external quality assessment (EQA) was carried out; starting from 1989 about 110 laboratories participated; since December 1991 the program was linked with the interlaboratory program Oncocheck organized by the Service de Radiopharmacie et Radioanalyse, University of Lyon. At present more than 200 laboratories of many European countries are involved: cumulatively 47 quality control samples have been prepared and sent to the participants. This manuscript is a report on data collected for CA 19.9, CA 125, and CA 15.3.

Analysis of Variance

Insulin degradation in vitro and in vivo: a comparative study in men. Evidence that immunoprecipitable, partially rebindable degradation products are released from cells and circulate in blood.

The products of insulin metabolism generated in vitro and in vivo were compared in this study. Monocytes from 10 control subjects were incubated with 125IA14-labeled insulin, acid washed, and solubilized or reincubated in insulin-free binding buffer to study both intracellular radioactivity or radioactivity released from cells to medium. To evaluate in vivo insulin metabolism, labeled insulin (100-120 microCi) was injected as a single intravenous bolus in 5 of the 10 subjects. Cellular and plasma radioactivity was characterized by high-performance liquid chromatography (HPLC). The results of the study show the following: 1) Products with superimposable HPLC elution profiles are found within cells and in medium. Two new labeled products are observed in the latter, suggesting that a membrane degradation process exists in monocytes. 2) Intermediates found within monocytes, in medium from monocytes, and in plasma have identical elution profiles, supporting the possibility that insulin is metabolized in various cells by a common pathway. 3) Insulin metabolism produces intermediates that bind well to anti-insulin antibody. The presence in plasma of these products induces a significant difference in the value of the metabolic clearance rate of insulin when HPLC or immunoprecipitation is used to detect intact insulin. 4) Immunoprecipitable products maintain, in part, the capacity to bind to insulin receptors and to be internalized into monocytes.

Chromatography, High Pressure Liquid

Systematic differences between commercial immunoassays for free thyroxine and free triiodothyronine in an external quality assessment program.

Data collected in a national external quality assessment program for free thyroxine (fT4) and free triiodothyronine (fT3) were analyzed to evaluate the performance of 10 method/kits with 26 control samples distributed to approximately 170 laboratories. The control materials were normal serum pools, pooled sera supplemented with thyroid hormones, a pregnancy serum pool, serum pooled from patients with familial dysalbuminemic hyperthyroxinemia (FDH), and a normal serum pool progressively diluted. The between-laboratory variability (CV) was approximately constant in normal and supplemented pools for fT4 (15.3%) and fT3 (24.0%) but markedly increased in diluted, pregnancy, and FDH pools (21.9-35.2% for fT4 and 28.6-66.5% for fT3) because of increases in systematic between-kit differences in control samples with altered binding-protein capacity. Moreover, free hormone concentrations measured in progressively diluted sera averaged lower than in undiluted samples. This decrease of concentration was less for back-titration or labeled-antibody techniques and greater for labeled-analog methods; only the method involving adsorption to cross-linked dextran (Sephadex) was unaffected by dilution. Evaluation of the reproducibility of the method/kits showed between-assay, between-laboratory precision ranging from 7.8% to 17.0% for fT4 and from 9.8% to 20.3% for fT3.

Female

Disposal and distribution of rT3 in humans: a new double-tracer kinetic study.

A satisfactory definition of reverse 3,3',5'-triiodothyronine (rT3) kinetics in humans cannot be obtained if the plasma disappearance curve of the injected labeled hormone is the only experimental data available; most of the kinetic parameters can only be bounded within ranges showing unacceptable variabilities. To gain additional experimental data a double-tracer approach is proposed. After simultaneous injection of [125I]rT3 and 131I the following three experimental curves were determined in plasma: 1) the disappearance of [125I]rT3, 2) the disappearance of 131I, and 3) the appearance of 125I generated in vivo from labeled rT3 degradation. Combined analysis of these three curves, based on a complex six-compartment model, was developed and applied to data obtained in a group of normal subjects. Through this new analysis, fractional disposal rates and fractional exchange rates between the plasma compartment and the periphery are uniquely determined. The main physiologically interesting information on the degradation of the hormone that emerges from these studies are 1) all degradative pathways of rT3 generate iodide, being in all cases the [125I]rT3 dose completely recovered as 125I in plasma; and 2) most rT3 is degraded (65-90%) in peripheral tissues rapidly exchanging with the plasma pool. The extended experimental base is not yet sufficient to compute unique values for production rate (PR) and body mass (Qt); the validity of estimates of PR and Qt is based on the assumption that injected [125I]rT3 is able to trace all rT3 peripherally produced (from thyroxine). The new approach yields ranges for PR and Qt (1.12-2.15 micrograms/h and 2.88-8.24 micrograms) much narrower than those computable from the [125I]rT3 disappearance curve only (1.12-5.07 micrograms/h for PR and 2.88-23.7 micrograms for Qt).

Adult

ANP kinetics in normal men: in vivo measurement by a tracer method and correlation with sodium intake.

125I-labeled atrial natriuretic peptide (ANP) was bolus injected into seven healthy human male subjects on an unrestricted diet (sodium intake ranging from 80 to 300 mmol/day). A high-performance liquid chromatographic procedure was used to purify the labeled hormone and the principal labeled metabolites in venous plasma samples collected up to 50 min after injection. The main ANP kinetic parameters were derived from the disappearance curves of the 125I-ANP, which were satisfactorily fitted by a biexponential function in all subjects. Newly produced ANP initially distributes in a large space (plasma-equivalent volume is 12.1 +/- 3.6 l/m2 body surface); the hormone rapidly leaves this sampling space through both degradation and distribution in peripheral spaces, as indicated by the single-pass mean transit time through the sampling space (3.9 +/- 1.2 min). The mean residence time in the body (22.7 +/- 23.1 min) and the plasma-equivalent total distribution volume (30.9 +/- 12.0 l/m2) indicate that ANP is also widely distributed outside the initial space. Metabolic clearance rate (MCR) values were distributed across a wide range (from 740 to 2,581 ml.min-1 x m-2) and were shown to correlate strongly with the daily urinary excretion of sodium. These results indicate that: 1) newly produced ANP is rapidly distributed and degraded, 2) the body pool of the hormone can be considered as a combination of two exchanging spaces, 3) circulating ANP is < or = 1/15 of the body pool, and 4) MCR of ANP is closely related to sodium intake, at least in normal subjects on a free sodium intake diet.

Adult

Immunoassay of CEA, CA 19-9, CA 125, and CA 15-3 on the automated systems ES 300 and ES 600: methodological evaluation from a multicentre collaborative study.

The analytical performance of the automated Enzymun Test System ES 300 and ES 600 (developed by Boehringer Mannheim) for the assay of the tumour markers CEA, CA 19-9, CA 125, and CA 15-3, was assessed from data collected in a multicentre collaborative study in which eleven laboratories were involved. Results of the 1990 cycle of the external quality assessment (EQA) scheme for tumour markers, supported by the Italian National Research Council (CNR), were also used in this evaluation. The within-assay and between-assay precision was found to be 2.0 and 4.3 CV% for CEA, 2.9 and 6.8 CV% for CA 19-9, 3.6 and 9.4 CV% for CA 125, 2.9 and 6.0 CV% for CA 15-3. The between-lab variability of the four tumour markers on ES 300 and ES 600 systems was 9.4, 10.6, 11.9, 9.2 CV% for CEA, CA 19-9, CA 125 and CA 15-3 respectively. These values were comparable to or better than those obtained with the most precise manual kits used by laboratories participating in the 1990 EQA cycle. The agreement between the results from the Enzymun Test and those obtained using other method/kits was evaluated by assaying control samples previously circulated either in the CNR EQA or in the German EQA. The regression analysis indicates that for CEA, CA 125 and CA 15-3 assays the results produced by ES 300 and ES 600 are in good agreement with the consensus means of the EQAs; CA 19-9 results exhibit a worse correlation and are generally lower than the consensus mean. The linearity of the assays for the four tumour markers was checked by dilution tests performed by participants in the collaborative study; in all cases the dilution of the sample did not affect the values obtained.

Antigens, Tumor-Associated, Carbohydrate

Interassay variability of immunometric methods for thyrotropin in an external quality assessment survey: evidence that functional sensitivity is not always adequate for clinical decisions.

We investigated the ability of current immunometric methods for thyrotropin (TSH; thyroid-stimulating hormone) to distinguish between low-normal and subnormal hormone concentrations by using the data from an external quality assessment (EQA) survey in 1990. We computed the interassay (between-run) precision profiles from results from 101 laboratories, which used the five most popular kits in the survey; during the control period (one year) each laboratory assayed 4 EQA pools distributed (as hidden replicates) in five occasions. The interassay CV was relatively low (9-13%) for three pools in the normal TSH range (greater than 0.8 milli-int. unit/L) but markedly higher (30-40%, except for one more precise kit) in the subnormal range (0.2 milli-int. unit/L). We calculated the effect of the between-run variability on the diagnostic accuracy (discrimination between normal and subnormal values) for three representative TSH concentrations: 0.2, 0.4, and 0.5 milli-int. unit/L (0.3 milli-int. unit/L was considered the lower normal limit). The three concentrations were reasonably discriminated (P less than or equal to 5%), and only one kit showed a between-run CV less than 18% at 0.2 milli-int. unit/L. For the other four less-precise kits, only the higher TSH value (0.5 milli-int. unit/L) could be classified with an acceptable diagnostic reliability. With the most precise kit, one can distinguish two TSH concentrations in the 0.3-0.5 milli-int. unit/L range that differ by at least 30%; with the other kits, differences greater than 50-60% are needed for reliable discrimination. Thus many laboratories fail to achieve the functional sensitivity of a second-generation assay, even if they use immunometric methods. TSH assays with a better interassay precision in the low concentration range are needed.

Humans

The CNR external quality assessment program for immunoassays: statistical analysis and reports for participants.

The results collected in the CNR/Tecno-standard external quality assessment (EQA) program for immunoassays of hormones and tumor markers are computer-processed to prepare a "periodic" report and an "end-of-period" report to be sent back to the participants in the survey. The aim of the periodic report is to allow comparison between the result obtained by a laboratory on a single EQA sample with those of all the other laboratories and with the users of the same method/kit; the report contains a histogram of all results and the mean, SD, CV, median and range (computed after trimming of outliers). The same statistics are also reported for data grouped according to the method/kit used. The end of period report provide the participant with a scored estimate of individual analytical performance (average bias and average imprecision) achieved assaying all the EQA samples dispatched in the control cycle (usually a six-month period during which 12-18 samples have been assayed); this cumulative report contains estimates of the performance of those kits more widely used in the survey. Beside helping laboratories to monitor their performance against an external reference, the EQA allows the collection of a large amount of data from which the state of the art and trends in the quality of immunoassays can be soundly evaluated and documented. To achieve this aim, the average total variability is computed from all data collected in the EQA cycle; this index is used for comparing the between-laboratory agreement of different immunoassays and for demonstrating trends of the quality over time.(ABSTRACT TRUNCATED AT 250 WORDS)

Analysis of Variance

External quality assessment of assays for hormones and tumor markers in Italian laboratories.

External quality assessment (EQA) programs run by CNR/Tecnostandard for immunoassays of hormones and tumor markers, started in 1980, presently include as many as 20 analytes; about 300 laboratories are involved in these programs. For all immunoassays submitted to the EQA, the inspection of cumulative results allows the current situation to be documented for total variability and its within-kit and between-kit components (the former accounting for the reproducibility and robustness of the kits and the latter for their systematic differences of estimation). For 13 assays subjected to EQA for longer, the variability trends over time are depicted, and single factors affecting the overall quality of particular assays are identified. Among these, experimental simplification of kit structure, alignment of calibrators with an acknowledged reference material, and adoption of monoclonal-antibody based two-sites assays can be mentioned. On the contrary, neither automation of the procedures nor (more expectedly) increasing use of nonisotopic techniques has proved effective in significantly improving the analytical quality.

Biomarkers, Tumor