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Contingency management (CM) is an efficacious incentive-based intervention for promoting drug abstinence, but treatment providers have not widely adopted it. Smartphone and smart debit card technologies can deliver automated, patient-centered, high-fidelity CM and related services, including cognitive behavioral therapy and appointment reminders. This study evaluated clinical outcomes associated with an integrated smartphone-smartcard platform in an inner-city outpatient clinic. We enrolled adults with opioid use disorder (n = 85) over nine weeks, and they received CM services for four months. We retrospectively compared them to matched controls who received services at the same time, from the same provider at a similar, nearby clinic in the same city. The platform was associated with significantly higher rates of counseling appointment attendance in study months 2 to 4 (9.6%-18.0% increases) and an odds ratio of 4.84 for increased proportion of urine samples consistent with drug abstinence and adherence to prescribed medication, compared to controls at 120 days (P less then 0.05). selleck chemicals Overwhelmingly, participants reported that they found the platform acceptable. These results suggest that the platform is an effective method for remote delivery of CM services that could overcome key logistical barriers to widespread adoption of CM among treatment providers.Recent evaluations of parent training programs have demonstrated beneficial crossover effects in reducing parental substance use. Because divorce is associated with substance use risk and substance use interferes with effective parenting, parent training programs are critically important for divorced fathers but there are few evidence-based programs tailored to fathers. We tested whether an evidence-based parenting program would exhibit beneficial impact on fathers' substance use and whether these changes were mediated by changes in parenting efficacy. We tested hypotheses in a sample of 426 divorced and separated fathers randomly assigned to the online Fathering through Change (FTC) program or the wait-listed control condition. Models specified as 3-month pre-post analyses of self-reported substance use. The FTC was associated with reductions in total substance use (d = 0.14) and drinking (d = 0.26) but not with reductions in tobacco smoking and marijuana use. Data also supported a significant indirect effect for FTC through pre-post changes in parenting efficacy (d = 0.36). We discuss clinical implications for the integration of parent training within substance use treatment.Measurement of antithyroglobulin antibodies (TgAb) is an inevitable laboratory tool in the management of thyroid gland diseases. Currently available immunoassays still have limitations underlying the necessity of the introduction of fast, sensitive, and label-free technologies. Our aim was to develop a method for TgAb measurement in human serum based on the quartz crystal microbalance (QCM) technology. We immobilized thyroglobulin on the surface of Attana LNB Carboxyl sensor chip®, prepared standard curve covering the range of 1-50000 kIU/L, and established optimal measurement conditions. The validation included determination of the detection limit (LOD), functional sensitivity, linearity, precision, as well as the comparison with the results of the radioimmunoassay (RIA). The LOD and functional sensitivity were 4.2 kIU/L and 4.7 kIU/L, respectively. The method was linear in the range of 20-10000 kIU/L. The regression equation for comparison with RIA was CQCM= 1.0056 • CRIA- 24.2778, whereby no significant proportional or systematic difference was present. There was a good agreement with RIA in the classification of patients according to the clinical significance of the results. The developed method has advantages over currently available assays in terms of better LOQ, a higher upper limit of linearity, and precision. The characteristics of the developed method unambiguously show that the application of the QCM biosensors offers a highly reliable novel approach for the measurement of TgAb in human serum.Metabolic phenotyping using mass spectrometry (MS) is being applied to ever increasing sample numbers in clinical and epidemiology studies. High-throughput and robust methods are being developed for the accurate measurement of metabolites associated with disease. Traditionally, quantitative assays have utilized triple quadrupole (QQQ) MS based methods; however, the use of such focused methods removes the ability to perform discovery-based metabolic phenotyping. An integrated workflow for the hybrid simultaneous quantification of 34 biogenic amines in combination with full scan high-resolution accurate mass (HRAM) exploratory metabolic phenotyping is presented. Primary and secondary amines are derivatized with 6-aminoquinolyl-N-hydroxysuccinimidyl carbamate prior to revered-phase liquid chromatographic separation and mass spectrometric detection. Using the HRAM-MS data, retrospective phenotypic data mining could be performed, demonstrating the versatility of HRAM-MS instrumentation in a clinical and molecular d for retrospective exploratory mining of data to extract additional biogenic amines of biomarker interest beyond the 34 quantified targets.Quality control of liquid raw materials arriving on an industrial manufacturing site is typically performed in a dedicated laboratory using time- and chemicals-consuming analytical methods. Herein, we report the successful development of a handheld near-infrared spectroscopy method for the rapid, low-cost testing of organic solvents. Our methodology enables the classification of organic solvents with 100% accuracy and the quantification of water in methyl ethyl ketone with a precision of ~0.01 wt% in the 0-0.25 wt% range. The accessory that we have developed for the NIR sensor enables the development of a broad range of sensing applications on organic liquid systems.Methods to determine the release of biocides (e.g. copper) and substances of concern (e.g. zinc) from antifouling paints are required for both the development of efficient products and their environmental risk assessment. To date, there are only two standardized methods available to estimate such release rates, but their reliability has been put into question. An alternative method, allowing determination of environmental release rates in the field of metallic or organometallic biocides by X-Ray Fluorescence (XRF), has been developed and applied in recent years. In this study, the potential for standardization of the XRF method is investigated through evaluation of its accuracy, precision and transferability between instruments. Accurate quantification of copper (Cu) and zinc (Zn) in μg cm-2, despite differences in chemical composition, was demonstrated through comparison of calibration regression slopes for ten different antifouling paints and confirmed through the measurement of validation samples. Universal antifouling paint calibration curves are proposed for the determination of Cu and Zn in thin paint films, with a prediction uncertainty of around ±130 μg/cm2 for both metals.
Read More: https://www.selleckchem.com/products/ag-120-Ivosidenib.html
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