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Objective: The assessment of response to lithium maintenance treatment in bipolar disorder (BD) is complicated by variable length of treatment, unpredictable clinical course, and often inconsistent compliance. Prospective and retrospective methods of assessment of lithium response have been proposed in the literature. In this study we report the key phenotypic measures of the "Retrospective Criteria of Long-Term Treatment Response in Research Subjects with Bipolar Disorder" scale currently used in the Consortium on Lithium Genetics (ConLiGen) study.
Materials and Methods: Twenty-nine ConLiGen sites took part in a two-stage case-vignette rating procedure to examine inter-rater agreement [Kappa (\(\kappa\))] and reliability [intra-class correlation coefficient (ICC)] of lithium response. Annotated first-round vignettes and rating guidelines were circulated to expert research clinicians for training purposes between the two stages. Further, we analyzed the distributional properties of the treatment response scores available for 1,308 patients using mixture modeling.
Results: Substantial and moderate agreement was shown across sites in the first and second sets of vignettes (\(\kappa\) = 0.66 and \(\kappa\) = 0.54, respectively), without significant improvement from training. However, definition of response using the A score as a quantitative trait and selecting cases with B criteria of 4 or less showed an improvement between the two stages (\(ICC_1 = 0.71\) and \(ICC_2 = 0.75\), respectively). Mixture modeling of score distribution indicated three subpopulations (full responders, partial responders, non responders).
Conclusions: We identified two definitions of lithium response, one dichotomous and the other continuous, with moderate to substantial inter-rater agreement and reliability. Accurate phenotypic measurement of lithium response is crucial for the ongoing ConLiGen pharmacogenomic study.
The direct estimation of heritability from genome-wide common variant data as implemented in the program Genome-wide Complex Trait Analysis (GCTA) has provided a means to quantify heritability attributable to all interrogated variants. We have quantified the variance in liability to disease explained by all SNPs for two phenotypically-related neurobehavioral disorders, obsessive-compulsive disorder (OCD) and Tourette Syndrome (TS), using GCTA. Our analysis yielded a heritability point estimate of 0.58 (se = 0.09, p = 5.64e-12) for TS, and 0.37 (se = 0.07, p = 1.5e-07) for OCD. In addition, we conducted multiple genomic partitioning analyses to identify genomic elements that concentrate this heritability. We examined genomic architectures of TS and OCD by chromosome, MAF bin, and functional annotations. In addition, we assessed heritability for early onset and adult onset OCD. Among other notable results, we found that SNPs with a minor allele frequency of less than 5% accounted for 21% of the TS heritability and 0% of the OCD heritability. Additionally, we identified a significant contribution to TS and OCD heritability by variants significantly associated with gene expression in two regions of the brain (parietal cortex and cerebellum) for which we had available expression quantitative trait loci (eQTLs). Finally we analyzed the genetic correlation between TS and OCD, revealing a genetic correlation of 0.41 (se = 0.15, p = 0.002). These results are very close to previous heritability estimates for TS and OCD based on twin and family studies, suggesting that very little, if any, heritability is truly missing (i.e., unassayed) from TS and OCD GWAS studies of common variation. The results also indicate that there is some genetic overlap between these two phenotypically-related neuropsychiatric disorders, but suggest that the two disorders have distinct genetic architectures.
Background
In individuals suffering from a rare disease the diagnostic process and the confirmation of a final diagnosis often extends over many years. Factors contributing to delayed diagnosis include health care professionals' limited knowledge of rare diseases and frequent (co-)occurrence of mental disorders that may complicate and delay the diagnostic process. The ZSE-DUO study aims to assess the benefits of a combination of a physician focusing on somatic aspects with a mental health expert working side by side as a tandem in the diagnostic process.
Study design
This multi-center, prospective controlled study has a two-phase cohort design.
Methods
Two cohorts of 682 patients each are sequentially recruited from 11 university-based German Centers for Rare Diseases (CRD): the standard care cohort (control, somatic expertise only) and the innovative care cohort (experimental, combined somatic and mental health expertise). Individuals aged 12 years and older presenting with symptoms and signs which are not explained by current diagnoses will be included. Data will be collected prior to the first visit to the CRD’s outpatient clinic (T0), at the first visit (T1) and 12 months thereafter (T2).
Outcomes
Primary outcome is the percentage of patients with one or more confirmed diagnoses covering the symptomatic spectrum presented. Sample size is calculated to detect a 10 percent increase from 30% in standard care to 40% in the innovative dual expert cohort. Secondary outcomes are (a) time to diagnosis/diagnoses explaining the symptomatology; (b) proportion of patients successfully referred from CRD to standard care; (c) costs of diagnosis including incremental cost effectiveness ratios; (d) predictive value of screening instruments administered at T0 to identify patients with mental disorders; (e) patients’ quality of life and evaluation of care; and f) physicians’ satisfaction with the innovative care approach.
Conclusions
This is the first multi-center study to investigate the effects of a mental health specialist working in tandem with a somatic expert physician in CRDs. If this innovative approach proves successful, it will be made available on a larger scale nationally and promoted internationally. In the best case, ZSE-DUO can significantly shorten the time to diagnosis for a suspected rare disease.
Die cGvHD ist eine relevante Komplikation der aHSCT. Sie hat Einfluss auf die Morbidität und Mortalität nach der aHSCT. Die genaue Pathogenese ist unbekannt. Ein Einfluss dendritscher Zellen als Schlüsselzellen immunologischer Prozesse auf die Entstehung einer cGvHD ist wahrscheinlich.
In dieser Studie erfassten wir patient:innen und aHSCT-bezogene Daten 61 stammzelltransplantierter Kinder und Jugendlicher sowie deren möglichen Einfluss auf das Auftreten einer cGvHD. Zudem wurde die Rekonstitution der Immunzellen, insbesondere der DCs, nach der aHSCT evaluiert.
Die Rekonstitution der Lymphozyten sowie die Zytokinexpression der T-Zellen während der Rekonstitution verhielt sich ähnlich zu vorherigen Studien. Signifikante Unterschiede zwischen Patient:innen mit oder ohne cGvHD zeigten sich nicht konsistent. Die Rekonstitution der DCs erfolgte innerhalb von 60-100 Tagen. Stabile Werte zeigten sich jedoch frühestens ein Jahr nach der aHSCT. Während des Engraftments war der Anteil CCR7+ DCs bei Patient:innen erhöht, die eine TBI erhalten hatten. Ein hoher Anteil CCR7+ DCs wirkte sich zu jedem Zeitpunkt positiv auf das Gesamtüberleben aus. Trat eine höhergradige aGvHD auf, konnte eine verminderte absolute und relative Zellzahl 60-365 Tage nach der aHSCT für DCs insgesamt und mDCs erfasst werden, für pDCs 60-100 Tage nach aHCST. Zwischen der Rekonstitution der DCs und dem Auftreten einer cGvHD konnten wir vier Korrelationen beobachten. Der absolute und relative Zahlenwert an mDCs war während des Engraftments bis Tag 60-100 vermindert. Der absolute und relative Zahlenwert an DCs insgesamt war ab Tag 101-365 vermindert. Ein erhöhter Anteil an pDCs konnte ab Tag 101-365 sowie zu Beginn einer cGvHD bestimmt werden. Der Anteil monozytärer DCs war ab Tag 60-100 erhöht.
Die Pathogenese der cGvHD bleibt weiter teilweise unklar. Unsere Daten suggerieren einen Einfluss der DCs auf die Entstehung einer cGvHD.