There are about 36633 clinical studies being (or have been) conducted in France. The country of the clinical trial is determined by the location of where the clinical research is being studied. Most studies are often held in multiple locations & countries.
The study aims to demonstrate the relationship between intra-abdominal hypertension (IAH) and abundant microaspirations in mechanically ventilated cirrhotic.
Catatonia is a severe form of psychomotor disturbance with a heterogenous presentation. It affects approximately 10% of acute psychiatric inpatients. According to the fifth edition of DSM-5 the diagnosis of catatonia can be made when three or more symptoms from the twelve following are present : catalepsy, waxy flexibility, stupor, agitation, mutism, negativism, posturing, mannerisms, stereotypies, grimacing, echolalia, echopraxia. It can occur in various psychiatric diseases, including mood disorders or schizophrenia, but also in various non-psychiatric disorders [metabolic disturbances, viral infections (including HIV), typhoid fever, heat stroke, and autoimmune disease]. Benzodiazepines, especially LORAZEPAM, are the most common initial treatment, with a remission rate of approximately 70-80 %, regardless of the cause or the clinical manifestations. This first line treatment is titrated gradually according to the therapeutic response over a few days up to 20-25 mg per day. Electroconvulsive therapy (ECT) is initiated on patients with catatonia who do not respond to benzodiazepines. Interestingly, pharmacogenetic variants can alter the metabolism of lorazepam (e.g., the UGT2B15 * 2 allele slows it down). The main objective of this study is to assess the link between clinical response to lorazepam, residual plasma concentrations of lorazepam after 72 hours of fixed dosage, and the existence of genetic polymorphisms modifying the metabolism of lorazepam. Our hypothesis is that non-responding patients have lowered blood concentrations of lorazepam associated to a genetic profile of rapid metabolism. Evaluating the predictive factors of the response to treatment would allow early and precise identification of non-responder patients in order to adapt their first-line treatment.
Accurate knowledge of the humoral immune responses induced by SARS-CoV-2 in patients undergoing immunosuppressive therapy is essential to guide recommendations for infected patients and for vaccination policy for uninfected immunosuppressed patients.
The purpose of this study is to evaluate the duration of response following withdrawal of ruxolitinib cream (Cohort A vehicle group), safety and maintenance of response with continued use of ruxolitinib cream in participants who have completed either Study NCT04052425 or NCT04057573 (parent studies) in which the participants will have been using ruxolitinib cream BID for the previous 28 to 52 weeks depending on their initial randomization in the parent study.
Personalized medicine in which each patient would receive the ideal personalized treatment and regimen, holds great promise to improve patient's care. However, previous studies failed to establish validated predictors of response to disease-modifying anti-rheumatic drugs (DMARDs) in patients with rheumatoid arthritis (RA). JAK inhibitors is a new class of DMARDs with great efficacy that might be even superior to anti-TNF drugs. As there are chemicals, their production cost is much cheaper than biological therapies and they will probably be central in patient's care in the coming years. Three are currently available: upadacitinib (UPA) tofacitinib and baricitinib. Our study will focus on UPA. Clinical outcomes mainly depend on i) factors influencing drug metabolism & concentrations and ii) adequacy between drug target and the inflammation pathways involved in the patient's disease. Humans carry in their gut trillions of germs, which are now known to be key players in health and disease. Those germs possess many enzymes and strongly modulate human enzymes expression. Gut-microbiota can, indeed, directly metabolize oral drugs and control the expression of the cytochrome P450 3A4 (CYP3A4), the main enzyme metabolizing TOFA. We showed, in a preliminary mouse experiment, that modifying gut-microbiota composition changes JAKi effects on signaling pathways. We thus believe that models including gut-microbiota composition together with markers of immune activation will predict clinical outcomes in RA patients treated with UPA. Main and secondary objectives: To build predictive models for clinical outcomes (efficacy and safety) of RA patients treated with UPA based on microbiota analysis and markers f immune activation. Methodolgy: This multicentric longitudinal prospective study will include 60 patients with RA and inadequate response to methotrexate. The clinical outcomes studied will be EULAR non-response at 3 months as defined by the European league against rheumatism EULAR (primary outcome), achievement of low-disease activity at 6 months or incident adverse events (secondary outcomes). Gut microbiota will be assessed at baseline and M3 from thawed fecal samples. DNA will be purified using QIAamp DNA stool mini kit (Qiagen) and qualify using Qubit and TapeStation 4200 (Agilent). Library will be prepared by amplification of V1-V2 and V3-V4 regions from the bacterial 16S rRNA genes and will be qualified by q-PCR and amplicons will be sequenced by MiSeq (Illumina). Initial bioinformatic analysis and taxonomies will be carried out using the QIIME2 software. Immune activation will be assessed through JAK-STAT pathway activation by JAK STAT signaling pathway RT² profiler PCR Array (Qiagen) which profiles expression of 84 genes related to Jak and Stat-mediated signaling. UPA concentrations will be assessed by liquid chromatography-tandem mass spectrometry (LC-MS/MS) at baseline and 3 months. Statistical classifiers (Neural network algorithm, Linear and Quadratic Discriminant Analysis, Support Vector Machine, Random forests, Shrinkage Methods, or Nearest Neighbors) incorporating microbiome, JAK STAT signaling pathway gene expression and clinical data, will be used to determine profiles associated with UPA clinical response and safety. Patients who will prematurely stop UPA (before 3 months) for adverse events or loss of follow-up will be considered as non-responders.
A pilot study of children whose families are in a precarious situation, who will benefit from a targeted at-home intervention by a pediatric nurse. Visits will be organized during the first, fourth and sixth months after the discovery of diabetes. The HbA1C measured 12 months after the diabetes diagnosis will be compared to the HbA1C obtained in an historical cohort that did not receive at-home therapeutic education.
The neurobiological response to stress is an adaptive response allowing us to cope with the multiple aggressions of daily life. This response orchestrates the body's systemic reaction. The intensity of response to stress can modify the body's functioning, which implies a variety of fields where biomarkers may be isolated: immunity, psychology, neurophysiology, integrative physiology. When stress is too intense or prolonged, response to stress may become misfitted and deleterious. This study is based on the hypothesis that a severe physical or psychological trauma is associated with an intense and misfitted stress that is responsible from an undue immuno-inflammatory activation (through sympathetic activation). The result is a subinvasive state of systemic and tissue inflammation (low-noise inflammation), responsible for the mid-term deleterious consequences of the traumatic event. The objective of this study is to understand how the dysregulation of intense stress simultaneously generates an initial pathological state and an alteration of mid-term evolution (which is considered as a poor prognosis and/or as responsible for after-effects). The investigators wish to identify relevant biomarkers of the mechanisms activated during intense stress and influencing the immuno-inflammatory and epigenetic spheres with deleterious consequences on physiological and psychological functions.
The primary purpose of this study is to validate a mathematical modeling of treatment by intermittent hemodialysis using regional citrate anticoagulation with a dialysate containing calcium
Although alternative dosing strategies can improve antimicrobial exposure in critically ill patients, the high PK variability in this population means that some may still receive sub-optimal antibiotic exposure leading to unfavourable clinical outcomes. Therapeutic drug management (TDM) guided dosing is the only safe and effective way to ensure that all critically ill patients achieve therapeutic antimicrobial exposures and to minimise the likelihood of toxicity. For experts, TDM should be a standard of care, in particular for β-lactams. Nevertheless, because of the assay method for β-lactams and the need for bioanalytical experts, delays in obtaining results frequently occurred. These barriers, combined with difficulties in the interpretation of TDM results, need to be addressed in order to increase its routine utilization. Consequently, study aiming at identify which subgroup of patients or infection are more likely to benefit from TDM are urgently warranted This prospective observational study aimed at evaluating target attainment of piperacillin/tazobactam (PIP/TAZ) and cefepim (CEF) with the use of a Therapeutic Drug Monitoring (TDM) in critically patients during the routine care
The increasing incidence of chronic respiratory disease is a public health problem that affects hundreds of thousands of people worldwide at all ages. Directly exposed to atmospheric airborne contaminants (pollution, allergens), the respiratory tract represents a complex ecosystem involving different cells (multiciliated, basal, mucosecretory, neuroendocrine, etc.) that develop complex interactions with the surrounding connective tissue but also with their rich immune environment and the local microbiota. Although a pathophysiological continuum is postulated between the nasal and bronchial airways in certain diseases, such as allergic diseases, investigators have demonstrated large gene expression gradients between samples taken from the nasal and bronchial airways in different studies. Specifying the cellular variability throughout the respiratory tree in a normal physiological situation is one of the major objectives defined in the establishment of an atlas of all airway cells, as defined in the objectives of the international consortium Human Cell Atlas. The sequencing of the RNAs present specifically in each individual cell ("single-cell RNAseq"), and its comparison with neighbouring cells allows to document the precise cellular contributions, as well as the signalling pathways involved. The development of tissue sampling, stabilization, transport and single cell analysis procedures can be performed on primary respiratory epithelium cultures and can also be extended to respiratory samples from healthy volunteers. This project will analyze gene expression profiles at the single cell level (single cell RNAseq) in volunteers with chronic obstructive pulmonary disease, interstitial pulmonary fibrosis and compared to healthy subjects of the same age. The technical modalities of the samples will be brushing and staged airway biopsies for direct analysis of the samples. This approach will be complemented by an air-liquid interface culture to allow secondary analysis in single cell RNAseq and three-dimensional mapping of the distribution of these cells with single cell in situ analysis. Thanks to sampling at several levels of the respiratory tree (nose, bronchioles, bronchioles), cellular and gene expression variations along the tracheobronchial axis will be exhaustively documented in subjects of different ages, healthy or suffering from pathologies such as chronic obstructive pulmonary disease and interstitial pulmonary fibrosis. These data will serve as worldwide references for comparisons in different physiological and pathological contexts.