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NCT ID: NCT03989206 Active, not recruiting - Clinical trials for Moderate-to-Severe Atopic Dermatitis

Long-term Safety and Efficacy of Nemolizumab With Moderate-to-severe Atopic Dermatitis

Start date: December 30, 2019
Phase: Phase 3
Study type: Interventional

Long-Term Safety and Efficacy of Nemolizumab in Subjects with Moderate-to-Severe Atopic Dermatitis Description

NCT ID: NCT03987295 Active, not recruiting - Clinical trials for Frontotemporal Dementia

A Phase 2 Study to Evaluate Safety of Long-term AL001 Dosing in Frontotemporal Dementia (FTD) Patients (INFRONT-2)

Start date: September 27, 2019
Phase: Phase 2
Study type: Interventional

A Phase 2 open label study evaluating the safety, tolerability, pharmacokinetics (PK) and pharmacodynamics (PD) of AL001 in participants with a Granulin mutation or C9orf72 mutation causative of frontotemporal dementia.

NCT ID: NCT03987152 Active, not recruiting - Clinical trials for Vascular Malformations

Treatment of Congenital Vascular Malformations Using Sirolimus: Improving Quality of Life

Sirolimus
Start date: September 18, 2017
Phase: Phase 3
Study type: Interventional

Congenital vascular anomalies are uncommon and belong to the group of rare diseases.These vascular malformations can cause serious complications including obstruction of vital organs and their function, recurrent infection and significantly reduced quality of life of persons affected.Treatment options range from conservative to surgical extirpation or intralesional embolisation/sclerosis. Unfortunately, this is often not enough. Many patients still have complaints like severe pain and invalidation due to the lymphatic or venous malformation making a normal functional life impossible. Recent case reports mention the positive effects of refractory patients with Sirolimus. Sirolimus, also known as rapamycin, is currently the only FDA-approved mammalian target of rapamycin (mTOR) inhibitor.

NCT ID: NCT03983512 Active, not recruiting - Heart Diseases Clinical Trials

PULSTA Transcatheter Pulmonary Valve Pre-Approval Study

Start date: October 7, 2019
Phase: N/A
Study type: Interventional

The purpose of the study is to evaluate the safety and effectiveness of the PULSTA Transcatheter Pulmonary Valve (TPV) System for the treatment of congenital or acquired pulmonary valve stenosis and/or regurgitation who require pulmonary valve replacement.

NCT ID: NCT03982394 Active, not recruiting - Clinical trials for Chronic Plaque Psoriasis

Observational Study of Patients With Moderate to Severe Chronic Plaque Psoriasis

VALUE
Start date: July 1, 2019
Phase:
Study type: Observational

This study will assess the use of risankizumab in adult patients with moderate to severe chronic plaque psoriasis and compare risankizumab to other commonly used biologics.

NCT ID: NCT03981796 Active, not recruiting - Neoplasms Clinical Trials

A Study to Evaluate Dostarlimab Plus Carboplatin-paclitaxel Versus Placebo Plus Carboplatin-paclitaxel in Participants With Recurrent or Primary Advanced Endometrial Cancer

RUBY
Start date: July 18, 2019
Phase: Phase 3
Study type: Interventional

This is a 2 part study. Part 1 is to evaluate the efficacy and safety of dostarlimab plus carboplatin-paclitaxel followed by dostarlimab versus placebo plus carboplatin-paclitaxel followed by placebo; and Part 2 is to evaluate the efficacy and safety of dostarlimab plus carboplatin-paclitaxel followed by dostarlimab plus niraparib versus placebo plus carboplatin-paclitaxel followed by placebo in participants with recurrent or primary advanced (Stage III or IV) endometrial cancer.

NCT ID: NCT03976908 Active, not recruiting - Tinnitus Clinical Trials

Deep Brain Stimulation for Tinnitus

Start date: January 6, 2021
Phase: N/A
Study type: Interventional

Tinnitus is the perception of a sound in the absence of an audible source. Currently up to 15% of the general population suffers chronically from tinnitus. The most severe degree of tinnitus ís experienced by 2.4% of the population and is associated with insomnia, depression; anxiety and even suicide. Up to date there is no effective standard therapy. Current therapies mostly focus on treating the distress caused by tinnitus instead of reducing the actual phantom sound. Nevertheless, many patients do not benefit from the current approaches and become severe and chronic tinnitus sufferers. In these patients neuromodulation-based treatments can be a promising option. Tinnitus perception is associated with many complex changes in several different brain structures. The general accepted hypothesis is that neuronal changes occur in both auditory and non-auditory brain structures, most often as a compensating mechanism on reduced input from the auditory nerve caused by cochlear hair cell damage. These central neuronal changes include an increase in spontaneous firing rate, synchronized activity, bursting activity and tonotopic reorganization. In high-frequency deep brain stimulation (DBS) a reversible lesion-like effect is mimicked. From findings in Parkinson's disease patients who also had tinnitus and were treated with DBS, it is known that stimulation can alter or even completely diminish perception of tinnitus. It can be expected that modulation of specific structures within the complex tinnitus pathways can disrupt pathological neuronal activity and thereby alter tinnitus perception or distress caused by this phantom sensation. The investigators found in animal studies that DBS in the central auditory pathway can indeed significantly decrease tinnitus-like behavior. In a questionnaire study the investigators found that around one-fifth of the patients would be reasonably willing to accept invasive treatments and one-fifth would be fully willing to undergo invasive treatment like DBS. Based on preclinical studies and human case studies, the investigators expect that DBS of the central auditory pathway will inhibit tinnitus perception and distress caused by this phantom sensation. Based on studies performed within Maastricht University Medical Center (MUMC), the investigators selected the medial geniculate body of the thalamus (MGB) as the most potential target to treat tinnitus with DBS.

NCT ID: NCT03972488 Active, not recruiting - Clinical trials for Gastro-enteropancreatic Neuroendocrine Tumor

Study to Evaluate the Efficacy and Safety of Lutathera in Patients With Grade 2 and Grade 3 Advanced GEP-NET

NETTER-2
Start date: January 22, 2020
Phase: Phase 3
Study type: Interventional

The aim of NETTER-2 is to determine if Lutathera in combination with long-acting octreotide prolongs PFS in GEP-NET patients with high proliferation rate tumors (G2 and G3), when given as a first line treatment compared to treatment with high dose (60 mg) long-acting octreotide. Somatostatin analog (SSA) naive patients are eligible, as well as patients previously treated with SSAs in the absence of progression.

NCT ID: NCT03970746 Active, not recruiting - Clinical trials for Non Small Cell Lung Cancer

Safety, Immunogenicity and Preliminary Clinical Activity Study of PDC*lung01 Cancer Vaccine in NSCLC

Start date: September 10, 2019
Phase: Phase 1/Phase 2
Study type: Interventional

PDC-LUNG-101 trial is an open-label, dose-escalation, phase I/II study to assess the safety, the tolerability, the immunogenicity and the preliminary clinical activity of the therapeutic cancer vaccine, PDC*lung01, associated or not with anti-PD-1 treatment in patients with non-small-cell lung cancer.

NCT ID: NCT03970278 Active, not recruiting - Clinical trials for Glycogen Storage Disease Type IA

Study of Long-Term Safety and Efficacy on Gene Therapy in Glycogen Storage Disease Type Ia

Start date: July 15, 2019
Phase:
Study type: Observational

The primary objective of this study is to determine the long-term safety of DTX401 following a single intravenous (IV) dose in adults with GSDIa.