There are about 13332 clinical studies being (or have been) conducted in Netherlands. 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 purpose of this study is to investigate the effect of the study medication (Eligard®) on cancer markers (in the blood) of prostate cancer.
Study 701-301 is a single-arm, open-label, switchover study in patients with late-onset Pompe disease who have been receiving treatment with recombinant human acid alpha-glucosidase (rhGAA) for 48 weeks or longer. Ambulatory patients who have mild to moderate respiratory impairment will switch directly to receive BMN 701 20 mg/kg by IV infusion every other week. All participants will receive active drug. No dose of existing therapy will be missed - experimental drug is started immediately.
The aim of this study is to determine whether motor imagery training during the immobilisation period in patients with a distal radius fracture, results in an improved functional outcome compared to patients who do not perform motor imagery.
The main purpose of this prospective, multicenter, open-label phase II study, was to evaluate the efficacy and safety of pasireotide alone or in combination with cabergoline in patients with Cushing's disease.
This is a phase II/III confirmatory study designed to evaluate the safety and efficacy of nintedanib (BIBF 1120) in combination + (pemetrexed / cisplatin) followed by nintedanib (BIBF 1120) versus placebo + pemetrexed / cisplatin followed by placebo for the treatment of patients with unresectable malignant pleural mesothelioma.
The purpose of this study is to compare progression-free survival (PFS) in patients with advanced/metastatic breast cancer who have a BRCA mutation when treated with niraparib as compared to those treated with physician's choice
Our knowledge on the genetic mutations in cancer is rapidly expanding and we are increasingly testing drugs in mainly metastatic cancer patient populations with rare mutations. Successful examples of this new strategy are ALK inhibitors in ALK translocated NSCLC (less than 5% frequency) and EGFR inhibitors in EGFR mutant NSCLC (approximately 5% frequency). Selecting molecularly stratified patient populations for studies benefits the patient as it increases the odds of obtaining benefit from experimental treatment, especially in early clinical trials. Moreover it increases the speed and efficacy of drug development as signs of efficacy are picked up in earlier phases. Therefore, broad screening of molecular lesions in the tumors of patients that are being considered for participation in trials is crucial. This pre-selection increases our ability to perform several trials in parallel and thus include more patients in more meaningful trials. With the still dismal prognosis of patients with metastatic cancer, increasing the accrual rate to pivotal trials in selected patient populations is a key factor in improving prognosis. The advent of Next Generation Sequencing (NGS) platforms enables us to probe a limited number of cancer related genes within 2-4 weeks. We have extensively piloted this approach and are now able to deliver clinically meaningful turn-around-times. This development enables us to use this technology to enrich clinical trials using targeted therapies for patients with specific mutations. We will obtain tumor biopsies of a metastatic or locally advanced lesion and a peripheral blood sample from all patients included in the trial; the biopsies to obtain information on the tumor related genetic mutations (mutational profile) and the blood samples to assess each patient's germline DNA background variation. As patients will be asked to undergo an invasive procedure it is important to address the potential safety issues. Review of the literature and our own experience show that tumor biopsies can be performed with only minor complications and acceptable risks. We will recruit patients with metastatic or locally advanced solid tumors from patients that can potentially be included in clinical trials.
The study will explore escalating doses of melflufen in combination with dexamethasone in small groups of patients to find the maximum tolerated dose of melflufen. That dose will then be used to determine the efficacy and safety profile of melflufen in combination with dexamethasone in a larger group of patients.
Multicenter, open label, prospective study including successively a phase I trial and then a phase II trial Phase I : Open label, non-randomized, sequential dose escalation of both drugs, vinblastine and nilotinib.
The prevalence of obesity and obesity-related complications is currently taking epidemic proportions. These complications increase the risk of type 2 diabetes and cardiovascular disease, which are important causes of morbidity and mortality worldwide. It is important to gain insight in the mechanisms underlying obesity-related complications, because this may lead to the development of directed therapeutic strategies. Currently, there is significant evidence that the cause of both insulin resistance and hypertension must be sought at the level of the microcirculation. Over activity of the renin-angiotensin-aldosterone system is a potential cause of microvascular dysfunction. Angiotensin II was indeed found to be implicated in the pathogenesis of obesity-associated hypertension and insulin resistance, possibly through interference with the vascular effects of insulin. Increased aldosterone levels have also been associated with resistant hypertension and insulin resistance, which is illustrated in patients with primary aldosteronism. Furthermore, aldosterone is known to exert several detrimental effects on the vasculature, some of which are offset by mineralocorticoid receptor antagonists. In obese individuals, plasma aldosterone concentrations are increased as well. We hypothesize that increased aldosterone levels in adipose persons induce microvascular dysfunction, which contributes to the development of insulin resistance and hypertension, and mineralocorticoid receptor antagonism results in improved insulin sensitivity and decreased blood pressure by counteracting the adverse effects of aldosterone on the microvasculature.