Clinical Trials Logo

Filter by:
NCT ID: NCT02033902 Completed - Epilepsy Clinical Trials

A Global, Postmarketing Observational Safety Study to Evaluate the Safety and Tolerability of Fycompa (Perampanel) as Add-on Therapy in Epilepsy Patients Aged Greater Than or Equal to 12 Years

Start date: June 6, 2014
Phase:
Study type: Observational

The purpose of this study is to evaluate the safety and tolerability of Fycompa (Perampanel) as an add-on therapy in epilepsy patients aged greater than or equal to 12 years.

NCT ID: NCT02033694 Completed - Clinical trials for Coronary Artery Disease

The Lipid-Rich Plaque Study

LRP
Start date: February 2014
Phase:
Study type: Observational

The purpose of this study is to enhance medical knowledge of the causes of future coronary problems. Many studies in patients who have already experienced a coronary problem point to the danger associated with plaques that are rich in cholesterol. This study determines if the near-infrared method of detection of these fatty plaques can predict future events. If dangerous plaques can be identified, there are many treatments already available that could be tested for their ability to prevent coronary events.

NCT ID: NCT02033447 Completed - Prostate Cancer Clinical Trials

Magnetic Nanoparticle Thermoablation-Retention and Maintenance in the Prostate:A Phase 0 Study in Men

MAGNABLATE I
Start date: December 2013
Phase: Early Phase 1
Study type: Interventional

Men with early prostate cancer face a number of options which lie at the extremes of care. On one hand, active surveillance involves monitoring the disease and on the other, immediate treatment involves surgery or radiotherapy. The difference between these two strategies in terms of reducing the chance of a man dying from his disease is small. Not only is the benefit small, surgery or radiotherapy carry significant side-effects. These occur because of damage to surrounding tissue resulting in incontinence of urine (1 in 5), erectile dysfunction (1 in 2) and back-passage bleeding, diarrhoea or discomfort (1 in 10). The investigators have been working on new forms of treatment that use heat, light or cold to destroy tissue and minimise treatment-related harms. The investigators have not yet found one that delivers the ideal treatment. The ideal treatment is one that can be done under local anaesthetic, can effectively destroy areas of cancer, limit damage to surrounding tissues, is repeatable, and adaptable to future discoveries such as molecular targeting of cancer cells. The investigators think magnetic thermoablation may be able to deliver on these ideal attributes. Magnetic thermoablation involves injecting magnetic iron nanoparticles directly into the cancer. When a magnetic field is applied close to them, these nanoparticles heat up to very high temperatures that kill cells. Magnetic thermoablation does not use x-rays or surgical incisions. The investigators have done a lot of the preclinical work already to develop this type of treatment. The investigators now need to develop a system that can be used to treat prostate cancer. However, before the investigators can do this, they need to test whether the magnetic nanoparticles actually stay where they are injected. The consequences of them moving to areas that they should not can be serious. First, the nanoparticles could move away from the cancer which means the cancer will not be heated effectively. Second, the nanoparticles could move to sensitive structures around the prostate (back-passage, bladder, sphincter muscle controlling urine flow, nerves controlling erections). If this happens, damage of those sensitive structures could occur leading to side-effects. The investigators propose a study to try and find out what happens to those nanoparticles. The study will involve approaching men who are having their prostates removed by radical surgery. If these patients agree to participate, the investigators will inject their prostate with varying amounts of nanoparticles. The investigators will NOT heat them up. The investigators will use special scans and, once they have had their surgery, to look at the pathology specimens to see where the nanoparticles have gone. The actual nanoparticles are not harmful but the process of injection can carry a small amount of harm. If the nanoparticles stay where they are injected, the investigators will then be able to run another study in which we treat men who have prostate cancer with magnetic thermoablation.

NCT ID: NCT02033005 Completed - Breast Feeding Clinical Trials

Newborn Feeding and Infant Phenotype

Start date: March 2010
Phase:
Study type: Observational

Breast feeding is believed to be beneficial to long-term health but how these effects are mediated is unknown. I suggest that this may be through effects on body composition and metabolism. I will compare adipose tissue and liver fat deposition in healthy, full term breast and formula fed infants babies shortly after birth and around 12 weeks.

NCT ID: NCT02032524 Completed - Clinical trials for Glycogen Storage Disease Type II Pompe Disease

Avalglucosidase Alfa Extension Study

NEO-EXT
Start date: February 27, 2014
Phase: Phase 2
Study type: Interventional

Primary Objective: Long-term safety and pharmacokinetics (PK) of avalglucosidase alfa Secondary Objective: Long-term effect of avalglucosidase alfa on pharmacodynamic variables

NCT ID: NCT02032277 Completed - Clinical trials for Triple Negative Breast Cancer

A Study Evaluating Safety and Efficacy of the Addition of ABT-888 Plus Carboplatin Versus the Addition of Carboplatin to Standard Chemotherapy Versus Standard Chemotherapy in Subjects With Early Stage Triple Negative Breast Cancer

Start date: April 2, 2014
Phase: Phase 3
Study type: Interventional

This is a 3 arm Phase 3 study to evaluate the safety and efficacy of the addition of veliparib plus carboplatin versus the addition of carboplatin to standard neoadjuvant chemotherapy versus standard neoadjuvant chemotherapy in subjects with early stage TNBC.

NCT ID: NCT02032212 Completed - Healthy Volunteers Clinical Trials

A Bioavailability Study of Nicotine Delivered by an Electronic Vapour Product

Start date: December 2013
Phase: Phase 1
Study type: Interventional

Electronic Vapour Products (EVPs) are a relatively new class of consumer products that are otherwise known as electronic cigarettes. These may look like conventional cigarettes but do not contain tobacco. The 'vapour' produced by such devices typically consists of humectants (propylene glycol or glycerol), nicotine, water, and flavours. This trial is to evaluate the pharmacokinetic profile of an EVP.

NCT ID: NCT02032160 Completed - Hepatitis B Clinical Trials

A Study to Characterise Immune Responses Following Immunisations With "Fendrix" or "Engerix B" Hepatitis B Vaccines

Start date: May 2014
Phase: N/A
Study type: Interventional

The purpose of this study is to generate an exploratory training set of data and to identify predictive biomarkers (a measurable biological response that predicts something) of innate and adaptive responses to immunisation of two vaccines utilizing different adjuvant technology given according to approved schedules to healthy adult volunteers. The vaccines are model agents selected as they match antigens but have discordant adjuvants, have a known immunogenicity profile, assays are freely available to measure responses, and they are safe to administer to healthy adults at the doses and schedules proposed. This study will strive to correlate biomarker activity with observed immunological responses to vaccination and if successful, these biomarkers could be used in early stage clinical trials to optimize selection of vaccine candidates with a profile that will be most likely to be effective once they are in generalized use.

NCT ID: NCT02031627 Completed - Clinical trials for Lower Extremity Lymphoedema

Treatment Response to Different Lymphoedema Compression Programs Using a Pneumatic Compression Device

Start date: November 11, 2013
Phase: N/A
Study type: Interventional

Proof of principle study in order to determine if there is a difference in treatment effect across the 3 study groups when treating lower extremity lymphoedema using a pneumatic compression device.

NCT ID: NCT02031458 Completed - Clinical trials for Non-Small Cell Lung Cancer

A Study of Atezolizumab in Participants With Programmed Death - Ligand 1 (PD-L1) Positive Locally Advanced or Metastatic Non-Small Cell Lung Cancer

BIRCH
Start date: January 22, 2014
Phase: Phase 2
Study type: Interventional

This multicenter, single-arm study will evaluate the efficacy and safety of Atezolizumab in participants with PD-L1-positive locally advanced or metastatic non-small cell lung cancer (NSCLC). Participants will receive Atezolizumab 1200 milligrams (mg) intravenously every 3 weeks as long as participants are experiencing clinical benefit as assessed by the investigator, that is , in the absence of unacceptable toxicity or symptomatic deterioration attributed to disease progression.