View clinical trials related to Cancer.
Filter by:Major surgery can result in blood loss that can require a blood transfusion during and/or after surgery. Tranexamic acid is a medication that was first introduced in the 1960s as a treatment for heavy menstrual bleeding. Over the past 20 years it has been used and studied in patients undergoing open-heart surgery, liver transplantation, and urologic surgery. We believe tranexamic acid may possibly decrease bleeding related to major surgery, resulting in reduced blood loss, lower blood transfusion rates, and possibly decreased hospital costs related to your surgical hospital stay. In this study, you will receive either the drug tranexamic acid or a placebo. The placebo looks like the tranexamic acid, but does not have any active ingredient in it. The treatment you get will be chosen by chance, like flipping a coin. You will have equal chance of being given the tranexamic acid or the placebo. In this study, both the tranexamic acid and the placebo are considered research.
The purpose of this study was to test the efficacy of a computer-based automated symptom monitoring telephone system used by patients who received chemotherapy for their cancer to communicate unrelieved symptoms they experienced to their oncology providers.
It is hypothesized that the treatment group will show greater improvements in quality of life and mood disturbance compared to the control group and that greater levels of engagement with the intervention materials will be associated with greater improvements in mood and quality of life.
The purpose of this prospective trial is to test a daily telephone based automated symptom monitoring and response system to track and further treat unrelieved symptoms for patients living at home during chemotherapy treatment as compared with usual care which consists of patients calling their oncology provider for symptom concerns.
This trial studies hepatitis B screening strategies of new cancer patients scheduled to undergo chemotherapy. Patients with cancer and hepatitis B virus infection are at risk of reactivation of infection after chemotherapy. Hepatitis B virus infection reactivation can be prevented by starting antivirals before chemotherapy in patients who are hepatitis B virus infection positive. Hepatitis B screening may help doctors prevent the reactivation of hepatitis B virus infection after chemotherapy.
This study is part of a larger consortium project investigating the validity and best use of next-generation sequencing (in particular, whole exome sequencing, or WES) in clinical care. This sub-project is investigating benefits and harms of providing WES diagnostic and different types of incidental findings to adult patients and parents of pediatric patients who undergo WES because they have symptoms suggesting genetic disease.
In cancerology, anemia is a frequently-found situation, with a prevalence ranging from 30% to 90%, according to the series, disease stages, primary tumor locations and age (Scotte, Launay-Vacher et al. 2012). Although very probably a major cause of anemia, iron deficiency (ID) has been seldom investigated in the field of cancer. Its prevalence and incidence have never been assessed in a prospective study. It is well-known that anemia in the cancer setting is a source of asthenia and deterioration of quality of life, and can even reduce the efficacy of anticancer treatments such as radiotherapy. Correcting anemia therefore constitutes a daily challenge. Before 2004-2005, a very large proportion of patients were treated with erythropoietin (EPO). However, prescriptions for EPO appear to have considerably declined since the warnings issued by various scientific societies and governments on account of the possible increase in death rates and a higher incidence of thromboembolic events, as reported in 8 studies published to date (NCCN 2012). Simultaneously, the transfusion rate augmented from 3.4% to 8.7% and the median hemoglobin level fell from 10.8 to 8.9 g/dL (Feinberg, Bruno et al. 2012). The use of injectable iron appears to have improved the correction of anemia by EPO, as reported in several concordant studies versus oral iron and placebo (Pedrazzoli, Rosti et al. 2009; Steensma, Sloan et al. 2011). However, no monotherapy study has been conducted to evaluate the impact of injectable iron, alone without EPO, for the correction of ID (with or without anemia) in cancer treatment. Consequently, there exists a wide variety of practices, with an injectable iron prescription rate which, a priori, does not match the number of patients with iron deficiency. There exist other iron-based parameters to characterize ID but these are not yet used routinely during chemotherapy and need to be validated in the cancer field. These parameters include: - An assay of reticulocyte hemoglobin content (rHC) - An assay of soluble transferrin receptor (sTfR) Soluble transferrin receptors are mainly located on red blood line cells receiving iron delivered by transferrin. In this study, we propose to make a prospective assessment of the iron status of cancer patients beginning chemotherapy. The aim is to determine the proportion of patients who might benefit from injectable iron treatment. All ID will be covered prospectively over a 2-year period.
The purpose of this study is to evaluate the analgesic (painkiller) effectiveness and safety of combination of tramadol HCI (37.5 mg)/acetaminophen (325 mg) in the treatment of chronic cancer pain.
Human Epidermal Growth Factor Receptor 3 (HER3) expression is seen across a wide variety of solid malignancies and is associated with poor prognosis. Up-regulation of HER3 expression and activity is also associated with resistance to multiple pathway inhibitors. GSK2849330, a monoclonal antibody targeting HER3, is a new agent for subjects whose tumors express HER3. This study is a phase I, first time in human, open-label, dose escalation study. The purpose of this study is to investigate the safety, pharmacokinetics (PK), and pharmacodynamics (PD) of GSK2849330 in subjects with advanced HER3-positive solid tumors. The study will be conducted in two parts. Part 1 (Dose-Escalation Phase) will include dose escalation and PK/PD cohorts to evaluate safety, PK, and PD to guide selection of dose regimen(s) for Part 2. In Part 2 (Expansion Cohorts), up to 3 cohorts will be enrolled at the dose regimen(s) selected based on Part 1 data, to evaluate safety in a larger cohort of subjects at the recommended dose regimen and also to evaluate preliminary evidence of clinical benefit.
The main purpose of this study is to determine the safety (defined as number of participants experiencing ≥ 5% toxicity at 12 months post treatment) of stereotactic ablative fractionated radiotherapy versus radiosurgery for oligometastatic neoplasia to the lung.