View clinical trials related to Colorectal Neoplasms.
Filter by:Approximately, 20 rural primary care practices to participate in a delayed intervention-controlled trial. Phase I: Formal and structured work flow evaluations to better identify specific gaps in processes of care while assessing what on-going training is needed for adoption of high-quality cancer survivorship care in rural practice. These will be incorporated into the ECHO sessions (Aim 1). Phase II: Conduct and test the effectiveness of the novel KanSurvive-ECHO intervention (Aim 2) and finally identify barriers and facilitators to implementation of KanSurvive-ECHO (Aim 3).
The investigators have developed an innovative mobile health (mHealth) coping skills training protocol, mCOPE, that is adapted to meet the multiple symptom needs and stage-of-life challenges faced by young and middle-aged adults with cancer, and delivered in a convenient and flexible format that does not incur further demands. Young and middle-aged colorectal cancer patients who report pain, fatigue, and psychological distress will be invited to participate in the study. Participants will be randomly assigned to one of two conditions: mCOPE or standard care. mCOPE will teach patients coping skills to manage their cancer-related symptoms (pain, fatigue and distress) in the context of unique age-related challenges; session content will be tailored based on participants' report. mCOPE sessions will be delivered via videoconferencing to the patient in his/her own environment and scheduled at times that are convenient to the patient. mHealth technology, including a mobile app, will be used to capture daily symptom and coping skills use data, allowing the study team to provide personalized real-time feedback to patients. Investigators want to understand the impact of the mCOPE intervention delivered to young and middle-aged colorectal cancer patients with pain, fatigue, and distress. mCOPE is expected to lead to reduced symptom severity and improved quality of life. Study aims include: testing the efficacy of mCOPE for improving symptoms and quality of life and examining improved self-efficacy for symptom management as a mediator of symptom severity.
Quality Improvement Project to evaluate how prehabilitation can be incorporated into our colorectal cancer pathway and assess its clinical benefits.
This is a prospective data collection study of patients with advanced solid tumors who will receive standard of care immunotherapy (IO) and will be monitored with SIGNATERA™ testing. SIGNATERA™ test will be performed at baseline and during routine care. The test results will be part of assessing tumor response. The correlation between SIGNATERA™ test results and subsequent treatment decisions will be examined to compare actual treatment delivered against treatment decisions potentially impacted by SIGNATERA™ results. Treatment administered, tumor assessment results, time to progression, overall survival, physician questionnaires, and patient-reported outcomes will be collected/recorded.
This phase I trial is to find out the best dose, possible benefits, and/or side effects of riluzole and how well it works in combination with standard of care mFOLFOX6 and bevacizumab in treating patients with colorectal cancer that has spread to other places in the body (metastatic). Riluzole is a well-tolerated oral medication that has demonstrated it may make chemotherapy work better. Chemotherapy drugs, such as oxaliplatin, leucovorin calcium and fluorouracil, work in different ways to stop the growth of [cancer/tumor] cells, either by killing the cells, by stopping them from dividing, or by stopping them from spreading. Bevacizumab is an antibody that targets the blood vessel by blocking the activity of a protein called vascular endothelial growth factor alpha (VEGF-A). It helps to make the mFOLFOX6 more effective. Giving riluzole, mFOLFOX6, and bevacizumab may kill more tumor cells compared to mFOLFOX6 and bevacizumab alone in treating patients with colorectal cancer.
To evaluate the tolerance of patients with colorectal cancer to hyperthermic intraperitoneal chemotherapy with Raltitrexed, to determine the dose limiting toxicity and maximum tolerated dose.
The Treatment Choices, Duration and Outcomes in Patients with Ras Wild Type (RAS WT) Metastatic Colorectal Cancer (mCRC). Retrospective, Multi-Center, Real-World Data Analysis
This study assesses the feasibility of SGM-101, a fluorochrome-labeled anti-carcinoembryonic antigen monoclonal antibody, for intraoperative near-infrared fluorescence imaging of colorectal brain metastases by injecting SGM-101 intravenously 3 - 5 days prior to surgery.
The therapeutic regimens of adjuvant and neoadjuvant chemotherapy for colorectal cancer (CRC) remain largely relied on clinical experience, and thus preclinical models are needed to guide individualized medicine. The investigators are going to establish 3D bioprinted CRC models and organoids from surgically resected tumor tissues of CRC patients with or without liver metastases. In vitro 3D models and organoids will be treated with the same chemotherapy drugs with the corresponding patients from whom the models are derived. The sensitivity of chemotherapy drugs will be tested in these two types of in vitro models, and the actual response to chemotherapy in patients will be evaluated. The predictive ability of 3D models for chemotherapy sensitivity in CRC patients will be compared with that of the organoids. This observational study will validate the potential value of 3D bioprinted tumor models in predicting the response to chemotherapy in CRC.
Evidence from randomized controlled trials shows that exercise during cancer treatment benefits physical fitness, fatigue and quality of life. Since the effect of exercise on clinical outcome is currently unknown, exercise is not included as integral part of standard cancer care. Moreover, evidence regarding the optimal exercise prescription in terms of type and dose is lacking. To maintain quality of life in patients receiving palliative treatment with chemotherapy, toxicity-induced modifications in the prescribed chemotherapy dose are common. Such modifications - occurring in 40% of patients with metastatic colorectal cancer - may reduce benefit of treatment. The investigators hypothesize that exercise prevents chemotherapy dose modifications by reducing toxicity and enhancing psychological strength. Additionally, based on studies in rodents and preliminary data in patients with cancer, the researchers hypothesize that exercise has beneficial effects on the functionality of the natural killer cells, which play an important role in the innate immune defense against cancer. Both, fewer dose modifications and improved immune function may improve progression-free survival. This study is a three-armed trial comparing resistance exercise, aerobic interval exercise and usual care in patients with metastatic colorectal cancer to select the optimal exercise prescription for preventing chemotherapy dose modifications. The trial will use a Bayesian adaptive multi-arm multi-stage design with several interim analyses after which an ineffective study arm can be dropped early. This novel design makes the trial more efficient and reduces patients' exposure to suboptimal study arms. Evidence regarding the exercise effects on i) clinical outcome, ii) the optimal exercise prescription, and iii) the underlying mechanisms, elucidates the potential of exercise to boost benefit from chemotherapy treatment. This evidence provides leads to improve progression-free survival and quality of life of patients suffering from one of the leading causes of cancer death worldwide.