View clinical trials related to Uterine Cervical Neoplasms.
Filter by:Standard treatment for gynecological cancer is radiation therapy in two phases; whole pelvic radiation and then an internal radiation boost, also called a brachytherapy boost, to treat any remaining tumour. The purpose of this study is to test an alternative radiation boost treatment called conformal intensity modulated radiation therapy or IMRT. Currently, we do not have complete information on the overall effectiveness of IMRT compared to brachytherapy or conformal radiotherapy. We know that IMRT allows the radiation beams to be more accurately focused on the tumor, thereby sparing more normal tissue from radiation damage and lowering risks of side effects. We are investigating the extent to which IMRT can be used to protect normal tissues in patients with cervix, uterine or vaginal cancer from the radiation beams and how much the side effects of radiation are reduced.
The aim of this study is to measure the oxygen content and interstitial fluid pressure in cervix cancer patients. Tumour oxygen content and internal pressure of tumours may be an important factor that influences the effectiveness of radiotherapy and other treatments.
The purpose of this study is first to establish what is the ideal dose of gemcitabine, a chemotherapy agent, when given in combination with radiation. In addition, the investigators want to determine the side effects and the effectiveness of this combination. The investigators will also study several markers to try to identify markers or tests that will predict which patients will benefit more from this treatment.
Thermal therapy (hyperthermia of heat) can increase the effect of chemotherapy treatments. By itself, thermal therapy can also kill cancer cells. By using thermal therapy to treat the whole body, the investigators can treat cancer cells wherever they are throughout the entire body. In this study, the investigators are testing the combination of thermal therapy combined with chemotherapy to see: 1. if it improves the effect of the chemotherapy drugs, 2. if it helps the body fight the cancer cells, and 3. if this treatment is safe for the patient. This study does not offer heat treatment alone. Any patient with advanced or metastatic breast, or endometrial cancer resistant to standard treatment may be treated with the phase II protocol therapy; however, the patient will need to undergo some medical tests to make sure this treatment would be safe for them.
The purpose of this study is to find out how effectively cervix cancer is controlled when radiation is combined with low-dose chemotherapy (Taxotere) . The use of low-dose Taxotere, once per week, with radiation is a new treatment for cervical cancer. This study will also see how well this treatment regimen can be tolerated.
In this study proposal, the investigators will extend their previous studies and examine the kinetic cytotoxic activity with concordant expression of inhibitory natural killer (NK) receptors (iNKR) on activated T cells. The inhibitory role of cytokines will be defined by utilizing the investigators' previously established models of mixed lymphocytes and tumor cells coculture to analyze the expression and activity of cytokines involved in the regulation of iNKRs on cancer-encountered T cells.
The purpose of this study is to investigate the effect of certain variables such as the fullness of the patients bladder and the position of the treatment applicator on the dose of radiation that other organs such as the bladder and the rectum receive during radiation treatment for endometrial carcinoma.
Cervical cancer the most frequent neoplasm and the third mortality rate of malignancies of the women in the world. It results in about 200,000 women dying of cervical cancer each year worldwide. The available forms of treatment-surgery, radiation therapy, and chemotherapy are all cytoreductive treatment modalities, so in addition to killing cancerous cells, healthy cells are also destroyed in the process. Indeed, there is a need to decrease the incidence of cervical cancer and develop better forms of its treatment. Human papilloma viruses (HPV) have been consistently implicated in causing cervical cancer especially those high-risk types (HPV 16,18,31,45) have been strongly associated with cervical cancer. HPV 16 was found in more than 50% of cervical cancer tissues. So the host immune response plays an important role in determining the regression of cervical abnormality or persistence and progression to malignancy via targeting HPV. The ideal cancer treatment should be able to eradicate systemic tumors at multiple sites in the body while having the specificity to discriminate between neoplastic and nonneoplastic cells. In this regard, antigen-specific cancer immunotherapy represent an attractive approach for cancer treatment. It is now clear that major histocompatibility complex (MHC) class I restricted CD8+ T cytotoxic cells are critical to the generation of antitumor immunity. Cell-mediated responses are critical in anti-tumor immunity. By cooperating with Dr. TC Wu in Johns Hopkins Medical Institutes, we have recently developed some E7-specific cancer vaccines of different strategies such as DNA, or replication-defective SINrep5 virus. We found that these E7-chimeric DNA vaccines are capable of preventing and treating the growth of murine model tumors expressing E7. These positive results from the preclinical murine models have encouraged us to focus on the development of cancer vaccine and immunotherapy and apply these vaccines to human subjects. However, it is very important to set up various E7-specific immunologic assays of human being to evaluate the effect of cancer vaccine or immunotherapy in the future clinical trials. So we would like to provide this proposal to address on the development of HPV 16 E7-specific immunologic assays in human being.
Chemotherapy is the current standard treatment for unresectable recurrent cervical carcinoma after radiotherapy or distant metastasis of cervical carcinoma. The most effective regimens are cisplatin-based chemotherapy. After failure of the cisplatin-based chemotherapy, there is still no treatment that has been proved to be effective. Human papilloma viruses (HPV) have been consistently implicated in causing cervical cancer especially those high-risk types (HPV 16,18,31,45) have been strongly associated with cervical cancer. HPV 16 was found in more than 50% of cervical cancer tissues. Results from many animal tumor models have indicated that immunization with tumor antigen-pulsed dendritic cells can trigger a long-lasting anti-tumor immune response and significantly inhibit the growth of implanted tumor cells. Recently, many clinical trials have been conducted to evaluate the feasibility and safety of immunizing cancer patients with tumor antigen-pulsed dendritic cells. No severe toxicity has been reported and some patients were shown to respond to the treatment. Based on previous animal and clinical studies by other investigators, we propose to evaluate the potential of immunizing cancer patients with antigen-pulsed autologous dendritic cells as a cancer vaccine to treat for recurrent cervical cancers after failure of cisplatin-based chemotherapy treatment or refusing chemotherapy. In this study, we will generate dendritic cells by culturing patient's autologous PBMC with GM-CSF and IL-4 in vitro. These dendritic cells will be pulsed with synthetic peptides representing the CTL epitopes on HPV Type 16 E7. Antigen-pulsed dendritic cells will be injected into inguinal lymph nodes under the guidance of real-time sonography. Each patient will receive four injections and 12 patients in total will be recruited for this study.
Carcinoma of the uterine cervix is a serious health problem. Cervical cancer is the most common malignant neoplasm of women in Taiwan. There were 2,720 new cases of invasive carcinoma of the cervix and 971 deaths from the disease in 2000. Cervical cancer is indeed is an important disease in Taiwan. The primary therapies for cervical cancer are surgery, radiotherapy or chemoradiotherapy. Several clinical trials have showed that an improvement in time to progression and survival for patients given chemoradiotherapy compared with radiotherapy alone. Chemoradiotherapy is now regarded as standard modality to treat the locally advanced (stage IIB–IVA) or high-risk early-stage cervical cancer. However, some of the cervical cancer patients still failed to response to the treatment of cervical cancer or relapsed for completion of treatment. Angiogenesis plays an important role in the pathogenesis of cancer. Recent studies have related angiogenesis to cancer growth and metastasis Ultrasonography has been used in the gynecologic field for decades. The previous studies of our team have shown that incremental angiogenesis could be demonstrated in the tumorigenesis of ovarian, endometrial malignancies, and cervical caner. Besides, other growth factors such as vascular endothelial growth factor (VEGF), and IL-6 have also been reported to correlate with the angiogenesis and the prognosis of cervical cancer. It seems that tumor angiogenesis could be utilized as a good marker to survey the severity of disease and prognosis of early-staged cervical cancer patients. There is no good method or marker which could be utilized to monitor the response of radiotherapy and evaluate the prognosis of cervical cancer patients with advanced stages. So we would like to propose this proposal to focus on the tumor angiogenesis in cervical cancer patients with advanced stages. There are several purposes in this study. First, we will evaluate the kinetic changes of tumor angiogenesis in cervical cancer patients who receive radiotherapy or concurrent chemoradiotherapy. Second, we will evaluate that if the tumor angiogenesis could be a marker to monitor the response of radiotherapy or chemoradiotherapy in cervical cancer patients. The relation between tumor angiogenesis and radiotherapy will be explored and clarified by this study. The comprehensive role of tumor angiogenesis in cervical cancer will be elucidated by the results of this study.