View clinical trials related to Bone Metastases.
Filter by:As in other solid tumours, increasing evidence indicates that patients diagnosed with a limited number of prostate cancer metastases, so-called oligometastases, have a better prognosis compared with patients with extensive metastatic disease. Survival of patients with three or fewer metastases was superior compared with patients with more than three lesions. The introduction of novel imaging modalities such as Fluorocholine (FCH), Fuciclovine or Ga-PSMA PET CT has increased the detection of oligometastatic prostate cancer (PCa) recurrence, potentially justifying the use of a metastasis-directed therapy with radiotherapy (RT). Based on several studies, SBRT is now considered as a strongly validated option in oligometastatic prostate cancer. It is increasingly understood that cancers are recognized by the immune system, and, under some circumstances, the immune system may control or even eliminate tumors. Programmed death-ligand 1 (PD-L1) is transmembrane protein that has been speculated to play a major role in suppressing the immune system during particular events. PD-L1 is expressed in a broad range of cancers. Based on these findings, an anti-PD-L1 antibody could be used therapeutically to enhance antitumor immune responses in patients with cancer. Experimental data from multiple cancer models have provided cumulative evidence of an interaction of ionizing radiation with the systemic antitumor immunity and this has created several opportunities in the field. The oligometastatic setting appears to be the most relevant clinical situation to evaluate the immune response generated by radiotherapy and immune modifiers in patients with an intact immune system. The hypothesize is that Durvalumab will enhance immune response following SBRT targeting oligometastatic lesions. In this randomized 2:1 phase II trial of Stereotactic Body Radiation Therapy with or without durvalumab in oligometastatic hormone sensitive prostate cancer patients, Durvalumab will be started one month prior to SBRT to be able to evaluate PSA and immune response to the drug. It will be combined with SBRT and then given adjuvantly for a total of 12 months.
This is a clinical trial from Eastern Cooperative Thoracic Oncology Project (ECTOP), numbered as ECTOP-1006. In this prospective one-arm observational study, bone scintigraphy will be performed in T1N0M0 NSCLC patients with GGO lesion and other low risk factors of bone metastasis. The occurrence rate of bone metastasis in these patients will be analyzed to evaluate the necessity of bone scintigraphy in cT1N0M0 NSCLC patients.
GSK-3β is a potentially important therapeutic target in human malignancies. The Actuate 1801 Phase 1/2 study is designed to evaluate the safety and efficacy of 9-ING-41, a potent GSK-3β inhibitor, as a single agent and in combination with cytotoxic agents, in patients with refractory cancers.
Bone metastases are common in Non-Small Cell Lung Cancer (NSCLC). They most often occur during disease progression. It is thought that more than half of the patients with bone metastases will have at least 1 skeletal-related event (SRE, i.e. pathological fractures, medullary compression, analgesic radiotherapy, preventive and/or analgesic surgery and hypercalcemia). Expert and medical Society guidelines, notably European Society for Medical Oncology in 2014, then in 2016, recommended using anti-resorptive agents (bisphosphonates or denosumab) to prevent SREs, attenuate pain and improve the quality of life, and decrease the medical-economic impact of this major metastatic site. Denosumab was accorded marketing authorization in France in 2011 as an anti-resorptive agent for bone metastases to delay the occurrence of SREs in lung-cancer patients. Immunotherapy, notably immune-checkpoint inhibitors, like nivolumab (anti-programed death-1), has recently become an integral part of the therapeutic arsenal against NSCLCs. Nivolumab was accorded marketing authorization based on the phase III CHECKMATE 017 (squamous cell NSCLCs) and CHECKMATE 057 (non-squamous cell NSCLCs) trials versus docetaxel, after the phase II CHECKMATE 063 trial. The denosumab-nivolumab combination is commonly used in current practice but has not been evaluated prospectively. The aim of this trial is to evaluate the combination of denosumab and nivolumab in second line of NSCLC with bone metastases.
In patients with cancer induced bone pain, addition of Syndros will improve pain relief and decrease opioid requirement.
This is a dose finding study of a novel radiopharmaceutical agent, 153Sm-DOTMP. It will be studied alone and then in combination with external beam radiotherapy. The study design includes six cohorts, Levels 1-6. The first three cohorts of participants will receive 153Sm-DOTMP alone, and if this is determined to be safe, subsequent cohorts will receive the radiopharmaceutical followed by external beam radiotherapy.
Interventional study without medicinal, randomized 1: 1 open-label, multicenter, phase 3 to evaluate the response in terms of reduction of pain symptomatology from bone metastases, comparing the conformational radiotherapy (3D-CRT) administered in conventional fractionation vs. extracranial stereotactic radiotherapy (SBRT) administered with concomitant integrated simultaneous boost (Simultaneous Integrated Boost-SIB)
HIPPON 100 is a national, multicentre, prospective, retrospective, descriptive and non-interventional study, in patients having a Y-STRUT® medical device implanted to prevent a high risk of impending pathological fracture. The primary objective of this study is to evaluate the performance of the studied medical device by measuring the frequency of patient with a fracture at the implantation site within 1 year after implantation. A total of 100 patients from France will be enrolled (until November 2018) and followed up to 24 months.
Non-randomized, monocentric, observational study to evaluate the response in terms of reduction of painful symptoms from bone metastases to radiotherapy with high personalization of treatment: performed with modern technology, supplied with modulated intensity technique with concomitant integrated boost, according to selection of patients in accordance with prognosis determined by specific prognostic score
JMT103 is a novel, full human IgG4 monoclonal antibody targeting RANKL. In preclinical studies, JMT103 demonstrated strong activity through blocking RANKL receptor, RANK on the surface of osteoclasts, leading to inhibit osteoclast differentiation, activation, and maturation and reduce bone resorption. This first-in-human study is conducted to assess the maximum tolerated dose (MTD) and dose-limiting toxicity (DLT) ,to evaluate the safety, pharmacokinetics and preliminary efficacy (bone turnover markers) of recombinant fully human Anti-RANKL Monoclonal Antibody (JMT103) in patients with bone metastases from tumors at single doses and multiple doses. About 36 cases patients are to be recruited.