View clinical trials related to Breast Neoplasms.
Filter by:This is an open-lable, multicenter, and single arm phase II trial to evaluate treatment with KN026 plus docetaxel as neoadjuvant therapy in patients with early-stage (T1c or 2, N1, M0; T2 or 3, N0, M0) or locally advanced (T1c or 2 or 3, N2, M0; T3N1M0; T1c or 2 or 3, N3a or 3b, M0) HER2-positive breast cancer. The subjects will receive KN026 30 mg/kg IV + Docetaxel 75/m2 every 3 weeks for four cycles prior to surgery.
Prospective assessment of Quality of Life in patients with locally recurrent breast cancer after close R0, R1 or R2 resection or local inoperability and hyperthermic radiotherapy.
The purpose of this study is to test an innovative MRI breast cancer screening method in women with mammographically dense breasts as well as other women with moderately increased cancer risk. MRI, combined with other methods of risk assessment, has potential to significantly improve sensitivity to cancer in dense breasts and detect cancer in all cases at a much earlier stage, with far fewer interval cancers than mammography. Previous tests of MRI sensitivity show that this screening could significantly increase the likelihood of detecting invasive cancers resulting in decreased mortality from breast cancer. Suspicious lesions will be defined by the clinical interpretation of the breast MRI images performed by the attending breast radiologists. Based on the radiologist determination that the MRI findings are suspicious (these findings include masses, non-mass enhancement and foci), suspicious lesions will be assigned a Bi-Rads code specifying whether additional work up or biopsy is necessary. These are Bi-Rads codes 0, 4 and 5. False positive diagnosis should be minimized as all attending physicians reading breast MRI at this institution are fellowship trained in breast imaging.
The objectives of this study are: 1) To design and implement the PaiNEd system for the evaluation and treatment based on Pain Neuroscience Education (PNE) in cancer survivors with sequelae derived from medical treatments; 2) Study the effectiveness of the PaiNEd system integrated in a multimodal physical recovery program compared to traditional biomedical information. This project aims to first carry out the design and implementation of an e-health system for the evaluation and treatment of pain. A randomized controlled experimental study will be carried out in which 72 breast cancer survivors will be recruited and randomly assigned to three study groups.
The purpose of this study is to evaluate the efficacy and safety of Sintilimab plus anlotinib combined with chemotherapy as neoadjuvant therapy in participants who have triple negative breast cancer (TNBC). After a screening phase of approximately 28 days, each participant will receive neoadjuvant study treatment (Sintilimab + anlotinib + chemotherapy) based on schedule for approximately 24 weeks (8 cycles). Each participant will then undergo definitive surgery 4-6 weeks after conclusion of the last cycle of the neoadjuvant study treatment. Following adjuvant study treatment, each participant will be monitored for safety, survival and disease recurrence. The primary outcome measure is pathological complete response (pCR) rate using the definition of ypT0/Tis ypN0.
Triple negative breast cancer (TNBC) is the most aggressive of breast cancers and it is usually treated with chemotherapy even before surgery. In many cases, the chemotherapy completely "melts" the tumor and these patients do well. When the tumor is not eliminated by the chemotherapy, the patient receive more chemotherapy after surgery to decrease the chances of it coming back. Yet many of these patients don't need that extra chemotherapy and will do well in any case. One of the most exciting recent developments in cancer is the use of "liquid biopsies". It turns out that the tumor's DNA, RNA and proteins can be detected in small vesicles found in the patient's blood. Thanks to advances in Artificial Intelligence, there is now informatics tools to integrate many types of molecular information. Our industrial partner, MIMs, will apply novel informatics tools to generate a test using all the molecular information obtained from blood vesicles and tissue that will be able to find out early if tumor has spread outside of the breast, and how much tumor is left after surgery. The goal is hope to develop a multi-dimensional test for TNBC patients that can be used to decide how much treatment they need and if treatment given after surgery is working.
Phase III, international multicentre, parallel group, blinded, 1:1 randomized controlled trial to determine the effect of an intraoperative intravenous lidocaine infusion on reducing the development of persistent pain 3-months after breast cancer surgery.
This is a Phase III, two-arm, randomized, double-blind placebo-controlled study in participants with HER2-positive primary breast cancer who have received preoperative chemotherapy and HER2-directed therapy, including trastuzumab followed by surgery, with a finding of residual invasive disease in the breast and/or axillary lymph nodes. As of June 4, 2024, this study is no longer accepting any newly screened participants.
This is a Phase II, single-center, double-blind, placebo-controlled, randomized study of Pyrotinib in combination with Doxorubicin/Epirubicin and Cyclophosphamide followed by Docetaxel/nab-Paclitaxel as neoadjuvant therapy for women with hormone receptor positive HER2-negative stage II to III breast cancer. Patients randomized to the study arm/control arm will receive standard neoadjuvant chemotherapy in combination with pyrotinib/placebo, respectively. The primary endpoint of the study is the total pathological complete response (pCR) rate. Secondary endpoints include the pCR rate in breast only, objective response rate(ORR), event-free survival, overall survival, and toxicity. We will also explore potential prognostic and predictive biomarkers.
This is a multicenter, open label, nonrandomized, sequential dose escalation/cohort expansion, multiple dose study designed to evaluate the safety, toxicity, and PK as well as preliminary efficacy of BTX-A51 in subjects with advanced solid tumors and breast cancer. The study will be done in two phases, described below. Phase 1a (Dose Escalation Phase): The Phase 1a portion is designed to determine the dose limiting toxicities (DLTs), maximum tolerated dose (MTD), and recommended Phase 2 dose (RP2D) of orally administered BTX-A51. BTX-A51 will be administered once daily on a weekly schedule of 5 days on/2 days off. Dose escalation will proceed according to a modified 3+3 design. Each cycle will consist of 28 days (4 weeks), and the DLT observation period will be the first cycle (i.e., 28 days after initiation of dosing). A DLT may be observed in no more than 0 out of 3 or 1 out of 6 subjects who have completed the DLT observation period before the next cohort initiates accrual. Barring DLT, sequential dose escalation of BTX-A51 is planned with up to a total of 6 dose levels; on the basis of these an MTD will be identified. The MTD is defined as the highest dose level with a subject incidence of DLTs of 0 or 1 out of 6 during the first 28 days of study drug dosing. A minimum of 6 subjects needs to be treated at a dose level before this dose level can be deemed as the MTD. Phase 1b (Cohort Expansion Phase): Dose expansion may begin when the RP2D has been determined. Up to 40 additional subjects will be enrolled to evaluate safety and preliminary efficacy of BTX-A51 in subjects with estrogen receptor positive (ER+), human epidermal growth factor receptor 2 negative (HER2-), GATA3 mutant (mt) and wild-type (wt) metastatic breast cancer (mBC). Dosing in this phase of the study consists of the first cycle of therapy (i.e., 28 days).