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Breast Cancer clinical trials

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NCT ID: NCT05013255 Recruiting - Breast Cancer Clinical Trials

Pioglitazone Therapy Targeting Fatigue in Breast Cancer

Start date: December 23, 2021
Phase: Phase 2
Study type: Interventional

The goal of this project is to evaluate the therapeutic potential of pioglitazone (PIO) to target underlying mechanisms that promote muscle fatigue in patients with breast cancer. This represents an off-label use of this compound, both in terms of the patient population and the clinical phenotype targeted. The central research hypothesis of this study is that daily pioglitazone will restore transcriptional downregulation of pathways within skeletal that promote fatigue.

NCT ID: NCT05011721 Recruiting - Breast Cancer Clinical Trials

Digital Phenotyping in Young Breast Cancer Patients Treated With Neoadjuvant Chemotherapy

NeoFit
Start date: September 20, 2021
Phase: N/A
Study type: Interventional

NeoFit is a prospective, national, multicenter, single-arm open-label study. It will include a total of 300 participants under the age of 70 years treated with neoadjuvant chemotherapy for BC. Participants will receive a Withing Steel HR activity tracker, which they will be asked to wear 24 h per day for 12 months. The principal assessments will be performed at baseline, at the end of neoadjuvant chemotherapy and at 12 months. The investigators will evaluate clinical (e.g. toxicity, efficacy of chemotherapy), lifestyle, quality of life, fatigue, and physical activity parameters. All questionnaires will be completed on a REDCap form, via a secure internet link.

NCT ID: NCT05010356 Recruiting - Breast Cancer Clinical Trials

Insulin Sensitivity After Breast Cancer

Start date: August 2021
Phase: N/A
Study type: Interventional

Epidemiological studies have revealed that 60-80% of women with breast cancer (BC) develop metabolic disorders that are similar to those observed in conditions like type 2 diabetes. These metabolic disorders, including insulin resistance, obesity, hyperinsulinemia, and glucose intolerance, are associated with increased BC recurrence and mortality. Skeletal muscle is the major site of glucose uptake in humans. The aims of the present project are to 1) determine the involvement of insulin resistance in skeletal muscle in the metabolic disorders prevalent in BC survivors, 2) identify BC-and/or treatment-induced molecular changes in skeletal muscle from BC survivors .

NCT ID: NCT05007444 Recruiting - Breast Cancer Clinical Trials

Safety and Efficacy Evaluation of the P2Et Extract in Patients With Breast Cancer

Start date: March 1, 2022
Phase: Phase 2
Study type: Interventional

Currently, the study of many extracts in different types of cancer has allowed the validation of scientific knowledge either as a therapy that reduces the size of the tumor or that helps to improve the quality of life of the patient by reducing the associated effects of the treatment. In the Immunobiology and Cell Biology group of the Pontificia Universidad Javeriana, a standardized extract of Caesalpinia spinosa (Dividivi) called P2Et has been obtained. This extract has been shown to have cytotoxic activity in different human and murine tumor cell lines, favoring the induction of immunogenic cell death with the release of danger signals such as calreticulin, HMGB1 and ATP. Additionally, treating mice with murine melanoma and sinus tumors significantly reduces tumor size and metastases. On the other hand, induction of complete autophagic flux and synergistic effects with anthracycline-type chemotherapeutics have been shown in human cell lines and in animal models of breast cancer. With this background, and the results of the Phase I clinical study carried out in healthy volunteers that showed that the extract is safe, the investigators propose that treatment with the P2Et extract in patients with breast cancer could improve their general condition, impacting their quality of life. , and induce antitumor immune response, improving the immune infiltrate and acting as a transforming agent from a cold tumor to a warm tumor. This would lead to an improvement in the long-term survival of patients treated with the phytomedicine in conjunction with the chemotherapeutic treatment selected by the treating oncologist. In order to advance on this path, and responding to the adjustments suggested in the phase I study in healthy individuals, it is proposed to carry out a clinical study that allows determining the optimal biological dose of the P2Et extract in a design based on randomized simulations of adaptive form and considering the safety of the extract as an objective in patients with breast cancer. Additionally, those parameters that allow defining the best indicators of effectiveness of P2Et in this group of patients will be evaluated, such as modulation of the immune response, quality of life, reduction of adverse effects and progression-free survival.

NCT ID: NCT05006196 Recruiting - Breast Cancer Clinical Trials

Contrast-Free Magnetic Resonance Imaging for Breast Disease

IMOGEN
Start date: July 6, 2021
Phase:
Study type: Observational

Prospective, observational cohort study looking at patients either at risk of breast cancer or have clinically suspected breast to assess the diagnostic performance of quantitative, non-contrast MRI.

NCT ID: NCT05003635 Recruiting - Clinical trials for Breast Cancer Female

External Vacuum Expansion: Evaluation in Breast Reconstructive Surgery Evaluation in Breast Reconstructive Surgery

EVE
Start date: July 12, 2021
Phase: N/A
Study type: Interventional

This multicentre randomized controlled trial aims to evaluate a new breast reconstruction technique- autologous fat transfer (AFT). Female patients with breast cancer schedule to receive a mastectomy (or having undergone mastectomy in the past) will be randomized to undergo breast reconstruction with either AFT with the EVEBRA device(intervention group) or AFT without the EVEBRA device (control group). AFT will be evaluated in terms of volume, quality of life, aesthetic result, complications and oncological safety.

NCT ID: NCT05000294 Recruiting - Breast Cancer Clinical Trials

Atezolizumab Plus Tivozanib in Immunologically Cold Tumor Types

Start date: December 7, 2021
Phase: Phase 1/Phase 2
Study type: Interventional

Checkpoint inhibitor therapy represents a significant advance in cancer care. The interaction between PD-1 and PD-L1 induces immune tolerance, and the inhibition of this interaction is an effective treatment strategy for numerous malignancies. Despite its demonstrated potential, immunotherapy is not currently thought to be an effective intervention in the treatment of several immunologically "cold" tumors such as prostate cancer, biliary tract cancers, soft tissue sarcomas, well-differentiated neuroendocrine tumors, microsatellite stable colorectal cancer, pancreatic cancer, and non-triple negative breast cancer. Vascular endothelial growth factor (VEGF) is thought to play a key role in modulating the anti-tumor immune response. Vascular endothelial growth factor (VEGF) is secreted by tumors and leads to endothelial cell proliferation, vascular permeability, and vasodilation. This in turn leads to the development of an abnormal vasculature with excessive permeability and poor blood flow, limiting immune surveillance. In addition, VEGF inhibits dendritic cell differentiation, limiting the presentation of tumor antigens to CD4 and CD8 T cells. Vascular endothelial growth factor (VEGF). VEGF tyrosine kinase inhibitors (TKIs) VEGF-TKIs are currently utilized in the treatment of a variety of malignancies and are widely utilized in combination with checkpoint blockade in the treatment of clear cell kidney cancer. Through the inhibition of VEGF, it may be possible to potentiate the effect of immune checkpoint blockade even in tumors which have traditionally been thought to be unresponsive to immunotherapy. This study aims to evaluate the combination of the immune checkpoint inhibitor atezolizumab and the VEGF-TKI tivozanib in a variety of tumors which have a low response rate to checkpoint inhibitor therapy alone.

NCT ID: NCT04999917 Recruiting - Breast Cancer Clinical Trials

Specimen PET-CT Imaging for Intraoperative Margin Assessment in Breast Cancer

BrIMA
Start date: June 17, 2022
Phase: N/A
Study type: Interventional

Breast-conserving surgery (BCS) has become the standard-of-care for surgical management of the majority of women with early-stage breast cancer. Successful BCS entails excision of the tumor with an adequate amount of surrounding healthy breast parenchyma, such that negative resection margins are obtained. Despite efforts to obtain tumor-free margins, approximately 20-30% of women still require reoperation. The rationale of this study is to examine the contribution of the adjunctive use of perioperative high-resolution PET-CT specimen imaging in early-stage breast cancer to the identification of all positive resection margins during breast-conserving surgery. Histopathological findings of the breast tumor specimen are applied as the gold standard. After a successful screening phase and after informed consent is provided, the patient will enroll the study. The preparations for the BCS proceed following the routine protocol (i.e. as if the patient would not participate in the study). In addition to these standard preparations, on the day of surgery the patient will receive a study-specific injection with a low dose of a radiotracer substance (18F-FDG; 0.8 MBq/kg). Before injection, the blood sugar level will be measured by a small finger prick. If the blood sugar level is good, the radiotracer substance will be intravenously administered. The injection is given at the nuclear medicine department between 30 minutes and 3 hours before surgery. After the injection was given, the patient will be transferred to the operating theatre. The breast tumor will be removed in the same way as if the patient is not participating in the study. As soon as the tumor is excised, it will be imaged using the specimen PET-CT scanner in the operating theatre. While waiting for these 3D images, the surgeon will remove the lymph nodes, if applicable. The breast surgeon will then evaluate the 3D images of the removed breast tumor. In case of suspected positive margins, the surgeon will excise additional breast tissue to ensure that all tumor tissue is excised during this surgery. For scientific purposes only and if available, the cavity shaves and resected lymph nodes will also be imaged with the specimen PET-CT scanner. No clinical decisions that could affect further treatment will be based on this. After surgery, all excised tissues will be sent to the pathology department. This is standard routine and is also done for patients not participating in the study. A routine follow-up visit will be planned with the surgeon. During that routine visit, a staff member of the study team will ask additional study-related questions regarding possible complications. If the latter is not possible during the standard follow-up visit, a staff member of the study team will contact the patient by phone call 1-3 weeks after surgery. The study is completed after this follow-up visit or phone call.

NCT ID: NCT04998682 Recruiting - Breast Cancer Clinical Trials

Prospective Evaluation of Targeted Axillary Dissection (TAD)

TAD
Start date: March 1, 2022
Phase: N/A
Study type: Interventional

The purpose of this research is to evaluate how to manage the axillary lymph nodes in patients with breast cancer. The investigators will determine if a sampling of the lymph nodes under the arm will give the information necessary to determine if fewer lymph nodes can be removed.

NCT ID: NCT04997798 Recruiting - Breast Cancer Clinical Trials

Dalpiciclib in Combination With Exemestane and Trastuzumab Plus Pyrotinib in Early Triple Positive Breast Cancer

Start date: September 1, 2022
Phase: Phase 2
Study type: Interventional

This is a phase II open-label, multicenter trial assessing the efficacy of combination regimen"Dalpiciclib plus Exemestane plus trastuzumab plus pyrotinib"in early triple positive breast cancer patients.