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          Last Updated: 10/31/2025

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          4 clinical trials found

            Inhibiting Beta-adrenergic and COX-2 Signaling During the Perioperative Period to Reduce Ovarian Cancer Progression: A Randomized Placebo-Controlled Clinical Trial

            Summary: This study investigates the impact of perioperative inhibition of beta-adrenergic and COX-2 signaling in ovarian cancer patients undergoing debulking surgery. The trial aims to assess the feasibility, safety, and biological effects of a combination of propranolol and etodolac in reducing cancer metastasis and improving immune responses.

            Perioperative Stress Reduction in Ovarian Cancer (PRESERVE Trial)-A Prospective Randomized Pilot Study

            Summary: The purpose of this study is to see if propranolol and etodolac along with mind-body resilience training/MBRT and music therapy help participants who are experiencing physiological stress before, during, and after primary debulking surgery/PDS or IDS and also if it's better than the standard-of-care approach (no intervention for reducing stress).

            Perioperative Use of a Beta-adrenergic Blocker and a COX-2 Inhibitor in Patients Undergoing Surgery With Primary Pancreatic Cancer: Intervention Aiming to Reduce Pro-metastatic Processes

            Summary: In Israel, of the \ 1000 patients diagnosed annually with pancreatic cancer (PC), approximately 250 (25 percent) will be eligible for curative surgery, of which 80 percent will succumb to post-surgical metastatic disease. A reduction in post-surgical metastatic disease will save dozens of patients in Israel annually, and tens-of thousands-around the world. The short perioperative period (days to w...

            Perioperative Use of a β-adrenergic Blocker, Propranolol, and a COX2 Inhibitor, Etodolac, in Patients Undergoing Resection With Curative Intent for Primary Colon and Rectal Cancer: Effect on Tumor Recurrence and Survival

            Summary: The short perioperative period (days to weeks around surgery) is characterized by stress-inflammatory responses, including catecholamines (CAs, e.g., adrenaline) and prostaglandins (PGs, e.g., prostaglandin-E2) release, and induce deleterious pro-metastatic effects. Animal studies implicated excess perioperative release of CAs and PGs in facilitating cancer progression by affecting the malignant t...

            Showing 1-4 of 4

            Last Updated: 10/31/2025