Tumor metastases that impede the function of vital organs are a major cause of cancer related mortality. Mitochondrial oxidative stress induced by hypoxia, low nutrient levels, or other stresses, such as genotoxic events, act as key drivers of the malignant changes in primary tumors to enhance their progression to metastasis. Emerging evidence now indicates that mitochondrial modifications and mutations resulting from oxidative stress, and leading to OxPhos stimulation and/or enhanced reactive oxygen species (ROS) production, are essential for promoting and sustaining the highly metastatic phenotype. Moreover, the modified mitochondria in emerging or existing metastatic cancer cells, by their irreversible differences, provide opportunities for selectively targeting their mitochondrial functions with a one-two punch. The first blow would block their anti-oxidative defense, followed by the knockout blow-promoting production of excess ROS, capitulating the terminal stage-activation of the mitochondrial permeability transition pore (mPTP), specifically killing metastatic cancer cells or their precursors. This review links a wide area of research relevant to cellular mechanisms that affect mitochondria activity as a major source of ROS production driving the pro-oxidative state in metastatic cancer cells. Each of the important aspects affecting mitochondrial function are discussed including: hypoxia, HIFs and PGC1 induced metabolic changes, increased ROS production to induce a more pro-oxidative state with reduced antioxidant defenses. It then focuses on how the mitochondria, as a major source of ROS in metastatic cancer cells driving the pro-oxidative state of malignancy enables targeting drugs affecting many of these altered processes and why the NSAIDs are an excellent example of mitochondria-targeted agents that provide a one-two knockout activating the mPTP and their efficacy as selective anticancer metastasis drugs.
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N Engl J Med
January 2025
From Bielefeld University, Medical School and University Medical Center Ostwestfalen-Lippe, Campus Hospital Lippe, Detmold, Germany (J.H.); the Department of Radiation Oncology, Medical University of Graz, Graz, Austria (T.B.); the Clinical Trials Unit, Faculty of Medicine and Medical Center, University of Freiburg, Freiburg, Germany (C.S.); the Institute of Surgical Pathology, University Medical Center Freiburg, Germany (P.B.); the Department of Surgery, University Medical Center Schleswig-Holstein-Campus Lübeck, Lübeck, Germany (B.K., T.K.); Comprehensive Cancer Center Augsburg, Faculty of Medicine, University of Augsburg, Augsburg, Germany (R.C.); the Department of General and Visceral Surgery, University Medical Center Freiburg, Freiburg, Germany (S.U.); the Department of General, Visceral, and Thoracic Surgery, University Medical Center Hamburg-Eppendorf, Hamburg, Germany (J.R.I.); the Department of Gastrointestinal Surgery, IRCCS San Raffaele Scientific Institute and San Raffaele Vita-Salute University, Milan (I.G.); the Department of General, Visceral, Thoracic, and Endocrine Surgery, Johannes Wesling University Hospital Minden, Ruhr University Bochum, Minden, Germany (B.G.); the Department of General, Visceral, and Pediatric Surgery, University Medical Center Göttingen, Göttingen, Germany (M.G.); the Department of General, Visceral, Thoracic, Transplantation, and Pediatric Surgery, University Medical Center Schleswig-Holstein-Campus Kiel, Kiel, Germany (B.R.); the Department of General, Visceral, Transplantation, Vascular, and Pediatric Surgery, University Hospital, University of Würzburg, Würzburg, Germany (J.F.L.); the Department of General, Visceral, Cancer, and Transplantation Surgery, University Hospital of Cologne, Cologne, Germany (C.B.); the Department of Hematology and Oncology, Sana Klinikum Offenbach, Offenbach am Main, Germany (E.R.); the Department of Surgery, Klinikum Dortmund, Klinikum der Universität Witten-Herdecke, Dortmund, Germany (M.S.); the Department of Surgery, University Hospital Magdeburg, Magdeburg, Germany (F.B.); the Department of Medicine I, University Hospital Carl Gustav Carus, Technical University Dresden, Dresden, Germany (G.F.); the Department of Hematology, Oncology, and Cancer Immunology, Charité-University Medicine Berlin, Campus Virchow-Klinikum, Berlin (P.T.-P.); the Department of General, Visceral, Cancer, and Transplantation Surgery, University Hospital Essen, Essen, Germany (U.P.N.); the Department of General, Visceral, and Transplantation Surgery, University Hospital Muenster, Muenster, Germany (A.P.); the Department of Radiotherapy and Oncology, Goethe University Frankfurt, University Hospital, Frankfurt, Germany (D.I.); the Division of Gastroenterology, Rheumatology, and Infectology, Department of Medicine, Charité-Universitätsmedizin Berlin, Berlin (S.D.); the Department of Surgery, Robert Bosch Hospital, Stuttgart, Germany (T.S.); the Department of Surgery, University Medical Center Erlangen, Friedrich Alexander University Erlangen-Nürnberg, Erlangen, Germany (C.K.); the Department of Medicine II, Saarland University Medical Center, Saarland University, Homburg, Germany (S.Z.); the Department of General, Visceral, and Transplant Surgery, Ludwig Maximilian University Hospital, Munich, Germany (J.W.); the Department of Internal Medicine I, Klinikum Mutterhaus der Borromaerinnen, Trier, Germany (R.M.); the Departments of Hematology, Oncology, and Palliative Care, Klinikum Stuttgart, Stuttgart, Germany (G.I.); the Department of General, Visceral, and Transplant Surgery, University Medical Center Mainz, Mainz, Germany (P.G.); and the Department of Medicine II, University Cancer Center Leipzig, Cancer Center Central Germany, University Medical Center Leipzig, Leipzig, Germany (F.L.).
Background: The best multimodal approach for resectable locally advanced esophageal adenocarcinoma is unclear. An important question is whether perioperative chemotherapy is preferable to preoperative chemoradiotherapy.
Methods: In this phase 3, multicenter, randomized trial, we assigned in a 1:1 ratio patients with resectable esophageal adenocarcinoma to receive perioperative chemotherapy with FLOT (fluorouracil, leucovorin, oxaliplatin, and docetaxel) plus surgery or preoperative chemoradiotherapy (radiotherapy at a dose of 41.
J Clin Oncol
January 2025
Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA.
Clin Cancer Res
January 2025
The University of Texas MD Anderson Cancer Center, Houston, TX, United States.
Purpose: Trastuzumab deruxtecan (T-DXd) is currently approved for treating metastatic breast cancer (MBC) which is HER2-positive (immunohistochemistry [IHC] score of 3+ or ISH positivity) or HER2-low (IHC score of 1+ or IHC 2+/ISH negative), as well as for HER2-positive gastric cancer, HER2-mutant lung cancer, and HER2 overexpressing solid tumors. Given the increasing utilization of T-DXd, we sought to determine how HER2 receptor status might change following T-DXd therapy.
Design: We retrospectively reviewed patients with MBC who received T-DXd at The University of Texas MD Anderson Cancer Center.
J Bone Joint Surg Am
January 2025
Department of Orthopaedic Oncology, Learning Cancer Outcome Research Program, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Background: Comorbidity indices are used to help to estimate patients' length of hospital stay, care costs, outcomes, and mortality. Increasingly, they are considered in reimbursement models. The applicability of comorbidity indices to patients undergoing orthopaedic oncology surgery has not been studied.
View Article and Find Full Text PDFArq Bras Cir Dig
January 2025
Instituto D'Or de Pesquisa e Ensino, Digestive Surgery Program - Rio de Janeiro (RJ), Brazil.
Complete removal of metastatic disease and maintenance of an adequate liver remnant remains the only treatment option with curative intent concerning colorectal liver metastases. Surgery impacts on the long-term prognosis and complications adversely affect oncological results. The actual morbidity involving this scenario is debatable and estimated to be ranging from 15% to 50%.
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