Loss of STARD7 Triggers Metabolic Reprogramming and Cell Cycle Arrest in Breast Cancer
Breast cancer cells undergo metabolic and transcriptomic reprogramming to support aberrant cell proliferation. Their mitochondria rely on the transfer of phosphatidylcholine from the endoplasmic reticulum to their membranes by STARD7, a candidate upregulated in breast cancer, to be functional.
Ewelina Dondajewska+18 more
wiley +1 more source
Ferroptosis involves in intestinal epithelial cell death in ulcerative colitis [PDF]
Minyi Xu+7 more
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Bioinformatic Analysis and Molecular Docking Identify Isorhamnetin Is a Candidate Compound in the Treatment of Pulmonary Artery Hypertension. [PDF]
Shao C, Xia W, Liu Y.
europepmc +1 more source
Pannexin 1 mediates ferroptosis that contributes to renal ischemia/reperfusion injury
L. Joseph Su+10 more
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DECR1 is an androgen-repressed survival factor that regulates PUFA oxidation to protect prostate tumor cells from ferroptosis [PDF]
Zeyad D. Nassar+15 more
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Role of GPX4-Mediated Ferroptosis in the Sensitivity of Triple Negative Breast Cancer Cells to Gefitinib [PDF]
Xiang Song+3 more
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Mitochondrial Regulation of CD8⁺ T Cells: Mechanisms and Therapeutic Modulation
This article comprehensively explores the pivotal role of mitochondrial function in CD8⁺ T cell immunotherapy. It highlights how mitochondrial dynamics regulate T cell activation, differentiation, and persistence, and how mitochondrial dysfunction leads to immune exhaustion and impaired antitumor/antiviral responses.
Xu Chen+7 more
wiley +1 more source
From mitochondrial dysregulation to ferroptosis: Exploring new strategies and challenges in radioimmunotherapy (Review). [PDF]
Wang T+10 more
europepmc +1 more source
While opto-genetics has proven to have tremendous value in revealing the functions of the macromolecular machinery in cells, it is not amenable to exploration of small molecules such as phospholipids (PLs).
core
Bidirectional Interaction Between the Brain and Bone in Traumatic Brain Injury
Traumatic brain injury (TBI) disrupts the blood–brain barrier and activates neuroimmune responses, causing metabolic disturbances and long‐term bone mass loss. Concurrent fractures accelerate healing and enhance osteogenesis but disrupt regulatory mechanisms, leading to altered bone dynamics and exacerbating neuroinflammation, complicating recovery ...
Wei Zhang, Jun Zou, Lingli Zhang
wiley +1 more source