Ischemia/reperfusion(I/R)injury ismarked by the restriction and subsequent restoration of blood supply to an organ.This process can exacerbate the initial tissue damage,leading to further disorders,disability,and even...Ischemia/reperfusion(I/R)injury ismarked by the restriction and subsequent restoration of blood supply to an organ.This process can exacerbate the initial tissue damage,leading to further disorders,disability,and even death.Extracellular vesicles(EVs)are crucial in cell communication by releasing cargo that regulates the physiological state of recipient cells.The development of EVs presents a novel avenue for delivering therapeutic agents in I/R therapy.The therapeutic potential of EVs derived from stem cells,endothelial cells,and plasma in I/R injury has been actively investigated.Therefore,this review aims to provide an overview of the pathological process of I/R injury and the biophysical properties of EVs.We noted that EVs serve as nontoxic,flexible,and multifunctional carriers for delivering therapeutic agents capable of intervening in I/R injury progression.The therapeutic efficacy of EVs can be enhanced through various engineering strategies.Improving the tropism of EVs via surface modification and modulating their contents via preconditioning are widely investigated in preclinical studies.Finally,we summarize the challenges in the production and delivery of EV-based therapy in I/R injury and discuss how it can advance.This review will encourage further exploration in developing efficient EV-based delivery systems for I/R treatment.展开更多
Ferroptosis is a novel form of regulated cell death characterized by iron-dependent excessive lipid peroxidation.The core organelle involved in ferroptosis is mitochondria.Mito-chondria undergoing ferroptosis are dist...Ferroptosis is a novel form of regulated cell death characterized by iron-dependent excessive lipid peroxidation.The core organelle involved in ferroptosis is mitochondria.Mito-chondria undergoing ferroptosis are distinct from normal mitochondria in terms of morphology,biochemistry,gene expression,and energy metabolism.An increasing number of studies have shown that mitochondria and their associated metabolic pathways mediate ferroptosis in the development and progression of breast cancer.In this review,we discuss the relevant research about ferroptosis in breast cancer and provide a comprehensive summary of mitochondrial regulation in ferroptosis from the perspective of lipid metabolism,oxidative phosphorylation,ion metabolism,glycometabolism,and nucleotide metabolism.We also summarize the appli-cation of mitochondrial metabolism-related pathways as ferroptosis treatment targets.Here we provide new insights into the relationship between mitochondria,ferroptosis,and breast cancertreatment.展开更多
基金This work was supported by the National Natural Science Foundation of China(U22A20383,82003668)the Natural Science Foundation of Zhejiang Province(LD22H300002,LQ21H300002)Ningbo Technology Innovation 2025 Major Special Project(2022Z150).
文摘Ischemia/reperfusion(I/R)injury ismarked by the restriction and subsequent restoration of blood supply to an organ.This process can exacerbate the initial tissue damage,leading to further disorders,disability,and even death.Extracellular vesicles(EVs)are crucial in cell communication by releasing cargo that regulates the physiological state of recipient cells.The development of EVs presents a novel avenue for delivering therapeutic agents in I/R therapy.The therapeutic potential of EVs derived from stem cells,endothelial cells,and plasma in I/R injury has been actively investigated.Therefore,this review aims to provide an overview of the pathological process of I/R injury and the biophysical properties of EVs.We noted that EVs serve as nontoxic,flexible,and multifunctional carriers for delivering therapeutic agents capable of intervening in I/R injury progression.The therapeutic efficacy of EVs can be enhanced through various engineering strategies.Improving the tropism of EVs via surface modification and modulating their contents via preconditioning are widely investigated in preclinical studies.Finally,we summarize the challenges in the production and delivery of EV-based therapy in I/R injury and discuss how it can advance.This review will encourage further exploration in developing efficient EV-based delivery systems for I/R treatment.
基金sponsored and funded by the Shanghai Sailing Program(China)(No.22YF1424500 to Xiaonan Sheng)the Science and Technology Commission of Huaian Municipality,Jiangsu,China(No.HAB202209 to Aijun Sun).
文摘Ferroptosis is a novel form of regulated cell death characterized by iron-dependent excessive lipid peroxidation.The core organelle involved in ferroptosis is mitochondria.Mito-chondria undergoing ferroptosis are distinct from normal mitochondria in terms of morphology,biochemistry,gene expression,and energy metabolism.An increasing number of studies have shown that mitochondria and their associated metabolic pathways mediate ferroptosis in the development and progression of breast cancer.In this review,we discuss the relevant research about ferroptosis in breast cancer and provide a comprehensive summary of mitochondrial regulation in ferroptosis from the perspective of lipid metabolism,oxidative phosphorylation,ion metabolism,glycometabolism,and nucleotide metabolism.We also summarize the appli-cation of mitochondrial metabolism-related pathways as ferroptosis treatment targets.Here we provide new insights into the relationship between mitochondria,ferroptosis,and breast cancertreatment.