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Nano-tumor interactions are fundamental for cancer nanotherapy, and the cross-talk of nanomedicines with the extracellular matrix (ECM) is increasingly considered essential. Here, we specifically investigate the nano-ECM interactivity using drug-free nanoparticulates (NPs) and highly metastatic cancer cells as models. We discover with surprise that NPs closely bind to specific types of ECM components, namely, retraction fibers (RFs) and migrasomes, which are located at the rear of tumor cells during their migration. This interaction is observed to alter cell morphology, limit cell motion range and change cell adhesion. Importantly, NPs are demonstrated to inhibit tumor cell removal , and their anti-metastasis potential is preliminarily confirmed . Mechanically, the NPs are found to coat and form a rigid shell on the surface of migrasomes and retraction fibers interaction with lipid raft/caveolae substructures. In this way, NPs block the recognition, endocytosis and elimination of migrasomes by their surrounding tumor cells. Thereby, NPs interfere with the cell-ECM interaction and reduce the promotion effect of migrasomes on cell movement. Additionally, NPs trigger alteration of the expression of proteins related to cell-cell adhesion and cytoskeleton organization, which also restricts cell migration. In summary, all the findings here provide a potential target for anti-tumor metastasis nanomedicines.
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http://dx.doi.org/10.1039/d2nh00067a | DOI Listing |
Sensors (Basel)
August 2025
High Temperature Processes Unit, IMDEA Energy, Av. Ramón de La Sagra, 3, Móstoles, 28935 Madrid, Spain.
Extreme operating conditions in solar receivers of concentrated solar thermal power plants, such as high temperatures, intense irradiance, and thermal cycling, pose significant challenges for conventional sensors. Optical fibers offer a promising alternative for flux measurement in such environments, but their long-term performance and degradation mechanisms require detailed investigation and characterization. This work presents a proof of concept for high solar flux measurement by using optical fibers as photon-capturing elements and showcases the behavior and damage that these optical fibers undergo when exposed to relevant conditions, including temperatures over 600 °C and flux levels exceeding 400 kW/m.
View Article and Find Full Text PDFSkin Appendage Disord
May 2025
Dermatology Department, Dermatologic Institute of Jalisco "Dr. Jose Barba Rubio", Zapopan, Mexico.
Introduction: Frontal fibrosing alopecia is a type of alopecia diagnosed predominantly clinically. A glabellar skin biopsy provides important findings in cases of diagnostic uncertainty, such as red dots, representing the presence of a perifollicular lymphocytic inflammatory infiltrate affecting the vellus hairs.
Case Presentation: A 74-year-old patient with 10 months of progressive frontal hair loss was observed upon examination to show alopecia with a "fringe sign," consistent with a type III pattern of frontal fibrosing alopecia.
Angew Chem Int Ed Engl
August 2025
Cell Death Dis
August 2025
Department of Pharmacy, Nanjing Medical Center for Clinical Pharmacy, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing, China.
Migrasomes are a newly discovered type of organelle, typically located at the tips or intersections of retraction fibers, containing vesicles of various sizes and numbers. During cell migration, migrasomes expand in size, are accompanied by the rupture of retraction fibers, and eventually enter the intercellular space or are absorbed by neighboring cells. Increasing research has shown that migrasomes play crucial roles in cellular growth and development, including maintaining intracellular homeostasis and facilitating intercellular communication.
View Article and Find Full Text PDFRegen Med
July 2025
Department of Stomatology, Lianyungang Clinical College of Nanjing Medical University, The First Affiliated Hospital of Kangda College of Nanjing Medical University, The Affiliated Lianyungang Hospital of Xuzhou Medical UniversityThe First People's Hospital of Lianyungang city, Lianyungang, Jiangsu,
Bone regeneration represents a key objective in bone tissue engineering and involves a series of coordinated biological processes, including immunomodulation, neuroregulation, angiogenesis, and osteogenesis. Recent studies have underscored the therapeutic potential of extracellular vesicles (EVs) in promoting osteogenesis and facilitating the repair of bone defects, supporting their application as a promising cell-free strategy in regenerative medicine. Migrasomes, vesicle-like organelles anchored to retraction fibers and first identified in 2015, have emerged as key mediators in intercellular communication, lateral transfer of mRNA and proteins, and mitochondrial homeostasis.
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