Normalizing the Microenvironment Overcomes Vessel Compression and Resistance to Nano‐immunotherapy in Breast Cancer Lung Metastasis
Fotios Mpekris(Cyprus Institute of Neurology and Genetics), Triantafyllos Stylianopoulos(University of Cyprus), Kazunori Kataoka(Innovation Center of NanoMedicine), Anastasia Constantinidou(University of Nicosia), Paul Costeas(Deakin University), John D. Martin(Harvard University), Genichiro Ishii(Juntendo University), Naoto Gotohda(Shizuoka Cancer Center), Chryso Pierides(Center for the Study of Childhood and Adolescence), Horacio Cabral(The University of Tokyo), Laura Koumas, Toshiyuki Suzuki(Japan Fisheries Research and Education Agency), Myrofora Panagi(University of Cyprus), Philippos Demetriou(Nuffield Orthopaedic Centre), Motohiro Kojima(Chiba Cancer Center), Shinichiro Takahashi(Shizuoka Cancer Center), Panagiotis Papageorgis(European University Cyprus), Rekha Samuel, Chrysovalantis Voutouri(University of Cyprus)
Cited by 106
Related Papers
Diverse Applications of Nanomedicine
|ACS Nano|2017|1.4k
Lactic acid promotes PD-1 expression in regulatory T cells in highly glycolytic tumor microenvironments
|Cancer Cell|2022|828
The PD-1 expression balance between effector and regulatory T cells predicts the clinical efficacy of PD-1 blockade therapies
|Nature Immunology|2020|810
Molecular and functional characterization of the Salmonella invasion gene invA: homology of InvA to members of a new protein family
|Journal of Bacteriology|1992|586
Normalizing Function of Tumor Vessels: Progress, Opportunities, and Challenges
|Annual Review of Physiology|2019|503