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Molecular Cancer Research : MCR|February 5, 2013
The HER2- and heregulin β1 (HRG)-inducible TNFR superfamily member Fn14 promotes HRG-driven breast cancer cell migration, invasion, and MMP9 expressionKaushal Asrani, Ruth A Keri, Rebeca Galisteo, et al.Journal of Neuro-Oncology|August 23, 2018
Oxaliplatin disrupts pathological features of glioma cells and associated macrophages independent of apoptosis inductionNathan B Roberts, Aymen Alqazzaz, Jacqueline R Hwang, et al.Biomaterials|December 28, 2014
Minimizing the non-specific binding of nanoparticles to the brain enables active targeting of Fn14-positive glioblastoma cellsCraig S Schneider, Jimena G Perez, Emily Cheng, et al.Frontiers in Oncology|November 9, 2018
Developments in Blood-Brain Barrier Penetrance and Drug Repurposing for Improved Treatment of GlioblastomaBryan G Harder, Mylan R Blomquist, Junwen Wang, et al.Wiley Interdisciplinary Reviews. Nanomedicine and Nanobiotechnology|November 5, 2016
Tumor-targeted nanotherapeutics: overcoming treatment barriers for glioblastomaAniket S Wadajkar, Jimena G Dancy, David S Hersh, et al.ACS Nano|October 9, 2023
Impact of Targeting Moiety Type and Protein Corona Formation on the Uptake of Fn14-Targeted Nanoparticles by Cancer CellsChristine P Carney, Nikhil Pandey, Anshika Kapur, et al.Brain Research|July 3, 2016
Pulsed ultrasound expands the extracellular and perivascular spaces of the brainDavid S Hersh, Ben A Nguyen, Jimena G Dancy, et al.Nanomedicine : Nanotechnology, Biology, and Medicine|June 9, 2019
Leveraging Surface Plasmon Resonance to Dissect the Interfacial Properties of Nanoparticles: Implications for Tissue Binding and Tumor PenetrationAniket S Wadajkar, Jimena G Dancy, Christine P Carney, et al.Journal of Controlled Release : Official Journal of the Controlled Release Society|September 10, 2017
Decreased non-specific adhesivity, receptor targeted (DART) nanoparticles exhibit improved dispersion, cellular uptake, and tumor retention in invasive gliomasAniket S Wadajkar, Jimena G Dancy, Nathan B Roberts, et al.Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|July 13, 2006
TWEAK-Fn14 pathway inhibition protects the integrity of the neurovascular unit during cerebral ischemiaXiaohui Zhang, Jeffrey A Winkles, Maria C Gongora, et al.Pageof 9