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Accounts of Chemical Research|May 3, 2011
Surface engineering of iron oxide nanoparticles for targeted cancer therapyForrest M Kievit, Miqin Zhang
Experimental Brain Research|February 17, 2025
Glioblastoma induced blood-brain barrier dysfunction via a paracrine mechanism that increases claudin-1 expressionBrittany Schweiger, Forrest M Kievit
Advanced Materials (Deerfield Beach, Fla.)|August 16, 2011
Cancer nanotheranostics: improving imaging and therapy by targeted delivery across biological barriersForrest M Kievit, Miqin Zhang
Pharmaceutics|September 22, 2019
A Role for Nanoparticles in Treating Traumatic Brain InjuryBadrul Alam Bony, Forrest M Kievit
Pharmacological Research|November 7, 2016
Nanoparticles for cancer gene therapy: Recent advances, challenges, and strategiesKui Wang, Forrest M Kievit, Miqin Zhang
Materials Today (Kidlington, England)|March 6, 2012
Magnetite Nanoparticles for Medical MR ImagingZachary R Stephen, Forrest M Kievit, Miqin Zhang
Journal of Neuroscience Methods|April 28, 2023
An updated Barnes maze protocol for assessing the outcome of controlled cortical impact mouse models of traumatic brain injuryConnor C Gee, Rylie Steffen, Forrest M Kievit
Journal of Nanotheranostics|June 3, 2022
The Nanotheranostic Researcher's Guide for Use of Animal Models of Traumatic Brain InjuryBrandon Z McDonald, Connor C Gee, Forrest M Kievit
Advanced Drug Delivery Reviews|February 8, 2011
Cancer cell invasion: treatment and monitoring opportunities in nanomedicineOmid Veiseh, Forrest M Kievit, Richard G Ellenbogen, et al.
Surgical Neurology International|February 28, 2015
Bionanotechnology and the future of gliomaPeter A Chiarelli, Forrest M Kievit, Miqin Zhang, et al.
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