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Colloids and Surfaces. B, Biointerfaces|April 22, 2015
Optimizing the design and in vitro evaluation of bioreactive glucose oxidase-microspheres for enhanced cytotoxicity against multidrug resistant breast cancer cellsJi Cheng, Qun Liu, Adam J Shuhendler, et al.The Journal of Pharmacy and Pharmacology|September 6, 2003
Delivery of an anticancer drug and a chemosensitizer to murine breast sarcoma by intratumoral injection of sulfopropyl dextran microspheresZhi Liu, James R Ballinger, Andrew M Rauth, et al.Journal of Controlled Release : Official Journal of the Controlled Release Society|January 29, 2013
Multifunctional terpolymeric MRI contrast agent with superior signal enhancement in blood and tumorAlireza Shalviri, Warren D Foltz, Ping Cai, et al.Journal of Controlled Release : Official Journal of the Controlled Release Society|April 15, 2008
Molecular interactions, internal structure and drug release kinetics of rationally developed polymer-lipid hybrid nanoparticlesYongqiang Li, Ho Lun Wong, Adam J Shuhendler, et al.European Journal of Pharmaceutics and Biopharmaceutics : Official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik E.V|May 20, 2015
Optimization of controlled release nanoparticle formulation of verapamil hydrochloride using artificial neural networks with genetic algorithm and response surface methodologyYongqiang Li, Mohammadreza R Abbaspour, Paul V Grootendorst, et al.European Journal of Pharmaceutics and Biopharmaceutics : Official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik E.V|December 7, 2005
In vitro toxicity to breast cancer cells of microsphere-delivered mitomycin C and its combination with doxorubicinRichard Y Cheung, Andrew M Rauth, Patrick T Ronaldson, et al.Advanced Healthcare Materials|November 28, 2012
A novel solid lipid nanoparticle formulation for active targeting to tumor α(v) β(3) integrin receptors reveals cyclic RGD as a double-edged swordAdam J Shuhendler, Preethy Prasad, Michael Leung, et al.The Journal of Pharmacology and Experimental Therapeutics|March 21, 2006
A mechanistic study of enhanced doxorubicin uptake and retention in multidrug resistant breast cancer cells using a polymer-lipid hybrid nanoparticle systemHo Lun Wong, Reina Bendayan, Andrew M Rauth, et al.Breast Cancer Research and Treatment|February 18, 2009
A novel doxorubicin-mitomycin C co-encapsulated nanoparticle formulation exhibits anti-cancer synergy in multidrug resistant human breast cancer cellsAdam J Shuhendler, Richard Y Cheung, Janet Manias, et al.Advanced Healthcare Materials|July 27, 2019
Multitargeted Nanoparticles Deliver Synergistic Drugs across the Blood-Brain Barrier to Brain Metastases of Triple Negative Breast Cancer Cells and Tumor-Associated MacrophagesTian Zhang, Hoyin Lip, Chunsheng He, et al.Pageof 5