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Journal of Drug Targeting|October 11, 2015
Tweaking dendrimers and dendritic nanoparticles for controlled nano-bio interactions: potential nanocarriers for improved cancer targetingJason Bugno, Hao-Jui Hsu, Seungpyo HongJournal of Drug Targeting|October 22, 2015
Collagen nanofiber containing silver nanoparticles for improved wound-healing applicationsGoutam Rath, Taqadus Hussain, Gaurav Chauhan, et al.Journal of Drug Targeting|August 26, 2015
Styrene-maleic acid-copolymer conjugated zinc protoporphyrin as a candidate drug for tumor-targeted therapy and imagingJun Fang, Kenji Tsukigawa, Long Liao, et al.Journal of Drug Targeting|August 26, 2015
Preparation, characterization and in vitro-targeted delivery of novel Apolipoprotein E-based nanoparticles to C6 glioma with controlled size and loading efficiencyNargess Maleklou, Abdolamir Allameh, Bahram KazemiJournal of Drug Targeting|January 10, 2015
Delivery of anti-microRNA-21 antisense-oligodeoxynucleotide using amphiphilic peptides for glioblastoma gene therapyHojung Song, Binna Oh, Manbok Choi, et al.Journal of Drug Targeting|September 2, 2015
Preparation and in vivo/in vitro evaluation of formononetin phospholipid/vitamin E TPGS micellesXudong Cheng, Hongmei Yan, Xiaobin Jia, et al.Journal of Drug Targeting|September 16, 2014
Interaction of polyethylene glycol (PEG) with the membrane-binding domains following spinal cord injury (SCI): introduction of a mechanism for SCI repairIman Rad, Kaveh Khodayari, Saeid Hadi Alijanvand, et al.Journal of Drug Targeting|September 19, 2014
Evaluation of cancer imaging potential and photodynamic therapy efficacy of copper (II) benzyloxypheophorbide-aKasim Ocakoglu, Özge Er, Fatma Yurt Lambrecht, et al.Journal of Drug Targeting|July 23, 2014
Potential use of glucuronylglucosyl-β-cyclodextrin/dendrimer conjugate (G2) as a siRNA carrier for the treatment of familial amyloidotic polyneuropathyTakayuki Anno, Taishi Higashi, Yuya Hayashi, et al.Journal of Drug Targeting|July 12, 2014
Natural and synthetic poly(malic acid)-based derivates: a family of versatile biopolymers for the design of drug nanocarriersPascal Loyer, Sandrine Cammas-MarionPageof 257