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PreviewIssue DateTitleAuthor(s)
2016Naturally derived iron oxide nanowires from bacteria for magnetically triggered drug release and cancer hyperthermia in 2D and 3D culture environments: bacteria Bbiofilm to potent cancer therapeuticKumeria, T.; Maher, S.; Wang, Y.; Kaur, G.; Wang, L.; Erkelens, M.; Forward, P.; Lambert, M.; Evdokiou, A.; Losic, D.
2019An integrated platform for capture of circulating tumor cells and in situ SERS profiling of membrane proteins through rational spatial organization of multi-functional cyclic RGD nanopatternsDong, H.; Yao, D.; Zhou, Q.; Zhang, L.; Tian, Y.
2019A lanthanide-based magnetic nanosensor as an erasable and visible platform for multi-color point-of-care detection of multiple targets and the potential application by smartphoneXu, J.; Shen, X.K.; Jia, L.; Cao, J.L.; Wang, Y.; Zhao, X.L.; Bi, N.; Guo, S.L.; Ma, T.Y.
2019Role of nanoparticle mechanical properties in cancer drug deliveryHui, Y.; Yi, X.; Hou, F.; Wibowo, D.; Zhang, F.; Zhao, D.; Gao, H.; Zhao, C.X.
2018Real-time binding monitoring between human blood proteins and heavy metal ions in nanoporous anodic alumina photonic crystalsLaw, C.; Lim, S.; Abell, A.; Santos, A.
2016Realisation and advanced engineering of true optical rugate filters based on nanoporous anodic alumina by sinusoidal pulse anodisationSantos, A.; Yoo, J.; Rohatgi, C.; Kumeria, T.; Wang, Y.; Losic, D.
2016Assessment of binding affinity between drugs and human serum albumin using nanoporous anodic alumina photonic crystalsNemati, M.; Santos, A.; Law, C.; Losic, D.
2016In situ transformation of chitosan films into microtubular structures on the surface of nanoengineered titanium implantsGulati, K.; Johnson, L.; Karunagaran, R.; Findlay, D.; Losic, D.
2014Intracellular microenvironment responsive polymers: a multiple-stage transport platform for high-performance gene deliveryShi, B.; Zhang, H.; Dai, S.; Du, X.; Bi, J.; Qiao, S.
2012pH-responsive NIR enhanced drug release from gold nanocages possesses high potency against cancer cellsShi, P.; Qu, K.; Wang, J.; Li, M.; Ren, J.; Qu, X.