Zilong Zhao
Zilong Zhao
Professor, College of Chemistry and Chemical Engineering, Hunan University
Verified email at
Cited by
Cited by
Nanotechnology in therapeutics: a focus on nanoparticles as a drug delivery system
S Bamrungsap, Z Zhao, T Chen, L Wang, C Li, T Fu, W Tan
Nanomedicine 7 (8), 1253-1271, 2012
Activatable Fluorescence/MRI Bimodal Platform for Tumor Cell Imaging via MnO2 Nanosheet–Aptamer Nanoprobe
Z Zhao, H Fan, G Zhou, H Bai, H Liang, R Wang, X Zhang, W Tan
Journal of the American Chemical Society 136 (32), 11220-11223, 2014
A smart photosensitizer–manganese dioxide nanosystem for enhanced photodynamic therapy by reducing glutathione levels in cancer cells
H Fan, G Yan, Z Zhao, X Hu, W Zhang, H Liu, X Fu, T Fu, XB Zhang, ...
Angewandte Chemie International Edition 55 (18), 5477-5482, 2016
Noncanonical self-assembly of multifunctional DNA nanoflowers for biomedical applications
G Zhu, R Hu, Z Zhao, Z Chen, X Zhang, W Tan
Journal of the American Chemical Society 135 (44), 16438-16445, 2013
DNA nanoflowers for multiplexed cellular imaging and traceable targeted drug delivery
R Hu, X Zhang, Z Zhao, G Zhu, T Chen, T Fu, W Tan
Angewandte Chemie 126 (23), 5931-5936, 2014
A Smart DNAzyme–MnO2 Nanosystem for Efficient Gene Silencing
H Fan, Z Zhao, G Yan, X Zhang, C Yang, H Meng, Z Chen, H Liu, W Tan
Angewandte Chemie 127 (16), 4883-4887, 2015
Photon-manipulated drug release from a mesoporous nanocontainer controlled by azobenzene-modified nucleic acid
Q Yuan, Y Zhang, T Chen, D Lu, Z Zhao, X Zhang, Z Li, CH Yan, W Tan
ACS nano 6 (7), 6337-6344, 2012
DNAzyme-based biosensors and nanodevices
L Gong, Z Zhao, YF Lv, SY Huan, T Fu, XB Zhang, GL Shen, RQ Yu
Chemical Communications 51 (6), 979-995, 2015
Targeted bioimaging and photodynamic therapy nanoplatform using an aptamer‐guided G‐quadruplex DNA carrier and near‐infrared light
Q Yuan, Y Wu, J Wang, D Lu, Z Zhao, T Liu, X Zhang, W Tan
Angewandte Chemie International Edition 52 (52), 13965-13969, 2013
Recognition of subtype non-small cell lung cancer by DNA aptamers selected from living cells
Z Zhao, L Xu, X Shi, W Tan, X Fang, D Shangguan
Analyst 134 (9), 1808-1814, 2009
A controlled-release nanocarrier with extracellular pH value driven tumor targeting and translocation for drug delivery.
Z Zhao, H Meng, N Wang, MJ Donovan, T Fu, M You, Z Chen, X Zhang, ...
Angewandte Chemie (International ed. in English) 52 (29), 7487-7491, 2013
DNA dendrimer: an efficient nanocarrier of functional nucleic acids for intracellular molecular sensing
HM Meng, X Zhang, Y Lv, Z Zhao, NN Wang, T Fu, H Fan, H Liang, L Qiu, ...
ACS nano 8 (6), 6171-6181, 2014
Nucleic acid aptamers: an emerging frontier in cancer therapy
G Zhu, M Ye, MJ Donovan, E Song, Z Zhao, W Tan
Chemical communications 48 (85), 10472-10480, 2012
DNA aptamer‐mediated cell targeting
X Xiong, H Liu, Z Zhao, MB Altman, D Lopez‐Colon, CJ Yang, LJ Chang, ...
Angewandte Chemie 125 (5), 1512-1516, 2013
Smart multifunctional nanostructure for targeted cancer chemotherapy and magnetic resonance imaging
T Chen, MI Shukoor, R Wang, Z Zhao, Q Yuan, S Bamrungsap, X Xiong, ...
ACS nano 5 (10), 7866-7873, 2011
Brain-derived microparticles induce systemic coagulation in a murine model of traumatic brain injury
Y Tian, B Salsbery, M Wang, H Yuan, J Yang, Z Zhao, X Wu, Y Zhang, ...
Blood, The Journal of the American Society of Hematology 125 (13), 2151-2159, 2015
Aptamer-conjugated nanomaterials for bioanalysis and biotechnology applications
T Chen, MI Shukoor, Y Chen, Q Yuan, Z Zhu, Z Zhao, B Gulbakan, W Tan
Nanoscale 3 (2), 546-556, 2011
Circular Bivalent Aptamers Enable in Vivo Stability and Recognition
H Kuai, Z Zhao, L Mo, H Liu, X Hu, T Fu, X Zhang, W Tan
Journal of the American Chemical Society 139 (27), 9128-9131, 2017
Photosensitizer–gold nanorod composite for targeted multimodal therapy
J Wang, M You, G Zhu, MI Shukoor, Z Chen, Z Zhao, MB Altman, Q Yuan, ...
Small 9 (21), 3678-3684, 2013
A novel aptamer developed for breast cancer cell internalization
K Zhang, K Sefah, L Tang, Z Zhao, G Zhu, M Ye, W Sun, S Goodison, ...
ChemMedChem 7 (1), 79-84, 2012
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