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Dotted Core–Shell Nanoparticles for T1-Weighted MRI of Tumors Journal article
Shen Z., Song J., Zhou Z., Yung B.C., Aronova M.A., Li Y., Dai Y., Fan W., Liu Y., Li Z., Ruan H., Leapman R.D., Lin L., Niu G., Chen X., Wu A.. Dotted Core–Shell Nanoparticles for T1-Weighted MRI of Tumors[J]. Advanced Materials, 2018, 30(33).
Authors:  Shen Z.;  Song J.;  Zhou Z.;  Yung B.C.;  Aronova M.A.; et al.
Favorite | TC[WOS]:91 TC[Scopus]:99 | Submit date:2019/01/15
Contrast Agents  Dotted Core–shell Nanoparticles  Longitudinal Relaxivity (R1)  Magnetic Resonance Imaging  Transverse Relaxivity (R2)  
Dotted core–shell nanoparticles for T1‐weighted MRI of tumors Journal article
Shen, ZH., Song, J., Zhou, Z., Yung, B., Aronova, M., Li, Y., Dai, Y., Fan, W., Liu, Y., Li, ZH., Ruan, H., Leapman, R., Lin, L., Niu, G., Chen, X., Wu, A.. Dotted core–shell nanoparticles for T1‐weighted MRI of tumors[J]. Advanced Materials, 2018, 1803163-1803163.
Authors:  Shen, ZH.;  Song, J.;  Zhou, Z.;  Yung, B.;  Aronova, M.; et al.
Favorite | TC[WOS]:91 TC[Scopus]:99  IF:27.4/30.2 | Submit date:2022/07/19
Contrast Agents  Dotted Core–shell Nanoparticles  Longitudinal Relaxivity (R1)  Magnetic Resonance Imaging  Transverse Relaxivity (R2)  
Activatable Semiconducting Theranostics: Simultaneous Generation and Ratiometric Photoacoustic Imaging of Reactive Oxygen Species In Vivo Journal article
Yang Z., Dai Y., Yin C., Fan Q., Zhang W., Song J., Yu G., Tang W., Fan W., Yung B.C., Li J., Li X., Li X., Tang Y., Huang W., Song J., Chen X.. Activatable Semiconducting Theranostics: Simultaneous Generation and Ratiometric Photoacoustic Imaging of Reactive Oxygen Species In Vivo[J]. Advanced Materials, 2018, 30(23).
Authors:  Yang Z.;  Dai Y.;  Yin C.;  Fan Q.;  Zhang W.; et al.
Favorite | TC[WOS]:178 TC[Scopus]:181 | Submit date:2019/01/15
Cisplatin  Ratiometric Photoacoustic Imaging  Ros Generation  Synergistic Cancer Therapy  Theranostics  
Toxic Reactive Oxygen Species Enhanced Synergistic Combination Therapy by Self-Assembled Metal-Phenolic Network Nanoparticles Journal article
Dai Y., Yang Z., Cheng S., Wang Z., Zhang R., Zhu G., Wang Z., Yung B.C., Tian R., Jacobson O., Xu C., Ni Q., Song J., Sun X., Niu G., Chen X.. Toxic Reactive Oxygen Species Enhanced Synergistic Combination Therapy by Self-Assembled Metal-Phenolic Network Nanoparticles[J]. Advanced Materials, 2018, 30(8).
Authors:  Dai Y.;  Yang Z.;  Cheng S.;  Wang Z.;  Zhang R.; et al.
Favorite | TC[WOS]:335 TC[Scopus]:349 | Submit date:2019/01/15
Combination Therapy  Metal-polyphenol Networks  Positron Emission Tomography  Reactive Oxygen Species  Self-assembly  
Hypochlorous Acid Promoted Platinum Drug Chemotherapy by Myeloperoxidase-Encapsulated Therapeutic Metal Phenolic Nanoparticles Journal article
Dai Y., Cheng S., Wang Z., Zhang R., Yang Z., Wang J., Yung B.C., Wang Z., Jacobson O., Xu C., Ni Q., Yu G., Zhou Z., Chen X.. Hypochlorous Acid Promoted Platinum Drug Chemotherapy by Myeloperoxidase-Encapsulated Therapeutic Metal Phenolic Nanoparticles[J]. ACS Nano, 2018, 12(1), 455-463.
Authors:  Dai Y.;  Cheng S.;  Wang Z.;  Zhang R.;  Yang Z.; et al.
Favorite | TC[WOS]:135 TC[Scopus]:142 | Submit date:2019/01/15
Cisplatin  Hypochlorous Acid (Hocl)  Metal-polyphenol Networks  Myeloperoxidase (Mpo)  Positron Emission Tomography  
Metal ion assisted interface re-engineering of a ferritin nanocage for enhanced biofunctions and cancer therapy Journal article
Wang Z., Dai Y., Wang Z., Jacobson O., Zhang F., Yung B.C., Zhang P., Gao H., Niu G., Liu G., Chen X.. Metal ion assisted interface re-engineering of a ferritin nanocage for enhanced biofunctions and cancer therapy[J]. Nanoscale, 2018, 10(3), 1135-1144.
Authors:  Wang Z.;  Dai Y.;  Wang Z.;  Jacobson O.;  Zhang F.; et al.
Favorite | TC[WOS]:27 TC[Scopus]:30 | Submit date:2019/01/15
A paclitaxel prodrug with bifunctional folate and albumin binding moieties for both passive and active targeted cancer therapy Journal article
Shan L., Zhuo X., Zhang F., Dai Y., Zhu G., Yung B.C., Fan W., Zhai K., Jacobson O., Kiesewetter D.O., Ma Y., Gao G., Chen X.. A paclitaxel prodrug with bifunctional folate and albumin binding moieties for both passive and active targeted cancer therapy[J]. Theranostics, 2018, 8(7), 2018-2030.
Authors:  Shan L.;  Zhuo X.;  Zhang F.;  Dai Y.;  Zhu G.; et al.
Favorite | TC[WOS]:44 TC[Scopus]:43 | Submit date:2019/01/15
Circulation Half-life  Evans Blue  Paclitaxel Prodrug  Tumor Therapy  
THE CONCISE GUIDE TO PHARMACOLOGY 2017/18: Overview Journal article
Alexander S.P.H., Kelly E., Marrion N.V., Peters J.A., Faccenda E., Harding S.D., Pawson A.J., Sharman J.L., Southan C., Buneman O.P., Cidlowski J.A., Christopoulos A., Davenport A.P., Fabbro D., Spedding M., Striessnig J., Davies J.A., Abbracchio M.-P., Aldrich R., Al-Hosaini K., Arumugam T.V., Attali B., Back M., Barnes N.M., Bathgate R., Beart P.M., Becirovic E., Bettler B., Biel M., Birdsall N.J., Blaho V., Boison D., Brauner-osborne H., Broer S., Bryant C., Burnstock G., Calo G., Catterall W.A., Ceruti S., Chan S.L., Chandy K.G., Chazot P., Chiang N., Chun J.J., Chung J.-J., Clapham D.E., Clapp L., Connor M.A., Cox H.M., Davies P., Dawson P.A., Decaen P., Dent G., Doherty P., Douglas S.D., Dubocovich M.L., Fong T.M., Fowler C.J., Frantz A., Fuller P., Fumagalli M., Futerman A.H., Gainetdinov R.R., Gershengorn M.A., Goldin A., Goldstein S.A.N., Goudet C., Gregory K., Grissmer S., Gundlach A.L., Hagenbuch B., Hamann J., Hammond J.R., Hancox J.C., Hanson J., Hanukoglu I., Hay D.L., Hobbs A.J., Hollenberg A.N., Holliday N.D., Hoyer D., Ijzerman A.P., Inui K.I., Irving A.J., Ishii S., Jacobson K.A., Jan L.Y., Jarvis M.F., Jensen R., Jockers R., Kaczmarek L.K., Kanai Y., Karnik S., Kellenberger S., Kemp S., Kennedy C., Kerr I.D., Kihara Y., Kukkonen J., Larhammar D., Leach K., Lecca D., Leeman S., Leprince J., Lolait S.J., Macewan D., Maguire J.J., Marshall F., Mazella J., Mcardle C.A., Michel M.C., Miller L.J., Mitolo V., Mizuno H., Monk P.N., Mouillac B., Murphy P.M., Nahon J.-L., Nerbonne J., Nichols C.G., Norel X., Offermanns S., Palmer L.G., Panaro M.A., Papapetropoulos A., Perez-reyes E., Pertwee R.G., Pintor S., Pisegna J.R., Plant L.D., Poyner D.R., Prossnitz E.R., Pyne S., Ramachandran R., Ren D., Rondard P., Ruzza C., Sackin H., Sanger G., Sanguinetti M.C., Schild L., Schioth H., Schulte G., Schulz S., Segaloff D.L., Serhan C.N., Singh K.D., Slesinger P.A., Snutch T.P., Sobey C.G., Stewart G., Stoddart L.A., Summers R.J., Szabo C., Thwaites D., Toll L., Trimmer J.S., Tucker S., Vaudry H., Verri T., Vilargada J.-P., Waldman S.A., Ward D.T., Waxman S.G., Wei A.D., Willars G.B., Wong S.S., Woodruff T.M., Wulff H., Ye R.D., Yung Y., Zajac J.-M.. THE CONCISE GUIDE TO PHARMACOLOGY 2017/18: Overview[J]. British Journal of Pharmacology, 2017, 174, S1-S16.
Authors:  Alexander S.P.H.;  Kelly E.;  Marrion N.V.;  Peters J.A.;  Faccenda E.; et al.
Favorite | TC[WOS]:196 TC[Scopus]:230 | Submit date:2018/11/07
Rational Design of Branched Nanoporous Gold Nanoshells with Enhanced Physico-Optical Properties for Optical Imaging and Cancer Therapy Journal article
Song J., Yang X., Yang Z., Lin L., Liu Y., Zhou Z., Shen Z., Yu G., Dai Y., Jacobson O., Munasinghe J., Yung B., Teng G.-J., Chen X.. Rational Design of Branched Nanoporous Gold Nanoshells with Enhanced Physico-Optical Properties for Optical Imaging and Cancer Therapy[J]. ACS Nano, 2017, 11(6), 6102-6113.
Authors:  Song J.;  Yang X.;  Yang Z.;  Lin L.;  Liu Y.; et al.
Favorite | TC[WOS]:129 TC[Scopus]:138 | Submit date:2019/01/15
Amphiphilic Polymer  Cancer Therapy  Photoacoustic Imaging  Positron Emission Tomography  Redox-active Polymer  Surface-enhanced Raman Scattering  
Erratum to: Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition) (Autophagy, 12, 1, 1-222, 10.1080/15548627.2015.1100356 Other
2016-01-01
Authors:  Klionsky, Daniel J.;  Abdelmohsen, Kotb;  Abe, Akihisa;  Abedin, Md Joynal;  Abeliovich, Hagai; et al.
Favorite | TC[WOS]:407 TC[Scopus]:24 | Submit date:2022/07/20