James Chen Yong Kah
James Chen Yong Kah
Verified email at nus.edu.sg - Homepage
Cited by
Cited by
Early diagnosis of oral cancer based on the surface plasmon resonance of gold nanoparticles
JCY Kah, KW Kho, CGL Lee, CJ Richard
International journal of nanomedicine 2 (4), 785, 2007
Exploiting the protein corona around gold nanorods for loading and triggered release
JCY Kah, J Chen, A Zubieta, K Hamad-Schifferli
ACS nano 6 (8), 6730-6740, 2012
Optimizing the properties of the protein corona surrounding nanoparticles for tuning payload release
A Cifuentes-Rius, H de Puig, JCY Kah, S Borros, K Hamad-Schifferli
ACS nano 7 (11), 10066-10074, 2013
Critical parameters in the pegylation of gold nanoshells for biomedical applications: an in vitro macrophage study
JCY Kah, KY Wong, KG Neoh, JH Song, JWP Fu, S Mhaisalkar, M Olivo, ...
Journal of drug targeting 17 (3), 181-193, 2009
Polydopamine nanoparticles enhance drug release for combined photodynamic and photothermal therapy
B Poinard, SZY Neo, ELL Yeo, HPS Heng, KG Neoh, JCY Kah
ACS applied materials & interfaces 10 (25), 21125-21136, 2018
Synthesis of contiguous silica− gold core− shell structures: critical parameters and processes
N Phonthammachai, JCY Kah, G Jun, CJR Sheppard, MC Olivo, ...
Langmuir 24 (9), 5109-5112, 2008
Synthesis of gold nanoshells based on the depositionprecipitation process
JCY Kah, N Phonthammachai, RCY Wan, J Song, T White, S Mhaisalkar, ...
Gold Bulletin 41 (1), 23-36, 2008
Combinatorial treatment of photothermal therapy using gold nanoshells with conventional photodynamic therapy to improve treatment efficacy: an in vitro study
JCY Kah, RCY Wan, KY Wong, S Mhaisalkar, CJR Sheppard, M Olivo
Lasers in Surgery and Medicine: The Official Journal of the American Society …, 2008
Control of optical contrast using gold nanoshells for optical coherence tomography imaging of mouse xenograft tumor model in vivo
JCY Kah, MC Olivo, TH Chow, K San Song, KZY Koh, S Mhaisalkar, ...
Journal of Biomedical Optics 14 (5), 054015, 2009
Stability of gold nanorods passivated with amphiphilic ligands
JCY Kah, A Zubieta, RA Saavedra, K Hamad-Schifferli
Langmuir 28 (24), 8834-8844, 2012
Molecular contrast of EGFR expression using gold nanoparticles as a reflectance-based imaging probe
JCY Kah, MC Olivo, CGL Lee, CJR Sheppard
Molecular and cellular probes 22 (1), 14-23, 2008
Protein coronas on gold nanorods passivated with amphiphilic ligands affect cytotoxicity and cellular response to penicillin/streptomycin
JCY Kah, C Grabinski, E Untener, C Garrett, J Chen, D Zhu, SM Hussain, ...
Acs Nano 8 (5), 4608-4620, 2014
Optimizing the SERS enhancement of a facile gold nanostar immobilized paper-based SERS substrate
S He, J Chua, EKM Tan, JCY Kah
RSC advances 7 (27), 16264-16272, 2017
Exploiting the protein corona around gold nanorods for low-dose combined photothermal and photodynamic therapy
ELL Yeo, U Joshua, J Cheah, DJH Neo, WI Goh, P Kanchanawong, ...
Journal of Materials Chemistry B 5 (2), 254-268, 2017
Component‐specific analysis of plasma protein corona formation on gold nanoparticles using multiplexed surface plasmon resonance
A Patra, T Ding, G Engudar, Y Wang, MM Dykas, B Liedberg, JCY Kah, ...
Small 12 (9), 1174-1182, 2016
Optimizing gold nanostars as a colloid-based surface-enhanced Raman scattering (SERS) substrate
S He, MWC Kang, FJ Khan, EKM Tan, MA Reyes, JCY Kah
Journal of Optics 17 (11), 114013, 2015
Influence of protein corona and caveolae-mediated endocytosis on nanoparticle uptake and transcytosis
YT Ho, RD Kamm, JCY Kah
Nanoscale 10 (26), 12386-12397, 2018
Concentration dependence of gold nanoshells on the enhancement of optical coherence tomography images: a quantitative study
JCY Kah, TH Chow, BK Ng, SG Razul, M Olivo, CJR Sheppard
Applied optics 48 (10), D96-D108, 2009
An instantaneous colorimetric protein assay based on spontaneous formation of a protein corona on gold nanoparticles
YT Ho, B Poinard, ELL Yeo, JCY Kah
Analyst 140 (4), 1026-1036, 2015
Protein corona in drug delivery for multimodal cancer therapy in vivo
ELL Yeo, PSP Thong, KC Soo, JCY Kah
Nanoscale 10 (5), 2461-2472, 2018
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