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Reactive Oxygen Species Scavenging Nanomedicine for the Treatment of Ischemic Heart Disease Review article
2022
Authors:  Zhang, Zhan;  Dalan, Rinkoo;  Hu, Zhenyu;  Wang, Jiong Wei;  Chew, Nicholas W.S.; et al.
Favorite | TC[WOS]:77 TC[Scopus]:82  IF:27.4/30.2 | Submit date:2022/08/05
Cardiovascular Disease  Diabetes  Hypercholesterolemia  Hypertension  Ischemia Heart Disease  Nanomedicine  Reactive Oxygen Species  
Genetic risk of extranodal natural killer T-cell lymphoma: a genome-wide association study in multiple populations Journal article
Lin G.-W., Xu C., Chen K., Huang H.-Q., Chen J., Song B., Chan J.K.C., Li W., Liu W., Shih L.-Y., Chuang W.-Y., Kim W.S., Tan W., Peng R.-J., Laurensia Y., Cheah D.M.Z., Huang D., Cheng C.L., Su Y.-J., Tan S.-Y., Ng S.-B., Tang T.P.L., Han K., Wang V.Y.-F., Jia W.-H., Pei Z., Li Y.-J., Gao S., Shi Y., Hu Z., Zhang F., Zhang B., Zeng Y.-X., Shen H., He L., Ong C.K., Lim S.T., Chanock S., Kwong Y.-L., Lin D., Rothman N., Khor C.C., Lan Q., Bei J.-X., Au W.-Y., Chiu B., Fan L., Li Z., LAM T.H., Liang R., Yeh S.-P., Xu J., Ip D.K.M., Li G., Xu G., Wang X., Bai O., Cai Q.-Q., Xia Y., Chen J.-R., Luo C.-L., Xiong X.-Y., Zeng Y., Wei P.-P., Liu C.-J., Liu Y.-X., Cao Y.-L., He S., Liu Y., Ha J.C.H., Khoo L.P., Kee R.X., Tan J., Liu Y., Zhang F., Feng Y., Rao H., Chng W.J., Chan J.Y.S., Somasundaram N.D., Tao M., Ras M.F.B.H., Yeoh K.-W., Goh Y.T., Ong S.Y., Grigoropoulos N.F., Wong E.K.Y., Pang J.W.L., Lim J.Q., Chia B.K.H., Kim S.J., Yoon S.E., Choi S., Kuo C.-Y., Chen T.-Y., Su Y.-C., Huang W.-T., Lee M.-Y., Yao W., Ngan K.-C., Liu H., Lee H., Yip S.-F., Liu J., Li J., Rabkin C.S., Berndt S., Bassig B., Hu W., Zhao M., Li Y., Zhai Q., Shao Z., Qiu L., Wang J., Xu F.-P., Chen L., Hou Y., Xu S., Huang Z., Xie M., Li M., Zhong S., Zhang Y., Gu D., Wang X., Foo J.N., Li Z., Dai J., Sun L., Wang Z., Liu H., Zhou H., Sun Y., Koh W.-P., Heng C.-K., Hong C.S., Ahn J., Park K.H., Tin A., Gu J., Xia X., Li B., Yu X., International NKTCL Working Group. Genetic risk of extranodal natural killer T-cell lymphoma: a genome-wide association study in multiple populations[J]. The Lancet Oncology, 2020, 21(2), 306-316.
Authors:  Lin G.-W.;  Xu C.;  Chen K.;  Huang H.-Q.;  Chen J.; et al.
Favorite | TC[WOS]:49 TC[Scopus]:52  IF:41.6/42.2 | Submit date:2022/06/15
PPARδ is required for exercise to attenuate endoplasmic reticulum stress and endothelial dysfunction in diabetic mice Journal article
Cheang W.S., Wong W.T., Zhao L., Xu J., Wang L., Lau C.W., Chen Z.Y., Ma R.C.W., Xu A., Wang N., Tian X.Y., Huang Y.. PPARδ is required for exercise to attenuate endoplasmic reticulum stress and endothelial dysfunction in diabetic mice[J]. Diabetes, 2017, 66(2), 519-528.
Authors:  Cheang W.S.;  Wong W.T.;  Zhao L.;  Xu J.;  Wang L.; et al.
Favorite | TC[WOS]:73 TC[Scopus]:76 | Submit date:2019/01/15
Composition homogeneity in InGaAs/GaAs core-shell nanopillars monolithically grown on silicon Journal article
Ng K.W., Ko W.S., Chen R., Lu F., Tran T.-T.D., Li K., Chang-Hasnain C.J.. Composition homogeneity in InGaAs/GaAs core-shell nanopillars monolithically grown on silicon[J]. ACS Applied Materials and Interfaces, 2014, 6(19), 16706-16711.
Authors:  Ng K.W.;  Ko W.S.;  Chen R.;  Lu F.;  Tran T.-T.D.; et al.
Favorite | TC[WOS]:9 TC[Scopus]:9 | Submit date:2019/04/08
Alloy Ordering  Core-shell  Iii-v Nanopillar  Laser  Nanowire  
Three-dimensional whispering gallery modes in InGaAs nanoneedle lasers on silicon Journal article
Tran T.-T.D., Chen R., Ng K.W., Ko W.S., Lu F., Chang-Hasnain C.J.. Three-dimensional whispering gallery modes in InGaAs nanoneedle lasers on silicon[J]. Applied Physics Letters, 2014, 105(11).
Authors:  Tran T.-T.D.;  Chen R.;  Ng K.W.;  Ko W.S.;  Lu F.; et al.
Favorite | TC[WOS]:10 TC[Scopus]:9 | Submit date:2019/04/08
Nanophotonic integrated circuits from nanoresonators grown on silicon Journal article
Chen R., Ng K.W., Ko W.S., Parekh D., Lu F., Tran T.-T.D., Li K., Chang-Hasnain C.. Nanophotonic integrated circuits from nanoresonators grown on silicon[J]. Nature Communications, 2014, 5.
Authors:  Chen R.;  Ng K.W.;  Ko W.S.;  Parekh D.;  Lu F.; et al.
Favorite | TC[WOS]:51 TC[Scopus]:68 | Submit date:2019/04/08
Metformin protects endothelial function in diet-induced obese mice by inhibition of endoplasmic reticulum stress through 5′ adenosine monophosphate-Activated protein kinase-peroxisome proliferator-Activated receptor δ pathway Journal article
Cheang W.S., Tian X.Y., Wong W.T., Lau C.W., Lee S.S.-T., Chen Z.Y., Yao X., Wang N., Huang Y.. Metformin protects endothelial function in diet-induced obese mice by inhibition of endoplasmic reticulum stress through 5′ adenosine monophosphate-Activated protein kinase-peroxisome proliferator-Activated receptor δ pathway[J]. Arteriosclerosis, Thrombosis, and Vascular Biology, 2014, 34(4), 830-836.
Authors:  Cheang W.S.;  Tian X.Y.;  Wong W.T.;  Lau C.W.;  Lee S.S.-T.; et al.
Favorite | TC[WOS]:155 TC[Scopus]:164 | Submit date:2019/01/15
Endothelium  Nitric Oxide  Obesity  Vasodilation  
Single crystalline InGaAs nanopillar grown on polysilicon with dimensions beyond the substrate grain size limit Journal article
Ng K.W., Tran T.-T.D., Ko W.S., Chen R., Lu F., Chang-Hasnain C.J.. Single crystalline InGaAs nanopillar grown on polysilicon with dimensions beyond the substrate grain size limit[J]. Nano Letters, 2013, 13(12), 5931-5937.
Authors:  Ng K.W.;  Tran T.-T.D.;  Ko W.S.;  Chen R.;  Lu F.; et al.
Favorite | TC[WOS]:18 TC[Scopus]:18 | Submit date:2019/04/08
Gaas Nanopillar  Gaas Nanowire  Nanolaser  Poly-si  Silicon  
Unconventional growth mechanism for monolithic integration of III-V on silicon Journal article
Ng K.W., Ko W.S., Tran T.-T.D., Chen R., Nazarenko M.V., Lu F., Dubrovskii V.G., Kamp M., Forchel A., Chang-Hasnain C.J.. Unconventional growth mechanism for monolithic integration of III-V on silicon[J]. ACS Nano, 2013, 7(1), 100-107.
Authors:  Ng K.W.;  Ko W.S.;  Tran T.-T.D.;  Chen R.;  Nazarenko M.V.; et al.
Favorite | TC[WOS]:53 TC[Scopus]:59 | Submit date:2019/04/08
Critical Thickness  Iii-v On Si  Laser  Nanoneedle  Nanopillar  Nanowire  Transmission Electron Microscopy  
Nanolasers grown on silicon-based MOSFETs Journal article
Lu F., Tran T.-T.D., Ko W.S., Ng K.W., Chen R., Chang-Hasnain C.. Nanolasers grown on silicon-based MOSFETs[J]. Optics Express, 2012, 20(11), 12171-12176.
Authors:  Lu F.;  Tran T.-T.D.;  Ko W.S.;  Ng K.W.;  Chen R.; et al.
Favorite | TC[WOS]:36 TC[Scopus]:44 | Submit date:2019/04/08