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Cross-Linked γ-Polyglutamic Acid as an Aqueous SiOx Anode Binder for Long-Term Lithium-Ion Batteries
Journal article
Xiao, H.Y., Qiu, J.C., Wu, S.X., Xie, L.X., Zhou, W.B., Wei, X.J., Hui, K.N., Zhang, M., Lin, Z.. Cross-Linked γ-Polyglutamic Acid as an Aqueous SiOx Anode Binder for Long-Term Lithium-Ion Batteries[J]. ACS Applied Materials & Interfaces, 2022, 14(16), 18625.
Authors:
Xiao, H.Y.
;
Qiu, J.C.
;
Wu, S.X.
;
Xie, L.X.
;
Zhou, W.B.
; et al.
Favorite
|
TC[WOS]:
15
TC[Scopus]:
15
IF:
8.3
/
8.7
|
Submit date:2022/08/24
Polymeric Binder, Lithium-ion Battery, Siox Anode, Γ-polyglutamic Acid
Integrated Strain Sensors with Stretchable Vertical Graphene Networks for Non-invasive Physiological Assessment
Journal article
Yang, C., Shen, Z., Yao, C., Huang, S., Huang, X., Mo, J., Yang, C., Chen, M., Chen, H., Hang, T., Xie, X., Liu, F.. Integrated Strain Sensors with Stretchable Vertical Graphene Networks for Non-invasive Physiological Assessment[J]. ACS Applied Electronic Materials, 2022, 964-973.
Authors:
Yang, C.
;
Shen, Z.
;
Yao, C.
;
Huang, S.
;
Huang, X.
; et al.
Favorite
|
TC[WOS]:
9
TC[Scopus]:
10
IF:
4.3
/
4.4
|
Submit date:2022/08/29
Integrated Bioelectronics
Flexible Piezoresistive Sensors
Vertical Graphene Nanowalls
Pulse Wave
Respiration Rate
Cardiovascular Disease Prediction
Manganese-phenolic nanoadjuvant combines sonodynamic therapy with cGAS-STING activation for enhanced cancer immunotherapy
Journal article
Tian, H., Wang, G., Sang, w., Xie, L., Zhang, Z., Li, W., Yan, J., Tian, Y., Li, J., Li, B., Dai, Y.. Manganese-phenolic nanoadjuvant combines sonodynamic therapy with cGAS-STING activation for enhanced cancer immunotherapy[J]. Nano Today, 2022, 101405-101405.
Authors:
Tian, H.
;
Wang, G.
;
Sang, w.
;
Xie, L.
;
Zhang, Z.
; et al.
Favorite
|
IF:
13.2
/
14.6
|
Submit date:2023/08/08
Nanoadjuvant
Sonodynamic therapy
cGAS-STING pathway
DCs maturation
PD-L1 checkpoint blockade immunotherapy
Phototheranostic Metal-Phenolic Networks with Antiexosomal PD-L1 Enhanced Ferroptosis for Synergistic Immunotherapy
Journal article
Xie, L., Li, J., Wang, G., Sang, W., Xu, M., Li, W., Yan, J., Li, B., Zhang, Z., Zhao, Q., Yuan, Z., Fan, Q., Dai, Y.. Phototheranostic Metal-Phenolic Networks with Antiexosomal PD-L1 Enhanced Ferroptosis for Synergistic Immunotherapy[J]. Journal of the American Chemical Society, 2022, 787-797.
Authors:
Xie, L.
;
Li, J.
;
Wang, G.
;
Sang, W.
;
Xu, M.
; et al.
Favorite
|
IF:
14.4
/
14.8
|
Submit date:2023/08/08
Metal-Phenolic Networks
Ferroptosis
Immunotherapy
NIR-II-absorbing conjugated polymer-based theranostic agent for NIR-II fluorescence imaging-guided photothermal therapy acting synergistically with tumor microenvironment-responsive nitric oxide therapy
Journal article
Li, J., Xie, L., Sang, W., Li, W., Wang, G., Tian, H., Zhang, Z., Liu, J., Fan, Q., Dai, Y.. NIR-II-absorbing conjugated polymer-based theranostic agent for NIR-II fluorescence imaging-guided photothermal therapy acting synergistically with tumor microenvironment-responsive nitric oxide therapy[J]. ChemPhysMater, 2021, 51-55.
Authors:
Li, J.
;
Xie, L.
;
Sang, W.
;
Li, W.
;
Wang, G.
; et al.
Favorite
|
|
Submit date:2023/08/08
Conjugated polymer
NIR-II fluorescence
Photothermal therapy
Tumor environment response
Nitric oxide therapy
Phenolic immunogenic cell death nanoinducer for sensitizing tumor to PD-1 checkpoint blockade immunotherapy
Journal article
Xie, L., Wang, G., Sang, W., Li, J., Zhang, Z., Li, W., Yan, J., Zhao, Q., Dai, Y.. Phenolic immunogenic cell death nanoinducer for sensitizing tumor to PD-1 checkpoint blockade immunotherapy[J]. Biomaterials, 2021, 120638-120638.
Authors:
Xie, L.
;
Wang, G.
;
Sang, W.
;
Li, J.
;
Zhang, Z.
; et al.
Favorite
|
IF:
12.8
/
13.1
|
Submit date:2023/08/25
Immunogenic cell death
Metal phenolic coordination
PD-1 immune checkpoint blockade immunotherapy
Phenolic nanoplatform.
Polyphenol-Based Nanomedicine Evokes Immune Activation for Combination Cancer Treatment
Journal article
Zhang, Z., Sang, W., Xie, L., Li, W., Li, B., Li, J., Tian, H., Yuan, Z., Zhao, Q., Dai, Y.. Polyphenol-Based Nanomedicine Evokes Immune Activation for Combination Cancer Treatment[J]. Angewandte Chemie International Edition, 2021, 1967-1975.
Authors:
Zhang, Z.
;
Sang, W.
;
Xie, L.
;
Li, W.
;
Li, B.
; et al.
Favorite
|
IF:
16.1
/
16.2
|
Submit date:2023/08/25
PD-L1 checkpoint blockade
combination cancer therapy
gossypol
metal-polyphenol coordination
nanomedicine.
Exploration of Gastric Neuroendocrine Carcinoma (GNEC) specific signaling pathways involved in chemoresistance via computational and in vitro analysis
Journal article
Xie, J., Chen, P., Xie, H., Sun, Y., Huang, Z., Wei, R., Miao, Z., Wang, Q., Zhang, S. D., Wong, K. H., Lin, Y., Huang, C., Kwok, H. F.. Exploration of Gastric Neuroendocrine Carcinoma (GNEC) specific signaling pathways involved in chemoresistance via computational and in vitro analysis[J]. Computational and Structural Biotechnology Journal, 2020, 2610-2620.
Authors:
Xie, J.
;
Chen, P.
;
Xie, H.
;
Sun, Y.
;
Huang, Z.
; et al.
Favorite
|
IF:
4.4
/
5.0
|
Submit date:2022/06/02
Transcriptome Analysis
Gnec
Gac
Neurod1
Chemoresistance
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
Dihydroberberine, a hydrogenated derivative of berberine firstly identified in Phellodendri Chinese Cortex, exerts anti-inflammatory effect via dual modulation of NF-κB and MAPK signaling pathways
Journal article
Tan, L., Wang, Yongfu, Ai, Gaoxiang, Luo, Chaodan, Chen, Hanbin, Li, Cailan, Zeng, Huifang, Xie, Jianhui, Chen, Jiannan, Su, Z.. Dihydroberberine, a hydrogenated derivative of berberine firstly identified in Phellodendri Chinese Cortex, exerts anti-inflammatory effect via dual modulation of NF-κB and MAPK signaling pathways[J]. International Immunopharmacology, 2019, 75.
Authors:
Tan, L.
;
Wang, Yongfu
;
Ai, Gaoxiang
;
Luo, Chaodan
;
Chen, Hanbin
; et al.
Favorite
|
TC[WOS]:
23
TC[Scopus]:
29
IF:
4.8
/
5.0
|
Submit date:2022/05/17
Anti-inflammatory
Dihydroberberine
Inflammatory Mediators
Mapk
Nf-κb
Phellodendri Chinese Cortex