[1] Fulong Ma#, Qian Jia#, Ziwei Deng#, Bingzhe Wang, Siwei Zhang, Jinhui Jiang, Guichuan Xing, Zhongliang Wang, Zijie Qiu, Zheng Zhao*, Ben Zhong Tang*, Boosting Luminescence Efficiency of NIR-II AIEgens via a Mash-Up Strategy of π-Extension and Deuteration for Dual-Model Image-Guided Surgery. ACS Nano, 2024, 18(13):9431 – 9442.
[2] Pengbo Ning*#, Fuyu Du#, Haotian Wang#, Xiaocheng Gong, Yuqiong Xia, Xianghan Zhang, Hongzhang Deng, Ruili Zhang*, Zhongliang Wang*, Genetically Engineered Macrophages as Living Cell Drug Carriers for Targeted Cancer Therapy, Journal of Controlled Release, 2024, 367:697 – 707.
2023
[1] Yuqiong Xia, Keyun Wu, Chang Liu, Xuejuan Zhao, Jun Wang, Jianxia Cao, Zhaoxu Chen, Minchao Fang, Jie Yu, Cheng Zhu, Xianghan Zhang*, Zhongliang Wang*, Filamentous-Actin-Mimicking Nanoplatform for Enhanced Cytosolic Protein Delivery, Advanced Science, 2023, e2305600.
[2] Qian Jia‡, Ruili Zhang‡, Haohao Yan‡, Yanbin Feng, Fang Sun, Zuo Yang, Chaoqiang Qiao, Xiaocheng Mou, Jie Tian and Zhongliang Wang*, An Activatable Near-Infrared Fluorescent Probe for Precise Detection of the Pulmonary Metastatic Tumors: A Traditional Molecule Having a Stunning Turn. Angewandte Chemie International Edition, 2023, e202313420.
[3] Zhiguo Fang‡, Chenlei Wang‡, Jingrun Yang‡, Zhizheng Song, Chunyu Xie, Yu Ji, Zhongliang Wang, Xiaohui Du, Qiang Zheng, Chunying Chen*, Zhiyuan Hu* and Yeteng Zhong*, Oxyhaemoglobin saturation NIR-IIb imaging for assessing cancer metabolism and predicting the response to immunotherapy, Nature Nanotechnology, 2023, DOI: 10.1038/s41565-023-01501-4.
[4] Xiao Xiong‡, Li He‡, Qingchao Ma, Yihan Wang, Ke Li, Zhongliang Wang, Xueli Chen, Shouping Zhu*, Yonghua Zhan*, Xu Cao*, Indocyanine green based fluorescence imaging improved by deep learning, Journal of Biophotonics, 2023, e202300066.
[5] Zhiping Rao, Yutian Xia, Qian Jia, Yutong Zhu, Lexuan Wang, Guohuan Liu, Xuelan Liu, Peng Yang, Pengbo Ning, Ruili Zhang, Xianghan Zhang, Chaoqiang Qiao*, Zhongliang Wang*, Iron-Based Metal-Organic Framework Co-Loaded with Buthionine Sulfoximine and Oxaliplatin for Enhanced Cancer Chemo-Ferrotherapy via Sustainable Glutathione Elimination, Journal of Nanobiotechnology, 2023, 21(1):265.
2022
[2] Zuo Yang‡, Chaoqiang Qiao‡, Qian Jia, Zhuang Chen, Xiaofei Wang, Xuelan Liu, Ruili Zhang*, Kanyi Pu*, Zhongliang Wang*, Redox dyshomeostasis modulation of the tumor intracellular environment through a metabolic intervention strategy for enhanced photodynamic therapy, Theranostics, 2022, 12(14), 6143-6154.
[3] Jie Yu‡, Ruili Zhang‡, Baihang Chen‡, Xuelan Liu, Qian Jia, Xiaofei Wang, Zuo Yang, Pengbo Ning*, Zhongliang Wang*, Yang Yang*, Injectable Reactive Oxygen Species-Responsive Hydrogel Dressing with Sustained Nitric Oxide Release for Bacterial Ablation and Wound Healing, Advanced Functional Materials, 2022, 32(33), 2202857.
[4] Zhiping Rao‡, Yutong Zhu‡, Peng Yang, Zhuang Chen, Yuqiong Xia, Chaoqiang Qiao, Weijing Liu, Hongzhang Deng, Jianxiong Li*, Pengbo Ning*, Zhongliang Wang*, Pyroptosis in inflammatory diseases and cancer, Theranostics, 2022, 12(9), 4310-4329.
[5] Xianghan Zhang, Jingkai Gao, Yingdi Tang, Jie Yu, Si Si Liew, Chaoqiang Qiao, Guohuan Liu, Hongyu Fan, Yuqiong Xia, Jie Tian*, Kanyi Pu* and Zhongliang Wang*, Bioorthogonally activatable cyanine dye with torsion-induced disaggregation for in vivo tumor imaging, Nature Communications, 2022, 13(1), 3513.
[6] Shaohua Qu‡, Qian Jia‡, Zheng Li, Zhongliang Wang*, and Li Shang*, Chiral NIR-II fluorescent Ag2S quantum dots with stereospecific biological interactions and tumor accumulation behaviors, Science Bulletin, 2022, 67(12), 1274-1283.
[7] Jie Yu‡, Hua Xiao‡, Zuo Yang‡, Chaoqiang Qiao‡, Bin Zhou‡, Qian Jia, Zhongdi Wang, Xiaofei Wang, Ruili Zhang*, Yang Yang*, Zhongliang Wang*, and Jianxiong Li*, A Potent Strategy of Combinational Blow toward Enhanced Cancer Chemo-Photodynamic Therapy via Sustainable GSH Elimination, Small, 2022, 18(9), e2106100.
[8] Hongzhang Deng, Zuo Yang, Xiaoyu Pang, Caiyan Zhao*, Jie Tian*, Zhongliang Wang*, Xiaoyuan Chen*, Self-Sufficient Copper Peroxide Loaded pKa-Tunable Nanoparticles for Lysosome-Mediated Chemodynamic Therapy, Nano Today, 2022, 42, 101337.
[9] Chaoqiang Qiao‡, Xiaofei Wang‡, Guohuan Liu, Zuo Yang, Qian Jia, Lexuan Wang, Ruili Zhang, Yuqiong Xia*, Zhongliang Wang*, Yang Yang*, Erythrocyte Membrane Camouflaged Metal-Organic Framework Nanodrugs via Remodeling Tumor Microenvironment for Enhanced Tumor Chemotherapy, Advanced Functional Materials, 2022, 32(6), 2107791.
[10] Qian Jia‡, Ruili Zhang‡, Yongdong Wang, Haohao Yan, Zheng Li, Yanbin Feng, Yu Ji, Zuo Yang, Yang Yang*, Kanyi Pu, Zhongliang Wang*, A Metabolic Acidity-Activatable Calcium Phosphate Probe with Signal Amplification Capabilities for Non-Invasive Fluorescence Imaging of Tumors, Science Bulletin, 2022, 67, 288-298.
2021
[2] Peng Yang, Zhuang Chen, Shaojie Liu, Chaoqiang Qiao, Yuqiong Xia*, Zhongliang Wang*, Recent progress in drug delivery and cancer theranostic built from metal-organic frameworks, Biomedical Materials, 2021, 16(4), 042011.
[3] Xianghan Zhang, Sumei Zhao, Zhiqing Gao, Jialin Zhou, Yuqiong Xia, Jie Tian*, Changhong Shi*, Zhongliang Wang*, Liposome trade-off strategy in mitochondria-targeted NIR-cyanine: balancing blood circulation and cell retention for enhanced anti-tumor phototherapy in vivo, Nano Research, 2021, 14, 2432-2440.
2020
[2] Chaoqiang Qiao‡, Ruili Zhang‡, Yongdong Wang‡, Qian Jia‡, Xiaofei Wang, Zuo Yang, Tengfei Xue, Renchuan Ji, Xiufang Cui, and Zhongliang Wang*, Rabies Virus-Inspired Metal-Organic Frameworks for Targeted Imaging and Chemotherapy of Glioma, Angewandte Chemie International Edition, 2020, 59(39), 16982-16988.
[3] Yuqiong Xia‡, Lang Rao‡, Huimin Yao, Zhongliang Wang*, Pengbo Ning*, Xiaoyuan Chen*, Engineering macrophages for cancer immunotherapy and drug delivery, Advanced Materials, 2020, 32(40), e2002054.
[4] Ruili Zhang‡, Linlin Wang‡, Xiaofei Wang, Qian Jia, Zhuang Chen, Zuo Yang, Renchuan Ji, Jie Tian, and Zhongliang Wang*, Acid-Induced in Vivo Assembly of Gold Nanoparticles for Enhanced Photoacoustic Imaging-Guided Photothermal Therapy of Tumors, Advanced Healthcare Materials, 2020, 9(14), 2000394.
[6] Na Zhao*, Yue Li‡, Wei Yin‡, Jiabao Zhuang, Qian Jia, Zhongliang Wang, Nan Li*, Controllable Coumarin-Based NIR Fluorophores: Selective Subcellular Imaging, Cell Membrane Potential Indication, and Enhanced Photodynamic Therapy, ACS Applied Materials & Interfaces, 2020, 12, 2, 2076-2086.
2019
[1] Ruili Zhang‡, Chaoqiang Qiao‡, Qian Jia‡, Yongdong Wang, Huimin Huang, Wanwan Chang, He Wang, Hao Zhang, Zhongliang Wang*, Highly Stable and Long-Circulating Metal-Organic Frameworks Nanoprobes for Sensitive Tumor Detection In Vivo, Advanced Healthcare Materials 2019, 8(19), 1900761.
[2] Ruili Zhang, Zhe Wang, Zuo Yang, Linlin Wang, Zhongdi Wang, Baihang Chen, Zhongliang Wang*, Jie Tian*, RNA-silencing nanoprobes for effective activation and dynamic imaging of neural stem cells differentiation, Theranostics 2019, 9(18), 5386-5395.
[3] Yuqiong Xia, Chunzhong Xu, Xianghan Zhang, Pengbo Ning, Zhongliang Wang*, Jie Tian*, Xiaoyuan Chen*, Liposome-based probes for molecular imaging: from basic research to the bedside, Nanoscale 2019, 11, 5822-5838.
2018
[1] Yunlu Dai, Siyuan Cheng, Zhongliang Wang*, Ruili Zhang, Zhen Yang, Jingjing Wang, Bryant C. Yung, Zhantong Wang, Orit Jacobson, Can Xu, Qianqian Ni, Guocan Yu, Zijian Zhou, and Xiaoyuan Chen*, Hypochlorous Acid Promoted Platinum Drug Chemotherapy by Myeloperoxidase Encapsulated Therapeutic Metal Phenolic Nanoparticles, ACS Nano 2018, 12, 455-463.
[2] Yunlu Dai, Zhen Yang, Siyuan Cheng, Zhongliang Wang*, Ruili Zhang, Guizhi Zhu, Zhantong Wang, Bryant C. Yung, Rui Tian, Orit Jacobson, Can Xu, Qianqian Ni, Jibin Song, Xiaolian Sun, Gang Niu, Xiaoyuan Chen*, Toxic Reactive Oxygen Species Enhanced Synergistic Combination Therapy by Self-Assembled Metal-Phenolic Network Nanoparticles, Advanced Materials 2018, 30, 1704877.
2017
[1] Ruili Zhang‡, Shi Gao ‡, Zhongliang Wang*, Da Han, Lin Liu, Qingjie Ma*, Weihong Tan, Jie Tian, Xiaoyuan Chen,* Multifunctional Molecular Beacon Micelles for Intracellular mRNA Imaging and Synergistic Therapy in Multidrug-Resistant Cancer Cells, Advanced Functional Materials, 2017, 27,1701027.
[2] Xianghan Zhang, Bo Wang, Na Zhao, Zuhong Tian, Yunpeng Dai, Yongzhan Nie, Jie Tian, Zhongliang Wang*, Xiaoyuan Chen, Efficient tumor targeting and long retention timeof NIR fluorescence probe with bioorthogonal chemistry, Theranostics, 2017, 7(15):3794-3802.
[3] Yuqiong Xia, Ruili Zhang, Zhongliang Wang*, Jie Tian*, Xiaoyuan Chen*, Recent Advances in High-Performance fluorescent and bioluminescent RNA Imaging Probes, Chemical Society Reviews, 2017, 46, 2824-2843.
[4] Wenting Shang, Chaoting Zeng, Yang Du, Hui Hui, Xiao Liang, Chongwei Chi, Kun Wang*, Zhongliang Wang*, Jie Tian*, Core–Shell Gold Nanorod@metal–Organic framework Nanoprobes for Multi-modality Diagnosis of Glioma, Advanced Materials, 2017, 29, 1604381.
2016
[1] Xiaohua Jia, Guowei Feng, Zhongliang Wang, Yang Du, Chen Shen, Hui Hui, Dong Peng, Zong-jin Li, Deling Kong, Jie Tian, Activation of mesenchymal stem cells by macrophages promotes tumor progression through immune suppressive effects, Oncotarget, 2016, 7, 20934.
2015
[1] Xiaohua Jia, Yang Du, Duo Mao, Zhongliang Wang, Zhenqiang He, Jingdan Qiu, Xibo Ma, Wenting Shang, Dan Ding, Jie Tian*, Zoledronic Acid Prevents the Tumor-promoting effects of Mesenchymal Stem Cells via MCP-1 Dependent Recruitment of Macrophages, Oncotarget, 2015, 6, 26018.
[2] Chongwei Chi, Qian Zhang, Yamin Mao, Deqiang Kou, Jingdan Qiu, Jinzuo Ye, Jiandong Wang, Zhongliang Wang*, Yang Du*, Jie Tian*, Increased precision of orthotopic and me[ant]tastatic breast cancer surgery guided by matrix me[ant]talloproteinase activatable near-infrared fluorescence probes, Scientific Reports, 2015, 5:14197.
[3] Zhenhua Hu, Yawei Qu, Kun Wang, Xiaojun Zhang, Jiali Zha, Tianming Song, Chengpeng Bao, Haixiao Liu, Zhongliang Wang, Jing Wang, Zhongyu Liu, Haifeng Liu*, Jie Tian*, In vivo Nanoparticle-Mediated Radiopharmaceutical-Excited Fluorescence Molecular Imaging, Nature Communications, 2015, 6:7560.
[4] Jie Yu, Wenyan Yin*, Xiaopeng Zheng, Gan Tian, Xiao Zhang, Tao Bao, Xinghua Dong, Zhongliang Wang, Zhanjun Gu*, Xiaoyan Ma*, Yuliang Zhao*, Smart MoS2/Fe3O4 Nanotheranostic for Magnetically Targeted Photothermal Therapy Guided by Magnetic Resonance/Photoacoustic Imaging, Theranostics, 2015; 5, 931-945.
[5] Zhe Wang, Yu Wang, Zhiyong Wang, Silvio Gutkind, Zhongliang Wang, Fu Wang, Jie Lu, Gang Niu, Gaojun Teng, Xiaoyuan Chen*, Engineered Mesenchymal Stem Cells with Enhanced Tropism and Paracrine Secretion of Cytokines and Growth Factors to Treat Traumatic Brain Injury, Stem Cells, 2015, 33, 456-467.
Before 2014
[1] Zhongliang Wang, Hongyan Liu, Soon Hye Yang, Tie Wang, Chen Liu*, Y. Charles Cao*, Nanoparticle-based Artificial RNA Silencing Machinery for Antiviral Therapy, Proceedings of the National Academy of Sciences USA, 2012, 109, 12387-12392. (Highlighted by PNAS, Science-Business Exchange, ChemistryWorld Research News, Chemical & Engineering News, Phys.org, and IEEE Spectrum; Interviewed by WCJB-TV20)
[2] Zhongliang Wang, Zhe Wang, Dingbin Liu, Xuefeng Yan, Fu Wang, Gang Niu, Min Yang*, Xiaoyuan Chen*, Biomimetic RNA Silencing Nanocomplexes: Overcoming Multidrug Resistance in Cancer Cells, Angewandte Chemie International Edition, 2014, 53, 1997-2001. (Highlighted by Angew,
[3] Zhe Wang, Ruili Zhang, Zhongliang Wang*, He-fang Wang, Yu Wang, Jun Zhao, Fu Wang, Weitao Li, Gang Niu, Dale O. Kiesewetter, Xiaoyuan Chen*, Bioinspired Nanocomplexes for Spatiotemporal Imaging of Sequential mRNA ex[ant]pression in Differentiating Neural Stem Cells, ACS Nano, 2014, 8, 12386-12396.
[4] Zhongliang Wang, Ying Ma*, Ruili Zhang, Aidong Peng, Qing Liao, Zongwei Cao, Hongbing Fu, Jiannian Yao*, Reversible Luminescent Switching in a [Eu(SiW10MoO39)2]13–-Agarose Composite Film by Photosensitive Intramolecular Energy Transfer, Advanced Materials, 2009, 21, 1737-1741.
[5] Dingbin Liu, Jie Yang, He-fang Wang, Zhongliang Wang*, Xinglu Huang, Zhantong Wang, Gang Niu, A. R. Hight Walker, Xiaoyuan Chen*, Glucose Oxidase-Catalyzed Growth of Gold Nanoparticles Enables Quantitative Detection of Attomolar Cancer Biomarkers, Analytical Chemistry, 2014, 86, 5800-5806.
[6] Zhongliang Wang, Ruili Zhang, Ying Ma*, Aidong Peng, Hongbing Fu, Jiannian Yao*, Chemically responsive luminescent switching in transparent flexible self-supporting [EuW10O36]9–-agarose nanocomposite thin films, Journal of Materials Chemistry, 2010, 20, 271-277.
[7] Zhongliang Wang, Ruili Zhang, Ying Ma*, Li Zheng, Aidong Peng, Hongbing Fu, Jiannian Yao*, Transparent and Flexible phosphomolybdate-agarose composite thin films with visible-light photochromism, Journal of Materials Chemistry, 2010, 20, 1107-1111.
[8] Zhongliang Wang, Zhen Hui Kang, En Bo Wang*, Zhongmin Su, Lin Xu, Intercalation and photophysical properties of the tetra-(8-hydroxyquinolinato) boron complex and 3,3',4,4'-benzophenone tetracarboxylic anion into Mg-Al layered double hydroxides, Inorganic Chemistry, 2006, 45, 4364-4371.
[9] Tie Wang, Jiaqi Zhuang, Jared Lynch, Ou Chen, Zhongliang Wang, Xirui Wang, Derek LaMontagne, Huimeng Wu, Zhongwu Wang, Y. Charles Cao*, Self-assembled colloidal superparticles from nanorods, Science, 2012, 338, 358-363.
[10] Tie Wang, Xirui Wang, Derek LaMontagne, Zhongliang Wang, Zhongwu Wang, Y. Charles Cao*, Shape-controlled Synthesis of Colloidal Superparticles from Nanocubes, Journal of the American Chemical Society, 2012, 134, 18225-18228.