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Tianjiao Ji, Ying Zhao, Yanping Ding and Guangjun Nie, Using nanotechnology to target and regulate the tumor microenvironment: diagnostic and therapeutic applications, Advanced Materials, doi: 10.1002/adma.201300299.pdf
Yanping Ding, Suping Li & Guangjun Nie, Nanotechnological strategies for therapeutic targeting and imaging of tumor vasculature, Nanomedicine, doi:10.2217/NNM.13.106.
Xin Tian, Motao Zhu, Libo Du, Jing Wang, Zhenlin Fan, Jun Liu Yuliang Zhao and Guangjun Nie, Intrauterine inflammation alters size-dependent materno-fetal transfer of nanoparticles in murine pregnancy, Small,doi: 10.1002/smll.201300817.pdf
Tianjiao Ji, Ying Zhao, Jing Wang, Xin Zheng, Yanhua Tian, Yuliang Zhao and Guangjun Nie, Tumor fibroblast specific activation of hybrid ferritin nanocage-based optical probe for tumor microenvironment imaging, Small, doi: 10.1002/smll.201300600.
Shishuai Su, Hai Wang, Xiaoguang Liu, Yan Wu, Guangjun Nie, iRGD-coupled responsive fluorescent nanogel for targeted drug delivery, Biomaterials, 2013, 34, 3523-3533.pdf
Hai Wang, Yan Wu, Ruifang Zhao and Guangjun Nie, Engineering the assemblies of biomaterial nanocarriers for delivery of multiple theranostic agents with enhanced antitumor efficacy, Advanced Materials, 2013, 25, 1616-1622.pdf
Motao Zhu, Sarah, Perrett and Guangjun Nie, Understanding the Particokinetics of Engineered Nanomaterials for Safe and Effective Therapeutic Applications, Small, 2013, 9, 1619-34.pdf
Hui Yang, Cuiji Sun, Zhenlin Fan, Xin Tian, Liang Yan, Libo Du, Yang Liu, Chunying Chen, Xing-jie Liang, Gregory J. Anderson, Jeffrey A. Keelan, Yuliang Zhao, Guangjun Nie, Effects of gestational age and surface modification on materno-fetal transfer of nanoparticles in murine pregnancy, Scientific Report, 2012, 847; DOI:10.1038/srep00847.pdf
Wendi Zhang, Chi Wang, Zhenzhen Lu, Jun-Jie Yin, Yu-Ting Zhou, Xingfa Gao, Ying Fang, Guangjun Nie, Yuliang Zhao, Unraveling Stress-induced Toxicity Properties of Graphene Oxide and the Underlying Mechanism, Advanced Materials 2012, 24, 5391¨C5397.pdf
Motao Zhu, Xin Tian, Xiao Song, Yanhua Tian, Yuliang Zhao, and Guangjun Nie, Nanoparticle-Induced Exosomes Target Antigen-Presenting Cells to Initiate Th1-Type Immune Activation, Small, 2012, 24, 2841-2848.pdf
Gang Liu, Shiwen Niu, Ailian Dong, Hao Cai, Gregory J Anderson, Bing Han and Guangjun Nie, A Chinese family carrying novel mutations in the SEC23B and HFE2 genes, British Journal of Haematology, 2012, 158, 143-145.pdf
Xin Tian, Motao Zhu, Yanhua Tian, Ramm A. Grant, Yuliang Zhao, Guangjun Nie, A membrane vesicle-based dual vaccine against melanoma and Lewis lung carcinoma, Biomaterials, 2012, 33, 6147-6154.pdf
Motao Zhu, Yiye Li, Jian Shi, Weiyue Feng, Guangjun Nie, and Yuliang Zhao, Cellular Responses to Nanomaterials: Exosomes as Extrapulmonary Signaling Conveyors for Nanoparticle-Induced Systemic Immune Activation, Small, 2012, 8, 404-412.pdf
Bo Ning, Gang Liu, Yuanyuan Liu, Xiufen Su, Gregory J Anderson, Xin Zheng, Yanzhong Chang, Mingzhou Guo, Yuanfang Liu, Yuliang Zhao and Guangjun Nie, 5-aza-2'-deoxycytidine activates iron uptake and heme biosynthesis by increasing c-Myc nuclear localization and binding to the E-boxes of TfR1 and ferrochelatase genes, J Biol Chem, 2011, 286, 37196-37206.pdf
Hai Wang, Ying Zhao, Yan Wu, Kaihui Nan, Guangjun Nie and Hao Chen, Enhanced antitumor efficacy by co-delivery of doxorubicin and paclitaxel with amphiphilic methoxyPEG-PLGA copolymer nanoparticles, Biomaterials, 2011, 32, 8281-8290.pdf
Yiye Li, Yunlong Zhou, Hai-Yan Wang, Sarah Perrett, Yuliang Zhao, Zhiyong Tang, Guangjun Nie, Chirality of Glutathione Surface Coating Affects the Toxicity of Quantum Dots, Angew Chem Int Ed, 2011, 50, 5860-5864.pdf
Cuiji Sun, Hui Yang,Yi Yuan, Xin Tian, Liming Wang, Yi Guo, Li Xu, Jianlin Lei, Ning Gao, Gregory J. Anderson, Xing-jie Liang, Chunying Chen, Yuliang Zhao, Guangjun Nie, Controlling assembly of paired gold clusters within apoferritin nanoreactor for in vivo kidney targeting and biomedical imaging, J Am Chem Soc, 2011, 133, 8617¨C8624.pdf
Jia Fan, Jun-Jie Yin, Bo Ning, Xiaochun Wu, Ye Hu, Mauro Ferrari, Gregory J. Anderson, Jingyan Wei, Yuliang Zhao and Guangjun Nie, Direct evidence for catalase and peroxidase activities of ferritin-platinum nanoparticles, Biomaterials, 2011, 32, 6, 1611-1618.pdf
Guangjun Nie, Guohua Chen, Alex D. Sheftel, Kostas Pantopoulos and Prem Ponka. In Vivo Tumor Growth is Inhibited by Cytosolic Iron Deprivation Caused by the Expression of Mitochondrial Ferritin, Blood, 2006, 108:2428-34.pdf
Guangjun Nie, Alex Sheftel, Songwon Kim, Prem Ponka. Overexpression of Mitochondrial Ferritin Causes Cytosolic Iron Depletion and Changes Cellular Iron Homeostasis. Blood, 2005, 105:2161-7.pdf
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Nanorobotsfor Tumor Microenvironment Targeting and Regulation
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niegj@nanoctr.cn
Ithas witnessed that the rapid development on precision design and fabrication ofintelligent next generation nanomedicine-medical nanorobots hold the greatpotential to revolutionize the current landscape of drug development. It isalso clear that tumor microenvironment plays critical roles on either promotionor restriction on primary tumor rapid growth and metastasis. Those achievementshave made targeting and regulation of tumor microenvironment viananobiomaterials a feasible and fruitful strategy, to improve the therapeuticoutcomes for cancer treatment. This presentation will feature our recentdevelopment on using DNA and protein based nanorobots as intelligentnanomedicines to regulate tumor microenvironment to block tumor microvessels orre-store the homeostasis of tumor stroma.
Roboticmolecular systems have great potential as intelligent vehicles to enable thedelivery of various potent molecules, which otherwise never could be used astherapeutics due to numerous limitations. Yet, achieving in vivo, precisemolecular-level, and on-demand targeting and delivery has proven extremelychallenging. We developed an autonomous nanorobotic system for targeted cancertherapy, programmed to transport molecular payloads and cause on-site tumorinfarction. Given the robust self-assembly behavior, exceptional designability,potent antitumor activity and minimal in vivo adversity, the nanorobotrepresents a promising strategy for precise drug design for cancertherapeutics.
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¡¾1¡¿      Yi Yuan, Chong Du,Cuiji Sun, Jin Zhu, Shan Wu, Yinlong Zhang, Tianjiao Ji, Jianlin Lei, YinmoYang, Ning Gao and Guangjun Nie, Chaperonin-GroEL as a smarthydrophobic drug delivery and tumor targeting molecular machine for tumortherapy, Nano Letters, 2018, 18(2), 921-928
¡¾2¡¿      Suping Li, Qiao Jiang,Shaoli Liu, Yinlong Zhang, Yanhua Tian, Chen Song, Jing Wang, Yiguo Zou,Gregory J Anderson, Jing-Yan Han, Yung Chang, Yan Liu, Chen Zhang, Liang Chen,Guangbiao Zhou, Guangjun Nie*, Hao Yan*, Baoquan Ding* & Yuliang Zhao*, ADNA nanorobot functions as a cancer therapeutic in response to a moleculartrigger in vivo, Nature Biotechnology, 2018, 36(3), 258-264.
¡¾3¡¿      Tianjiao Ji, JiayanLang, Jing Wang, Rong Cai, Yinlong Zhang, Feifei Qi, Xiao Zhao, Jihui Hao, YingZhao, Guangjun Nie, Fine-tuned Co-assembly of Peptide-hybrid Liposomes forSite-Specific Regulation of Tumor Stroma for Enhanced Drug Penetration andPancreatic Tumor Chemotherapy, ACS Nano, 2017, 11(9), 8668-8678.
¡¾4¡¿      Suping Li, YinlongZhang, Jing Wang, Ying Zhao, Tianjiao Ji, Xiao Zhao, Yanping Ding, XiaozhengZhao, Ruifang Zhao, Feng Li, Xiao Yang, Shaoli Liu, Zhaofei Liu, Jianhao Lai, AndrewK. Whittaker, Gregory J Anderson,Jingyan Wei, Guangjun Nie, Nanoparticle-enabled local depletion oftumor-associated platelets enhances anti-tumor efficacy of chemotherapeutics, NatureBiomedical Engineering, 2017, 1, 667¨C679.
¡¾5¡¿      Xuexiang Han, Yiye Li,Xiao Zhao, Yinlong Zhang, Xiao Yang, Yongwei Wang, Ying Xu, Ruifang Zhao, GregJ Anderson, Yuliang Zhao, and Guangjun Nie, Reversalof pancreatic desmoplasia by re-educating stellate cells with a tumourmicroenvironment-activated nanosystem, Nature Commun, 2018,9, 3690.

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Du C, Qi YQ, et al. Epidermal Growth Factor Receptor Targeting Peptide Nanoparticles Simultaneously Deliver Gemcitabine and Olaparib to Treat PancreaticCancer with Breast Cancer 2 (BRCA2) Mutation[J]. ACS Nano, 2018.
DOI:10.1021/acsnano.8b01573
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Ji T J, Lang J Y, et al. Enhanced Natural Killer CellImmunotherapy by Rationally Assembling Fc Fragments of Antibodies onto Tumor Membranes[J].Advanced Materials, 2018.
DOI: 10.1002/adma.201804395
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