81
TITLE: Efficient Capture and Separation of Cancer Cells Using Hyaluronic Acid-Modified Magnetic Beads in a Microfluidic Chip
AUTHORS: Di Yin; Andrew Shi; Benqing Zhou; Mengyuan Wang; Gangwei Xu; Mingwu Shen; Xiaoyue Zhu; Xiangyang Shi;
PUBLISHED: 2022, SOURCE: Langmuir, VOLUME: 38, ISSUE: 36
INDEXED IN: CrossRef: 12
IN MY: ORCID
82
TITLE: Chemotherapy Mediated by Biomimetic Polymeric Nanoparticles Potentiates Enhanced Tumor Immunotherapy via Amplification of Endoplasmic Reticulum Stress and Mitochondrial Dysfunction
AUTHORS: Yunqi Guo; Yu Fan; Zhiqiang Wang; Gaoming Li; Mengsi Zhan; Junli Gong; Jean‐Pierre Majoral; Xiangyang Shi; Mingwu Shen;
PUBLISHED: 2022, SOURCE: Advanced Materials, VOLUME: 34, ISSUE: 47
INDEXED IN: CrossRef: 61
IN MY: ORCID
83
TITLE: Phosphorous Dendron Micelles as a Nanomedicine Platform for Cooperative Tumor Chemoimmunotherapy via Synergistic Modulation of Immune Cells
AUTHORS: Mengsi Zhan; Jieru Qiu; Yu Fan; Liang Chen; Yunqi Guo; Zhiqiang Wang; Jin Li; Jean‐Pierre Majoral; Xiangyang Shi;
PUBLISHED: 2022, SOURCE: Advanced Materials, VOLUME: 35, ISSUE: 3
INDEXED IN: CrossRef: 36
IN MY: ORCID
84
TITLE: Nanomaterial‐Boosted Tumor Immunotherapy Through Natural Killer Cells
AUTHORS: Mengsi Zhan; Yunqi Guo; Mingwu Shen; Xiangyang Shi;
PUBLISHED: 2022, SOURCE: Advanced NanoBiomed Research, VOLUME: 2, ISSUE: 12
INDEXED IN: CrossRef: 4
IN MY: ORCID
85
TITLE: Dendrimer-decorated nanogels: Efficient nanocarriers for biodistribution in vivo and chemotherapy of ovarian carcinoma
AUTHORS: Li, X; Ouyang, ZJ; Li, HL; Hu, CL; Saha, P; Xing, LX; Shi, XY; Pich, A;
PUBLISHED: 2021, SOURCE: BIOACTIVE MATERIALS, VOLUME: 6, ISSUE: 10
INDEXED IN: Scopus WOS CrossRef: 38
IN MY: ORCID
86
TITLE: Intelligent nanogels with self-adaptive responsiveness for improved tumor drug delivery and augmented chemotherapy
AUTHORS: Li, X; Li, HL; Zhang, CC; Pich, A; Xing, LX; Shi, XY;
PUBLISHED: 2021, SOURCE: BIOACTIVE MATERIALS, VOLUME: 6, ISSUE: 10
INDEXED IN: Scopus WOS CrossRef: 32
IN MY: ORCID
87
TITLE: First-in-Class Phosphorus Dendritic Framework, a Wide Surface Functional Group Palette Bringing Noteworthy Anti-Cancer and Anti-Tuberculosis Activities: What Lessons to Learn?
AUTHORS: Mignani, S; Bignon, J; Shi, XY; Majoral, JP;
PUBLISHED: 2021, SOURCE: MOLECULES, VOLUME: 26, ISSUE: 12
INDEXED IN: WOS CrossRef: 4
IN MY: ORCID
88
TITLE: Impact of molecular rigidity on the gene delivery efficiency of core-shell tecto dendrimers
AUTHORS: Wang, DY; Chen, L; Gao, Y; Song, C; Ouyang, ZJ; Li, CS; Mignani, S; Majoral, JP; Shi, XY; Shen, MW;
PUBLISHED: 2021, SOURCE: JOURNAL OF MATERIALS CHEMISTRY B, VOLUME: 9, ISSUE: 31
INDEXED IN: WOS CrossRef: 8
IN MY: ORCID
89
TITLE: Functionalized Dendrimer Platforms as a New Forefront Arsenal Targeting SARS-CoV-2: An Opportunity
AUTHORS: Mignani, S; Shi, XY; Karpus, A; Lentini, G; Majoral, JP;
PUBLISHED: 2021, SOURCE: PHARMACEUTICS, VOLUME: 13, ISSUE: 9
INDEXED IN: Scopus WOS CrossRef: 15
IN MY: ORCID
90
TITLE: Blood Compatibility of Amphiphilic Phosphorous Dendrons-Prospective Drug Nanocarriers
AUTHORS: Suty, S; Oravczova, V; Garaiova, Z; Subjakova, V; Ionov, M; Shcharbin, D; Simonikova, Z; Bartek, P; Zvarik, M; Shi, XY; Mignani, S; Majoral, JP; Bryszewska, M; Hianik, T; Waczulikova, I;
PUBLISHED: 2021, SOURCE: BIOMEDICINES, VOLUME: 9, ISSUE: 11
INDEXED IN: Scopus WOS CrossRef: 4
IN MY: ORCID
Page 9 of 41. Total results: 407.