M
Ming-Xue Wu
Researcher at Jilin University
Publications - 27
Citations - 2481
Ming-Xue Wu is an academic researcher from Jilin University. The author has contributed to research in topics: Chemistry & Solid-phase microextraction. The author has an hindex of 11, co-authored 19 publications receiving 1636 citations. Previous affiliations of Ming-Xue Wu include Qingdao University.
Papers
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Journal ArticleDOI
Metal-Organic Framework (MOF)-Based Drug/Cargo Delivery and Cancer Therapy.
Ming-Xue Wu,Ying-Wei Yang +1 more
TL;DR: A brief introduction to the applications of MOFs in controlled drug/cargo delivery and cancer therapy that have been reported in recent years is provided here.
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Applications of covalent organic frameworks (COFs): From gas storage and separation to drug delivery
Ming-Xue Wu,Ying-Wei Yang +1 more
TL;DR: Covalent organic frameworks (COFs) as discussed by the authors are a class of porous organic structures whose backbones were composed of light elements (B, C, N, O, Si) and linked by robust covalent bonds to endow such material with desirable properties, such as inherent porosity, well-defined pore aperture, ordered channel structure, large surface area, high stability, and multi-dimension.
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Multistimuli Responsive Core–Shell Nanoplatform Constructed from Fe3O4@MOF Equipped with Pillar[6]arene Nanovalves
Ming-Xue Wu,J.-Y. Gao,Fang Wang,Jie Yang,Nan Song,Xiao-Yu Jin,Peng Mi,Jian Tian,Jiayan Luo,Feng Liang,Ying-Wei Yang +10 more
TL;DR: Water-soluble carboxylatopillar[6]arene system achieved sustained drug release over 7 days due to stronger host-guest binding, suggesting that the nanovalve tightness further reinforces the desirable release of anticancer agent over a prolonged time at the lesion site.
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Polydopamine-based immobilization of a hydrazone covalent organic framework for headspace solid-phase microextraction of pyrethroids in vegetables and fruits
TL;DR: A novel hydrazone covalent organic framework (COF) is designed and a polydopamine (PDA) method to immobilize COF on a stainless steel fiber for headspace solid-phase microextraction (HS-SPME) and the developed method was applied to the determination of pyrethroids in fruit and vegetable samples.
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Multifunctional Supramolecular Materials Constructed from Polypyrrole@UiO-66 Nanohybrids and Pillararene Nanovalves for Targeted Chemophotothermal Therapy
Ming-Xue Wu,Hong-Jing Yan,J.-Y. Gao,Yan Cheng,Jie Yang,Jia-Rui Wu,Bai-Juan Gong,Haiyuan Zhang,Ying-Wei Yang,Ying-Wei Yang +9 more
TL;DR: The present strategy offers not only the distinctly targeted drug delivery and release, but also excellent tumor inhibition efficacy of simultaneous chemophotothermal therapy, opening a new avenue for effective cancer treatment.