N
Na Qiu
Researcher at Shandong University
Publications - 6
Citations - 149
Na Qiu is an academic researcher from Shandong University. The author has contributed to research in topics: Cancer & Targeted drug delivery. The author has an hindex of 2, co-authored 6 publications receiving 21 citations.
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Journal ArticleDOI
Nanotechnology for Boosting Cancer Immunotherapy and Remodeling Tumor Microenvironment: The Horizons in Cancer Treatment.
TL;DR: In this paper, the authors highlight the application, progress, and prospect of nanomedicine in the process of tumor immunoediting and also discuss several engineering methods to improve the efficiency of tumor treatment.
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Chondroitin sulfate-based nanoparticles for enhanced chemo-photodynamic therapy overcoming multidrug resistance and lung metastasis of breast cancer.
Xiaoqun Shi,Xiaoye Yang,Mengyao Liu,Rujuan Wang,Na Qiu,Yuanxiu Liu,Haotong Yang,Jianbo Ji,Guangxi Zhai +8 more
TL;DR: The study suggested that the multifunctional nanoplatform had good application prospect for effective breast cancer therapy.
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Oxygen-carrying nanoparticle-based chemo-sonodynamic therapy for tumor suppression and autoimmunity activation
Yanan Zhang,Na Qiu,Yu Zhang,Huixian Yan,Jianbo Ji,Yanwei Xi,Xiaoye Yang,Xiaogang Zhao,Guangxi Zhai +8 more
TL;DR: In this article, a CD44 receptor-targeted and redox/ultrasound-responsive oxygen-carrying nanoplatform was constructed using chondroitin sulfate (CS), reactive oxygen species (ROS)-generating sonosensitizer Rhein (Rh), and perfluorocarbon (PFC).
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Research Progress in Bioinspired Drug Delivery Systems
TL;DR: Compared with traditional drug delivery systems (DDSs), BDDSs are based on biological nanocarriers, exhibiting superior biocompatibility, fewer side effects, natural targeting, and diverse modifications.
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A review of stimuli-responsive polymeric micelles for tumor-targeted delivery of curcumin.
TL;DR: In this paper, the authors discuss and summarize recent developments in research of curcumin-loaded intelligent polymeric micelles based on endogenous and exogenous stimuli, and facilitate the development of novel delivery systems for future research.