Recent Advancements of Nanotechnology-Based Strategies for Overcoming Tumor Microenvironment Hypoxia

Hypoxia is a typical characteristic of most solid malignancies, which has multiple effects on malignant phenotypes and biological behaviors of tumors including epithelial-mesenchymal-transition (EMT), invasion, migration, metastasis, autophagy, stem cell maintenance, pathological angiogenesis, drug...

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Veröffentlicht in:Frontiers in bioscience (Landmark. Print) 2022-05, Vol.27 (5), p.145-145
Hauptverfasser: Wu, Jiangchao, Song, Jinyuan, Yin, Xianghong, Tang, Jianghui, Zhang, Junlei, Wang, Xun, Ji, Yongtao, Zhao, Yaxing, Chen, Dong, Sheng, Jianpeng, Bai, Xueli, Liang, Tingbo
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Sprache:eng
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Zusammenfassung:Hypoxia is a typical characteristic of most solid malignancies, which has multiple effects on malignant phenotypes and biological behaviors of tumors including epithelial-mesenchymal-transition (EMT), invasion, migration, metastasis, autophagy, stem cell maintenance, pathological angiogenesis, drug resistance, and immunosuppression. Rcentlyumoand reversing the tumor hypoxic environment via nanotechnology has emerged as a novel therapeutic approach for the treatment of malignancies. The main strategies related to nanotechnology to alleviate or ameliorate hypoxic environment are as follows: (1) Bringing external oxygen to tumor hypoxic microenvironment; (2) Generating oxygen based on nanotechnology ; (3) Regulating the structure of the tumor microenvironment; (4) Decreasing oxygen consumption in the tumor microenvironment. In this review, we will discuss these nanotechnologies in detail.
ISSN:2768-6701
2768-6698
DOI:10.31083/j.fbl2705145