Graphene oxide nanoarchitectures in cancer biology: Nano-modulators of autophagy and apoptosis

自噬 纳米载体 癌细胞 纳米技术 光热治疗 程序性细胞死亡 细胞凋亡 纳米医学 癌症 癌症研究 细胞生物学 材料科学 药物输送 化学 生物 纳米颗粒 生物化学 遗传学
作者
Afshin Taheriazam,Ghazaleh Gholamiyan Yousef Abad,Shima Hajimazdarany,Mohammad Hassan Imani,Setayesh Ziaolhagh,Mohammad Arad Zandieh,Seyedeh Delaram Bayanzadeh,Sepideh Mirzaei,Michael R. Hamblin,Maliheh Entezari,Amir Reza Aref,Ali Zarrabi,Yavuz Nuri Ertaş,Jun Ren,Romina Rajabi,Mahshid Deldar Abad Paskeh,Mehrdad Hashemi,Kiavash Hushmandi
出处
期刊:Journal of Controlled Release [Elsevier]
卷期号:354: 503-522 被引量:38
标识
DOI:10.1016/j.jconrel.2023.01.028
摘要

Nanotechnology is a growing field, with many potential biomedical applications of nanomedicine for the treatment of different diseases, particularly cancer, on the horizon. Graphene oxide (GO) nanoparticles can act as carbon-based nanocarriers with advantages such as a large surface area, good mechanical strength, and the capacity for surface modification. These nanostructures have been extensively used in cancer therapy for drug and gene delivery, photothermal therapy, overcoming chemotherapy resistance, and for imaging procedures. In the current review, we focus on the biological functions of GO nanoparticles as regulators of apoptosis and autophagy, the two major forms of programmed cell death. GO nanoparticles can either induce or inhibit autophagy in cancer cells, depending on the conditions. By stimulating autophagy, GO nanocarriers can promote the sensitivity of cancer cells to chemotherapy. However, by impairing autophagy flux, GO nanoparticles can reduce cell survival and enhance inflammation. Similarly, GO nanomaterials can increase ROS production and induce DNA damage, thereby sensitizing cancer cells to apoptosis. In vitro and in vivo experiments have investigated whether GO nanomaterials show any toxicity in major body organs, such as the brain, liver, spleen, and heart. Molecular pathways, such as ATG, MAPK, JNK, and Akt, can be regulated by GO nanomaterials, leading to effects on autophagy and apoptosis. These topics are discussed in this review to shed some lights towards the biomedical potential of GO nanoparticles and their biocompatibility, paving the way for their future application in clinical trials.
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