4.7 Review

Subcellular Performance of Nanoparticles in Cancer Therapy

期刊

INTERNATIONAL JOURNAL OF NANOMEDICINE
卷 15, 期 -, 页码 675-704

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/IJN.S226186

关键词

organelle; proton sponge effect; intracellular pathways; cancer therapy; nanocomposites

资金

  1. National Natural Science Foundation of China (NSFC) [31800794, U1605225, 81971734]
  2. Natural Science Foundation of Fujian Province [2019J01076]
  3. Fundamental Research Funds for the Central Universities [ZQN-713]
  4. Funds for Foreign Experts from Ministry of Science and Technology, China [G20190013023]
  5. Program for Innovative Research Team in Science and Technology in Fujian Province University

向作者/读者索取更多资源

With the advent of nanotechnology, various modes of traditional treatment strategies have been transformed extensively owing to the advantageous morphological, physiochemical, and functional attributes of nano-sized materials, which are of particular interest in diverse biomedical applications, such as diagnostics, sensing, imaging, and drug delivery. Despite their success in delivering therapeutic agents, several traditional nanocarriers often end up with deprived selectivity and undesired therapeutic outcome, which significantly limit their clinical applicability. Further advancements in terms of improved selectivity to exhibit desired therapeutic outcome toward ablating cancer cells have been predominantly made focusing on the precise entry of nanoparticles into tumor cells via targeting ligands, and subsequent delivery of therapeutic cargo in response to specific biological or external stimuli. However, there is enough room intracellularly, where diverse small-sized nanomaterials can accumulate and significantly exert potentially specific mechanisms of antitumor effects toward activation of precise cancer cell death pathways that can be explored. In this review, we aim to summarize the intracellular pathways of nanoparticles, highlighting the principles and state of their destructive effects in the subcellular structures as well as the current limitations of conventional therapeutic approaches. Next, we give an overview of subcellular performances and the fate of internalized nanoparticles under various organelle circumstances, particularly endosome or lysosome, mitochondria, nucleus, endoplasmic reticulum, and Golgi apparatus, by comprehensively emphasizing the unique mechanisms with a series of interesting reports. Moreover, intracellular transformation of the internalized nanoparticles, prominent outcome and potential affluence of these interdependent subcellular components in cancer therapy are emphasized. Finally, we conclude with perspectives with a focus on the contemporary challenges in their clinical applicability.

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