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Cancer treatment and toxicity outlook of nanoparticles

Diversified nanosystems with tunable physicochemical attributes have emerged as potential solution to globally devastating cancer by offering novel possibilities for improving the techniques of cancer detection, imaging, therapies, diagnosis, drug delivery and treatment. Drug delivery systems based...

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Bibliographic Details
Published in:Environmental research 2023-11, Vol.237, p.116870-116870, Article 116870
Main Authors: Neetika, Sharma, Mamta, Thakur, Pankaj, Gaur, Paras, Rani, Gokana Mohana, Rustagi, Sarvesh, Talreja, Rishi Kumar, Chaudhary, Vishal
Format: Article
Language:English
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Summary:Diversified nanosystems with tunable physicochemical attributes have emerged as potential solution to globally devastating cancer by offering novel possibilities for improving the techniques of cancer detection, imaging, therapies, diagnosis, drug delivery and treatment. Drug delivery systems based on nanoparticles (NPs) with ability of crossing different biological barriers are becoming increasingly popular. Besides, NPs are utilized in pharmaceutical sciences to mitigate the toxicity of conventional cancer therapeutics. However, significant NPs-associated toxicity, off-targeted activities, and low biocompatibility limit their utilization for cancer theranostics and can be hazardous to cancer patients up to life-threatening conditions. NPs interact with the biomolecules and disturb their regular function by aggregating inside cells and forming a protein corona, and the formulation turns ineffective in controlling cancer cell growth. The adverse interactions between NPs and biological entities can lead to life-threatening toxicities. This review focuses on the widespread use of various NPs including zinc oxide, titanium oxide, silver, and gold, which serve as efficient nano-vehicles and demonstrate notable pharmacokinetic and pharmacodynamic advantages in cancer therapy. Subsequently, the mechanism of nanotoxicity attached with these NPs, alternate solutions and their prospect to revolutionize cancer theranostics are highlighted. This review will serve as guide for future developments associated with high-performance NPs with controlled toxicity for establishing them as modern-age nanotools to manage cancer in tailored manner. Graphical abstract of cancer nanotechnology. [Display omitted] •Focused on cancer treatment and toxicity outlook of nanoparticles.•Diversified nano systems with tunable physicochemical attributes emerged as potential solutions to globally devastating cancer.•Drug delivery systems based on nanoparticles with the ability of crossing different biological barriers are becoming increasingly popular.•Adverse interactions between NPs and biological entities can lead to life-threatening toxicities.
ISSN:0013-9351
1096-0953
DOI:10.1016/j.envres.2023.116870