4.7 Review

Nanomaterial-Enabled Sensors and Therapeutic Platforms for Reactive Organophosphates

Journal

NANOMATERIALS
Volume 11, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/nano11010224

Keywords

reactive organophosphate; oxime; antidote delivery; nanosensor; nanoscavenger

Funding

  1. US Defense Threats Reduction Agency-DOD [HDTRA1-17-C-00001]

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Emerging nanotechnologies and multifunctional nanomaterials show significant potential in advancing detection methods and treatment modalities for organophosphates. Nanomaterial-based sensors can detect and quantitatively analyze organophosphates, while nanotherapeutic platforms provide potential remedies through drug delivery and decontamination.
Unintended exposure to harmful reactive organophosphates (OP), which comprise a group of nerve agents and agricultural pesticides, continues to pose a serious threat to human health and ecosystems due to their toxicity and prolonged stability. This underscores an unmet need for developing technologies that will allow sensitive OP detection, rapid decontamination and effective treatment of OP intoxication. Here, this article aims to review the status and prospect of emerging nanotechnologies and multifunctional nanomaterials that have shown considerable potential in advancing detection methods and treatment modalities. It begins with a brief introduction to OP types and their biochemical basis of toxicity followed by nanomaterial applications in two topical areas of primary interest. One topic relates to nanomaterial-based sensors which are applicable for OP detection and quantitative analysis by electrochemical, fluorescent, luminescent and spectrophotometric methods. The other topic is directed on nanotherapeutic platforms developed as OP remedies, which comprise nanocarriers for antidote drug delivery and nanoscavengers for OP inactivation and decontamination. In summary, this article addresses OP-responsive nanomaterials, their design concepts and growing impact on advancing our capability in the development of OP sensors, decontaminants and therapies.

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