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NaCl Nanoparticles as a Cancer Therapeutic

  • Wen Jiang
  • , Lei Yin
  • , Hongmin Chen
  • , Amy Victoria Paschall
  • , Liuyang Zhang
  • , Wenyan Fu
  • , Weizhong Zhang
  • , Trever Todd
  • , Kevin Shengyang Yu
  • , Shiyi Zhou
  • , Zipeng Zhen
  • , Michael Butler
  • , Li Yao
  • , Feng Zhang
  • , Ye Shen
  • , Zibo Li
  • , Amelia Yin
  • , Hang Yin
  • , Xianqiao Wang
  • , Fikri Y. Avci
  • Xiaozhong Yu, Jin Xie
  • University of Georgia
  • ReproTox Biotech LLC
  • Xiamen University
  • Howard Hughes Medical Institute
  • University of North Carolina at Chapel Hill

Research output: Contribution to journalArticlepeer-review

112 Scopus citations

Abstract

Many inorganic nanoparticles are prepared and their behaviors in living systems are investigated. Yet, common electrolytes such as NaCl are left out of this campaign. The underlying assumption is that electrolyte nanoparticles will quickly dissolve in water and behave similarly as their constituent salts. Herein, this preconception is challenged. The study shows that NaCl nanoparticles (SCNPs) but not salts are highly toxic to cancer cells. This is because SCNPs enter cells through endocytosis, bypassing cell regulations on ion transport. When dissolved inside cancer cells, SCNPs cause a surge of osmolarity and rapid cell lysis. Interestingly, normal cells are much more resistant to the treatment due to their relatively low sodium levels. Unlike conventional chemotherapeutics, SCNPs cause immunogenic cell death or ICD. In vivo studies show that SCNPs not only kill cancer cells, but also boost an anticancer immunity. The discovery opens up a new perspective on nanoparticle-based therapeutics.

Original languageEnglish
Article number1904058
JournalAdvanced Materials
Volume31
Issue number46
DOIs
StatePublished - 1 Nov 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • apoptosis
  • cancer
  • immunogenic cell death
  • nanoparticles
  • osmosis

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