4.8 Article

Arsenene Nanodots with Selective Killing Effects and their Low-Dose Combination with ss-Elemene for Cancer Therapy

期刊

ADVANCED MATERIALS
卷 33, 期 37, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202102054

关键词

2D materials; arsenene nanodots; ss-elemene; combination cancer therapy; selective killing effects

资金

  1. Harvard Medical School/Brigham and Women's Hospital Department of Anesthesiology-Basic Scientist Grant [2420 BPA075]
  2. US METAvivor Early Career Investigator Award [2018A020560]
  3. National Natural Science Foundation of China [81730108, 81973635, 32025021, 31971292]
  4. National Key R&D Program of China [2018YFC0910601, SQ2019YFA040008-03]
  5. Khoury Innovation Award [2020A003219]
  6. Stepping Strong Breakthrough Innovator Award [113548]
  7. American Heart Association (AHA) Collaborative Sciences Award [2018A004190]

向作者/读者索取更多资源

Through efforts in materials science, biocompatible PEGylated arsenene nanodots with high monoelemental arsenic purity have been synthesized, showing potential for selective and effective treatment of solid tumors.
Arsenical drugs have achieved hallmark success in treating patients with acute promyelocytic leukemia, but expanding their clinical utility to solid tumors has proven difficult with the contradiction between the therapeutic efficacy and the systemic toxicity. Here, leveraging efforts from materials science, biocompatible PEGylated arsenene nanodots (AsNDs@PEG) with high monoelemental arsenic purity that can selectively and effectively treat solid tumors are synthesized. The intrinsic selective killing effect of AsNDs@PEG is closely related to high oxidative stress in tumor cells, which leads to an activated valence-change of arsenic (from less toxic As-0 to severely toxic oxidation states), followed by decreased superoxide dismutase activity and massive reactive oxygen species (ROS) production. These effects occur selectively within cancer cells, causing mitochondrial damage, cell-cycle arrest, and DNA damage. Moreover, AsNDs@PEG when applied in a multi-drug combination strategy with beta-elemene, a plant-derived anticancer drug, achieves synergistic antitumor outcomes, and its newly discovered on-demand photothermal properties facilitate the elimination of the tumors without recurrence, potentially further expanding its clinical utility. In line of the practicability for a large-scale fabrication and negligible systemic toxicity of AsNDs@PEG (even at high doses and with repetitive administration), a new-concept arsenical drug with high therapeutic efficacy for selective solid tumor therapy is provided.

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