4.8 Article

A nuclease-mimetic platinum nanozyme induces concurrent DNA platination and oxidative cleavage to overcome cancer drug resistance

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NATURE COMMUNICATIONS
卷 13, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-022-35022-w

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资金

  1. National Key Research and Development Program of China [2022YFB3203801, 2022YFB3203804, 2022YFB3203800]
  2. Leading Talent of Ten Thousand Plan-National High-Level Talents Special Support Plan
  3. National Natural Science Foundation of China [32071374]
  4. Program of Shanghai Academic Research Leader under the Science and Technology Innovation Action Plan [21XD1422100]
  5. Explorer Program of Science and Technology Commission of Shanghai Municipality [22TS1400700]
  6. One Belt and One Road International Cooperation Project from Key Research and Development Program of Zhejiang Province [2019C04024]
  7. Zhejiang Provincial Natural Science Foundation of China [LGF19C100002]
  8. Innovative Research Team of High-Level Local Universities in Shanghai [SHSMU-ZDCX20210900]
  9. CAS Interdisciplinary Innovation Team [JCTD-2020-08]

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In this study, a nuclease-mimetic platinum nanozyme was developed to target cancer cell nuclei and induce concurrent DNA platination and oxidative cleavage, overcoming platinum drug resistance. Unlike conventional platinum nanoparticles, the platinum nanozyme specifically cleaves the formed platinum-DNA adducts by generating reactive oxygen species, disrupting the DNA bending required for nucleotide-excision repair. This approach allows for excessive accumulation of platinum-DNA adducts in cisplatin-resistant cancer cells, enabling highly efficient cancer therapy.
Platinum (Pt) resistance in cancer almost inevitably occurs during clinical Pt-based chemotherapy. The spontaneous nucleotide-excision repair of cancer cells is a representative process that leads to Pt resistance, which involves the local DNA bending to facilitate the recruitment of nucleotide-excision repair proteins and subsequent elimination of Pt-DNA adducts. By exploiting the structural vulnerability of this process, we herein report a nuclease-mimetic Pt nanozyme that can target cancer cell nuclei and induce concurrent DNA platination and oxidative cleavage to overcome Pt drug resistance. We show that the Pt nanozyme, unlike cisplatin and conventional Pt nanoparticles, specifically induces the nanozyme-catalyzed cleavage of the formed Pt-DNA adducts by generating in situ reactive oxygen species, which impairs the damage recognition factors-induced DNA bending prerequisite for nucleotide-excision repair. The recruitment of downstream effectors of nucleotide-excision repair to DNA lesion sites, including xeroderma pigmentosum groups A and F, is disrupted by the Pt nanozyme in cisplatin-resistant cancer cells, allowing excessive accumulation of the Pt-DNA adducts for highly efficient cancer therapy. Our study highlights the potential benefits of applying enzymatic activities to the use of the Pt nanomedicines, providing a paradigm shift in DNA damaging chemotherapy.

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