4.8 Article

Arsenoplatin-1 Is a Dual Pharmacophore Anticancer Agent

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 141, Issue 16, Pages 6453-6457

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.8b13681

Keywords

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Funding

  1. National Institute of Health [U01CA15146, 1U54CA193419, U54CA202995-03]
  2. Beneficentia Stiftung [IG-16049]
  3. ITT (Institute Toscano Tumori) [IG-16049]
  4. Ente Cassa Risparmio Firenze (ECR) [IG-16049]
  5. AIRC [IG-16049]
  6. Advanced Mass Spectrometry Tools for Cancer Research: Novel Applications in Proteomics, Metabolomics and Nanomedicine (Multiuser equipment Program 2016) [19650]
  7. COST Action [CM1105]
  8. AIRC-FIRC (Fondazione Italiana per la Ricerca sul Cancro, 3-years Fellowship for Italy Project) [18044]

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Arsenoplatins are adducts of two chemically important anticancer drugs, cisplatin and arsenic trioxide, that have a Pt(II) bond to an As(III) hydroxide center. Screens of the NCI-60 human tumor cell lines reveal that arsenoplatin-1 (AP-1), [Pt(mu-NHC(CH3)-O)(2)ClAs(OH)(2)], the first representative of this novel class of anticancer agents, displays a superior activity profile relative to the parent drugs As2O3 or cisplatin in a majority of cancer cell lines tested. These activity profiles are important because the success of arsenic trioxide in blood cancers (such as APL) has not been seen in solid tumors due to the rapid clearance of arsenous acid from the body. To understand the biological chemistry of these compounds, we evaluated interactions of AP-1 with the two important classes of biomolecules proteins and DNA. The first structural studies of AP-1 bound to model proteins reveal that platinum(II) binds the Ne of His in a manner that preserves the Pt-As bond. We find that AP-1 readily enters cells and binds to DNA with an intact Pt As bond (Pt:As ratio of 1). At longer incubation times, however, the Pt:As ratio in DNA samples increases, suggesting that the Pt-As bond breaks and releases the As(OH)2 moiety. We conclude that arsenoplatin-1 has the potential to deliver both Pt and As species to a variety of hematological and solid cancers.

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