4.6 Article

Hypoxia-Activated Prodrug Derivatives of Carbonic Anhydrase Inhibitors in Benzenesulfonamide Series: Synthesis and Biological Evaluation

Journal

MOLECULES
Volume 25, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/molecules25102347

Keywords

hypoxia-activated prodrug; carbonic anhydrase; inhibitors; sulfonamides; hypoxic tumour

Funding

  1. ERC advanced grant (ERC-ADG-2015) [694812-Hypoximmuno]
  2. EUROSTARS [COMPACT-12053]
  3. French Ministry of Europe and Foreign Affairs (MEAE)
  4. Dutch Organisation for Internationalisation in Education (NUFFIC) [PHC Van Gogh 42528YH]
  5. Academy of Finland
  6. Jane & Aatos Erkko Foundation
  7. MDPI
  8. European Program H2020-2015-17 [733008]

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Hypoxia, a common feature of solid tumours' microenvironment, is associated with an aggressive phenotype and is known to cause resistance to anticancer chemo- and radiotherapies. Tumour-associated carbonic anhydrases isoform IX (hCA IX), which is upregulated under hypoxia in many malignancies participating to the microenvironment acidosis, represents a valuable target for drug strategy against advanced solid tumours. To overcome cancer cell resistance and improve the efficacy of therapeutics, the use of bio-reducible prodrugs also known as Hypoxia-activated prodrugs (HAPs), represents an interesting strategy to be applied to target hCA IX isozyme through the design of selective carbonic anhydrase IX inhibitors (CAIs). Here, we report the design, synthesis and biological evaluations including CA inhibition assays, toxicity assays on zebrafish and viability assays on human cell lines (HT29 and HCT116) of new HAP-CAIs, harboring different bio-reducible moieties in nitroaromatic series and a benzenesulfonamide warhead to target hCA IX. The CA inhibition assays of this compound series showed a slight selectivity against hCA IX versus the cytosolic off-target hCA II and hCA I isozymes. Toxicity and viability assays have highlighted that the compound bearing the 2-nitroimidazole moiety possesses the lowest toxicity (LC50 of 1400 mu M) and shows interesting results on viability assays.

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