4.5 Article

Gram-Scale Solution-Phase Synthesis of Selective Sodium Bicarbonate Co-transport Inhibitor S0859: in vitro Efficacy Studies in Breast Cancer Cells

Journal

CHEMMEDCHEM
Volume 7, Issue 10, Pages 1808-1814

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cmdc.201200335

Keywords

drug design; ion channels; medicinal chemistry; sulfonamides; total synthesis

Funding

  1. Lundbeck Foundation
  2. Carlsberg Foundation
  3. Danish Council for Independent Research
  4. Danish Cancer Society
  5. Novo Nordisk Foundation

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Na+-coupled HCO3- transporters (NBCs) mediate the transport of bicarbonate ions across cell membranes and are thus ubiquitous regulators of intracellular pH. NBC dysregulation is associated with a range of diseases; for instance, NBCn1 is strongly up-regulated in a model of ErbB2-dependent breast cancer, a malignant and widespread cancer with no targeted treatment options, and single-nucleotide polymorphisms in NBCn1 genetically link to breast cancer development and hypertension. The N-cyanosulfonamide S0859 has been shown to selectively inhibit NBCs, and its availability on the gram scale is therefore of significant interest to the scientific community. Herein we describe a short and efficient synthesis of S0859 with an overall yield of 45?% from commercially available starting materials. The inhibitory effect of S0859 on recovery of intracellular pH after an acid load was verified in human and murine cancer cell lines in Ringer solutions. However, S0859 binds very strongly to components in plasma, and accordingly, measurements on isolated murine tissues showed no effect of S0859 at concentrations up to 50 mu M.

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