Design, synthesis, experimental and theoretical characterization of a new multitarget 2-thienyl-N-acylhydrazone derivative

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Abstract

Pulmonary arterial hypertension (PAH) is a chronic cardiovascular disease that displays inflammatory components, which contributes to the difficulty of adequate treatment with the available therapeutic arsenal. In this context, the N-acylhydrazone derivative LASSBio-1359 was previously described as a multitarget drug candidate able to revert the events associated with the progression of PAH in animal models. However, in spite of having a dual profile as PDE4 inhibitor and adenosine A2A receptor agonist, LASSBio-1359 does not present balanced potencies in the modulation of these two targets, which difficult its therapeutic use. In this paper, we describe the design concept of LASSBio-1835, a novel structural analogue of LASSBio-1359, planned by exploiting ring bioisosterism. Using X-ray powder diffraction, calorimetric techniques, and molecular modeling, we clearly indicate the presence of a preferred synperiplanar conformation at the amide function, which is fixed by an intramolecular 1,5-N···S σ-hole intramolecular interaction. Moreover, the evaluation of LASSBio-1835 (4) as a PDE4 inhibitor and as an A2A agonist confirms it presents a more balanced dual profile, being considered a promising prototype for the treatment of PAH.

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Bastos, I. T. S., Pinheiro, P. de S. M., Costa, F. N., Rocha, M. D., Sant’anna, C. M. R., Braz, D., … Fraga, C. A. M. (2018). Design, synthesis, experimental and theoretical characterization of a new multitarget 2-thienyl-N-acylhydrazone derivative. Pharmaceuticals, 11(4). https://doi.org/10.3390/ph11040119

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