Article ID Journal Published Year Pages File Type
1369499 Bioorganic & Medicinal Chemistry Letters 2016 5 Pages PDF
Abstract

Pentacycloundecylamines (PCUs) and adamantane amines, such as NGP1-01 (1) and amantadine, have shown significant channel blocking activities. They are postulated to act as chemosensitizers and circumvent the resistance of the plasmodia parasite against chloroquine (CQ) by inhibiting the p-glycoprotein efflux pump and enabling the accumulation of CQ inside the parasite digestive vacuole. Twelve polycyclic amines containing either a PCU or adamantane amine moiety conjugated to different aromatic functionalities through various tethered linkers were selected based on their channel blocking abilities and evaluated as potential chemosensitizers. Compounds 2, 4, 5 and 10 showed significant voltage-gated calcium channel (VGCC) blocking ability (IC50 = 0.27–35 μM) and were able to alter the CQ IC50 in differing degrees (45–81%) in the multidrug resistant Plasmodium falciparum Dd2 isolate. Among them, the PCU-dansyl amine compound (4) displayed the best potential to act as a chemosensitizer against the Dd2 strain at a 1 μM concentration (RMI = 0.19) while displaying moderate antiplasmodial activity (Dd2 IC50 = 6.25 μM) and low in vitro cytotoxicity against a mammalian cell line (CHO, IC50 = 119 μM). Compounds 2 and 10 also showed some promising chemosensitizing abilities (RMI = 0.36 and 0.35 respectively). A direct correlation was found between the VGCC blocking ability of these polycyclic amines and their capacity to act as CQ resistance modulating agents.

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