Abstract

ObjectivesPH46A (1) demonstrates significant anti-inflammatory activity in phenotypic models but its mechanism and site of action have been elusive. Current study focused on the bioactivity of PH46 (2) and related novel indane dimers (6-10) to investigate the impact of changes in substitution and stereochemistry at the C-1 and C-2 positions of the PH46 (2) scaffold.MethodsCytotoxicity profiles of compounds were established using THP-1 macrophages and SW480 cells. Effects of the compounds were then evaluated at 10 µm using 5-lipoxygenase (LOX) and 15-LOX enzymes, and 5-LOX binding was evaluated in silico against NDGA, nitric oxide (NO) released from LPS-induced SW480 cells and cytokines in THP-1 macrophages (IL-6, IL-1β, TNF-α and IFN-γ) and in SW480 cells (IL-8).Key findingsPH46 (2) and 7 cause reduction in NO, inhibition of 5-LOX with high binding energy and no cytotoxicity effects in THP-1 macrophages and SW480 cell lines (up to 50 µm). The cytokine profiling of the series demonstrated inhibition of IL-6 and TNF-α in THP-1 macrophages together with IL-8 in SW480 cells.ConclusionsThe observed profile of cytokine modulation (IL-6/ TNF-α, IL-8) and inhibition of release of NO and 5-LOX may contribute to the in vivo effects demonstrated by indane dimers and PH46A (1) in murine models of colitis.

Highlights

  • Of the compounds screened at 10 μM, only PH46 (2) and methylene analogue 7 inhibited 5-LOX significantly at 45.30 Æ 5.28% and 39.71 Æ 4.95%, respectively, P < 0.05

  • The Z0-factor in this 96-well microplate ferrous oxidation-xylenol orange (FOX) assay was determined as 0.891 which demonstrated the suitability for midthroughput to high-throughput screening.[24]

  • The IC50 value for nordihydroguaiaretic acid (NDGA) was determined at 4.61 Æ 0.93 μM, similar to the literature values.[25]

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Summary

Introduction

This gives a broad diversity of chemical entities with indane as the core structure. The current study is based on molecules that have been developed in our group over the last 20 years These studies centred on the synthesis and evaluation of the pharmacological activity of nature identical and synthetically modified indanes, indanones and dimeric indane. One of these molecules, PH46A (1) or 6-(Methylamino)hexane-1,2,3,4,5-pentanol

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