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查尔酮作为 HOCl 的清除剂和氧化爆发的抑制剂:结构-活性关系研究。

Chalcones as Scavengers of HOCl and Inhibitors of Oxidative Burst: Structure-Activity Relationship Studies.

机构信息

LAQV, REQUIMTE, Laboratory of Applied Chemistry, Department of Chemical Sciences, Faculty of Pharmacy, University of Porto, Porto,Portugal.

LAQV, REQUIMTE, Department of Chemistry, University of Aveiro, Aveiro,Portugal.

出版信息

Med Chem. 2022;18(1):88-96. doi: 10.2174/1573406417666201230093207.

Abstract

AIMS

This study evaluates the ability of chalcones to scavenge hypochlorous acid (HOCl) and modulate oxidative burst.

BACKGROUND

The chemistry of chalcones has long been a matter of interest to the scientific community due to the phenolic groups often present and to the various replaceable hydrogens that allow the formation of a broad number of derivatives. Due to this chemical diversity, several biological activities have been attributed to chalcones, namely anti-diabetic, anti-inflammatory and antioxidant.

OBJECTIVES

Evaluate the ability of a panel of 34 structurally related chalcones to scavenge HOCl and/or suppress its production through the inhibition of human neutrophils' oxidative burst, followed by the establishment of the respective structure-activity relationships.

METHODS

The ability of chalcones to scavenge HOCl was evaluated by fluorimetric detection of the inhibition of dihydrorhodamine 123 oxidation. The ability of chalcones to inhibit neutrophils' oxidative burst was evaluated by chemiluminometric detection of the inhibition of luminol oxidation.

RESULTS

It was observed that the ability to scavenge HOCl depends on the position and number of hydroxy groups on both aromatic rings. Chalcone 5b was the most active with an IC50 value of 1.0 ± 0.1 μM. The ability to inhibit neutrophils' oxidative burst depends on the presence of a 2'-hydroxy group on A-ring and on other substituents groups, e.g. methoxy, hydroxy, nitro and/or chlorine atom( s) at C-2, C-3 and/or C-4 on B-ring, as in chalcones 2d, 2f, 2j, 2i, 4b, 2n and 1d, which were the most actives with IC50 values ranging from 0.61 ± 0.02 μM to 1.7 ± 0.2 μM.

CONCLUSION

The studied chalcones showed high activity at a low micromolar range, indicating their potential as antioxidant agents and to be used as a molecular structural scaffold for the design of new anti-inflammatory compounds.

摘要

目的

本研究评估查耳酮清除次氯酸(HOCl)和调节氧化爆发的能力。

背景

由于酚基团的存在和各种可替代的氢原子允许形成广泛的衍生物,查耳酮的化学性质长期以来一直是科学界关注的焦点。由于这种化学多样性,已经赋予了查耳酮几种生物活性,即抗糖尿病、抗炎和抗氧化。

目的

评估一组 34 种结构相关的查耳酮清除 HOCl 的能力,以及通过抑制人中性粒细胞氧化爆发来抑制其产生的能力,然后建立相应的结构-活性关系。

方法

通过荧光检测二氢罗丹明 123 氧化抑制作用来评估查耳酮清除 HOCl 的能力。通过化学发光检测抑制鲁米诺氧化来评估查耳酮抑制中性粒细胞氧化爆发的能力。

结果

观察到清除 HOCl 的能力取决于两个芳环上羟基的位置和数量。查耳酮 5b 是最活跃的,IC50 值为 1.0 ± 0.1 μM。抑制中性粒细胞氧化爆发的能力取决于 A 环上 2'-羟基的存在以及 B 环上其他取代基,例如甲氧基、羟基、硝基和/或氯原子(s)在 C-2、C-3 和/或 C-4 上,如查耳酮 2d、2f、2j、2i、4b、2n 和 1d,它们是最活跃的,IC50 值在 0.61 ± 0.02 μM 至 1.7 ± 0.2 μM 之间。

结论

研究的查耳酮在低微摩尔范围内表现出高活性,表明它们具有作为抗氧化剂的潜力,并可作为设计新型抗炎化合物的分子结构支架。

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