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一种用于治疗寻常痤疮的新型氮氧化物衍生物的活性。

and Activity of a New N-Oxide Derivative for Acne Vulgaris Treatment.

作者信息

Delgado Ivone Leila Lima, Scarim Caue Benito, Fernandes Felipe Hugo Alencar, Barbieri Karina Pereira, Polesi Marisa Campos, Pavan Aline Renata, Chiba Diego Eidy, Salgado Herida Regina Nunes, Carlos Iracilda Zeppone, Correa Marcos Antonio, de Andrade Cleverton Roberto, Dos Santos Jean Leandro

机构信息

School of Pharmaceutical Sciences, São Paulo State University (UNESP), Rod. Araraquara-Jaú, Araraquara, 14800- 903, Brazil.

Institute of Chemistry, São Paulo State University (UNESP), Francisco Degni 55, Araraquara, 14800060, Brazil.

出版信息

Med Chem. 2025;21(1):32-45. doi: 10.2174/0115734064306187240722070225.

Abstract

INTRODUCTION

Furoxan and benzofuroxan are compounds containing an -oxide function, known for their diverse pharmacological properties, including antimicrobial and antiinflammatory effects. This study aimed to investigate these activities using an in-house library of N-oxide compounds.

METHOD

Twenty compounds were tested against both Gram-positive and Gram-negative bacteria, including , a microorganism implicated in the development of acne vulgaris. One compound, (E)-4-(3-((2-(3-hydroxybenzoyl)hydrazone)methyl)phenoxy)-3- (phenylsulfonyl)-1,2,5-oxadiazol-2-N-oxide (compound 15), exhibited selective antimicrobial activity against , with a Minimum Inhibitory Concentration (MIC) value of 2 μg/mL. Indirect measurement of Nitric Oxide (NO) release showed that compound 15 and isosorbide dinitrate, when treated with , produced nitrite levels of 20.1% and 9.95%, respectively. Using a NO scavenger (PTIO) in combination with compound 15 in a culture of resulted in reduced antimicrobial activity, indicating that NO release is part of its mechanism of action. Cytotoxicity assessments using murine macrophages showed cellular viability above 70% at concentrations up to 0.78 μg/mL.

RESULTS

Measurements of Interleukin-1 beta (IL1-β) and Tumor Necrosis Factor-alpha (TNF-α) indicated that compound 15 did not reduce the levels of these pro-inflammatory cytokines. Sustained NO production by inducible Nitric Oxide Synthase (iNOS) in macrophages or neutrophils has been found to be involved in the inflammatory process in acne vulgaris and lead to toxicity in surrounding tissues. Nitrite levels in the supernatant of murine macrophages were found to be decreased at a concentration of 0.78 μg/mL of compound 15, indicating an anti-inflammatory effect. studies were conducted using Balb/c nude mice inoculated subcutaneously with Cream and gel formulations of compound 15 were applied to treat the animals, along with commercially available anti-acne drugs, for 14 days. Animals treated with a cream base containing 5% of compound 15 exhibited less acanthosis with mild inflammatory infiltration compared to other groups, highlighting its anti-inflammatory properties.

CONCLUSION

Similar results were observed in the benzoyl peroxide group, demonstrating that compound 15 presented comparable anti-inflammatory activity to the FDA-approved drug. These promising results suggest that compound 15 has a dual mechanism of action, with selective antimicrobial activity against and notable anti-inflammatory properties, making it a potential prototype for developing new treatments for acne vulgaris.

摘要

引言

呋咱和苯并呋咱是含有 - 氧化物官能团的化合物,以其多样的药理特性而闻名,包括抗菌和抗炎作用。本研究旨在使用内部的N - 氧化物化合物库来研究这些活性。

方法

对20种化合物进行了针对革兰氏阳性和革兰氏阴性细菌的测试,其中包括一种与寻常痤疮发病有关的微生物。一种化合物,(E)-4-(3-((2-(3-羟基苯甲酰基)腙)甲基)苯氧基)-3-(苯基磺酰基)-1,2,5-恶二唑-2-N-氧化物(化合物15),对该微生物表现出选择性抗菌活性,最低抑菌浓度(MIC)值为2μg/mL。一氧化氮(NO)释放的间接测量表明,化合物15和异山梨醇二硝酸酯在用该微生物处理时,亚硝酸盐水平分别为20.1%和9.95%。在该微生物培养物中使用NO清除剂(PTIO)与化合物15联合使用导致抗菌活性降低,表明NO释放是其作用机制的一部分。使用小鼠巨噬细胞进行的细胞毒性评估表明,在浓度高达0.78μg/mL时细胞活力高于70%。

结果

白细胞介素-1β(IL1-β)和肿瘤坏死因子-α(TNF-α)的测量表明,化合物15并未降低这些促炎细胞因子的水平。已发现巨噬细胞或中性粒细胞中诱导型一氧化氮合酶(iNOS)持续产生NO参与寻常痤疮的炎症过程并导致周围组织毒性。在化合物15浓度为0.78μg/mL时,发现小鼠巨噬细胞上清液中的亚硝酸盐水平降低,表明具有抗炎作用。使用皮下接种该微生物的Balb/c裸鼠进行了研究。将化合物15的乳膏和凝胶制剂与市售抗痤疮药物一起应用于治疗动物,持续14天。与其他组相比,用含有5%化合物15的乳膏基质治疗的动物表现出较少的棘皮症和轻度炎症浸润,突出了其抗炎特性。

结论

在过氧化苯甲酰组中观察到了类似的结果,表明化合物15具有与FDA批准药物相当的抗炎活性。这些有前景的结果表明,化合物15具有双重作用机制,对该微生物具有选择性抗菌活性和显著的抗炎特性,使其成为开发寻常痤疮新疗法的潜在原型。

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