Nazeam Jilan A, Ragab Ghada M, El-Gazar Amira A, El-Mancy Shereen S, Jamil Lina, Fayez Sahar M
Pharmacognosy Department, Faculty of Pharmacy, October 6 University, Giza 12585, Egypt.
Pharmacology and Toxicological Department, Faculty of Pharmacy, Misr University, Giza 12585, Egypt.
Molecules. 2021 Sep 15;26(18):5608. doi: 10.3390/molecules26185608.
Antimicrobial resistance is a dramatic global threat; however, the slow progress of new antibiotic development has impeded the identification of viable alternative strategies. Natural antioxidant-based antibacterial approaches may provide potent therapeutic abilities to effectively block resistance microbes' pathways. While essential oils (EOs) have been reported as antimicrobial agents, its application is still limited ascribed to its low solubility and stability characters; additionally, the related biomolecular mechanisms are not fully understood. Hence, the study aimed to develop a nano-gel natural preparation with multiple molecular mechanisms that could combat bacterial resistance in an model. A nano-emulgel of thyme/clove EOs (NEG8) was designed, standardized, and its antimicrobial activity was screened in vitro and in vivo against genetically identified skin bacterial clinical isolates (, and ). As per our findings, NEG8 exhibited bacteriostatic and potent biofilm inhibition activities. An in vivo model was also established using the commercially available therapeutic, adapalene in contra genetically identified microorganism. Improvement in rat behavior was reported for the first time and NEG8 abated the dermal contents/protein expression of IGF-1, TGF-β/collagen, Wnt/β-catenin, JAK2/STAT-3, NE, 5-HT, and the inflammatory markers; p(Ser536) NF-κBp65, TLR-2, and IL-6. Moreover, the level of dopamine, protective anti-inflammatory cytokine, IL-10 and PPAR-γ protein were enhanced, also the skin histological structures were improved. Thus, NEG8 could be a future potential topical clinical alternate to synthetic agents, with dual merit mechanism as bacteriostatic antibiotic action and non-antibiotic microbial pathway inhibitor.
抗菌耐药性是一个严峻的全球性威胁;然而,新抗生素研发进展缓慢阻碍了可行替代策略的确定。基于天然抗氧化剂的抗菌方法可能提供有效的治疗能力,以有效阻断耐药微生物的途径。虽然精油已被报道为抗菌剂,但其应用仍受到限制,这归因于其低溶解性和稳定性;此外,相关的生物分子机制尚未完全了解。因此,本研究旨在开发一种具有多种分子机制的纳米凝胶天然制剂,该制剂可在模型中对抗细菌耐药性。设计并标准化了百里香/丁香精油纳米乳凝胶(NEG8),并在体外和体内对基因鉴定的皮肤细菌临床分离株(、和)筛选其抗菌活性。根据我们的研究结果,NEG8表现出抑菌和强大的生物膜抑制活性。还使用市售治疗药物阿达帕林针对基因鉴定的微生物建立了体内模型。首次报道了大鼠行为的改善,并且NEG8降低了IGF-1、TGF-β/胶原蛋白、Wnt/β-连环蛋白、JAK2/STAT-3、去甲肾上腺素、5-羟色胺以及炎症标志物;p(Ser536)NF-κBp65、TLR-2和IL-6的皮肤含量/蛋白质表达。此外,多巴胺、保护性抗炎细胞因子、IL-10和PPAR-γ蛋白的水平升高,皮肤组织结构也得到改善。因此,NEG8可能成为合成药物未来潜在的局部临床替代品,具有抑菌抗生素作用和非抗生素微生物途径抑制剂的双重优点机制。