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香茅油通过调节嘌呤代谢和 TCA 循环的动态平衡来抑制沙门氏菌感染。

Cananga oil inhibits Salmonella infection by mediating the homeostasis of purine metabolism and the TCA cycle.

机构信息

Department of Gastrocolorectal Surgery, General Surgery Center, The First Hospital of Jilin University, 71 Xinmin Street, Changchun, 130021, Jilin, China; State Key Laboratory for Diagnosis and Treatment of Severe Zoonotic Infectious Diseases, Key Laboratory for Zoonosis Research of the Ministry of Education, Institute of Zoonosis, and College of Veterinary Medicine, Jilin University, Changchun, 130062, China.

Department of Respiratory Medicine, The First Hospital of Jilin University, 1 Xinmin Street, Changchun, 130021, Jilin, China.

出版信息

J Ethnopharmacol. 2024 May 10;325:117864. doi: 10.1016/j.jep.2024.117864. Epub 2024 Feb 5.

Abstract

ETHNOPHARMACOLOGY RELEVANCE

Cananga oil (CO) is derived from the flowers of the traditional medicinal plant, the ylang-ylang tree. As a traditional antidepressant, CO is commonly utilized in the treatment of various mental disorders including depression, anxiety, and autism. It is also recognized as an efficient antibacterial insecticide, and has been traditionally utilized to combat malaria and acute inflammatory responses resulting from bacterial infections both in vitro and in vivo.

AIM OF THE STUDY

The objective of this study is to comprehensively investigate the anti-Salmonella activity and mechanism of CO both in vitro and in vivo, with the expectation of providing feasible strategies for exploring new antimicrobial strategies and developing novel drugs.

METHODS

The in vitro antibacterial activity of CO was comprehensively analyzed by measuring MIC, MBC, growth curve, time-killing curve, surface motility, biofilm, and Live/dead bacterial staining. The analysis of the chemistry and active ingredients of CO was conducted using GC-MS. To examine the influence of CO on the membrane homeostasis of Salmonella, we conducted utilizing diverse techniques, including ANS, PI, NPN, ONPG, BCECF-AM, DiSC3(5), and scanning electron microscopy (SEM) analysis. In addition, the antibacterial mechanism of CO was analyzed and validated through metabolomics analysis. Finally, a mouse infection model of Salmonella typhimurium was established to evaluate the toxic side effects and therapeutic effects of CO.

RESULTS

The antibacterial effect of CO is the result of the combined action of the main chemical components within its six (palmitic acid, α-linolenic acid, stearic acid, benzyl benzoate, benzyl acetate, and myristic acid). Furthermore, CO disrupts the balance of purine metabolism and the tricarboxylic acid cycle (TCA cycle) in Salmonella, interfering with redox processes. This leads to energy metabolic disorders and oxidative stress damage within the bacteria, resulting in bacterial shock, enhanced membrane damage, and ultimately bacterial death. It is worth emphasizing that CO exerts an effective protective influence on Salmonella infection in vivo within a non-toxic concentration range.

CONCLUSION

The outcomes indicate that CO displays remarkable anti-Salmonella activity both in vitro and in vivo. It triggers bacterial death by disrupting the balance of purine metabolism and the TCA cycle, interfering with the redox process, making it a promising anti-Salmonella medication.

摘要

草药学相关性

依兰依兰油(CO)源自传统药用植物依兰树的花朵。作为一种传统的抗抑郁药,CO 常用于治疗各种精神障碍,包括抑郁症、焦虑症和自闭症。它也被认为是一种有效的抗菌杀虫剂,传统上用于治疗体外和体内的疟疾和由细菌感染引起的急性炎症反应。

研究目的

本研究旨在全面研究 CO 的体外和体内抗沙门氏菌活性和机制,以期为探索新的抗菌策略和开发新药物提供可行的策略。

方法

通过测量 MIC、MBC、生长曲线、时程杀菌曲线、表面运动、生物膜和活菌/死菌染色,全面分析 CO 的体外抗菌活性。利用 GC-MS 分析 CO 的化学成分和活性成分。为了研究 CO 对沙门氏菌膜内稳态的影响,我们利用各种技术,包括 ANS、PI、NPN、ONPG、BCECF-AM、DiSC3(5)和扫描电子显微镜(SEM)分析进行研究。此外,通过代谢组学分析分析和验证 CO 的抗菌机制。最后,建立了鼠伤寒沙门氏菌感染模型,以评估 CO 的毒性副作用和治疗效果。

结果

CO 的抗菌作用是其六种主要化学成分(棕榈酸、α-亚麻酸、硬脂酸、苯甲酸苄酯、乙酸苄酯和肉豆蔻酸)共同作用的结果。此外,CO 破坏了沙门氏菌中嘌呤代谢和三羧酸循环(TCA 循环)的平衡,干扰了氧化还原过程。这导致细菌内能量代谢紊乱和氧化应激损伤,导致细菌休克、增强膜损伤,最终导致细菌死亡。值得强调的是,CO 在无毒浓度范围内对体内沙门氏菌感染具有有效保护作用。

结论

结果表明,CO 在体外和体内均表现出显著的抗沙门氏菌活性。它通过破坏嘌呤代谢和 TCA 循环的平衡、干扰氧化还原过程来引发细菌死亡,是一种有前途的抗沙门氏菌药物。

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