Metagenomic Sequencing Combined with Metabolomics to Explore Gut Microbiota and Metabolic Changes in Mice with Acute Myocardial Infarction and the Potential Mechanism of Allicin.

IF 5.1 2区 医学 Q1 CHEMISTRY, MEDICINAL Drug Design, Development and Therapy Pub Date : 2025-02-03 eCollection Date: 2025-01-01 DOI:10.2147/DDDT.S504884
Yijie Gao, Gaofeng Qin, Shichao Liang, Jiajie Yin, Baofu Wang, Hong Jiang, Mengru Liu, Fangyuan Luo, Xianlun Li
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引用次数: 0

Abstract

Background: Acute myocardial infarction (AMI) is a significant contributor to global morbidity and mortality. Allicin exhibits promising therapeutic potential in AMI as a primary bioactive component derived from garlic; however, its underlying mechanisms remain incompletely elucidated.

Methods: Our study induced AMI in mice by ligating the left coronary artery, and administered allicin orally for 28 days. The cardioprotective effects of allicin treatment were comprehensively assessed using echocardiography, histopathological examinations, intestinal barrier function, and serum inflammatory factors. The potential mechanisms of allicin were elucidated through analysis of metagenomics and serum metabolomics. Network pharmacology (NP) was used to further investigate and validate the possible molecular mechanisms of allicin.

Results: Our findings revealed allicin's capacity to ameliorate cardiac impairments, improve intestinal barrier integrity, and reduce serum IL-18 and IL-1β levels after AMI. Further analysis demonstrated that the administration of allicin has the potential to ameliorate intestinal flora disorder following AMI by modulating the abundance of beneficial bacteria, such as g_Lactobacillus, g_Prevotella, g_Alistipes, and g_Limosilactobacillus, while reducing the abundance of harmful bacteria g_Parasutterella. Additionally, it exhibits the ability to enhance myocardial energy metabolism flexibility through modulating metabolites and key enzymes associated with the fatty acid metabolic pathway. Mechanistically, NP and in vivo experiments indicated that allicin might suppress pyroptosis and reduce inflammatory response via blocked activation of the NF-κB-mediated NLRP3/Caspase-1/GSDMD pathway. Moreover, Spearman correlation analysis suggested a significant association between the allicin-induced alterations in microbiota and metabolites with cardiac function and inflammatory cytokines.

Conclusion: Our study demonstrated that allicin alleviated myocardial injury and reduced inflammatory response by inhibiting the NF-κB-mediated NLRP3/Caspase-1/GSDMD pathway while remodeling microbiota disturbance, improving serum metabolic disorder, and enhancing the intestinal barrier. These research findings offer a novel perspective on the potential therapeutic value of allicin as an adjunctive dietary supplement to conventional treatments for AMI.

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宏基因组测序联合代谢组学研究急性心肌梗死小鼠肠道菌群和代谢变化及大蒜素的潜在作用机制
背景:急性心肌梗死(AMI)是全球发病率和死亡率的重要因素。大蒜素作为一种从大蒜中提取的主要生物活性成分,在急性心肌梗死中具有良好的治疗潜力;然而,其潜在机制仍未完全阐明。方法:结扎左冠状动脉诱导小鼠急性心肌梗死,并口服大蒜素28 d。通过超声心动图、组织病理学检查、肠屏障功能和血清炎症因子综合评估大蒜素治疗的心脏保护作用。通过宏基因组学和血清代谢组学分析,阐明了大蒜素的潜在作用机制。利用网络药理学(Network pharmacology, NP)进一步研究和验证大蒜素可能的分子机制。结果:我们的研究结果揭示了大蒜素能够改善AMI后心脏损伤,改善肠屏障完整性,降低血清IL-18和IL-1β水平。进一步的分析表明,大蒜素通过调节有益细菌的丰度,如g_Lactobacillus, g_Prevotella, g_Alistipes和g_Limosilactobacillus,同时减少有害细菌g_Parasutterella的丰度,有可能改善AMI后肠道菌群紊乱。此外,它还能通过调节脂肪酸代谢途径相关的代谢物和关键酶来增强心肌能量代谢灵活性。在机制上,NP和体内实验表明,大蒜素可能通过阻断NF-κ b介导的NLRP3/Caspase-1/GSDMD通路的激活来抑制焦亡和减轻炎症反应。此外,Spearman相关分析表明,大蒜素诱导的微生物群和代谢物的改变与心功能和炎症因子之间存在显著关联。结论:我们的研究表明,大蒜素通过抑制NF-κ b介导的NLRP3/Caspase-1/GSDMD通路,重塑微生物群紊乱,改善血清代谢紊乱,增强肠道屏障,减轻心肌损伤,降低炎症反应。这些研究结果为大蒜素作为AMI常规治疗的辅助膳食补充剂的潜在治疗价值提供了新的视角。
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来源期刊
Drug Design, Development and Therapy
Drug Design, Development and Therapy CHEMISTRY, MEDICINAL-PHARMACOLOGY & PHARMACY
CiteScore
9.00
自引率
0.00%
发文量
382
审稿时长
>12 weeks
期刊介绍: Drug Design, Development and Therapy is an international, peer-reviewed, open access journal that spans the spectrum of drug design, discovery and development through to clinical applications. The journal is characterized by the rapid reporting of high-quality original research, reviews, expert opinions, commentary and clinical studies in all therapeutic areas. Specific topics covered by the journal include: Drug target identification and validation Phenotypic screening and target deconvolution Biochemical analyses of drug targets and their pathways New methods or relevant applications in molecular/drug design and computer-aided drug discovery* Design, synthesis, and biological evaluation of novel biologically active compounds (including diagnostics or chemical probes) Structural or molecular biological studies elucidating molecular recognition processes Fragment-based drug discovery Pharmaceutical/red biotechnology Isolation, structural characterization, (bio)synthesis, bioengineering and pharmacological evaluation of natural products** Distribution, pharmacokinetics and metabolic transformations of drugs or biologically active compounds in drug development Drug delivery and formulation (design and characterization of dosage forms, release mechanisms and in vivo testing) Preclinical development studies Translational animal models Mechanisms of action and signalling pathways Toxicology Gene therapy, cell therapy and immunotherapy Personalized medicine and pharmacogenomics Clinical drug evaluation Patient safety and sustained use of medicines.
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