研究报告: 木犀草素抗肺炎支原体的作用及机制研究
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1)昆明理工大学基础医学院,昆明 650500;2)云南省阜外心血管病医院心内科,昆明 650102;3)中国医学科学院医学生物学研究所,昆明 650031;4)云南大学生物技术交叉技术创新中心,昆明 650500

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国家自然科学基金(82560547),云南省科技厅(202301AT070478,202401AT070369),昆明理工大学-云南省第一人民医院医学研究联合专项(KUST-KH2022008Y)和昆明理工大学-丽江市人民医院医学研究联合专项(KUST-LJ2022004Y)资助。


Research: Study on The Effect and Mechanism of Luteolin Against Mycoplasma pneumoniae
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1)Basic Medical School, Kunming University of Science and Technology, Kunming 650500, China;2)Department of Cardiology, Yunnan Fuwai Cardiovascular Hospital, Kunming 650102, China;3)Institute of Medical Biology, Chinese Academy of Medical Sciences, Kunming 650031, China;4)Bio-X Center for Interdisciplinary Innovation, Yunnan University, Kunming 650500, China

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This work was supported by grants from The National Natural Science Foundation of China (82560547), Yunnan Province Science and Technology Department (202301AT070478, 202401AT070369), the Kunming University of Science and Technology & The First People’s Hospital of Yunnan Province Joint Special Project on Medical Research (KUST-KH2022008Y), and the Kunming University of Science and Technology & Lijiang People’s Hospital Joint Special Project on Medical Research (KUST-LJ2022004Y).

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    摘要:

    目的 本研究旨在探讨木犀草素对肺炎支原体(MP)的抑制作用,并阐明其潜在作用机制。方法 采用网络药理学方法从金荞麦多酚提取物中筛选出木犀草素为主要活性成分,考察其对2株肺炎支原体菌株的作用效果。采用具有可视化特征的改良培养基测定木犀草素的最低抑菌浓度(MIC)。通过qRT-PCR检测木犀草素作用后,MP生长及致病性相关关键蛋白的表达水平。同时比较木犀草素处理组与未处理组对MP感染A549细胞活力的影响。利用小鼠模型评价体内抗MP活性,并分析肺组织中炎症细胞因子的表达。结果 木犀草素可有效抑制2株MP菌株,对M19与M129的MIC90值均为 100 mg/L。木犀草素处理可显著下调2株菌株中黏附蛋白P1、P30的表达。而P65、HMW3、TrmB及CARDS TX的表达仅在M19菌株中经木犀草素干预后出现下调。木犀草素还可提高MP感染A549细胞的生长与活力。小鼠模型中,木犀草素给药后小鼠体重平稳增长,耐受性良好。木犀草素在肺组织中的抑菌率达50.7%,显著高于罗红霉素组的25.2%。此外,木犀草素可降低MP感染小鼠体内IL-6、TNF-α、HMGB1等炎症因子的表达。结论 木犀草素通过下调毒性相关蛋白(P1、P30、P65、HMW3、TrmB、CARDS TX)的表达、调控宿主炎症反应,安全有效地抑制MP尤其是耐药株M19的增殖与致病性。研究结果提示,木犀草素有望为MP感染,特别是耐药菌株所致感染,提供新的治疗策略。

    Abstract:

    Objective This study aimed to investigate the anti-Mycoplasma pneumoniae (MP) activity of luteolin and elucidate its underlying mechanisms.Methods Luteolin was identified as the primary active compound from the polyphenol extract of F. diotrys using network pharmacology. Its efficacy was evaluated against two MP strains: the standard strain M129 and the multidrug-resistant strain M19. A modified culture medium with visual characteristics was employed to determine the minimum inhibitory concentration (MIC) of luteolin. The expression of key proteins involved in MP growth and pathogenicity was assessed by qRT-PCR following luteolin treatment. Additionally, the viability of A549 cells infected with MP was compared between luteolin-treated and untreated groups. In vivo anti-MP activity was evaluated using a mouse model, and the expression of inflammatory cytokines in lung tissues was analyzed.Results Luteolin effectively inhibited both MP strains, with MIC90 values of 100 mg/L for M19 and M129. Treatment with luteolin significantly downregulated the expression of adhesion proteins P1 and P30 in both strains. However, the expression of P65, HMW3, TrmB, and CARDS TX was reduced only in the M19 strain following luteolin intervention. Luteolin also enhanced the growth and viability of A549 cells infected with MP. In the mouse model, luteolin treatment resulted in steady weight gain and was well tolerated. The bacteriostatic rate of luteolin in lung tissues was 50.7%, significantly higher than the 25.2% observed in the roxithromycin group. Furthermore, luteolin reduced the expression of inflammatory factors, including IL-6, TNF-α, and HMGB1, in MP-infected mice.Conclusion Luteolin effectively and safely inhibits the proliferation and pathogenicity of MP, particularly the drug-resistant M19 strain, by downregulating the expression of toxicity-associated proteins (P1, P30, P65, HMW3, TrmB, CARDS TX) and modulating host inflammatory responses. These findings suggest that luteolin may offer a novel therapeutic strategy for treating MP infections, especially those caused by drug-resistant strains.

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欧霞,柳招红,唐磊,夏建明,杨凯,丁恺怡,廖国阳,刘泽,张继虹.研究报告: 木犀草素抗肺炎支原体的作用及机制研究[J].生物化学与生物物理进展,2026,53(5):1207-1223 OU Xia, LIU Zhao-Hong, TANG Lei, XIA Jian-Ming, YANG Kai, DING Kai-Yi, LIAO Guo-Yang, LIU Ze, ZHANG Ji-Hong.Research: Study on The Effect and Mechanism of Luteolin Against Mycoplasma pneumoniae[J]. Progress in Biochemistry and Biophysics,2026,53(5):1207-1223

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  • 收稿日期:2025-12-01
  • 最后修改日期:2026-05-14
  • 录用日期:2026-03-13
  • 在线发布日期: 2026-03-15
  • 出版日期: 2026-05-28
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