中国寄生虫学与寄生虫病杂志 ›› 2026, Vol. 44 ›› Issue (3): 371-377.doi: 10.12140/j.issn.1000-7423.2026.03.009

• 论著 • 上一篇    下一篇

常山酮对蠕虫的体外杀伤作用研究

宋润润(), 李婷婷, 王萌, 付宝权, 张欢, 闫鸿斌, 李立, 张念章*()   

  1. 中国农业科学院兰州兽医研究所兰州大学动物医学与生物安全学院,动物疫病防控全国重点实验室甘肃兰州 730000
  • 收稿日期:2025-11-24 修回日期:2026-04-04 出版日期:2026-06-30 发布日期:2026-06-22
  • 通讯作者: *张念章,男,副研究员,从事寄生虫病防治。E-mail:zhangnianzhang@caas.cn
  • 作者简介:宋润润,女,硕士研究生,从事棘球蚴病药物筛选研究。E-mail:ms50528@163.com
    第一联系人:

    宋润润负责实验操作和论文撰写,张念章、付宝权负责论文的修改和审校,李婷婷、闫鸿斌、张欢参与实验操作并提供实验材料,王萌、李立完成多房棘球蚴和旋毛虫虫体的分离和传代。

  • 基金资助:
    国家重点研发计划项目(2023YFD1801000);西藏自治区科技计划项目(QYXTZX-RKZ2024-03-3)

Effects of halofuginone against helminths in vitro

SONG Runrun(), LI Tingting, WANG Meng, FU Baoquan, ZHANG Huan, YAN Hongbin, LI Li, ZHANG Nianzhang*()   

  1. State Key Laboratory of Animal Disease Control and Prevention, College of Veterinary Medicine, Lanzhou University, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou 730000, Gansu, China
  • Received:2025-11-24 Revised:2026-04-04 Online:2026-06-30 Published:2026-06-22
  • Contact: *E-mail:zhangnianzhang@caas.cn
  • Supported by:
    National Key Research and Development Program of China(2023YFD1801000);Xizang Autonomous Region Science and Technology Plan Project(QYXTZX-RKZ2024-03-3)

摘要:

目的 探究常山酮(Hal)对多房棘球蚴和旋毛形线虫(简称旋毛虫)的体外杀伤作用。方法 从多房棘球蚴感染小鼠体内分离多房棘球蚴包囊和原头节,从旋毛虫感染小鼠分离旋毛虫肌幼虫、成虫和新生幼虫,用DMEM培养基进行体外培养。多房棘球蚴原头节分别加入50、80、100 μmol/L终浓度Hal、1%二甲基亚砜(DMSO)和等体积培养基,干预24、48和72 h后观察原头节形态,并用0.1%亚甲基蓝染色计算各组原头节死亡率,计算Hal对原头节的半数有效浓度(EC50)。多房棘球蚴包囊分别加入100 μmol/L终浓度Hal和1%DMSO,干预72 h后通过扫描电镜观察包囊的超微结构。旋毛虫肌幼虫、成虫和新生幼虫分别加入50、80、100 μmol/L终浓度Hal、1%DMSO和等体积培养基,干预24、48和72 h后观察肌幼虫和成虫的虫体形态和活性,干预96、120和144 h后观察新生幼虫的虫体形态和活性。采用GraphPad Prism 9.5进行统计学分析,数据采用单因素方差检验。结果 干预48 h后,50、80和100 μmol/L浓度Hal组的多房棘球蚴原头节死亡率分别为(13.05 ± 1.43)%、(57.57 ± 2.57)%和(96.38 ± 2.16)%,均高于DMSO组的(1.08 ± 0.52)%(t = 13.587、37.254、74.430,均P < 0.01);EC50为73.96 μmol/L。100 μmol/L浓度Hal干预72 h后,扫描电镜下的多房棘球蚴原头节呈现体表破裂、微绒毛排列紊乱、吸盘破坏等结构性损伤;多房棘球蚴包囊角皮层表面出现不规则裂痕和孔洞,生发层大面积脱落,未成熟的原头节数量显著减少。干预72 h后,50、80和100 μmol/L浓度Hal组的旋毛虫肌幼虫死亡率分别为(83.59 ± 5.76)%、(87.57 ± 1.52)%、(95.42 ± 1.21)%,均高于DMSO组的(1.58 ± 0.38)%(t = 24.590、94.801、127.887,均P < 0.01);50、80和100 μmol/L浓度Hal组的成虫死亡率分别为(9.32 ± 0.96)%、(36.90 ± 3.08)%、(98.4% ± 1.42)%,均高于DMSO组的(1.77 ± 0.58)%(t = 13.201、19.698、115.971,均P < 0.01)。干预120 h后,50、80和100 μmol/L浓度Hal组的新生幼虫死亡率分别为(89.11 ± 1.40)%、(92.32 ± 1.17)%、(95.31% ± 2.31)%,均高于DMSO组的(1.68 ± 0.16)%(t = 107.394、133.302、70.129,均P < 0.01)。Hal干预后,旋毛虫肌幼虫、成虫和新生幼虫虫体均呈现典型的僵直死亡形态,无自主运动迹象。结论 体外Hal通过破坏虫体结构发挥高效杀蠕虫作用,有望成为治疗多房棘球蚴病和旋毛虫病的潜在药物。

关键词: 蠕虫, 常山酮, 多房棘球蚴, 旋毛虫

Abstract:

Objective To investigate the in vitro killing effect of halofuginone (Hal) on Echinococcus multilocularis and Trichinella spiralis. Methods E. multilocularis protoscoleces and cysts were isolated from mice infected with E. multilocularis, and muscle larvae, adult worms and newborn larvae of T. spiralis were isolated from mice infected with T. spiralis, followed by in vitro culture in DMEM medium. E. multilocularis protoscolices were treated with Hal at final concentrations of 50, 80, 100 μmol/L, 1% dimethyl sulfoxide (DMSO) and equal volume of medium respectively. After 24, 48 and 72 hours of intervention, the morphology of protoscolices was observed, 0.1% methylene blue staining was used to calculate the mortality of protoscolices in each group, and the half-maximal effective concentration (EC50) of Hal against protoscolices was determined. E. multilocularis cysts were treated with Hal at a final concentration of 100 μmol/L and 1% DMSO respectively, and the ultrastructure of cysts was observed by scanning electron microscopy after 72 hours of intervention. The muscle larvae, adult worms and newborn larvae of T. spiralis were treated with Hal at final concentrations of 50, 80, 100 μmol/L, 1% DMSO and equal volume of medium respectively. The morphology and viability of muscle larvae and adult worms were observed after 24, 48 and 72 hours of intervention, and the morphology and viability of newborn larvae were observed after 96, 120 and 144 hours of intervention. Statistical analysis was performed using GraphPad Prism 9.5, and one-way ANOVA was adopted for data comparison. Results After 48 hours of intervention, the mortality rates of E. multilocularis protoscolices in the 50, 80 and 100 μmol/L Hal groups were (13.05 ± 1.43)%, (57.57 ± 2.57)% and (96.38 ± 2.16)% respectively, all significantly higher than (1.08 ± 0.52)% in the DMSO group (t = 13.587, 37.254, 74.430, all P < 0.01), with an EC50 of 73.96 μmol/L. After 72 hours of intervention with 100 μmol/L Hal, the protoscolices of E. multilocularis showed structural damages including body surface rupture, disordered microvilli arrangement and destroyed suckers under scanning electron microscopy; irregular cracks and pores appeared on the surface of the cyst tegument of E. multilocularis, the germinal layer was extensively exfoliated, and the number of immature protoscolices was significantly reduced. After 72 hours of intervention, the mortality rates of T. spiralis muscle larvae in the 50, 80 and 100 μmol/L Hal groups were (83.59 ± 5.76)%, (87.57 ± 1.52)% and (95.42 ± 1.21)% respectively, all significantly higher than (1.58 ± 0.38)% in the DMSO group (t = 24.590, 94.801, 127.887, all P < 0.01); the mortality rates of adult worms in the 50, 80 and 100 μmol/L Hal groups were (9.32 ± 0.96)%, (36.90 ± 3.08)% and (98.4 ± 1.42)% respectively, all significantly higher than (1.77 ± 0.58)% in the DMSO group (t = 13.201, 19.698, 115.971, all P < 0.01). After 120 hours of intervention, the mortality rates of newborn larvae in the 50, 80 and 100 μmol/L Hal groups were (89.11 ± 1.40)%, (92.32 ± 1.17)% and (95.31 ± 2.31)% respectively, all significantly higher than (1.68 ± 0.16)% in the DMSO group (t = 107.394, 133.302, 70.129, all P < 0.01). After Hal intervention, all T. spiralis muscle larvae, adult worms and newborn larvae showed typical rigid dead morphology without autonomous movement. Conclusion Hal exerts highly efficient anthelmintic effect by destroying the structure of parasites in vitro, which is expected to be a potential drug for the treatment of echinococcosis multilocularis and trichinellosis.

Key words: Helminths, Halofuginone, Echinococcus multilocularis, Trichinella spiralis

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