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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

Therapeutic effect of baicalein as an antiparasitic agent against Toxoplasma gondii in vitro and in vivo

Abstract: The most common medications for the treatment of zoonotic toxoplasmosis are pyrimethamine and sulfadiazine, which may cause serious undesirable side effects. Thus, there is an urgent need to develop novel therapeutics. Baicalein (BAI, C15H10O5) has been shown to perform well against protozoan parasites including Leishmania and Cryptosporidium. In this study, the inhibition efficacy of BAI on Toxoplasma gondii was evaluated using plaque, invasion, and intracellular proliferation assays. BAI effectively inhibited T. gondii (half-maximum inhibitory concentration (IC50)=6.457×10-5 mol/L), with a reduced invasion rate (33.56%) and intracellular proliferation, and exhibited low cytotoxicity (half-maximum toxicity concentration (TC50)=5.929×10-4 mol/L). Further investigation using a mouse model shed light on the inhibitory efficacy of BAI against T. gondii, as well as the potential mechanisms underlying its anti-parasitic effects. The survival time of T. gondii-infected ICR mice treated with BAI was remarkably extended, and their parasite burdens in the liver and spleen were greatly reduced compared with those of the negative control group. Histopathological examination of live sections revealed effective therapeutic outcomes in the treatment groups, with no notable pathological alterations observed. Furthermore, alterations in cytokine levels indicated that BAI not only effectively suppressed the growth of T. gondii but also prevented excessive inflammation in mice. Collectively, these findings underscore the significant inhibitory efficacy of BAI against T. gondii, positioning it as a promising alternative therapeutic agent for toxoplasmosis.

Key words: Toxoplasma gondii; Baicalein (BAI); Antiparasitic; Immunity regulation

Chinese Summary  <2> é»„芩素作为抗寄生虫è¯å‰‚在体外和体内对弓形虫的治疗作用

å´æ¾ç¿1,5, 赖映梅1, å¼ å¿ æ¾³1, ä¸å»ºç¥–1,2,3, 陆ç»çº¢1,2,3, å¶åŽè·ƒ4, ä¸è±ªæ°1,2,3, 哿´µè¾‰1,2,3
1æ­å·žåŒ»å­¦é™¢åŸºç¡€åŒ»å­¦ä¸Žæ³•医学学院, 中国æ­å·žå¸‚, 310013
2æ­å·žåŒ»å­¦é™¢æµ™æ±Ÿçœæ–°åž‹ç–«è‹—工程研究中心, 中国æ­å·žå¸‚, 310000
3æ­å·žåŒ»å­¦é™¢æµ™æ±Ÿçœç”Ÿç‰©æŠ€æœ¯ç–«è‹—é‡ç‚¹å®žéªŒå®¤ï¼Œ 中国æ­å·žå¸‚, 310000
4国泰(å°å·žï¼‰å…½è¯ç”Ÿç‰©åˆ¶å“技术创新中心, 中国å°å·žå¸‚, 318000
5自贡市å«ç”Ÿå¥åº·å§”员会, 中国自贡市, 643000
摘è¦ï¼šä¹™èƒºå˜§å•¶å’Œç£ºèƒºå˜§å•¶æ˜¯ç›®å‰æ²»ç–—人畜共患弓形虫病最常用的è¯ç‰©ï¼Œç”±äºŽäºŒè€…å¯èƒ½å¼•å‘严é‡çš„ä¸è‰¯å应,因此亟需寻找新的治疗è¯ç‰©ã€‚黄芩素(baicalein, BAI)已被è¯å®žå¯¹åŽŸç”ŸåŠ¨ç‰©å¯„ç”Ÿè™«ï¼ˆå¦‚åˆ©ä»€æ›¼åŽŸè™«å’Œéšå­¢å­è™«ï¼‰å…·æœ‰è‰¯å¥½çš„æ²»ç–—效果。本研究通过斑å—ã€ä¾µè¢­å’Œç»†èƒžå†…增殖试验评估BAI对刚地弓形虫的抑制效果。结果显示,BAIèƒ½æœ‰æ•ˆæŠ‘åˆ¶å¼“å½¢è™«çš„ç”Ÿé•¿ï¼Œå…¶åŠæ•°æœ€å¤§æŠ‘制浓度(IC50)为6.457×10?5 mol/L,显著é™ä½Žäº†ç—…原体的侵袭率(é™ä½Ž33.56%)åŠå…¶åœ¨ç»†èƒžå†…的增殖能力。此外,BAIå…·æœ‰è¾ƒä½Žçš„ç»†èƒžæ¯’æ€§ï¼Œå…¶åŠæ•°æœ€å¤§æ¯’性浓度(TC50)为5.929×10?4 mol/L。ICRå°é¼ æ¨¡åž‹çš„å®žéªŒç»“æžœè¿›ä¸€æ­¥é˜æ˜Žäº†BAI对弓形虫的抑制作用,并æ­ç¤ºäº†å…¶åœ¨æŠ—寄生虫作用中的潜在机制。与阴性对照组相比,BAIå¤„ç†æ˜¾è‘—延长了感染弓形虫å°é¼ çš„存活时间,并显著é™ä½Žäº†è‚è„和脾è„中的寄生虫负è·ï¼›æ´»ä½“切片的组织病ç†å­¦æ£€æŸ¥ç»“果显示,BAI处ç†ç»„çš„æ²»ç–—æ•ˆæžœè‰¯å¥½ï¼Œæœªè§‚å¯Ÿåˆ°æ˜Žæ˜¾ç—…ç†æ€§æ”¹å˜ã€‚æ­¤å¤–ï¼Œç»†èƒžå› å­æ°´å¹³çš„å˜åŒ–结果表明,BAIä¸ä»…能有效抑制弓形虫的生长,还能缓解å°é¼ è¿‡åº¦çš„炎症å应。综上所述,本研究明确了BAI在治疗弓形虫感染方é¢å…·æœ‰æ˜¾è‘—的抑制作用,有望作为治疗弓形虫病的潜在替代è¯å‰‚。

关键è¯ç»„:刚地弓形虫;黄芩素;抗寄生虫è¯å‰‚ï¼›å…疫调节


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DOI:

10.1631/jzus.B2400235

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On-line Access:

2025-11-19

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2024-05-07

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2024-10-12

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2025-11-19

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