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一种新型水杨酰苯胺酯衍生物对双脐螺属物种的杀螺活性及毒性机制

Molluscicidal activity and mechanism of toxicity of a novel salicylanilide ester derivative against Biomphalaria species.

作者信息

He Ping, Wang Weisi, Sanogo Benjamin, Zeng Xin, Sun Xi, Lv Zhiyue, Yuan Dongjuan, Duan Liping, Wu Zhongdao

机构信息

Department of Parasitology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, 510080, China.

Key Laboratory of Tropical Disease Control, Ministry of Education, Guangzhou, 510080, China.

出版信息

Parasit Vectors. 2017 Aug 10;10(1):383. doi: 10.1186/s13071-017-2313-3.

Abstract

BACKGROUND

Schistosomiasis mansoni is one of the most important, but often neglected, tropical diseases transmitted by snails of the genus Biomphalaria. Control of the intermediate host snail plays a crucial role in preventing the spread of schistosomiasis. However, there is only one molluscicide, niclosamide, recommended by the World Health Organization. Niclosamide has been used for several decades but is toxic to non-target organisms. Therefore, it is necessary to optimize the scaffold of niclosamide and develop novel molluscicides with enhanced potency and decreased toxicity to non-target organisms.

METHODS

In this study, a candidate compound was analyzed by nuclear magnetic resonance and mass spectrometry. The molluscicidal potential against Biomphalaria species and cercaricidal potential against S. mansoni were evaluated using the immersion method. Furthermore, the preliminary mechanism was studied through cellular enzyme tests and electron microscopy.

RESULTS

5-chloro-2-[(2-chloro-4-nitrophenyl)carbamoyl]phenyl-4-methoxybenzoate (salicylanilidate), a novel salicylanilide ester derivative, was derived from niclosamide. The 50% lethal concentration to B. glabrata, B. straminea and B. pfeifferi was 0.261 mg/l, 0.172 mg/l and 0.241 mg/l, respectively. The effective dose required to completely kill S. mansoni cercariae was 0.625 mg/l for salicylanilidate and 0.125 mg/l for niclosamide. However, salicylanilidate was approximately 100-fold less toxic to the fish Danio rerio than niclosamide. Furthermore, salicylanilidate reduced the enzymatic activities of nitric oxide synthase (NOS), lactate dehydrogenase (LDH) and acetylcholinesterase (AChE) in the snail, demonstrating that it could affect neurohypophysis transmission and energy metabolism. Severe swelling in the tentacle and deformation of cilia in the tentacle and mantle were observed through scanning electron microscopy. The results of transmission electron microscopy showed that salicylanilidate could damage critical organelles in hepatopancreas tissues, including degeneration of the endoplasmic reticulum and vacuolization in mitochondria. In addition, transcriptional levels of superoxide dismutase (SOD), acid phosphatase (ACP) and NOS in the hepatopancreas were significantly downregulated as shown by real-time quantitative polymerase chain reaction (RT-PCR). These results indicated that the hepatopancreas is a primary target organ of salicylanilidate.

CONCLUSIONS

Salicylanilidate not only had deleterious effects on Biomphalaria species and S. mansoni cercariae but also showed very low toxicity to D. rerio, suggesting that it has broad potential applications.

摘要

背景

曼氏血吸虫病是由双脐螺属蜗牛传播的最重要但常被忽视的热带疾病之一。控制中间宿主蜗牛在预防血吸虫病传播中起着关键作用。然而,世界卫生组织仅推荐了一种杀螺剂,即氯硝柳胺。氯硝柳胺已使用数十年,但对非靶标生物有毒性。因此,有必要优化氯硝柳胺的结构骨架,开发对非靶标生物毒性降低且效力增强的新型杀螺剂。

方法

在本研究中,通过核磁共振和质谱对一种候选化合物进行了分析。采用浸泡法评估了其对双脐螺属物种的杀螺潜力以及对曼氏血吸虫尾蚴的杀蚴潜力。此外,通过细胞酶测试和电子显微镜研究了初步机制。

结果

5-氯-2-[(2-氯-4-硝基苯基)氨基甲酰基]苯基-4-甲氧基苯甲酸酯(水杨酰苯胺酯),一种新型水杨酰苯胺酯衍生物,是从氯硝柳胺衍生而来。对光滑双脐螺、稻草双脐螺和费氏双脐螺的半数致死浓度分别为0.261mg/L、0.172mg/L和0.241mg/L。完全杀死曼氏血吸虫尾蚴所需的有效剂量,水杨酰苯胺酯为0.625mg/L,氯硝柳胺为0.125mg/L。然而,水杨酰苯胺酯对斑马鱼的毒性比对氯硝柳胺低约100倍。此外,水杨酰苯胺酯降低了蜗牛体内一氧化氮合酶(NOS)、乳酸脱氢酶(LDH)和乙酰胆碱酯酶(AChE)的酶活性,表明它可能影响神经垂体传递和能量代谢。通过扫描电子显微镜观察到触角严重肿胀以及触角和外套膜中的纤毛变形。透射电子显微镜结果表明,水杨酰苯胺酯可破坏肝胰腺组织中的关键细胞器,包括内质网变性和线粒体空泡化。此外,实时定量聚合酶链反应(RT-PCR)显示,肝胰腺中超氧化物歧化酶(SOD)、酸性磷酸酶(ACP)和NOS的转录水平显著下调。这些结果表明肝胰腺是水杨酰苯胺酯的主要靶器官。

结论

水杨酰苯胺酯不仅对双脐螺属物种和曼氏血吸虫尾蚴有有害影响,而且对斑马鱼显示出极低的毒性,表明其具有广泛的潜在应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a99f/5550999/884abea78814/13071_2017_2313_Fig1_HTML.jpg

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