In vitro evaluation of anthelmintic activity of biocompatibile carbon quantum dot nanocomposite against egg and larval stages of equine strongyles.

IF 2.6 2区 农林科学 Q1 VETERINARY SCIENCES BMC Veterinary Research Pub Date : 2025-01-22 DOI:10.1186/s12917-025-04494-5
Armin Fakheri, Bijan Esmaeilnejad, Hamid Akbari, Rahim Molaei
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Abstract

Background: Strongyle nematodes pose a major challenge in veterinary parasitology, causing significant economic losses in livestock due to resistance to conventional treatments. Current anthelmintics, like Ivermectin, often encounter resistance issues. This study aims to address these gaps by synthesizing Carbon Quantum Dots (CQDs) and Copper-Doped CQDs (Cu@CQDs) using glucose extract, and evaluating their nematicidal properties against strongyles in vitro. We assessed the nematicidal effects of CQDs and Cu@CQDs through larval feeding inhibition of first-stage larvae (L1), egg hatch inhibition (EHI), and the mobility and mortality of infectious larvae (L3s). Additionally, we conducted ultrastructural examinations of eggs and larvae and evaluated oxidative/nitrosative stress indicators, including total antioxidant status (TAS), protein carbonylation (PCO), lipid peroxidation (MDA), and oxidative DNA damage in homogenized samples of L3s.

Results: The synthesized CQDs displayed semi-spherical morphology with diameters under 30 nm. Cu@CQDs at 12.5 µg/ml achieved over 90% EHI and larval motility inhibition. Fluorescence microscopy confirmed over 90% larval feeding inhibition at the same concentration. Both CQDs and Cu@CQDs induced oxidative stress, indicated by decreased TAS and increased MDA, PCO, and oxidative DNA damage. Scanning Electron Microscopy showed that CQDs and Cu@CQDs penetrated the larvae cuticle, altered the tegument, caused larval mortality, and resulted in egg deformities.

Conclusions: Given the potential for resistance to Ivermectin, seeking suitable alternatives is essential. Cu@CQDs exhibit effects similar to Ivermectin, indicating their potential as novel antiparasitic agents against strongyles. These findings emphasize the importance of exploring alternative treatments to address resistance and enhance nematode control efficacy.

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生物相容性碳量子点纳米复合材料对马圆形线虫卵和幼虫驱虫活性的体外评价。
背景:圆形线虫对兽医寄生虫学构成了重大挑战,由于对常规治疗产生耐药性,给牲畜造成了重大经济损失。目前的驱虫药,如伊维菌素,经常遇到耐药性问题。本研究旨在通过葡萄糖提取物合成碳量子点(CQDs)和铜掺杂CQDs (Cu@CQDs)来解决这些空白,并在体外评估它们对圆线虫的杀线虫性能。本研究通过对初龄幼虫(L1)的取食抑制、对卵孵化的抑制(EHI)、对感染性幼虫(L3s)的流动性和死亡率等指标,对CQDs和Cu@CQDs的杀线虫效果进行了评价。此外,我们对L3s的卵和幼虫进行了超微结构检查,并评估了氧化/亚硝化应激指标,包括均质样品中的总抗氧化状态(TAS)、蛋白质羰基化(PCO)、脂质过氧化(MDA)和氧化DNA损伤。结果:合成的CQDs呈半球形,直径在30 nm以下。Cu@CQDs浓度为12.5µg/ml, EHI和幼虫运动抑制率达到90%以上。荧光显微镜证实,在相同浓度下,90%以上的幼虫摄食抑制。CQDs和Cu@CQDs均可诱导氧化应激,表现为TAS降低,MDA、PCO和DNA氧化损伤增加。扫描电镜显示,CQDs和Cu@CQDs能穿透幼虫表皮,改变被皮,导致幼虫死亡,造成卵畸形。结论:考虑到对伊维菌素的潜在耐药性,寻找合适的替代品至关重要。Cu@CQDs表现出与伊维菌素相似的效果,表明它们有潜力成为针对圆线虫的新型抗寄生虫剂。这些发现强调了探索替代治疗以解决耐药性和提高线虫控制效果的重要性。
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来源期刊
BMC Veterinary Research
BMC Veterinary Research VETERINARY SCIENCES-
CiteScore
4.80
自引率
3.80%
发文量
420
审稿时长
3-6 weeks
期刊介绍: BMC Veterinary Research is an open access, peer-reviewed journal that considers articles on all aspects of veterinary science and medicine, including the epidemiology, diagnosis, prevention and treatment of medical conditions of domestic, companion, farm and wild animals, as well as the biomedical processes that underlie their health.
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