Superb bio-effectiveness of Cobalt (II) phthalocyanine and Ag NPs adorned Sm-doped ZnO nanorods/cuttlefish bone to annihilate Trichinella spiralis muscle larvae and adult worms: In-vitro evaluation

IF 1.5 4区 医学 Q3 PARASITOLOGY
Fatma E.A. Bayaumy , Sameh A. Rizk , Atef S. Darwish
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Abstract

Herein, innovative biocides are designed for the treatment of Trichinella spiralis muscle larvae (ML) and adult worms. Samarium-doped ZnO nanorods (Sm-doped ZnO) are stabilized onto the laminar structure of cuttlefish bone (CB) matrix and adorned by either Ag NPs or cobalt phthalocyanine (CoPc) species. Physicochemical characteristics of such nanocomposites are scrutinised. Adorning of Sm-doped ZnO/CB with Ag NPs shortens rod-like shaped Sm-doped ZnO nanoparticles and accrues them, developing large-sized detached patches over CB moiety. Meanwhile, adorning of Sm-doped ZnO/CB by CoPc species degenerates CB lamellae forming semi-rounded platelets and encourages invading of Sm-doped ZnO nanorods deeply inside gallery spacings of CB. Both nanocomposites possess advanced parasiticidal activity, displaying quite intoxication for ML and adult worms (≥88% mortality) within an incubation period of <48 h at concentrations around 200 μg/ml. CoPc@Sm-doped ZnO/CB nanocomposite exhibits faster killing efficiency of adult worms than that of Ag@Sm-doped ZnO/CB at a concentration of ∼75 μg/ml showing entire destruction of parasite after 24 h incubation with the former nanocomposite and just 60% worm mortality after 36 h exposure to the later one. Morphological studies of the treated ML and adult worms show that CoPc@Sm-doped ZnO/CB exhibits a destructive impact on the parasite body, creating featureless and sloughed fragments enriched with intensive vacuoles. Hybridization of cuttlefish bone lamellae by CoPc species is considered a springboard for fabrication of futuristic aggressive drugs against various food- and water-borne parasites.

Abstract Image

酞菁钴 (II) 和掺杂 Sm 的 ZnO 纳米棒/墨鱼骨的 Ag NPs 在消灭旋毛虫肌肉幼虫和成虫方面具有极佳的生物效应:体外评估
在此,我们设计了创新的生物杀灭剂,用于治疗螺旋毛癣菌(ML)的肌肉幼虫和成虫。钐掺杂氧化锌纳米棒(Sm-doped ZnO)被稳定在墨鱼骨(CB)基质的层状结构上,并以Ag NPs或酞菁钴(CoPc)物种作为装饰。对这种纳米复合材料的物理化学特性进行了仔细研究。在掺有 Sm 的 ZnO/CB 中掺入 Ag NPs 会缩短 Sm 掺杂 ZnO 纳米粒子的杆状形状,并使其增大,从而在 CB 分子上形成大尺寸的脱落斑块。同时,在掺杂钐的 ZnO/CB 中添加 CoPc 物种会使 CB 层退化,形成半圆形小板,并促使掺杂钐的 ZnO 纳米棒深入到 CB 的廊道间隙中。这两种纳米复合材料都具有很强的杀寄生虫活性,在 200 μg/ml 左右的浓度下,在 48 小时的孵育期内对 ML 和成虫显示出相当高的毒性(死亡率≥88%)。CoPc@Sm 掺杂的 ZnO/CB 纳米复合材料比 Ag@Sm 掺杂的 ZnO/CB 纳米复合材料对成虫的杀灭效率更快,在浓度为 ∼75 μg/ml 时,前一种纳米复合材料在孵育 24 小时后就能完全消灭寄生虫,而后一种纳米复合材料在孵育 36 小时后仅能杀死 60% 的寄生虫。对处理过的 ML 和成虫进行的形态学研究表明,CoPc@Sm 掺杂的 ZnO/CB 对寄生虫体具有破坏性影响,可产生无特征的、富含密集空泡的脱落碎片。CoPc物种与墨鱼骨片的杂交被认为是制造针对各种食源性和水媒寄生虫的未来强效药物的跳板。
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来源期刊
Parasitology International
Parasitology International 医学-寄生虫学
CiteScore
4.00
自引率
10.50%
发文量
140
审稿时长
61 days
期刊介绍: Parasitology International provides a medium for rapid, carefully reviewed publications in the field of human and animal parasitology. Original papers, rapid communications, and original case reports from all geographical areas and covering all parasitological disciplines, including structure, immunology, cell biology, biochemistry, molecular biology, and systematics, may be submitted. Reviews on recent developments are invited regularly, but suggestions in this respect are welcome. Letters to the Editor commenting on any aspect of the Journal are also welcome.
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