A model Organism for Antihelminthic Activity: <i>Caenorhabditis elegans</i> and <i>Nigella sativa</i>
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Original Investigation
P: 31-35
March 2020

A model Organism for Antihelminthic Activity: Caenorhabditis elegans and Nigella sativa

Turkiye Parazitol Derg 2020;44(1):31-35
1. Mustafa Kemal Üniversitesi, Sağlık Bilimleri Fakültesi, Acil Yardım ve Afet Yönetimi Bölümü, Acil Yardım ve Afet Yönetimi Anabilim Dalı, Hatay, Türkiye
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Received Date: 10.01.2020
Accepted Date: 04.03.2020
Publish Date: 20.03.2020
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ABSTRACT

Purpose:

In our study, antihelminthic activity of Nigella sativa was tested on a model organism Caenorhabditis elegans (C. elegans).

Methods:

N2 (wild type) C. elegans and Escherichia coli OP50 were purchased from the University of Minnesota, Ceanorhabditis Genetic Center for the study. C. elegans were grown in NGM (Nematode Growth Medium) solid culture medium. After synchronization, nematodes in adult form were exposed to Nigella sativa seed oil at concentrations of 1%, 0.1%, 0.01%, 0.001% and 0.0001%. The study continued for 18 days until all nematodes in the experimental and control groups died. Alive and dead nematodes were recorded every day. The nematodes in which pharengeal pumping stopped was recorded dead.

Result:

According to our findings, all nematodes died at the end of the fourth day at a concentration of 1%. In addition, no alive nematod was observed at the end of the fifth day at concentration of 0.1%; whereas at the end of the 13th day all nematodes died at concentration of 0.01%. When the data were analyzed statistically, the difference between at concentrations of 0.1%, 0.01%, 0.001% and the control group was significant (p<0.05).

Conclusion:

The fact that helminths are usually macroscopic in size and most of them cannot be produced in the laboratory by culturing is a major obstacle for scientific studies. Our study has shown that C. elegans can be a good model in studies of antihelmintic activity and that Nigella sativa has an anthelmintic effect.

Keywords: Caenorhabditis elegans, antihelminthic activity, Nigella sativa

References

1
Bethony J, Brooker S, Albonico M, Geiger SM, Loukas A, Diemert D, et al. Soil-transmitted helminth infections: ascariasis, trichuriasis, and hookworm. The Lancet. 2006;367:1521-32.
2
Drake L, Bundy D. Multiple helminth infections in children: impact and control. Parasitology. 2001;122:73-S81.
3
Gatti S, Lopes R, Cevini C, Ijaoba B, Bruno A, Bernuzzi A, et al. Intestinal parasitic infections in an institution for the mentally retarded. Annals of Tropical Medicine Parasitology. 2000;94:453-60.
4
Tappeh KH, Mohammadzadeh H, Rahim RN, Barazesh A, Khashaveh S, Taherkhani H. Prevalence of intestinal parasitic infections among mentally disabled children and adults of Urmia, Iran. Iranian journal of parasitology. 2010;5:60-64.
5
Kaminsky R, Ducray P, Jung M, Clover R, Rufener L, Bouvier J, et al. A new class of anthelmintics effective against drug-resistant nematodes. Nature. 2008;452:176-180.
6
Smout MJ, Kotze AC, McCarthy JS, Loukas A. A novel high throughput assay for anthelmintic drug screening and resistance diagnosis by real-time monitoring of parasite motility. PLoS neglected tropical diseases. 2010;4:e885.
7
Sudama G. There are Observable Metabolic Signature Patterns in C. elegans: Specifically for Different Life Stages Grown with and without the Added Antioxidants Vitamin C and Vitamin E? 2008.
8
Friberg J. The control of growth and metabolism in Caenorhabditis elegans. Umeå centrum för molekylär patogenes (UCMP) (Faculty of Medicine). 2006.
9
Okkema PG, Ha E, Haun C, Chen W, Fire A. The Caenorhabditis elegans NK-2 homeobox gene ceh-22 activates pharyngeal muscle gene expression in combination with pha-1 and is required for normal pharyngeal development. Development. 1997;124:3965-73.
10
Mango SE. The C. elegans pharynx: a model for organogenesis. WormBook: The Online Review of C elegans Biology [Internet]. WormBook; 2007.
11
Helrich K. Official methods of analysis of the association of official analytical chemists. Arlington, VA: USA; 1990.
12
Asha M, Prashanth D, Murali B, Padmaja R, Amit A. Anthelmintic activity of essential oil of Ocimum sanctum and eugenol. Fitoterapia. 2001;72:669-70.
13
Ibrahim A. Anthelmintic activity of some Sudanese medicinal plants. Phytotherapy Research. 1992;6:155-7.
14
Mathew MD, Mathew ND, Miller A, Simpson M, Au V, Garland S, et al. Using C. elegans forward and reverse genetics to identify new compounds with anthelmintic activity. PLoS neglected tropical diseases. 2016;10:e0005058.
15
Akhtar MS, Iqbal Z, Khan M, Lateef M. Anthelmintic activity of medicinal plants with particular reference to their use in animals in the Indo-Pakistan subcontinent. Small Ruminant Research. 2000;38:99-107.
16
Akhtar MS, Riffat S. Field trial of Saussurea lappa roots against nematodes and Nigella sativa seeds against cestodes in children. J Pak Med Assoc. 1991;41:185-7.
17
Tariq M. Nigella sativa seeds: folklore treatment in modern day medicine. Saudi journal of gastroenterology. 2008;14:105-6.
18
Al-Megrin WA. Efficacy of black seeds oil (Nigella sativa) against Hymenolepis nana in infected mice. European Journal of Medicinal Plants. 2016;13:1-7.
19
Abu NEE. Effect of Nigella sativa and Allium cepa oils on Trichinella spiralis in experimentally infected rats. Journal of the Egyptian society of parasitology. 2005;35:511-23.
20
Khan MA, Afzal M. Chemical composition of Nigella sativa Linn: part 2 recent advances. Inflammopharmacology. 2016;24:67-79.
21
Ahmad A, Husain A, Mujeeb M, Khan SA, Najmi AK, Siddique NA, et al. A review on therapeutic potential of Nigella sativa: A miracle herb. Asian Pacific journal of tropical biomedicine. 2013;3:337-52.
22
Neela M, Rahul V, Usha S. A Review on Anthelmentic Potential of Herbs Mentioned in Siddha Medicine. Journal of Medical Science and Clinical Research. 2017;2:17432-6.
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