S. Albasyouni, S. Al-Quraishy, N. Al-Hoshani, T. Al-Otaibi, E. M. Al-Shaebi, R. Abdel-Gaber
{"title":"评估没药(Commiphora myrrha)甲醇提取物的驱虫和抗原虫活性","authors":"S. Albasyouni, S. Al-Quraishy, N. Al-Hoshani, T. Al-Otaibi, E. M. Al-Shaebi, R. Abdel-Gaber","doi":"10.2478/helm-2024-0008","DOIUrl":null,"url":null,"abstract":"Summary To treat and control parasitic infections, traditional medical remedies using plant products are utilized as antiparasitic agents rather than standard synthetic chemicals due to drug resistance. Myrrh, a resinous exudate of <jats:italic>Commiphora myrrha</jats:italic> (Burseraceae), is a powerful antioxidant with a variety of medicinal uses. This study aimed to investigate the effect of the myrrh methanolic extract (MyE) of three concentrations (100, 50, and 25 mg/ml) on the sporulation of oocysts and as an anthelminthic effector via <jats:italic>in vitro</jats:italic> study. Characterization of the plant was done by Fourier-transform infrared spectroscopy (FT-IR). The earthworm, <jats:italic>Eisenia fetida</jats:italic>, is used as a model worm to evaluate the anthelminthic activity of MyE. <jats:italic>Eimeria labbeana</jats:italic>-like oocysts are used as a model protozoan parasite in anticoccidial assays. The sporulation and inhibition (%) of <jats:italic>E. labbeana</jats:italic>-like were assessed by MyE compared to other chemical substances. FT-IR revealed the presence of twelve active compounds. Our results showed that paralysis and death of earthworms at MyE (100 mg/ml) were 7.88 ± 0.37 and 9.24 ± 0.60 min, respectively, which is more potency when compared to mebendazole (reference drug). In all treated worms, microscopic examinations revealed obvious surface architecture abnormality. This study shows that MyE affects oocysts sporulation in a dose-dependent manner. At 24 and 36 hr, a high concentration of MyE (100 mg/ml) inhibits sporulation by 90.95 and 87.17 %. At 36 hr, other concentrations of MyE (50 and 25 mg/ml), as well as amprolium, Dettol<jats:sup>TM</jats:sup>, and phenol inhibits oocyst sporulation by 40.17 %, 29.34 %, 45.09 %, 85.11 %, and 61.58 %, respectively. According to our research, the MyE extract had powerful anthelmintic and anticoccidial properties.","PeriodicalId":55061,"journal":{"name":"Helminthologia","volume":null,"pages":null},"PeriodicalIF":1.1000,"publicationDate":"2024-04-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Evaluation of anthelminthic and antiprotozoal activity of myrrh (Commiphora myrrha) methanolic extract\",\"authors\":\"S. Albasyouni, S. Al-Quraishy, N. Al-Hoshani, T. Al-Otaibi, E. M. Al-Shaebi, R. Abdel-Gaber\",\"doi\":\"10.2478/helm-2024-0008\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Summary To treat and control parasitic infections, traditional medical remedies using plant products are utilized as antiparasitic agents rather than standard synthetic chemicals due to drug resistance. Myrrh, a resinous exudate of <jats:italic>Commiphora myrrha</jats:italic> (Burseraceae), is a powerful antioxidant with a variety of medicinal uses. This study aimed to investigate the effect of the myrrh methanolic extract (MyE) of three concentrations (100, 50, and 25 mg/ml) on the sporulation of oocysts and as an anthelminthic effector via <jats:italic>in vitro</jats:italic> study. Characterization of the plant was done by Fourier-transform infrared spectroscopy (FT-IR). The earthworm, <jats:italic>Eisenia fetida</jats:italic>, is used as a model worm to evaluate the anthelminthic activity of MyE. <jats:italic>Eimeria labbeana</jats:italic>-like oocysts are used as a model protozoan parasite in anticoccidial assays. The sporulation and inhibition (%) of <jats:italic>E. labbeana</jats:italic>-like were assessed by MyE compared to other chemical substances. FT-IR revealed the presence of twelve active compounds. Our results showed that paralysis and death of earthworms at MyE (100 mg/ml) were 7.88 ± 0.37 and 9.24 ± 0.60 min, respectively, which is more potency when compared to mebendazole (reference drug). In all treated worms, microscopic examinations revealed obvious surface architecture abnormality. This study shows that MyE affects oocysts sporulation in a dose-dependent manner. At 24 and 36 hr, a high concentration of MyE (100 mg/ml) inhibits sporulation by 90.95 and 87.17 %. At 36 hr, other concentrations of MyE (50 and 25 mg/ml), as well as amprolium, Dettol<jats:sup>TM</jats:sup>, and phenol inhibits oocyst sporulation by 40.17 %, 29.34 %, 45.09 %, 85.11 %, and 61.58 %, respectively. 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Evaluation of anthelminthic and antiprotozoal activity of myrrh (Commiphora myrrha) methanolic extract
Summary To treat and control parasitic infections, traditional medical remedies using plant products are utilized as antiparasitic agents rather than standard synthetic chemicals due to drug resistance. Myrrh, a resinous exudate of Commiphora myrrha (Burseraceae), is a powerful antioxidant with a variety of medicinal uses. This study aimed to investigate the effect of the myrrh methanolic extract (MyE) of three concentrations (100, 50, and 25 mg/ml) on the sporulation of oocysts and as an anthelminthic effector via in vitro study. Characterization of the plant was done by Fourier-transform infrared spectroscopy (FT-IR). The earthworm, Eisenia fetida, is used as a model worm to evaluate the anthelminthic activity of MyE. Eimeria labbeana-like oocysts are used as a model protozoan parasite in anticoccidial assays. The sporulation and inhibition (%) of E. labbeana-like were assessed by MyE compared to other chemical substances. FT-IR revealed the presence of twelve active compounds. Our results showed that paralysis and death of earthworms at MyE (100 mg/ml) were 7.88 ± 0.37 and 9.24 ± 0.60 min, respectively, which is more potency when compared to mebendazole (reference drug). In all treated worms, microscopic examinations revealed obvious surface architecture abnormality. This study shows that MyE affects oocysts sporulation in a dose-dependent manner. At 24 and 36 hr, a high concentration of MyE (100 mg/ml) inhibits sporulation by 90.95 and 87.17 %. At 36 hr, other concentrations of MyE (50 and 25 mg/ml), as well as amprolium, DettolTM, and phenol inhibits oocyst sporulation by 40.17 %, 29.34 %, 45.09 %, 85.11 %, and 61.58 %, respectively. According to our research, the MyE extract had powerful anthelmintic and anticoccidial properties.
期刊介绍:
Helminthologia (HELMIN), published continuously since 1959, is the only journal in Europe that encompasses the individual and collaborative efforts of scientists working on a different topics of human, veterinary and plant helminthology. The journal responsibility is to enrich the theoretical and practical knowledge in very specific areas and thus contribute to the advancements in human and veterinary medicine and agronomy. Taking the advantage of comprehensive and multidisciplinary approaches journal still maintains its original spirit and is principal source of fresh scientific information regarding helminths, endoparasites and plant parasites. Addressing the most up-to date topics journal gained rightful and exceptional place next to the other high-quality scientific journals publishing in its field.