• Title/Summary/Keyword: anticoccidial index

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Anticoccidial effects of an extract of Artemisia annua on the Eimeria tenella (Artemisia annua 추출액의 Eimeria tenella에 대한 항콕시듐 효과)

  • Oh, Hwa-gyun;Youn, Hee-jeong;Noh, Jae-wuk;Jang, Du-hwan;Kang, Yung-bai
    • Korean Journal of Veterinary Research
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    • v.35 no.1
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    • pp.115-121
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    • 1995
  • The herb, Artemisia(A) annua, a member of the composital family, has been used successfully for malaria(Plasmodium sp) patients in china. Since the genera of Plasmodium and Eimeria(E) tenella are related, it is presumed that A annua may also be effective against E tenella. In order to study the anticoccidial effects of A annua the chickens inoculated with E tenella were treated with the extract of A annua in drinking water and the results were compared to those of non-medicated, infected control(NIC) and non-medicated, non-infected control(NNC) group. A annua demonstrated anticoccidial effects by showing, compared to NIC group, improved results in all parameters, such as bloody diarrhea, lesion scores, the numbers of excereted oocysts in feces, body weight gain and feed conversion rate. Anticoccidial index(ACI) of the A annua treated group (123.4) was higher than that of NIC group (96.9). These results indicate that Artemisia annua has anticoccidial effects on the Eimeria tenella.

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Anticoccidial effects of artemisinin on the Eimeria tenella (Artemisinin의 Eimeria tenella에 대한 항콕시듐 효과)

  • Oh, Hwa-gyun;Youn, Hee-jeong;Noh, Jae-wuk;Jang, Du-hwan;Kang, Yung-bai
    • Korean Journal of Veterinary Research
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    • v.35 no.1
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    • pp.123-130
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    • 1995
  • Artemisinin, a sesquiterpene lactone, is isolated from the leafy portion of the Artemisia annua and has been known to be effective against Plasmodium species. Since the genera of Plasmodium and Eimeria(E) tenella are included the same order, Eucoccidiidae, it is presumed that artemisinin may also be effective against E tenella. In order to study the anticoccididal effects of artemisinin, the chickens inoculated with E tenella were treated with artemisinin at different concentrations as feed additive and the results were compared to those of non-medicated, infected control(NIC) and non-medicated, non-infected control(NNC) group. Artemisinin demonstrated anticoccidial effects by showing, compared to NIC group, improved results in all parameters, such as bloody diarrhea, lesion scores, the numbers of excreted oocystis in feces, body weight gain and feed conversion rate. Anticoccidial index(ACI) of artemisinin treated group (5ppm~50ppm) was higher than that of NIC group. Improvements were greatest in the group treated with artemisinin 50ppm with an ACI of 147.6. These results indicate that artemisinin has anticoccidial effects on the Eimeria tenella.

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Studies on Anticoccidial Drug Sensitivity and Infection of the Coccidia against Broiler Chicks of Farms in the North Area of Kyongbuk Province (경북 북부지역 육계농장의 Coccidia 감염실태 및 약제 감수성 조사)

  • 김순태;손재권;김상윤
    • Korean Journal of Veterinary Service
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    • v.17 no.1
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    • pp.44-53
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    • 1994
  • The result that investigated aberage weekly oocyst nymbers in faeces from 16 broiler farms, Oocyst can be found in the highest during the 5 weeks age. The 3 of the 16 farms have clinical sign of the coccidiosis at the faeces collection. Anticoccidial drug sensitivity against Oocyst isolated in 2 farms to have clinical coccidiosis was tested for the drug susceptibility and resistance in order to prevention coccidiosis effectively. Maduramicin, Salynomicif Narasin Lasalocid, Monensin, Robenidine and Dicrazulir were used an anticoccidial drugs. The results ; Anticoccidial index(ACI) of the A farm were 201.50 in a chicken group treated with Dicrazulir, 194.84 with Robenidine. 172.79 with Maduramicin 6ppm 170.49 with Salynomicin, 168.02 with maduramicin 5ppm 165.77 with Lasalocid, 143.34 with Monensin and 140.63 with Narasin. ACI of the B farm were 193.40 in a chicken group treated Robenidine, 190.64 with Dicrazuril, 158.75 with Maduramic in 6ppm, 151.62 with Maduramicin 5ppm, 149.44 with Salynomicin, 143.10 with lasalocid, 138.11 with Monensin and 137.50 with Narasin. According to interpretation of ACI from Kawasae et al, the drug resistance(less than 120 of ACI) not appeared in two farms, vut the drug tolerance(120-160 of ACI) appeared in two group treated with Monesin and Nalacin in csae of A farm and in all group with treated anticoccidial drug in case of B farm.

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Studies on the Anticoccidial Efficacy of an Unique Polyether Ionophorous Antibiotic, Maduramicin Ammonium in Comparison with Salinomycin Sodium and Monensin Sodium for Broiler Chicks (폴리에텔계 항생제인 Maduramicin ammonium, Salinomycin sodium 및 Monensin sodium이 육계에 있어서 항콕시듐 효능과 증체에 미치는 영향에 관한 연구)

  • 장두환;조영웅;윤희정;강세원
    • Korean Journal of Poultry Science
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    • v.12 no.2
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    • pp.127-134
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    • 1985
  • Battery trial with 240 broiler chicks of Hubbard strain was conducted for a period of 2 weeks in order to compare the anticoccidical efficacy of polyether ionophorous antibiotics ; Maduramicin ammonium, Monensin and Salinomyc in sodium. The criteria used in these anticoccidial efficacy studies were anticoccidial index, growth rate, feed efficiency, mortality, lesion score and the number of oocysts produced after artificial inoculation with 70,000 sporulated oocysts of Eimeria tenella(90%) and E.necatrix (10%) to each bird. The result obtained are summarized as follow: 1. All groups medicated anticoccidial feed additives improved body weight gain and feed efficiency. However, it was found that the group medicated with Maduramicin showed better body weight gain (352.5 and 648.8 g) and feed efficiency(1.603 and 1.680) during the first and the second week experiments, 2. The mortality rate(4.2%) and lesion scores (1.72) of Maduramicin medicated group, from artificial coccidiosis were comparatively lower than those of other two medicated groups, 3. It was also found that oocyst output (0.25 ${\times}$ 10$^4$) in Maduramicin medicated group were lower than those of other two groups. 4. Anticoccidial indexes during the first week were 177.9 in Maduramicin medica-group, 158.7 in Salinomycin medicated group, 141.6 in Monensin medicated group and 78.0 in infected, nonmedicated group as compared with 200.0 in noninfected, nonmedicated group (NNC) 5. Anticoccidial indexes during the second week were 201.1 in Maduramicin group 184.0 in infected, nonmedicated group as compared with 200.0 in noninfected, nonmedicated group (NNC).

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Effects of γ-Irradiation from Cobalt-60 on pathogenicity of Eimeria tenella (Cobalt-60 감마선 조사가 Eimeria tenella 의 병원성에 미치는 영향)

  • Youn, Hee-jeong;Kang, Young-bai;Jang, Du-hwan
    • Korean Journal of Veterinary Research
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    • v.33 no.4
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    • pp.649-655
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    • 1993
  • A series of experiments on the effects of ${\gamma}-irradiation$ was performed to reveal the pathogenicity of ${\gamma}-irradiated$ oocysts of E tenella from Cobalt-60 and its progeny. The SPF chickens were inoculated with differnt doses of radiation and inoculum. The level of 100 Gy ${\gamma}-irradiation$ from $^{60}Co$ and the level of inoculum with $1{\times}10^4$ oocysts were recognized more pathogenic than those of the other groups by comparison of body weight gains, blood in feces and lesion scores. The signs of blood in feces, lesion score and the number of excreted oocysts in the feces were revealed as the lowest in the group of the ${\gamma}-irradiated$ oocysts, the average in the group of the 1st and the 3rd progeny, and the highest in the group of non-irradiated oocysts of E $tenell\grave{a}$. The body weight gain of the group immunized with ${\gamma}-irradiated$ oocysts of E tenella was higher than those of the non-irradiated, the 1st and 3rd progeny groups. The body weight gain of the groups immunized with the 1st and the 3rd progeny of E tenella were higher than that of the non-irradiated group. The feed conversion ration of the group immunized with ${\gamma}-irradiated$ oocysts of E tenella was lower than those of the non-irradiated, the 1st and the 3rd progeny groups. The feed conversion ratios of the group immunized with the 1st and 3rd progeny of ${\gamma}-irradiated$ oocysts were lower than that of the group infected with non-irradiated E tenella. The anticoccidial index(ACI 190.6) in the chickens immunized with the ${\gamma}-irradiated$ oocysts of E tenella and those(ACI 142.8 and 107.4) of the 1st and the 3rd progeny groups were higher than that (ACT 87.4) of the group infected with non-irradiated E tenella. It was thought that the pathogenicity of ${\gamma}-irradiated$ E tenella would be recovered according to increase the number of generation passaged in chicken.

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Effects of γ-Irradiation from Cobalt-60 on Immunogenicity of Eimeria tenella (Cobalt-60 γ-선 조사가 Eimeria tenella 의 면역원성에 미치는 영향)

  • Youn, Hee-jeong;Kang, Yung-bai;Jang, Du-hwan
    • Korean Journal of Veterinary Research
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    • v.33 no.4
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    • pp.657-664
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    • 1993
  • To reveal the immunogenicity of ${\gamma}-irradiated$ E tenella and its progeny, a series of experiments on the effects of Cobalt-to ${\gamma}-irradiation$ was performed. The SPF chickens inoculated with diffenrt doses of inoculum were challenged with $1{\times}10^5$ oocysts of virulent E tenella. The levels of 100 Gy ${\gamma}-irradiation$ from $^{60}Co$ and of inoculum with $1{\times}10^4$ oocysts were recognized as proper as immunogen by comparison of survival rates, body weight gains, blood in feces and lesion scores in the chickens. In these trials of challenge with virulent E tenella after inoculation with $1{\times}10^4$ oocysts of the ${\gamma}-irradiated$ E tenella and its progeny, the survival rates of the chickens challenged with the virulent E tenella after immunization with the 1st and the 3rd progeny groups of ${\gamma}-irradiated$ E tenella oocysts were higher(l00%) than that(87.0%) of the challenged control group. The signs of blood in feces and the lesion scores were seen markedly lower with the ourput of the smaller number of oocysts, i.e. OPG 103,900 and 25,800 in the groups of the 1st and the 3rd progeny, respectively, than those(OPG 1,658,900) of the challenged control group. The body weight gains of the 1st and the 3rd progeny groups, the 1st week and the 2nd week after challenge, were higher (2.6g and 155.4g, 11.6g and 168.9g respectively) than those(-85.8g and 63.6g, respectively) of the challenged control group, and the feed conversion ratios(FCR 3.28 and 2.96) of the 1st and the 3rd progeny groups were lower than that(FCR 5.60) of the groups challenged control group. The anticoccidial indices(70.5 and 93.9) of the groups challenged with the virulent oocysts of E tenella after immunization with the 1st and the 3rd progeny of the ${\gamma}-irradiated$ E tenella were significantly higher than that (ACI -81.9) of the challenged control group. It was thought that the immunogenicity of ${\gamma}-irradiated$ E tenella would be increase according to increase the number of generation passaged in chicken. That might be because of increasing the pathogenicity of ${\gamma}-irradiated$ E tenella according to increase the number of generation passaged in chicken.

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