- -

Changes of oxidant-antioxidant parameters in small intestines from rabbits infected with E. intestinalis and E. magna

RiuNet: Repositorio Institucional de la Universidad Politécnica de Valencia

Compartir/Enviar a

Citas

Estadísticas

  • Estadisticas de Uso

Changes of oxidant-antioxidant parameters in small intestines from rabbits infected with E. intestinalis and E. magna

Mostrar el registro completo del ítem

Zhou, YX.; Yuan, X.; Hu, XF.; Yang, SS.; Zhong, SW.; Yang, TY.; Zhao, GT.... (2022). Changes of oxidant-antioxidant parameters in small intestines from rabbits infected with E. intestinalis and E. magna. World Rabbit Science. 30(4):287-293. https://doi.org/10.4995/wrs.2022.17395

Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/191227

Ficheros en el ítem

Metadatos del ítem

Título: Changes of oxidant-antioxidant parameters in small intestines from rabbits infected with E. intestinalis and E. magna
Autor: Zhou, Yun Xiao Yuan, Xu Hu, Xiao Fen Yang, Shan Shan Zhong, Sheng Wei Yang, Ting Yu Zhao, Guo Tong Jiang, Yi Jie Li, Yong
Fecha difusión:
Resumen:
[EN] Rabbit coccidiosis is a very serious disease caused by protozoan parasites of the genus Eimeria, which increases the production rate of free radicals, especially reactive oxygen species. When the generation of free ...[+]
Palabras clave: E. magna , E. intestinalis , Oxidative stress , Oxidant-antioxidant balance , Rabbit
Derechos de uso: Reconocimiento - No comercial - Compartir igual (by-nc-sa)
Fuente:
World Rabbit Science. (issn: 1257-5011 ) (eissn: 1989-8886 )
DOI: 10.4995/wrs.2022.17395
Editorial:
Universitat Politècnica de València
Versión del editor: https://doi.org/10.4995/wrs.2022.17395
Código del Proyecto:
info:eu-repo/grantAgreement/NSFC//31960688
info:eu-repo/grantAgreement/NSFC//31360592
info:eu-repo/grantAgreement/Natural Science Foundation of Jiangxi Province//20181BAB204016
Agradecimientos:
This experiment was supported by the National Natural Science Foundation Project of China (nos. 31960688 and 31360592) and the Natural Science Foundation Project of Jiangxi Province (no. 20181BAB204016).
Tipo: Artículo

References

Abdel-Haleem H.M., Aboelhadid S.M., Sakran T., El-Shahawy G., El-Fayoumi H., Al-Quraishy S., Abdel-Baki A.A.S.2017. Gene expression, oxidative stress and apoptoticchanges in rabbit ileum experimentally infected withEimeria intestinalis. Folia Parasitol. (Praha)., 64:1-7. https://doi.org/10.14411/fp.2017.012

Allen P.C. 1997. Production of free radical species during Eimeria maxima infections in chickens. Poult. Sci., 76:814-821. https://doi.org/10.1093/ps/76.6.814

Bahrami S., Shahriari A., Tavalla M., Azadmanesh S., Hamidinejat H. 2016. Blood levels of oxidant/antioxidant parameters in rats infected with Toxoplasma gondii. Oxid. Med. Cell. Longev., 2016. https://doi.org/10.1155/2016/8045969 [+]
Abdel-Haleem H.M., Aboelhadid S.M., Sakran T., El-Shahawy G., El-Fayoumi H., Al-Quraishy S., Abdel-Baki A.A.S.2017. Gene expression, oxidative stress and apoptoticchanges in rabbit ileum experimentally infected withEimeria intestinalis. Folia Parasitol. (Praha)., 64:1-7. https://doi.org/10.14411/fp.2017.012

Allen P.C. 1997. Production of free radical species during Eimeria maxima infections in chickens. Poult. Sci., 76:814-821. https://doi.org/10.1093/ps/76.6.814

Bahrami S., Shahriari A., Tavalla M., Azadmanesh S., Hamidinejat H. 2016. Blood levels of oxidant/antioxidant parameters in rats infected with Toxoplasma gondii. Oxid. Med. Cell. Longev., 2016. https://doi.org/10.1155/2016/8045969

Balicka-Ramisz A., Laurans, Pohorecki K., Batko M., Ramisz A.2021. Short communication: Prevalence of Eimeria spp.infection in domestic rabbits of Polish farms. World Rabbit Sci., 28:181-185. https://doi.org/10.4995/wrs.2020.10758

Burton G.J., Jauniaux E. 2011. Oxidative stress. Best Pract. Res. Clin. Obstet. Gynaecol., 25: 287-299. https://doi.org/10.1016/j.bpobgyn.2010.10.016

Çam Y., Atasever A., Eraslan G., Kibar M., Atalay Ö., Beyaz L., Inci A., Liman B.C. 2008. Eimeria stiedae: Experimental infection in rabbits and the effect of treatment with toltrazuril and ivermectin. Exp. Parasitol., 119: 164-172. https://doi.org/10.1016/j.exppara.2008.01.005

Cecerska-Heryć E., Surowska O., Heryć R., Serwin N., Napiontek-Balińska S., Dołęgowska B. 2021. Are antioxidant enzymes essential markers in the diagnosis and monitoring of cancer patients - A review. Clin. Biochem., 93: 1-8. https://doi.org/10.1016/j.clinbiochem.2021.03.008

Coudert P., Licois D., Provôt F., Drouet-Viard F. 1993. Eimeria sp. from the rabbit (Oryctolagus cuniculus): Pathogenicity and immunogenicity of Eimeria intestinalis. Parasitol. Res., 79: 186-190. https://doi.org/10.1007/BF00931890

Dalle Zotte A., Szendrő Z. 2011. The role of rabbit meat as functional food. Meat Sci., 88: 319-331. https://doi.org/10.1016/j.meatsci.2011.02.017

Dalloul R.A., Lillehoj H.S. 2005. Recent advances in immunomodulation and vaccination strategies againstcoccidiosis. Avian Dis., 49: 1-8. https://doi.org/10.1637/7306-11150R

Dinstel R.R., Cascio J., Koukel S. 2013. The antioxidant level of Alaska’s wild berries: High, higher and highest. Int. J. Circumpolar Health, 72: 1-7. https://doi.org/10.3402/ijch.v72i0.21188

Dkhil M.A., Abdel-Maksoud M.A., Al-Quraishy S., Abdel-Baki A.A.S., Wunderlich F. 2012. Gene expression in rabbit appendices infected with Eimeria coecicola. Vet. Parasitol., 186: 222-228. https://doi.org/10.1016/j.vetpar.2011.11.031

Eckert J., Taylor M., Licois D., Coudret P., Catchpole J., Bucklar H. 1995. Identification of Eimeria and Isospora species and strains: Morphological and biological characteristics. In: Eckert J., Braun R., Shirley M.W., et al. (eds) Biotechnology. Guidelines on techniques in coccidioisis research office for official publications of the European communities, Luxembourg, 103-119.

Fattman C.L., Schaefer L.M., Oury T.D. 2003. Extracellular superoxide dismutase in biology and medicine. Free Radic. Biol. Med., 35: 236-256. https://doi.org/10.1016/S0891-5849(03)00275-2

García-Rubio V.G., Bautista-Gómez L.G., Martínez-Castañeda J.S., Romero-Núñez C. 2017. Multicausal etiology of the enteric syndrome in rabbits from Mexico. Rev. Argent. Microbiol., 49: 132-138. https://doi.org/10.1016/j.ram.2017.03.001

Gaschler M.M., Stockwell B.R. 2017. Lipid peroxidation in cell death. Biochem. Biophys. Res. Commun., 482: 419-425. https://doi.org/10.1016/j.bbrc.2016.10.086

Georgieva N.V., Koinarski V., Gadjeva V. 2006. Antioxidant status during the course of Eimeria tenella infection in broiler chickens. Vet. J., 172: 488-492. https://doi.org/10.1016/j.tvjl.2005.07.016

Giannenas I., Papadopoulos E., Tsalie E., Triantafillou E., Henikl S., Teichmann K., Tontis D. 2012. Assessment of dietary supplementation with probiotics on performance, intestinal morphology and microflora of chickens infected with Eimeria tenella. Vet. Parasitol., 188: 31-40. https://doi.org/10.1016/j.vetpar.2012.02.017

Hamid P.H., Prastowo S., Kristianingrum Y.P. 2019. Intestinal and hepatic coccidiosis among rabbits in Yogyakarta, Indonesia. Vet. World, 12: 1256-1260. https://doi.org/10.14202/vetworld.2019.1256-1260

He L., He T., Farrar S., Ji L., Liu T., Ma X. 2017. Antioxidants maintain cellular redox homeostasis by elimination of reactive oxygen species. Cell. Physiol. Biochem., 44: 532-553. https://doi.org/10.1159/000485089

Hirrlinger J., Hamprecht B., Dringen R. 1999. Application and modulation of a permanent hydrogen peroxide-induced oxidative stress to cultured astroglial cells. Brain Res. Protoc., 4: 223-229. https://doi.org/10.1016/S1385-299X(99)00023-9

Hussain A., Jinke T., Jianjun W., Muhammad Ammar K., Yuanxiao W., Lili Z., Tian W. 2012. Effects of dietary sodium selenite and selenium yeast on antioxidant enzyme activities andoxidative stability of chicken breast meat. J. Agric. Food Chem., 60: 7111-7120. https://doi.org/10.1021/jf3017207

Jang S.I., Lillehoj H.S., Lee S.H., Lee K.W., Park M.S., BauchanG.R., Lillehoj E.P., Bertrand F., Dupuis L., Deville S. 2010. Immunoenhancing effects of MontanideTM ISA oil-based adjuvants on recombinant coccidia antigen vaccination against Eimeria acervulina infection. Vet. Parasitol., 172: 221-228. https://doi.org/10.1016/j.vetpar.2010.04.042

Jing F., Yin G., Liu X., Suo X., Qin Y. 2012. Large-scale survey of the prevalence of Eimeria infections in domestic rabbits in China. Parasitol. Res., 110: 1495-1500. https://doi.org/10.1007/s00436-011-2653-4

Li C., Tao G., Gu X., Cui Y., Wang Y., Suo J., Lv Y., Yu F., Mamoun C. Ben, Suo X., Liu X. 2019. Selection and identification of a precocious line of Eimeria intestinalis with enlarged oocysts and deletion of one generation of schizogony. Parasitol. Res., 118: 969-976. https://doi.org/10.1007/s00436-018-06199-1

Li M.H., Ooi H.K. 2009. Fecal occult blood manifestation of intestinal Eimeria spp. infection in rabbit. Vet. Parasitol., 161: 327-329. https://doi.org/10.1016/j.vetpar.2009.01.009

Licois D., Coudert P., Boivin M., Drouet-Viard F., Provôt F. 1990. Selection and characterization of a precocious line of Eimeria intestinalis, an intestinal rabbit coccidium. Parasitol. Res., 76: 192-198. https://doi.org/10.1007/BF00930814

Licois D., Coudert P., Drouet-Viard F., Boivin M. 1995.Eimeria magna: Pathogenicity, immunogenicity and selection of a precocious line. Vet. Parasitol., 60: 27-35. https://doi.org/10.1016/0304-4017(94)00768-8

Lin X., Bai D., Wei Z., Zhang Y., Huang Y., Deng H., Huang X.2019. Curcumin attenuates oxidative stress in RAW264.7 cells by increasing the activity of antioxidant enzymes and activating the Nrf2-Keap1 pathway. PLoS One, 14: 1-13. https://doi.org/10.1371/journal.pone.0216711

Matés J.M., Pérez-Gómez C., De Castro I.N. 1999. Antioxidant enzymes and human diseases. Clin. Biochem., 32: 595-603. https://doi.org/10.1016/S0009-9120(99)00075-2

Mengistu B.M., Bitsue H.K., Huang K. 2021. The effects of selenium-enriched probiotics on growth performance, oocysts shedding, intestinal cecal lesion scores, antioxidant capacity, and mRNA gene expression in chickens infectedwith Eimeria tenella. Biol. Trace Elem. Res., 199: 278-291. https://doi.org/10.1007/s12011-020-02118-7

Niilo L. 1967. Acquired resistance to reinfection of rabbits with Eimeria magna. Can. Vet. J., 8: 201-208.

Pakandl M., Licois D., Coudert P. 2001. Electron microscopic study on sporocysts and sporozoites of parental strains and precocious lines of rabbit coccidia Eimeria intestinalis, E. media and E. magna. Parasitol. Res., 87: 63-66. https://doi.org/10.1007/s004360000303

Pakandl M., Sewald B., Drouet-Viard F. 2006. Invasion of the intestinal tract by sporozoites of Eimeria coecicola and Eimeria intestinalis in naive and immune rabbits. Parasitol. Res., 98: 310-316. https://doi.org/10.1007/s00436-005-0071-1

Romero F.J., Bosch-Morell F., Romero M.J., Jareño E.J., Romero B., Marín N., Romá J. 1998. Lipid peroxidation products and antioxidants in human disease. Environ. Health Perspect., 106: 1229-1234. https://doi.org/10.1289/ehp.98106s51229

Saita E., Kondo K., Momiyama Y. 2014. Anti-inflammatory diet for atherosclerosis and coronary artery disease: Antioxidant foods. Clin. Med. Insights Cardiol., 8: 61-65. https://doi.org/10.4137/CMC.S17071

Sasani M., Nabavi R., Hajinezhad M., Hasanein P. 2018. Oxidative stress and hepatic injury induced in mice fed a Sarcocystis hirsuta cyst extract. J. Vet. Sci., 19: 500. https://doi.org/10.4142/jvs.2018.19.4.500

Shi L., X u Y., Mao C., Wang Z., Guo S., Jin X., Yan S., Shi B.2020. Effects of heat stress on antioxidant status and immune function and expression of related genes in lambs. Int. J. Biometeorol., 64: 2093-2104. https://doi.org/10.1007/s00484-020-02000-0

Shi T., Tao G., Bao G., Suo J., Hao L., F u Y., Suo X. 2016. Stabletransfection of Eimeria intestinalis and investigation of its life cycle, reproduction and immunogenicity. Front. Microbiol., 7: 1-8. https://doi.org/10.3389/fmicb.2016.00807

Shirley M.W., Smith A.L., Tomley F.M. 2005. The biology of avian Eimeria with an emphasis on their control by vaccination. Adv. Parasitol., 60: 285-330. https://doi.org/10.1016/S0065-308X(05)60005-X

Tao G., Wang Y., Li C., Gu X., Cui P., Fang S., Suo X., Liu X. 2017. High pathogenicity and strong immunogenicity of a Chinese isolate of Eimeria magna Pérard, 1925. Parasitol. Int., 66: 207-209. https://doi.org/10.1016/j.parint.2017.01.014

Wang X.H., Yu H.L., Zou W.B., Mi C.H., Dai G.J., Zhang T., Zhang G.X., Xie K.Z., Wang J.Y.2020. Study of the relationship between polymorphisms in the Il-8 gene promoter region and coccidiosis resistance index in jinghai yellow chickens. Genes (Basel)., 11: 1-13. https://doi.org/10.3390/genes11050476

Xiao M., Mi Y., Liu L., Lv C., Zeng W., Zhang C., Li J. 2018. Taurine regulates mucosal barrier function to alleviate lipopolysaccharide-induced duodenal inflammation in chicken. Amino Acids, 50: 1637-1646. https://doi.org/10.1007/s00726-018-2631-6

Yuan X., Liu J., Wang F., Hu X.F., Wen F., Tang X.E., Yang S.S., Zhong S.W., Zhou Z.H., Li Y. 2021. Pathological changes and antigen localization in the small intestine of rabbits infected with Eimeria magna. World Rabbit Sci., 29: 183-192. https://doi.org/10.4995/wrs.2021.15254

Zhou M., Xu W., Wang J., Yan J., Shi Y., Zhang C., Ge W., Wu J., Du P., Chen Y. 2018. Boosting mTOR-dependent autophagy via upstream TLR4-MyD88-MAPK signalling and downstream NF-κB pathway quenches intestinal inflammation and oxidative stress injury. EBioMedicine, 35: 345-360. https://doi.org/10.1016/j.ebiom.2018.0

[-]

recommendations

 

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro completo del ítem