Evaluation of tumor necrosis Factor Alpha, Interferon Gamma, Procalcitonin and Neopterin levels in Brucella seropositive cattle

  • Nevin Tuzcu Selcuk University, Faculty of Pharmacy, Department of Pharmaceutical Microbiology. Selcuklu, Konya, Turkey
  • Mehmet Tuzcu Selcuk University, Faculty of Veterinary, Medicine Department of Pathology. Selcuklu, Konya, Turkey
  • Gokhan Akcakavak Yozgat Bozok University, Faculty of Veterinary Medicine, Department of Pathology. Sorgun, Yozgat, Turkey
Keywords: Brucellosis, tumor necrosis factor alpha, interferon gamma, procalcitonin, neopterin

Abstract

Brucellosis is a zoonotic disease that affects a large number of people and animals, causing physical disability, workforce loss and significant economic losses in the livestock industry. In the current study, it was aimed to determine and compare the levels of tumor necrosis factor alpha (TNF–α), interferon gamma (IFN–γ), Procalcitonin (PCT) and Neopterin in the blood serums of cattle with brucellosis and vaccinated against brucellosis. The materials of this study consisted of a total 48 blood serums belonging to three basic groups, each consisting of 16 animals. Disease group (1st group) were divided into two subgrups each consisting of 8 animals that 21st day after abortion and seropositive 7 months pregnant, the vaccinated (2nd group) and the control (3rd group) groups were divided into two subgroups, each consisting of 8 animals that gave birth 21 days ago and 7 months pregnant. IFN–γ and PCT levels were determined by sandwich enzyme immunoassay, TNF–α and Neopterin levels were determined using competitive inhibition enzyme immunoassay method by using ELISA device. In this study, TNF–α, PCT and Neopterin levels measured in the blood serums of the Brucella seropositive (1st), conjunctival Brucella abortus S19 vaccine administered (2nd) and unvaccinated Brucella seronegative control groups were compared and no significant difference could be determined between the subgroups of the groups (P>0.05). There were a significant differences between 1st, 2nd, and 3rd groups (P<0.05). IFN–γ levels determined in the blood serums of 1st, 2nd and 3rd groups were compared and nosignificant differences were found between the subgroups of 2nd and 3rd groups (P>0.05), but there were a significant differences between the subgroups of the 1st group (P<0.05). Similarly, a significant differences were determined between 1st, 2nd and 3rd groups in terms of IFN–γ levels (P<0.05). As a result, it was thought that detecting very high serum TNF–α, IFN–γ, neopterin levels in cattle with brucellosis would be helpful in the diagnosis and follow–up of brucellosis. However, it was concluded that there is a need for controlled studies comparing more herds with brucellosis to determine whether the relevant cytokines can be used in the diagnosis of brucellosis.

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References

Seleem MN, Boyle SM, Sriranganathan N. Brucellosis: a re–emerging zoonosis. Vet. Microbiol. [Internet]. 2010; 140(3–4):392–398. doi: https://doi.org/cp877h

Tuzcu M, Özmen M, Tuzcu N, Yoldaş A, Topçuoğlu H. Atık sığır fetüslerinde Brusellozisin patolojik, immunohistokimyasal, mikrobiyolojik yöntemlerle ve gerçek zamanlı PZR ile Teşhisi. AVKAE Derg. [Internet] 2011 [cited 18 Feb 2023]; 1:8–14. Available in: https://bit.ly/479kehC.

Aydın N. Brucella infeksiyonları. In: Aydın N, Paracıkoğlu J. (eds.). Veteriner Mikrobiyoloji (Bakteriyel Hastalıklar). Ankara: İlke–Emek Yayınları; 2006. p 145–163.

Bertu WJ, Gusi AM, Hassan M, Mwankon E, Ocholi RA, Ior DD, Husseini BA, Ibrahim G, Abdoel TH, Smits HL. Serological evidence for brucellosis in Bos indicus in Nigeria. Trop. Anim. Health. Prod. [Internet]. 2012; 44(2):253–258. doi: https://doi.org/djpq7g

Corbel MJ. Brucellosis in humans and animals. [Internet]. Rome: Food and Agriculture Organization of the United Nations, World Health Organization and World Organisation for Animal Health; 2006 [cited 24 Jun 2023]; 89 p. Available in: https://bit.ly/3q7pe5L.

He Y. Analyses of Brucella pathogenesis, host immunity, and vaccine targets using systems biology and bioinformatics. Front. Cell. Infect. [Internet]. 2012; 2:e–00002. doi: https://doi.org/fxq5h5

Ahmed K, Al–Matrouk KA, Martinez G, Oishi K, Rotimi VO, Nagatake T. Increased serum levels of interferon–gamma and interleukin–12 during human brucellosis. Ame. J. Trop. Med. Hyg. [Internet]. 1999; 61(3):425–427. doi: https://doi.org/grg8fg

Oliveira SC, Soeurt N, Splitter G. Molecular and cellular interactions between Brucella abortus antigens and host immune responses. Vet. Microbiol. [Internet]. 2002; 90(1–4):417–424. doi: https://doi.org/d6f438

Fuchs D, Weiss G, Reibnegger G, Wachter H. The role of neopterin as a monitor of cellular immune activation in transplantation, inflammatory, infectious, and malignant diseases. Crit. Rev. Clin. Lab. Sci. [Internet]. 1992; 29(3–4):307–44. doi: https://doi.org/fxfzrt

Zhan Y, Cheers C. Endogenous gamma interferon mediates resistance to Brucella abortus infection. Infect. Immun. [Internet]. 1993; 61(11):4899–4901. doi: https://doi.org/kmkt

Giambartolomei GH, Delpino MV, Cahanovich ME, Wallach JC, Baldi PC, Velikovsky CA, Fossati A.C. Diminished production of T helper 1 cytokines correlates with T cell unresponsiveness to Brucella cytoplasmic proteins in chronic human brucellosis. J. Infect. Dis. [Internet]. 2002; 186(2):252–259. doi: https://doi.org/c63nhx

Jin M, Khan AI. Procalcitonin: Uses in the Clinical Laboratory for the Diagnosis of Sepsis. Lab. Med. [Internet]. 2010; 41(3):173–177. doi: https://doi.org/d6d9gc

Assicot M, Bohuon C, Gendrel D, Raymond J, Carsin H, Guilbaud J. High serum procalcitonin concentrations in patients with sepsis and infection. The Lancet. [Internet]. 1993; 341(8844):515–518. doi: https://doi.org/b5n6sf

Galanakis E, Makis A, Bourantas K, Papadopoulou Z. Interleukin–3 and interleukin–4 in childhood brucellosis. Infect. [Internet]. 2002; 30:33–34. doi: https://doi.org/frjf69

Golding B, Scott DE, Scharf O, Huang LY, Zaitseva M, Lapham C, Eller N, Golding H. Immunity and protection against Brucella abortus. Microbes Infect. [Internet]. 2001; 3(1):43–48. doi: https://doi.org/bbg69v

Diez–Ruiz A, Al–Amrani M, Weiss G, Gutierrez–Gea F, Wachter H, Fuchs D. Increased interferon–γ and neopterin concentrations in patients with acute brucellosis. J. Infect. Dis. [Internet]. 1993; 167(2):504–505. doi: https://doi.org/fdwbx3

Refik M, Mehmet N, Durmaz R, Ersoy Y. Cytokine profile and nitric oxide levels in sera from patients with brucellosis. Braz. J. Med. Biol. [Internet]. 2004; 37:1659–1663. doi: https://doi.org/bsfjt8

Akbulut HH, Celik I, Akbulut A, Yuce P, Kiliç SS. Serum neopterin levels in patients with brucellosis. J. Infect. Dis. [Internet]. 2005; 51(4):281–286. doi: https://doi.org/bj78pn

Akbulut H, Celik I, Akbulut A. Cytokine levels in patients with brucellosis and their relations with the treatment. Indian J. Med. Microbiol. [Internet]. 2007; 25(4):387–90. doi: https://doi.org/dmw2gc

El–Boshy M, Abbas H, El–Khodery S, Osman S. Cytokine response and clinicopathological findings in Brucella infected camels (Camelus dromedarius). Vet. Med. [Internet]. 2009; 54(1):25–32.

Hashem MA, El–Mandrawy SA, El–Diasty MM, Zidan AZ. Hematological, biochemical and immunological studies on brucellosis in cows and ewes in Dakahlia and Damietta Governorates, Egypt. Zagazig Vet. J. [Internet]. 2020; 48(1):23–35. doi: https://doi.org/kmkw

Padilla–Poester F, Nielsen K, Ernesto–Samartino L, Ling–Yu W. Diagnosis of brucellosis. Open Vet. J. [Internet]. 2010; 4(1):46–60. doi: https://doi.org/gnvw4r

Demirtaş N, Ceylan E, Karadağ F, Polatlim–Ildag O. Adalimumab Kullanımı ile ilişkili tüberküloz pnömonisi. İzmir Tepecik Eğitim Hastanesi Dergisi. 2012; 22(3):187–190.

Palmer M, Elsasser T, Cheville N. Tumor necrosis factor–alpha in pregnant cattle after intravenous or subcutaneous vaccination with Brucella abortus strain RB51. Ame. J. Vet. Res. 1998; 59(2):153–156.

Kumar DR, Sivalingam J, Mishra SK, Kumar A, Vineeth MR, Chaudhuri P, Kataria RS, Niranjan SK. Differential expression of cytokines in PBMC of Bos indicus and Bos taurus × Bos indicus cattle due to Brucella abortus S19 antigen. Anim. Biotechnol. [Internet]. 2020; 31(2):148–154. doi: https://doi.org/kmkx

Ercan N, Tuzcu N, Basbug O, Gok K, Isıdan H, Ograk, YZ. The Evaluation of Important Biomarkers in Healthy Cattle. Kafkas Univ. Vet. Fak. 2014; 20(5): 749–755.

Odbileg R, Purevtseren B, Gantsetseg D, Boldbaatar B, Buyannemekh T, Galmandakh Z, Erdenebaatar J, Konnai S, Onuma KO. Cytokine responses in camels (Camelus bactrianus) vaccinated with Brucella abortus strain 19 vaccine. J. Vet. Med. Sci. [Internet]. 2008; 70(2):197–201. doi: https://doi.org/cwqr5c

Gendrel D, Bohuon C. Procalcitonin as a marker of bacterial infection: Cme Review Article. J. Pediatr. Infect. Dis. [Internet]. 2000; 19(8):679–688. doi: https://doi.org/d39ffj

Meucci V, Orsetti C, Sgorbini M, Battaglia F, Cresci M, Bonelli F. Can Procalcitonin Be Dosed in Bovine Milk Using a Commercial ELISA Kit?. Anim. [Internet]. 2022; 12(3):289. doi: https://doi.org/kmkz

Irmak H, Cesur S, Koçak ZT, Bulut C, Kinikli S, Demiroz AP. Brusellalı Hastalarda Serum Neopterin Düzeyleri. Ortadoğu Tip Dergisi. 2013; 5(2):90–93.

Published
2023-08-02
How to Cite
1.
Tuzcu N, Tuzcu M, Akcakavak G. Evaluation of tumor necrosis Factor Alpha, Interferon Gamma, Procalcitonin and Neopterin levels in Brucella seropositive cattle. Rev. Cient. FCV-LUZ [Internet]. 2023Aug.2 [cited 2024May18];33(2):5. Available from: https://produccioncientificaluz.org/index.php/cientifica/article/view/40618
Section
Veterinary Medicine