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Gonado-hypophyseal lesions and reproductive hormonal changes in Brucella melitensis-infected mice and its lipopolysaccharides (LPSs)

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Abstract

Gonado-hypophyseal lesions and reproductive hormonal changes in Brucella melitensis-infected mice and its lipopolysaccharide (LPS) were investigated. Forty-eight mice (24 males and 24 females) were used as infection models in this study, and they were divided into three equal separate groups of eight mice based on their sex: M1, M2, and M3 and F1, F2, and F3 (M = Male, F = Female). Groups M1 and F1 were orally inoculated with sterile phosphate-buffered saline (PBS) and served as the negative control. Groups M2 and F2 were orally inoculated with 0.4 ml of 109 colony-forming units (cfu) of B. melitensis, while groups M3 and F3 were orally inoculated with 0.4 ml of LPSs from 109 cfu of B. melitensis. All the groups were observed for 10 days for changes in clinical signs or signs of mortality and then euthanized. Whole blood was collected via cardiac puncture, while tissues were fixed in 10 % formalin for histopathological processing. Histopathological lesions in the male and female reproductive tracts ranged from mild to moderate degenerative, inflammatory, and necrotic lesions. These changes were moderate in M2 than in M3 in males and in F3 than in F2 groups in females. Lesions in the pituitary gland ranged from mild to moderate inflammation and necrosis with astrogliosis. F2 and M2 groups had more lesion distribution in the pituitary gland than F3 and M3 groups. There was a 13 % decline in progesterone concentration in F2 and a 44 % decline in F3. Estradiol level declined by 33 % in F2 and slightly increased by 4.2 % in F3. Progesterone-estrogen ratio (P/E) increased by 31 % in F2 and declined by 46 % in F3. Testosterone concentration increased by 74 % in M2 and decreased by 56 % in M3. The study showed that oral administration of B. melitensis affects the pituitary gland and may alter the hypothalamic-pituitary-gonadal axis.

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References

  • Abdullah FFA, Adamu L, Hazirah N, Osman AY, Mansor R, Haron AW, Saad MZ, Omar AR, Saharee AZ (2013a) Clinical and reproductive pathological changes associated with Brucella melitensis and its lipopolysaccharide in female mice via oral inoculation. Am J Anim Vet Sci 8(3):104–111

    Article  CAS  Google Scholar 

  • Abdullah FFA, Nik NB, Saad MZ, Haron AW, Omar AR, Sabri J, Adamu L, Osman AY, Saharee AZ (2013b) Clinico-pathological changes associated with Brucella melitensis and its lipopolysaccharide in female mice. Int J Anim Vet Adv 6(1):15–22

    Google Scholar 

  • Abdullah FFA, Adamu L, Ismael NA, Osman AY, Haron AW, Saad MZ, Saharee AA (2014) Clinical responses and reproductive changes associated with Brucella melitensis infection and its bacterial lipopolysaccharide in male mice. Int J Anim Vet Adv 5(5):165–170

    Google Scholar 

  • Ahmed YF, Sokkar SM, Desouky HM, Madbouly AA (2012) Pathological studies on buffalo-cows naturally infected with Brucella melitensis. Glob Vet 9(6):663–668

    Google Scholar 

  • AL-Sa’aidi J A. A., Al-Rodh MA, Najum AA (2012) Clinical, serological, hormonal, bacteriological and molecular detection of brucellosis in aborted cows and buffalos. In: Nejadkoorki, F (ed) International conference on applied life sciences (ICALS2012), Turkey, September 2012. InTech, Croatia, 327–336

  • Baldi PC, Giambartolomei GH (2013) Pathogenesis and pathobiology of zoonotic brucellosis in humans. Rev Sci Tech 32(1):117–125

    CAS  PubMed  Google Scholar 

  • Díaz Aparicio E (2013) Epidemiology of brucellosis in domestic animals caused by Brucella melitensis, Brucella suis and Brucella abortus. Rev Sci Tech 32(1):43–51, 53–60

    PubMed  Google Scholar 

  • Godfroid J, Cloeckaert A, Liautard JP, Kohler S, Fretin D, Walravens K, Bruno GB, Letesson JJ (2005) From the discovery of the Malta fever’s agent to the discovery of a marine mammal reservoir, brucellosis has continuously been a re-emerging zoonosis. Vet Res 36(3):313–326

    Article  PubMed  Google Scholar 

  • Grillo M-J, Blasco JM, Gorvel JP, Moriyon I, Morino E (2012) What have we learned from brucellosis in the mouse model? Vet Res 43(29):1–35

    Google Scholar 

  • Khaleel MM, Abdullah FFJ, Adamu L, Abba Y, Haron AW, Saad MZ, Omar AR (2014) Histopathological changes in mice infected with river water contaminated by Pasteurella multocida type B: 2. Am J Anim Vet Sci 9(2):71

    Article  Google Scholar 

  • Megid J, Mathias LA, Robles CA (2010) Clinical manifestations of brucellosis in domestic animals and humans. Open Vet Sci J 4:119–126

    Article  Google Scholar 

  • Mense MG, Borschel RH, Wilhelmsen CL, Pitt ML, Hoover DL (2004) Pathologic changes associated with brucellosis experimentally induced by aerosol exposure in rhesus macaques (Macaca mulatta). Am J Vet Res 65(5):644–652

    Article  PubMed  Google Scholar 

  • Nasruddin NS, Mazlan M, Saad MZ, Hamzah H, Sabri J (2014) Histopathology and immunohistochemistry assessments of acute experimental infection by Brucella melitensis in bucks. Open J Pathol 4:54–63

    Article  Google Scholar 

  • Özçakir HT, Levi R, Tavmergen E, Göker ENT (2004) Premature luteinization defined as progesterone estradiol ratio >1 on hCG administration day seems to adversely affect clinical outcome in long gonadotropin-releasing hormone agonist cycles. J Obstet Gynaecol Res 30:100–104

    Article  PubMed  Google Scholar 

  • Silva T, Costa EA, Paixão T A., Tsolis RM, Santos RL (2011) Laboratory animal models for brucellosis research. J Biomed Biotechnol. doi: 10.1155/2011/518323

Download references

Acknowledgment

We thank the staff of the Department of Veterinary Clinical Studies, Universiti Putra Malaysia, and Research Centre for Ruminant Disease, in particular Yap Keng Chee, Mohd Jefri Norsidin, and Mohd Fahmi Mashuri for their assistance.

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Correspondence to Faez Firdaus Abdullah Jesse.

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Jesse, F.F.A., Abba, Y., Tijjani, A. et al. Gonado-hypophyseal lesions and reproductive hormonal changes in Brucella melitensis-infected mice and its lipopolysaccharides (LPSs). Comp Clin Pathol 25, 31–36 (2016). https://doi.org/10.1007/s00580-015-2133-9

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