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Abstract

The aim of the present study was to investigate whether the anterior chamber constitutes part of the normal migratory pathway of CD4+ and CD8+ lymphocytes in cattle and swine. The cells obtained from aqueous humor of cows and pigs were stained for CD4 and CD8 receptors, and subsequently analyzed with flow cytometry. The mean percentage of CD4+CD8-, CD4-CD8+ and CD4+CD8+ cells within the total lymphocyte population of the bovine anterior chamber was, respectively, 17.88, 12.64 and 27.26%. In turn, the mean values of these parameters in pigs were 1.77, 38.48 and 17.45, respectively. Among bovine and porcine CD4+CD8+ cells prevalent were those displaying CD4lowCD8low and CD4lowCD8high phenotypes, respectively. The results suggest that the anterior chamber in cattle and swine is an element in the normal migratory pathway of CD4+, CD8+ and CD4+CD8+ cells. Furthermore, the contribution of these subsets in the anterior chamber lymphocyte population can differ considerably between animal species.
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Authors and Affiliations

H. Ziółkowski
T. Maślanka
P. Socha
N. Ziółkowska
M. Dąbrowski
J. Małaczewska
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Abstract

A clinical trial was performed to evaluate the therapeutic efficacy of osaterone acetate (OSA) in the treatment of benign prostatic hyperplasia (BPH) in dogs. Osaterone acetate (Ypozane, Virbac) was administered orally at a dose of 0.25 mg/kg body weight once a day for seven days to 23 dogs with BPH. During the 28-day trial, the dogs were monitored five times for their clinical signs and prostate volume. The OSA treatment promoted rapid reduction of clinical scores to 73.2% on day 7 and to 5.9% on day 28 (p<0.05). Osaterone acetate induced the complete clinical remission in approximately 83.0% of the dogs on day 28. The prostate volume regressed to 64.3% of the pretreatment volume after two weeks of the treatment (p<0.05) and to 54.7% at the end of the trial (p<0.05). In conclusion, OSA quickly reduced clinical signs and volume of the prostate glands in dogs with BPH.

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Authors and Affiliations

P. Socha
S. Zduńczyk
D. Tobolski
T. Janowski
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Abstract

The aim of this study was to determine several obstetric and neonatal parameters in the Maine Coon breed. The birth data of Maine Coon breeding population were collected of 52 litters from different households using a questionnaire. Significant relationships between various outcomes and the relevant predictors were assessed by multiple linear regression or logistic regression, as appropriate. The overall mean gestation length was 65.5±1.32 days. Larger litter size was associated with shorter gestation lengths (p<0.01). Mean litter size was 5.3±2.3 kittens. The weight of kittens born alive (overall mean 119.6±18.4 g) increased with prolonged gestation lengths (p<0.01) and decreased with larger litter sizes (p<0.01). In the analyzed group of kittens, 12.5% were stillborn. The expulsion intervals varied widely. The duration of the first stage of labour was less than 2h in 82.9% of the cats. The interval between the birth of the first and the last kitten was less than 6h in 99.3% of the cats, and it exceeded 6 h in only 2 cats. The present results can be used to develop references values and reliable assistance protocol for assessing the parturition in the Maine Coon to protect the queen and reduce perinatal losses.

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Authors and Affiliations

P. Socha
R. Lengling
J. Bonecka
T. Janowski
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Abstract

The most common problems in veterinary practice in bitches are bacterial infections of the reproductive tract associated with fertility problems. Research to determine the correlation between the health status of female dogs and bacterial flora of the genital tract has been ongoing for years, but the results obtained by different authors are often contradictory, and do not always concern breeding bitches. Our study identified the most common aerobic bacteria in the genital tract of numerous breeding bitches population. A total of 275 breeding dogs in anestrous phase of the estrous cycle were included in this study. 198 were qualified to the first group with no genital tract infections and no reproductive disorders. 68 bitches were qualified to the second group with complications such as: infertility, abortion, foetus resorptions and newborn mortality. The type of bacterial isolates was almost the same in the healthy bitches and the group with fertility problems. The most common bacteria obtained from the vaginal tract of the tested dogs were Streptococcus spp., Staphylococcus spp., Mycoplasma canis and Escherichia coli. There were no significant differences in bacterial prevalence in the group with reproductive problems versus healthy dogs; however, we found a statistically significant difference between both groups when the numbers of bacterial strains were compared. The number of one-strain bitches was statistically higher in the problematic group than in the non-problematic one. Bacterial culturing of vaginal swab specimens from breeding bitches without clinical signs of genital disease is of little value. Furthermore, it should always be preceded by an examination (clinical, cytological or vaginoscopy etc.). The request or requirement to perform vaginal cultures that is made by some breeders, while common, is not diagnostic for any pathologic condition and the results of these cultures should never be used to determine if antibiotic therapy is indicated.
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Bibliography

1. Bjurström L (1993) Aerobic bacteria occurring in the vagina of bitches with reproductive disorders. Acta Vet Scand 34: 29-34.
2. Bjurström L, Linde-Forsberg C (1992) Long-term study of aerobic bacteria of the genital tract in breeding bitches. Am J Vet Res 53: 665-669.
3. Chalker VJ, Owen WM, Paterson C, Barker E, Brooks H, Rycroft AN, Brownlie J (2004) Mycoplasmas associated with canine infec-tious respiratory disease. Microbiology 150: 3491-3497.
4. Concannon PW (2011) Reproductive cycles of the domestic bitch. Anim Reprod Sci 124: 200-210.
5. Delucchi L, Fraga M, Perelmuter K, Cidade E, Zunino P (2008) Vaginal lactic acid bacteria in healthy and ill bitches and evaluation of in vitro probiotic activity of selected isolates. Can Vet J 49: 991-994.
6. Dzięcioł M, Niżański W, Stańczyk E, Kozdrowski R, Najder-Kozdrowska L, Twardoń J (2013) The influence of antibiotic treatment of bitches in oestrus on their attractiveness to males during mating. Pol J Vet Sci 16: 509-516.
7. Golińska E, Sowińska N, Tomusiak-Plebanek A, Szydło M, Witka N, Lenarczyk J, Strus M (2021) The vaginal microflora changes in various stages of the estrous cycle of healthy female dogs and the ones with genital tract infections. BMC Vet Res 17: 8
8. Groppetti D, Pecile A, Barbero C, Martino PA (2012) Vaginal bacterial flora and cytology in proestrous bitches: role on fertility. Theri-ogenology 77: 1549-1556.
9. Hu J, Cui L, Wang X, Gao X, Qiu S, Qi H, Jiang S, Li F, Yin Y (2022) Dynamics of vaginal microbiome in female beagles at different ages. Res Vet Sci 149: 128-135.
10. Hutchins RG, Vaden SL, Jacob ME, Harris TL, Bowles KD, Wood MW, Bailey CS (2014) Vaginal microbiota of spayed dogs with or without recurrent urinary tract infections. J Vet Intern Med 28: 300-304.
11. Janowski T, Zduńczyk S, Borkowska I, Jurczak A, Podhalicz-Dzięgielewska M (2008) Vaginal and uterine bacterial flora at different stages of the estrus cycle in bitches. Med Weter 64: 444-446
12. Janowski T, Zduńczyk S, Jurczak A, Socha P (2008) Incidence of mycoplasma canis in the vagina in three groups of bitches. Bull Vet Inst Pulawy 52: 533-535.
13. Lyman CC, Holyoak GR, Meinkoth K, Wieneke X, Chillemi KA, DeSilva U (2019) Canine endometrial and vaginal microbiomes reveal distinct and complex ecosystems. PLoS One 14: e0210157
14. Maksimovic A, Maksimovic Z, Filipovic S, Besirovic H, Rifatbegovic M (2012) Vaginal and uterine bacteria of healthy bitches during different stages of their reproductive cycle. Vet Rec 171: 375.
15. Maksimović Z, Maksimović A, Halilbašić A, Rifatbegović M (2018) Genital mycoplasmas of healthy bitches. J Vet Diagn Invest 30: 651-653.
16. McDonald JH (2009) Handbook of biological statistics, 2nd ed., Sparky House Publishing: Baltimore, MD, USA, pp 1-319.
17. Noguchi K, Tsukumi K, Urano T (2003) Qualitative and quantitative differences in normal vaginal flora of conventionally reared mice, rats, hamsters, rabbits and dogs. Comp Med 53: 404-412.
18. Pretzer SD (2008) Bacterial and protozoal causes of pregnancy loss in the bitch and queen. Theriogenology 70: 320-326.
19. Root Kustritz MV (2006) Collection of tissue and culture samples from the canine reproductive tract. Theriogenology 66: 567-574.
20. Root Kustritz MV (2008) Vaginitis in dogs: a simple approach to a complex condition. Vet Med 103: 562-567.
21. Rota A, Corrò M, Patuzzi I, Milani C, Masia S, Mastrorilli E, Petrin S, Longo A, Del Caro A, Losasso C (2020) Effect of sterilization on the canine vaginal microbiota: a pilot study. BMC Vet Res 16: 455
22. Ruzauskas M, Couto N, Pavilonis A, Klimiene I, Siugzdiniene R, Virgailis M, Vaskeviciute L, Anskiene L, Pomba C (2016) Character-ization of Staphylococcus pseudintermedius isolated from diseased dogs in Lithuania. Pol J Vet Sci 19: 7-14.
23. Smith FO (2006) Canine pyometra. Theriogenology 66: 610-612.
24. Stanisz A (2006) Easy course of statistic using Statistica PL and medicine examples. 1. Basic Statistic. StatSoft Polska, Kraków, Poland, p 532.
25. Van Duijkeren E (1992) Significance of the vaginal bacterial flora in the bitch: a review. Vet Rec 131: 367-369.
26. Watts JR, Wright PJ, Whithear KC (1996) Uterine, cervical and vaginal microflora of the normal bitch throughout the reproductive cycle. J Small Anim Pract 37: 54-60.
27. Zduńczyk S, Janowski T, Borkowska I (2006) Vaginal and uterine bacterial flora in bitches with physiological and inflammatory. Med Weter 62: 1116-1119.

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Authors and Affiliations

D. Jagódka
1
E. Kaczorek-Łukowska
2
R. Graczyk
3
P. Socha
4

  1. AURA Veterinary Clinic, Dębowa 31, 86-065 Lochowo, Poland
  2. Department of Microbiology and Clinical Immunology, Faculty of Veterinary Medicine, University of Warmia and Mazury in Olsztyn, Oczapowskiego 13, 10-719, Olsztyn, Poland
  3. Department of Biology and Animal Environment, Bydgoszcz University of Science and Technology, Mazowiecka 28, 85-084 Bydgoszcz, Poland
  4. Department of Animal Reproduction with Clinic, Faculty of Veterinary Medicine, University of Warmia and Mazury in Olsztyn, Oczapowskiego 14, 10-719 Olsztyn, Poland

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