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1.
Vet Parasitol ; 302: 109659, 2022 Feb.
Article in English | MEDLINE | ID: mdl-35078069

ABSTRACT

The rearing system of dairy calves with nurse cows has been developing since 2010 in organic farms in western France. This system allows cow-calf contact until a weaning age close to the natural weaning for cattle and is characterized by an early turnout for calves at around one month of age with their nurse cows and a first grazing season with mixed grazing of calves and adults at a ratio of 2-4 calves per nurse cow. The objectives of this study were to assess the gastrointestinal (GIN) and lungworm infections in such reared calves and their variability during the first grazing season. Faecal egg count (FEC), pepsinogen (PEP) concentration and Ostertagia ELISA optical density ratio (ODR) were determined in calves (n = 497) at housing in 33 groups from 24 farms in 2018, and in calves (n = 405) and nurse cows (n = 199) throughout the 2019 grazing season in 41 groups from 20 farms. For lungworm infection, information was obtained during 2019 through the recording of coughing episodes along the grazing season and the Dictyocaulus ELISA ODR determination at housing both in calves and nurses. Results indicated that the level of GIN infection was overall low for calves during the first grazing season with PEP and Ostertagia ODR group-average values ranging from 0.97 to 1.6 U Tyr and 0.23 to 0.71 ODR respectively. No anthelmintic treatment being given in any group of calves. Ostertagia ODR values increased with the duration of the grazing season (>240 d) and with the ratio calves/nurse (>2). GIN parameters for nurses remained fairly stable during the grazing season with mean FEC, PEP and Ostertagia ODR group-average values of 13 epg, 2.28 U Tyr and 0.81 ODR, respectively. Antibodies against lungworms were detected in 3-62 % of calves depending on the duration of grazing, but only 6% of calves showed a coughing episode. The dilution effect due to the mixed grazing of resistant (nurse cows) and susceptible (calves) animals associated with predominant milk diet of calves during the first months of grazing in combination with protective grazing management allow calves to be turned out at an early age without using anthelmintic treatments. Further studies are needed to assess the GIN infection dynamics during the second grazing season in weaned heifers.


Subject(s)
Cattle Diseases , Nematode Infections , Ostertagiasis , Animals , Cattle , Cattle Diseases/epidemiology , Cattle Diseases/parasitology , Feces , Female , France , Nematoda , Nematode Infections/veterinary , Ostertagia , Ostertagiasis/veterinary , Seasons
2.
Prev Vet Med ; 190: 105321, 2021 May.
Article in English | MEDLINE | ID: mdl-33713962

ABSTRACT

Rearing dairy calves with nurse cows has been increasingly adopted by French farmers especially in organic farming and is characterized by a fostering of two to four calves during the first month of life by an unmilked lactating cow. This type of rearing remains poorly documented regarding its impact on calf health, such as cryptosporidiosis. The objectives of our study were to describe practices related to rearing dairy calves with nurse cows and to evaluate the prevalence, intensity and risk factors for Cryptosporidium infection in calf neonates. Between January and September 2019, the rearing practices of calves were described in 20 organic French farms and faeces were sampled once from 611 animals aged between 5 and 21 days. Cryptosporidium oocyst shedding was identified by modified Ziehl-Neelsen technique and scored semi-quantitatively (score 0-4). The risk of excretion (score 0 versus 1-4) was analysed using multivariate logistic regression models. This cow-calf rearing system usually consisted of a first phase with the dam, followed by an optional phase of artificial milk feeding (calves being fed with whole milk of the farm) and a final phase of fostering by a nurse cow. Each nurse was suckled from one to five calves of close age with a fostering age of 8 days on average. The oocyst shedding prevalence was 40.2 % and similar to classically reared calves, but the intensity of shedding and the prevalence of diarrhoea appeared to be lower. The identified six risk factors for oocyst shedding were: born in the last two thirds of the birth order, born between January and July versus August and September, calf with its dam in the barn versus on pasture, having an artificial milk feeding phase versus being with the dam only, and contact between peer calves and notably the presence of an oocyst excretory calf fostered by the same nurse. These results emphasize the role of the environment for the direct and indirect contamination, particularly that related to the accumulation of oocysts from previous or peer calves facilitating the faecal-oral route of transmission. This highlights the crucial role of the premises used intensively during the winter and spring months with higher densities of calves in the barn compared to outdoor situations promoted by this rearing.


Subject(s)
Animal Husbandry/methods , Cattle Diseases , Cryptosporidiosis , Organic Agriculture , Animals , Cattle/parasitology , Cattle Diseases/epidemiology , Cattle Diseases/parasitology , Cryptosporidiosis/epidemiology , Cryptosporidium , Dairying , Feces , Female , France , Lactation , Prevalence , Risk Factors
3.
Vet J ; 263: 105532, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32928493

ABSTRACT

Bovine respiratory syncytial virus (BRSV) and bovine parainfluenza-3 virus (bPI3V) are major causes of bovine respiratory disease (BRD) in newborn calves worldwide. Vaccination is widely used to prevent BRD, and intranasal vaccines for BRSV and bPI3V were developed to overcome interference from BRSV and bPI3V-specific maternally derived antibodies. Many experimental challenge trials have demonstrated that intranasal vaccines for BRSV and bPI3V are efficacious, but effectiveness under field conditions has been demonstrated less often, especially for newborn beef calves. The objective of this field trial was to compare the effectiveness of a newly available commercial BRSV-bPI3V intranasal vaccine with that of a benchmarked one in newborn beef calves reared in a cow-calf system. A total of 935 calves from 39 farms were randomized into two vaccine groups (Bovalto Respi Intranasal [Vaccine A], n=468; Rispoval RS+PI3 Intranasal [Vaccine B], n=467), and monitored during the in-house risk period up to three months after vaccination. Non-inferiority analysis was performed by calculating the difference in BRD prevalence between the two vaccine groups. No significant differences were observed between vaccines regarding clinical outcomes of morbidity, mortality, duration between vaccination and BRD occurrence, or treatments required. Because the upper limit of the 2-sided 95% confidence interval of the difference in BRD prevalence between the two treatment groups (0.8%) was less than the margin of non-inferiority (δ=5%), a non-inferiority of Vaccine A was concluded. In conclusion, Vaccine A is at least as effective as Vaccine B for the prevention of BRD in newborn beef cattle in a cow-calf system under field conditions.


Subject(s)
Animals, Newborn , Cattle Diseases/prevention & control , Parainfluenza Virus 3, Bovine/immunology , Respiratory Syncytial Virus, Bovine/immunology , Respiratory Tract Infections/veterinary , Viral Vaccines/administration & dosage , Administration, Intranasal/veterinary , Animals , Cattle , Female , Male , Respiratory Syncytial Virus Infections/prevention & control , Respiratory Syncytial Virus Infections/veterinary , Respiratory Tract Infections/prevention & control , Respiratory Tract Infections/virology , Respirovirus Infections/prevention & control , Respirovirus Infections/veterinary , Treatment Outcome
4.
Epidemiol Infect ; 133(3): 517-22, 2005 Jun.
Article in English | MEDLINE | ID: mdl-15966107

ABSTRACT

Salivary excretion of rabies virus was evaluated in 14 adult vampire bats (Desmodus rotundus) intramuscularly injected with a large dose (10(6) MICLD50) of vampire rabies virus variant CASS88. Saliva samples were obtained from surviving bats every other day for 30 days, then weekly for 2 months, and finally 1 and 2 years later. Rabies virus was isolated in murine neuroblastoma cells and in randomly selected cases by PCR. Rabies virus was not detected in the saliva of any of the 11 animals that succumbed (somewhat early) to rabies challenge, nor in the control bats. In contrast, virus was detected early, and only once (days 6, 6 and 21) in each of the three animals that survived rabies challenge and remained healthy for at least 2 years after challenge. At that time even vigorous dexamethasone and cyclosporine administration failed to provoke further viral excretion.


Subject(s)
Chiroptera/virology , Rabies virus/pathogenicity , Rabies/veterinary , Saliva/virology , Animals , DNA, Viral/analysis , Female , Male , Polymerase Chain Reaction , Rabies/virology
5.
Article in English | MEDLINE | ID: mdl-12449249

ABSTRACT

Equine herpesviruses type 1 and 4 (EHV-1 and EHV-4) are ubiquitous in the equine population. One of their main properties is their ability to establish life-long latent infections in their hosts even in those with natural or vaccine-induced immunity. However, effect of vaccination status on prevalence and tissue tropism was not established. In this study, EHV-1 and EHV-4 were detected by polymerase chain reaction and by classical virus isolation from neural, epithelial and lymphoid tissues collected from unvaccinated (33) or vaccinated (23) horses. The percentage of EHV-1- and EHV-4-positive horses between vaccinates and unvaccinates was similar. Both viruses were detected in all tissues of both groups; in particular, lymph nodes draining the respiratory tract, nasal epithelium and nervous ganglia [i.e. trigeminal ganglia (TG)], which represent the main positive sites for EHV-1 and EHV-4. In vaccinated animals, the nervous ganglia (i.e. TG) were less frequently positive than in unvaccinated animals. Detection of positive TG was strongly correlated to the presence of EHV-1 in nasal epithelium.


Subject(s)
Herpesviridae Infections/veterinary , Herpesvirus 1, Equid/immunology , Herpesvirus 4, Equid/immunology , Horse Diseases/epidemiology , Horse Diseases/prevention & control , Viral Vaccines , Animals , Autopsy , DNA Primers , DNA, Viral/genetics , France/epidemiology , Herpesviridae Infections/epidemiology , Herpesviridae Infections/prevention & control , Herpesvirus 1, Equid/genetics , Herpesvirus 4, Equid/genetics , Horse Diseases/virology , Horses , Polymerase Chain Reaction/veterinary
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