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At least 127 records · Page 7Linked to original sources

Effect of macrophage-specific colony-stimulating factor (CSF-1) on swine monocyte/macrophage susceptibility to in vitro infection by African swine fever virus.

Swine cells of the monocyte/macrophage lineage (MM) proliferate and survive for several weeks in vitro in medium supplemented with the murine macrophage-specific hematopoietic growth factor, colony-stimulating factor 1 (CSF-1). The extent to which MM, cultured in CSF-1, supported African swine fever virus (ASFV) growth in vitro was investigated. MM, cultured in medium with CSF-1, were sensitive to infection and viral-induced cytopathogenic damage by both natural field isolates of ASFV and fibroblast-adapted ASFV strains, as were primary MM (P-MM). Without CSF-1, blood mononuclear leukocytes (MNL), containing lymphocytes and MM, and P-MM could be reliably used in microculture for ASFV titration when inoculated at times limited to no more than 3 to 5 days after culture inception; inclusion of CSF-1 in the media stimulated continued MM survival and growth, and allowed for the use of MNL and P-MM for ASFV titration when inoculated as long as 2 to 3 weeks after microculture inception. MM that were propagated beyond 1 week in secondary culture in medium with CSF-1 (MM-CSF) were useful in microcultures for infective-ASFV titration, only when the cells were kept in medium with CSF-1 and inoculated no later than 3 days of culture inception. In vitro studies of ASFV infection in P-MM and in MM-CSF showed comparable kinetics in ASFV-induced hemadsorption (HAd), cytopathogenic effect (CPE), cytoplasmic viral antigens and nucleic acid material. Compared to P-MM in culture without CSF-1, relatively minor delays in CPE onset induced by some ASFV strains were noticed in MM-CSF and in P-MM that were placed in media with CSF-1. The effects of ASFV on DNA synthesis in the virus-susceptible MM, cultured with or without CSF-1, were also examined at different times of infection by measurement of 3H-thymidine (3H-TdR) incorporation into total precipitable culture material. ASFV-infection of P-MM, placed in culture medium with CSF-1, caused a pronounced transient increase in total 3H-TdR incorporation at the early onset of CPE and HAd. When compared to uninfected P-MM that were stimulated by CSF-1 to synthesize DNA, infected P-MM failed to incorporate 3H-TdR after CPE was fully evident. For P-MM that were cultured without CSF-1 and for MM-CSF, that were kept in culture with CSF-1, transient increases in 3H-TdR incorporation at the onset of CPE and HAd by ASFV-infection were evident, but were much less pronounced.

African Swine Fever Virus↗

Detection of antibodies against classical swine fever virus in swine sera by indirect ELISA using recombinant envelope glycoprotein E2.

Recombinant envelope protein E2 (gp55) of classical swine fever virus (CSFV) strain Alfort/187 was evaluated as an alternative to whole virus as ELISA antigen for the detection of antibodies against CSFV. A glycosylated and a non-glycosylated form of E2 was expressed in the baculovirus system. Six histidine residues added at the carboxy terminus of each of the recombinant proteins allowed purification by nickel-chelate affinity chromatography. Comparison of the antigenic properties of the two proteins in indirect and blocking ELISAs revealed that the glycosylated form resulted in both higher sensitivity and specificity. The indirect ELISA, using glycosylated E2, either derived from crude cell extract or affinity-purified, was validated by testing a total of 2719 porcine sera. Its final version proved to be as sensitive (98.3%) as the virus neutralization test when sera from infected pig herds were examined, and highly specific (99.6%) when applied to test negative sera. It is therefore suitable for large scale monitoring of classical swine fever.

Animals↗

Antimicrobial resistance of Salmonella isolated from finishing swine and the environment of 60 Alberta swine farms.

The study objective was to describe and evaluate antimicrobial resistance profiles in Salmonella isolated from Alberta swine finishing farms. Salmonella isolates (n = 322) were obtained from 192 fecal and 84 environmental samples of the 60 Salmonella-positive swine finishing farms. Isolates were classified susceptible, intermediate or resistant based on NCCLS guidelines. More than half of the isolates (53.4%) were susceptible to all of the 18 antimicrobials in the testing panel. No resistance was observed to amikacin, amoxicillin/clavulanic acid, cefoxitin, ceftiofur, ceftriaxone, cephalothin, ciprofloxacin, imipenem or nalidixic acid. Less than 1% of isolates were resistant to apramycin, gentamicin and trimethoprim/sulfamethoxazole. Higher frequencies of resistance were observed for chloramphenicol (4.7%), ampicillin (7.8%), kanamycin (11.8%), sulfamethoxazole (21.1%), streptomycin (25.5%) and tetracycline (38.8%). Eleven Salmonella serovars had isolates with resistance to > or =3 antimicrobials. The most frequently resistant serovar was Salmonella Derby, with 27 (38.0%) isolates resistant to > or =3 antimicrobials, including resistance to five and six antimicrobials. An absence of resistance to cephalosporins and fluoroquniolones and a low proportion of isolates resistant to amikacin, amoxicillin/clavulanic acid, apramycin, gentamicin and trimethoprim/sulfamethoxazole are encouraging findings from public health and animal health perspectives. Frequent resistance observed for ampicillin, kanamycin, sulfamethoxazole, streptomycin and tetracycline, antimicrobials commonly used in veterinary medicine for decades, indicates an urgent need to utilize these antimicrobials more prudently if their benefits are to be preserved.

Alberta↗

Laboratory-scale inactivation of African swine fever virus and swine vesicular disease virus in pig slurry.

Two methods were evaluated for the inactivation of African swine fever (ASV) and swine vesicular disease (SVD) viruses in pig slurry: chemical treatment and heat treatment. The addition of NaOH or Ca(OH)2 at different concentration/time combinations at 4 degrees C and 22 degrees C was examined, as was virus stability at different temperature/time combinations. ASF virus (ASFV) was less resistant to both methods than SVD virus (SVDV). In slurry from one source, ASFV was inactivated at 65 degrees C within 1 min, whereas SVDV required at least 2 min at 65 degrees C. However, it was found that thermal inactivation depended on the characteristics of the slurry used. Addition of 1% (w/v) of NaOH or Ca(OH)2 caused the inactivation of ASFV within 150 s at 4 degrees C; 0.5% (w/v) NaOH or Ca(OH)2 required 30 min for inactivation. NaOH or Ca(OH)2 (1% (w/v)) was not effective against SVDV at 22 degrees C after 30 min, and 1.5% (w/v) NaOH or Ca(OH)2 caused inactivation of SVDV at both 4 degrees C and 22 degrees C. At higher chemical concentrations or temperatures, ASFV and SVDV inactivation was faster in slurry than in buffered medium.

African Swine Fever Virus↗

Mycoplasma hyorhinis swine arthritis. 3. Modified disease in Piney Woods swine.

Piney Woods miniature swine, when injected with Mycoplasma hyorhinis, develop an acute arthritis. The disease in these animals is limited clinically, microbiologically, and pathologically to a mild acute illness without the more chronic and destructive features noted in a previous study of the experimental disease in Yorkshire swine.

Acute Disease↗

African swine fever virus protein pE296R is a DNA repair apurinic/apyrimidinic endonuclease required for virus growth in swine macrophages.

We show here that the African swine fever virus (ASFV) protein pE296R, predicted to be a class II apurinic/apyrimidinic (AP) endonuclease, possesses endonucleolytic activity specific for AP sites. Biochemical characterization of the purified recombinant enzyme indicated that the K(m) and catalytic efficiency values for the endonucleolytic reaction are in the range of those reported for Escherichia coli endonuclease IV (endo IV) and human Ape1. In addition to endonuclease activity, the ASFV enzyme has a proofreading 3'-->5' exonuclease activity that is considerably more efficient in the elimination of a mismatch than in that of a correctly paired base. The three-dimensional structure predicted for the pE296R protein underscores the structural similarities between endo IV and the viral protein, supporting a common mechanism for the cleavage reaction. During infection, the protein is expressed at early times and accumulates at later times. The early enzyme is localized in the nucleus and the cytoplasm, while the late protein is found only in the cytoplasm. ASFV carries two other proteins, DNA polymerase X and ligase, that, together with the viral AP endonuclease, could act as a viral base excision repair system to protect the virus genome in the highly oxidative environment of the swine macrophage, the virus host cell. Using an ASFV deletion mutant lacking the E296R gene, we have determined that the viral endonuclease is required for virus growth in macrophages but not in Vero cells. This finding supports the existence of a viral reparative system to maintain virus viability in the infected macrophage.

African Swine Fever Virus↗

Swine models for cardiovascular research: a low stress transport and restraint system for large swine.

A restraint and transport system was developed for handling large swine during cardiovascular research studies. The major design criteria provided for comfortable, low stress restraint of the swine, safety for laboratory personnel and ability to perform a wide variety of hemodynamic and echocardiographic measurements in the standing, supported standing and sedated, or in Panepinto sling positions. A head gate is provided for venipuncture procedures, and an auxiliary feeding and watering front panel can replace the head gate for use of the system as a post-operative "recovery room". Using this system animals weighing 22 to 150 kg can be easily managed.

Animals↗

[Riems foot-and-mouth disease oil emulsion vaccines for swine. 1. Development and testing of highly effective and well-tolerated foot-and-mouth disease vaccine for swine using Dessauer oil adjuvants].

Swine plays a very particular role in FMD epizootiology. It is, therefore, absolutely necessary to have highly effective vaccines available for this species at all times. They have to ensure early buildup of long-lasting strong immunity even after one single application. Since the effectiveness of conventional adsorbate vaccines had proved to be insufficient, monovalent and trivalent oil emulsion vaccines were specifically developed of swine, using a GDR-made oil adjuvant. Stable immunity is very soon induced by them to endangered pig stock even against the immunologically problematic sub-types O1 and A5 after one single subcutaneous (s.c.) application of 2 ml (monovalent) or 5 ml (trivalent). Application establishes in s.c. connective tissue an oil emulsion depot that leads to formation of a vaccination granuloma. The immunocompetent cells identified in the latter are morphologically correlated to adjuvant action.

Adjuvants, Immunologic↗

Transplacental transmission and neonatal infection with swine influenza virus (Hsw1N1) in swine.

To study the question of chronicity or latency of swine influenza virus (Hsw1N1) infections in swine, newborn pigs were exposed to the virus in two experiments, and pregnant gilts were exposed in another experiment. Of five pigs exposed at 5 days of age, virus was isolated from throat swab samples of all (up to 10 postexposure days (PED) in one pig) and from a blood sample from one pig on PED 1 and 3. Virus was not isolated from urine, tissues, or explants of organs from pigs euthanatized PED 20 to 67, and disease was not evident. Of 11 pigs exposed within 2 hours of birth (before consuming colostrum), virus was shed for longer periods (for 10 and 11 days in four pigs) and severe respiratory tract pathologic changes developed. However, there was no evidence of chronic or latent infections. There was evidence of transplacental transmission of virus in one of ten pigs born to pregnant gilts that were exposed 10, 24, and 39 days before parturition, respectively.

Animals↗

[Genetic nature of atrophic rhinitis in swine. I. The results of a test cross and bacteriological study in atrophic rhinitis in swine].

It is well established that the swine atrophic rhinitis (AR) is controlled by the only gene with two alleles, R and r, the former being a dominant. Our study was designed to determine the role of these factors in appearance of AR of swine among the offspring. Normal and diseased pairs of animals were mated. The heterozygotic (Rr) phenotypically normal but potentially ill hogs and sows were revealed at the farm where AR was spread. The phenotypically normal hogs and sows (RR, Rr) were mated with diseased (rr) or potentially diseased ones, and phenotypically normal heterozygotic (Rr) hogs and sows (control). The diseased sucking-pigs revealed in the litter were removed. It has been established that the sucking-pigs were normal when mating normal homozygotic animals. These sucking-pigs were used to replace the live-stock of sows. When mating normal homozygotic animals with recessive ones, the sucking-pigs were also normal, the normal alleles being dominant. In matings of heterozygotic animals 27.3% of the litter were wry-snouted. However, even healthy heterozygotic animals should not be used for replacing the live-stock, because they have both the normal and recessive alleles. When recessive animals were mated, all sucking-pigs proved to have the symptoms of AR. Such sucking-pigs, together with their parents were necessarily removed.

Animals↗

A swine dysentery model for evaluation of drug prophylaxis: efficacy of various drugs in the control of swine dysentery.

A swine dysentery (SD) model that produces consistent, homogeneous, and severe SD was used in 2 experiments to compare the prophylactic effectiveness of 5 commercially available swine feed additive products. Under the conditions of these studies, carbadox and carbadox + sulfamethazine proved to be the most effective agents in preventing SD during the infection + medication and postmedication periods. Olaquindox was effective in preventing SD in the infection + medication period; however, SD recurrence was high during the postmedication period. Nithiamide and chlortetracycline + sulfamethazine + penicillin were least effective in preventing SD during the infection + medication and postmedication periods.

Animals↗

African swine fever and classical swine fever: a review of the pathogenesis.

This paper describes major pathogenetic mechanisms of African and Classical Swine Fever virus infections. The interactions between both viruses and the monocyte-macrophage-system result in the release of mediator molecules, which are important for the further progression of the diseases. The causes of the thrombocytopenia and the mechanisms of the haemorrhages, which are characteristic in both infections, are described. Apoptotic cell death is regarded as the predominant cause of lymphopenia in both virus infections.

African Swine Fever↗

Assignment of 280 swine genomic inserts including 31 microsatellites from BAC clones to the swine RH map (IMpRH map).

A precise genetic map containing anonymous markers and genes is indispensable for the efficient selection of candidate gene(s) responsible for quantitative trait loci (QTL) traits. For this purpose, a first version of a radiation hybrid cell (RH) map has been constructed by using the INRA-University of Minnesota RH panel for 757 markers (IMpRH) (Hawken et al. 1999, Mamm. Genome 10: 824--830). In this study, 280 swine genomic fragments in BAC clones were assigned to the IMpRH map; 255 BAC clones were successfully linked to first-generation linkage groups (LOD > 4.8). The remaining 25 clones could not be mapped, because their lod-scores to the closest markers in the first generation map were less than 4.8. In addition, 16 BAC clones, mapped to swine Chromosome (Chr) 1 by IMpRH mapping, were subjected to isolation of microsatellites (MSs). Thirty-one MSs were isolated from 15 BAC clones, and 24 of 31 (77%) MSs derived from 14 clones were found to be polymorphic. We also mapped both termini of 12 BAC clones to the IMpRH map, in order to measure resolution of the IMpRH map; the resolution was found to range from 8 kb/centiRay to more than 126 kb/centiRay depending on the region.

Animals↗

Prevalence of swine influenza virus subtypes on swine farms in the United States.

Serologic and virologic prevalence of infection with different swine influenza virus (SIV) subtypes was investigated using swine sera, nasal swabs and lung samples that had been submitted for a diagnosis to the Minnesota Veterinary Diagnostic Laboratory. A total of 111,418 pig sera were tested for SIV antibody between 1998 and 2000, and 25,348 sera (22.8%) were found to be positive by the hemagglutination inhibition (HI) test. Of the positive samples, 16,807 (66.7%) and 8,541 (33.7%) had antibody to H1 and H3 subtypes, respectively. Between January 1998 and May of 2001, a total of 3,561 nasal swabs or lung samples were examined for the presence of SIV, and SIV was isolated from 1,124 samples (31.7%). Of these isolates, 869 (77.3%) and 255 (22.7%) were subtyped as H1 and H3, respectively, by the HI method. For further characterization, 120 SIV isolates each from 1998 to 2001 were randomly selected from a culture collection and their hemagglutinin (HA) and neuraminidase genes examined by reverse transcription-PCR and sequencing. Of the 480 isolates, 322 (67.1%), 22 (4.6%) and 129 (26.9%) were subtyped as H1N1, H1N2 and H3N2, respectively. The remaining 7 samples (1.5%) were found to contain both H1N1 and H3N2 viruses. The SIV H1N2 subtype was isolated from 1, 8, and 13 samples in 1999, 2000, and 2001, respectively. The 22 H1N2 isolates originated from 9 different states of the United States. Genetic screening of the HA genes of 12 selected H1N2 isolates showed that 8 of them had a close phylogenetic relationship with the Indiana isolate of H1N2 (A/Swine/Indiana/9K035/99), while 4 isolates were closely related to classical SIV H1N1.

Amino Acid Sequence↗

Characteristics of a swine recombinant influenza virus isolated in 1980: recombination between swine and the earliest Hong Kong (H3N2) viruses.

A recombinant (H1N2, formerly Hsw1N2), A/swine/Ehime/1/80 was found to possess antigenic biological and genomic characteristics different from those of a previous A/swine/Kanagawa/2/78 (H1N2) strain. Five monoclonal antibodies to A/NJ/8/76 differentiated the haemagglutinin molecules of the former virus from the latter, showing that these viruses differed at two-antigenic determinants at least. Immuno-double diffusion tests with antisera to the isolated neuraminidase and neuraminidase-inhibition tests with monoclonal antibodies to different H2N2 and H3N2 viruses revealed that A/swine/Ehime/1/80 strain contained a neuraminidase subunit very similar to that of late human Asian (H2N2) and the earliest Hong Kong (H3N2) viruses. RNA analysis by oligonucleotide mapping suggested that A/swine/Ehime/1/80 may be a recombinant between A/swine/Shizuoka/1/78-like and A/Aichi/2/68 (H3N2)-like viruses. To determine further the gene constellation of this recombinant virus, DNA-RNA hybridizations were performed using DNA segments complementary for swine (H1N1) virus RNA and the entire RNA of three viruses. The molecular hybridization could define the genomic composition of the recombinant, indicating that only the neuraminidase gene of this virus is derived from the earliest Hong Kong (H3N2)-like virus and remaining seven genes are derived from swine (H1N1) virus.

Animals↗

Pre-weaning performance and health of pigs born to cloned (fetal cell derived) swine versus non-cloned swine.

The objective of this study was to compare the pre-weaning performance of pigs derived from cloned versus non-cloned parents. Five cloned gilts and one cloned boar were used to produce five litters of pigs. One of five cloned females and the cloned boar were derived from two genetically unmanipulated fetal fibroblast cell lines. The remaining female clones were derived from a fetal fibroblast cell line in which random insertion of a alpha-1,3-galactosyltransferase gene targeting construct had occurred. Fetal cell lines had similar genetic backgrounds and were derived from three different fetuses in three different litters. Five litters of pigs were also generated from matings between two non-cloned boars and five non-cloned gilts. The mean gestation length, mean litter size, mean birth and weaning weights for male and female pigs were similar for litters derived from cloned parents versus non-cloned parents. The proportions of pigs born live and pigs that survived to weaning were also similar for pigs born to cloned as compared to non-cloned parents. In summary, matings between cloned swine derived from fetal fibroblast cell lines yielded litters of pigs that were similar in the number born, piglet birth weight and perinatal and pre-weaning mortality to litters produced by non-cloned swine.

Animals↗

Inactivation of poliovirus type 1 in mixed human and swine wastes and by bacteria from swine manure.

The persistence of poliovirus type 1 (PO1) in mixed septic tank effluent and swine manure slurry was determined, and the antiviral effects of several bacterial cultures isolated from swine manure slurry were demonstrated. In two field experiments, PO1 was consistently inactivated more rapidly in the mixed waste than in the control Dulbecco's phosphate-buffered saline (D-PBS). D values (time [in days] for a 90% reduction of virus titer) were 18.7 and 29.9 for the mixed waste and 56.5 and 51.8 for the D-PBS control, respectively. The virus inactivation in the mixed waste was temperature dependent. A comparison of PO1 inactivation in raw mixed waste, autoclaved mixed waste, and bacterium-free filtrate of raw mixed waste at the same pH and temperatures provided an initial demonstration that the virus inactivation in the mixed waste is related, at least in part, to microbial activity. At 25 degrees C, the D value was 6.8 for the mixed waste, 11.2 for the autoclaved mixed waste, and 10.5 for the bacterium-free filtrate of raw mixed waste. At 37 degrees C, D values were 1.3, 3.9, and 3.1 for these three suspending media, respectively. Three bacterial isolates which had shown antiviral effects in a screening test each caused virus inactivation in autoclaved mixed waste, in which the effect of other microorganisms was excluded. Inhibition of PO1 inactivation by protease inhibitors suggests that the virus inactivation in the mixed waste was due in part to proteolytic enzymes produced by bacteria in the waste.

Animals↗

[Salmonella infections in swine. Salmonella infections in swine in meat hygiene].

Salmonella is considered one of the most important food borne pathogens that has potential implications for human health. In Germany, Salmonella monitoring is being used in swine farms as a predictor for Salmonella infection and to implement control measures directed to minimise cross-contamination at the slaughter plant. An research project was established in order to gain experience with the eradication of Salmonella in German swine herds.

Abattoirs↗