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[Staphylococcus hyicus, the cause of exudative epidermitis of swine. Review].

Staphylococcus hyicus, the cause of porcine exudative epidermitis, could be clearly differentiated from S. aureus, S. epidermidis and from other staphylococcal species. This was based on cultural, biochemical and serological properties. A positive coagulase reaction in porcine plasma, the detection of protein A like IgG Fc-receptors and the specific reaction of the cell wall teichoic acid allowed further characterization of this species. S. hyicus additionally produced enzymes with bacteriolytic properties.

Animals↗

Identification of Staphylococcus hyicus with the API staph strip.

The API Staph Strip system (API System S.A., Montalïeu-Vercieu, France) was compared with conventional methods for identification of Staphylococcus hyicus isolated from cases of exudative epidermitis in swine. The API Staph Strip was found to provide unique profile numbers, namely, 6-514-151, 6-514-153, and 6-516-153. These profile numbers are not listed in the API Staph Strip data base. It was found that the use of this miniaturized system is preferable to conventional methods for the identification of the causal agent of swine exudative epidermitis.

Animals↗

Ulcerative glossitis and stomatitis associated with exudative epidermitis in suckling swine.

Thirty piglets 1 to 4 weeks old from five herds had epidermal, foot, conjunctival and renal lesions typical of exudative epidermitis. Ten piglets had a large central ulceration of the dorsum of the tongue. Three piglets had multiple erosions of the hard palate and one had mucoid degeneration of the urinary bladder epithelium and a thick viscous material in the renal pelvis, ureters and urinary bladder.

Animals↗

Staphylococcal epidermolysins.

PURPOSE OF REVIEW: Staphylococcal epidermolysins are the major causative toxins of bullous impetigo and staphylococcal scalded skin syndrome. This disease is characterized by the splitting of the epidermis between two cell layers resulting in exfoliation. It predominantly affects newborn babies and exposes them to secondary infections. This leads to the risk of epidemics, especially in nurseries. With only an experimental model which consists of skin injections in newborn mice and the recent determination of three-dimensional structures, the essential function of these toxins remained controversial, split between that of specific proteases and that of superantigens. RECENT FINDINGS: Staphylococcal epidermolysins now constitute a family of toxins, with the recent characterizations of two new serotypes: ETC and ETD. They may be secreted by sensitive or methicillin-resistant strains. Four molecules were also identified in Staphylococcus hyicus responsible for exudative epidermitis in swine. While different observations suggested a proteolytic action to these toxins, the histological parallel made with pemphigus foliaceus greatly helped in the characterization of the targets for epidermolysins ETA, ETB, ETD: desmoglein-1, a desmosome-constitutive protein, and incidentally melanocyte-stimulating hormones, which accounts for the blisters observed clinically. SUMMARY: The growing complexity in staphylococcal toxins has to be taken into account both for their association with diseases and for diagnosis purposes. Even though cases of staphylococcal scalded skin syndrome in adults are rare, they raise further questions about the pathogenic features of the disease such as individual sensitivity and distribution of the toxins into the body.

Adult↗

Cloning of swine desmoglein 1 and its direct proteolysis by Staphylococcus hyicus exfoliative toxins isolated from pigs with exudative epidermitis.

Exudative epidermitis (EE) is an acute, often fatal skin disease of piglets caused by Staphylococcus hyicus. Clinical and histopathological manifestations of EE are similar to those of staphylococcal scalded skin syndrome (SSSS), a human blistering skin disease, in which exfoliative toxins produced by Staphylococcus aureus digest the extracellular domains of desmoglein (Dsg) 1 and cause loss of epidermal cell-cell adhesion. The aims of this study were to isolate and characterize cDNA for full length of swine Dsg1, and to determine whether the extracellular domains of swine Dsg1 produced by baculovirus (sDsg1-His) could be digested by four isoforms of exfoliative toxin produced by S. hyicus (ExhA, ExhB, ExhC and ExhD). Nucleotide sequencing revealed that swine Dsg1 cDNA consisted of an open reading frame of 3138 bp, encoding a precursor protein of 1045 amino acids. Deduced amino acid sequence of the swine Dsg1 precursor were highly homologous to corresponding bovine, canine, human and murine sequences. Immunoadsorption assay with a secreted form of sDsg1-His revealed that sDsg1-His specifically absorbs the immunoreactivity of 10 human pemphigus foliaceus sera against swine keratinocyte cell surfaces, suggesting its proper conformation. When sDsg1-His was incubated in vitro with Exhs, all four isoforms of Exh directly digested sDsg1-His into smaller peptides, whereas removal of calcium from sDsg1-His completely inhibited its proteolysis by these four Exhs. Recognition and digestion of calcium-stabilized structure on the extracellular domains of swine Dsg1 by Exhs indicated that EE shares similar molecular pathophysiological mechanisms of intra-epidermal splitting with SSSS in humans.

Amino Acid Sequence↗

Staphylococcus hyicus-skin reactions in piglets caused by crude extracellular products and by partially purified exfoliative toxin.

Staphylococcus hyicus may cause a spontaneous generalized exudative epidermitis in piglets. The progression and regression of macroscopical and histopathological lesions in piglet skin after subcutaneous injection of sterile concentrated culture supernatant (CCS) from one virulent and one avirulent strain of S. hyicus was studied every 24 h until 144 h post-injection. CCS from the virulent strain caused local alterations of the epidermis comparable to those of spontaneous exudative epidermitis: exfoliation, crust formation, exocytosis, formation of vesicles, and pustules and acanthosis. CCS from the avirulent strain only caused a transient erythema of the skin and no histopathological alterations of the epidermis. Additionally, proteins in CCS from the virulent strain were fractionated by column chromatography. Skin reactions similar to those caused by CCS from the virulent strain were induced by one fraction of proteins that contained eight protein bands in SDS-PAGE analysis. Two of these protein bands, with molecular weights of approximately 27 kDa and 30 kDa, were unique to the virulent strain compared to the avirulent strain. The results of this study indicate that one of these two proteins or both is a heat-labile exfoliative toxin, and that the toxin is a significant factor in the pathogenesis of exudative epidermitis in piglets.

Animals↗

Isolation and restriction endonuclease analysis of a tetracycline resistance plasmid from Staphylococcus hyicus.

A plasmid of 4.550 kb, conferring resistance to tetracycline, was demonstrated in Staphylococcus hyicus cultures from piglets with exudative epidermidis. The plasmid-encoded properties were determined both by curing and interspecific protoplast transformation experiments. The tetracycline resistance (TET) plasmid, designated pST1, was characterized by restriction endonuclease analysis and a preliminary restriction map was constructed. The pST1 plasmid was demonstrated in 19 (57.6%) of 33 S. hyicus cultures by Southern blot hybridization. It was also detectable by electron microscopy.

Animals↗

Susceptibility of various animals and cultured cells to exfoliative toxin produced by Staphylococcus hyicus subsp. hyicus.

In piglets inoculated with partially purified exfoliative toxin (pp-shET) produced by Staphylococcus hyicus subsp. hyicus, exfoliation was observed at 12 h after injection. Chickens inoculated with the same dose of pp-shET also showed exfoliation within 30 min of injection. However, exfoliation was not demonstrated in mouse, rat, guinea pig, hamster, dog or cat inoculated with pp-shET until 24 h after injection. In cultured cell lines, especially L-929 and Hep-2, the rounding effect occurred after incubation with pp-shET for 1 h. The rounding effect was also seen in five other cultured cells (NCTC 2544, HeLa/S3, HmLu-1, CHO and BHK-21) 6-24 h after exposure to pp-shET. These round cells survived for 72 h after inoculation and formed a monolayer 24 h after changeover to a toxin-free medium. The rounding effect was observed in cells after the formation of the monolayer, but not before. It was suggested that the rounding effect was not caused by the increase in cyclic AMP in cells inoculated with pp-shET but by the cleavage of intracellular contacts.

Animals↗

Antibiotic-resistance and plasmids in Staphylococcus hyicus isolated from pigs with exudative epidermitis and from healthy pigs.

A total of 100 S. hyicus strains isolated from healthy piglets and piglets with exudative epidermitis originating from 100 different herds was examined for drug-resistance and prevalence of plasmids. Resistance to macrolide/linosamide antibiotics could be related to plasmids in 55 (93%) of the 59 resistant strains: A plasmid of 2.4 kb mediating resistance to macrolides and lincosamides was observed in 25 strains, and a plasmid of 11.5 kb mediating resistance to both macrolides/lincosamides and tetracycline was observed in 30 strains. A plasmid with a molecular weight of 4.5 kb was shown by curing experiments to be associated with resistance to tetracycline in 12 strains. All together, 47 strains were resistant to tetracycline. In 42 (89%) of these strains tetracycline-resistance was found to be encoded by plasmids. Fifty six strains were resistant to streptomycin, and resistance was associated with the presence of a 4.4 kb plasmid in 17 strains studied. Resistance to penicillin, observed in 44 strains, and resistance to kanamycin, observed in 15 strains, could not be related to plasmids in any of these strains. The 11.5 kb plasmid was observed in 39% of the strains isolated from piglets with EE, and in 7% of the strains isolated from healthy piglets. Despite its higher prevalence in strains from piglets with EE, the 11.5 kb plasmid could not be shown to encode production of capsule or exfoliative substances: factors which might play a role in the development of exudative epidermitis in piglets.

Animals↗

Development of a phage typing system for Staphylococcus hyicus.

Bacteriophages were released by 98% of 100 Staphylococcus hyicus strains studied after treatment with mitomycin C. Twenty-three phages with different lytic spectra were included in a phage typing system and used for typing S. hyicus. On a test-set of 100 epidemiologically unrelated S. hyicus strains isolated from Danish pig herds, the phages were able to type 92% of the strains, producing 16 different phage types. Reproducibility of the phage typing system after subculture of the strains and using fresh phage stock was 96%. Typability ranged from 52 to 80% when typing porcine strains originating from other countries. Although phages were isolated from porcine skin strains exclusively, the system produced phage types in S. hyicus strains of bovine origin. Ten strains of S. aureus and S. chromogens were not typable by these phages. Strains belonging to one phage type (A/B/C/W) were isolated significantly more often from piglets with exudative epidermidis than from healthy piglets. The phage typing system described appears to be a valuable tool in diagnosis of exudative epidermidis in pigs, and furthermore, might be of value in epidemiological studies of S. hyicus.

Animals↗

Changes in peripheral blood leukocyte populations in pigs with naturally occurring exudative epidermitis.

The objective of the study was to analyze changes in peripheral blood leukocyte subsets in cases of naturally occurring exudative epidermitis (EE) in pigs. Five of ten piglets developed the chronic clinical form of EE 2-5 days after weaning (PW). Blood samples were obtained at 7, 14 and 21 days from both normal and clinically affected piglets for routine haematology and for the determination of CD45, CD21, CD4, CD8 and gammadeltaTCR cell markers by flow cytometry. When compared with clinically normal piglets EE affected pigs showed significantly decreased values of monocytes at 14 and 21 days PW, and increased numbers of neutrophils and leukocytes at 21 days PW. The EE affected pigs also had an early significant CD4(+) and CD8(high+) T lymphocyte proliferative response at 7 days PW. However affected pigs had a significantly reduced number of B (CD21(+)) and gammadeltaTCR(+) T lymphocytes in blood at 21 days PW. Although all values remained within the normal range, the significant differences in some peripheral blood leukocyte subsets between the two groups of piglets suggest that the generalised cutaneous infection with Staphylococcus hyicus is severe enough to induce a systemic inflammatory and immune responses.

Animals↗

Exudative epidermitis in pigs caused by toxigenic Staphylococcus chromogenes.

Staphylococcus chromogenes is closely related to Staphylococcus hyicus, which is recognised as the causative agent of exudative epidermitis (EE) in pigs. S. chromogenes is part of the normal skin flora of pigs, cattle and poultry and has so far been considered non-pathogenic to pigs. A strain of S. chromogenes producing exfoliative toxin type B, ExhB, was identified by the use of a multiplex PCR specific for the exfoliative toxins from S. hyicus. The exfoliative toxin from S. chromogenes reacted in immunoblot analysis with polyclonal and monoclonal antibodies specific to ExhB from S. hyicus and had an apparent molecular weight of 30 kDa. Sequencing the gene encoding the exfoliative toxin from S. chromogenes revealed that the molecular weight of the toxin with the signal peptide and the mature toxin was 30,553 and 26,694 Da, respectively. Comparison of the exhB genes from S. chromogenes strain VA654 and S. hyicus strain 1289D-88 showed differences in seven base pairs of the DNA sequences and in two amino acid residues in the deduced amino acid sequences. Pigs were experimentally inoculated with S. chromogenes strain VA654. By clinical observations and histopathological evaluation of the skin alterations, all pigs revealed development of generalized exudative epidermitis. No toxin producing S. hyicus was isolated from the pigs and all ExhB-positive bacterial isolates were identified as S. chromogenes. This confirmed that the disease-causing agent was the inoculated S. chromogenes strain VA654. The results of this study show that S. chromogenes may cause exudative epidermitis in pigs.

Amino Acid Sequence↗

The porcine skin associated T-cell homing chemokine CCL27: molecular cloning and mRNA expression in piglets infected experimentally with Staphylococcus hyicus.

CCL27 (also named CTACK, ALP, ILC and ESkine) is a CC chemokine primarily expressed by keratinocytes of the skin. The cognate receptor of CCL27 named CCR10 (GPR-2), is also expressed in skin-derived cells, and in addition by a subset of peripheral blood T-cells and in a variety of other tissues. In this paper, we report the cloning of porcine CCL27 cDNA and investigation of CCL27 mRNA expression in Staphylococcus hyicus infected piglets. At the protein level, 77 and 74% homology was found to human and mouse CCL27 sequences, respectively. The results of the expression analyses show that CCL27 mRNA is upregulated in the skin of infected piglets and to a lesser extent in piglets recovered from disease and without clinical signs of infection, indicating a role for CCL27 both during inflammation and after recovery from an infection.

Amino Acid Sequence↗