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Electron microscopic morphology of phages of coagulase-negative staphylococci.

Nine phages of coagulase-negative staphylococci were studied carefully with regard to their electron microscopic morphology. Two different groups of phages were detected: the larger phages showed heads of 121 nm diameter on average and tails with 229 nm length and 23 nm width. The smaller phages were characterized with heads of about 76 nm diameter and tails of about 177 nm length and 13 nm width (negatively stained with KPT).

Coagulase

Genomic characterization of efflux pumps and putative small multidrug resistance (SMR)-like transporters in disinfectant-tolerant coagulase-negative staphylococci from a Vietnamese hospital.

Coagulase-negative staphylococci (CoNS) are common inhabitants of healthcare environments and can serve as reservoirs of antimicrobial resistance determinants. However, the relationship among disinfectant tolerance, efflux-associated phenotypes, and multidrug resistance in environmental CoNS remains incompletely defined. Here, 51 staphylococcal isolates were recovered from high-touch hospital surfaces in Hanoi, Vietnam, and 14 isolates showed elevated MICs to at least one disinfectant, including benzalkonium chloride, chlorhexidine gluconate, or hydrogen peroxide, relative to Staphylococcus aureus ATCC 25923. These isolates also displayed multidrug-resistant phenotypes. Moreover, ethidium bromide accumulation assays revealed a clear efflux-associated phenotype, and representative isolates exhibited biofilm-forming ability. Whole-genome sequencing of three representative isolates reclassified SDH.B1 and SDH.B3 as Staphylococcus nepalensis-a CoNS species rarely documented in hospital AMR surveillance-and confirmed SDH.B7 as Staphylococcus haemolyticus. To our knowledge, this is among the first reports of S. nepalensis carrying mecA together with the disinfectant efflux gene qacG, and a set of putative small multidrug resistance (SMR)-like transporters in a hospital environment from Southeast Asia. In addition, six putative SMR-like proteins were identified. Phylogenetic and structural analyses suggested relatedness to YkkC/YkkD-like systems, although their transport activity remains to be experimentally verified. These findings identify environmental CoNS as reservoirs of disinfectant tolerance and multidrug resistance in hospital settings and provide a basis for future functional investigation of putative SMR-like transporters.IMPORTANCEHospital environmental CoNS are often dismissed as low-priority contaminants, yet they may persist under disinfectant pressure and carry clinically relevant resistance determinants. Here, disinfectant-tolerant CoNS recovered from a Vietnamese hospital combined multidrug resistance, efflux-associated phenotypes, and biofilm-related traits. Genome analysis further revealed known qac genes and six putative SMR-like proteins that merit functional testing. These findings support inclusion of environmental CoNS in infection-prevention surveillance and disinfectant stewardship programs.

Staphylococcus haemolyticus

Serological characterization of phages of coagulase-negative staphylococci.

Selected 22 phages of coagulase-negative staphylococci were tested against group-specific antisera for Staphylococcus aureus phages using a neutralization test. Fourteen of the tested phages were classified into the serological group B and one into the group F. All other phages were resistant to the antisera against S. aureus phages but cross-reacted with the antisera produced against themselves. Therefore they could be joined together into a new serological group of the staphylococcal phages.

Bacteriophage Typing

Relatedness among coagulase-negative staphylococci: deoxyribonucleic acid reassociation and comparative immunological studies.

DNA-DNA-homology values were determined under restrictive to relaxed reassociation conditions with type strains and some additional strains of coagulase-negative staphylococci belonging to ten different species. The immunological relationship of the catalases present in the type strains of these species was also determined by applying double immunodiffusion and microcomplement fixation. The results of these studies support the previous proposal to subdivide the coagulase-negative staphylococci into at least ten separate species. However, it is evident that some of the species are more closely realted than others and can form species groups. According to the results presented in this study, the coagulase-negative staphylococci can be combined into five species groups: The Staphylococcus saprophyticus group is composed of S. saprophyticus, S. xylosus and S. cohnii. The S. epidermidis group comprises S. epidermis, S. capitis and S. warneri. The S. hominis group which exhibits a significant relationship to S. epidermidis includes S. hominis and S. haemolyticus. The species group S. sciuri consists of S. sciuri ssp. sciuri and S. sciuri ssp. lentus and the species group S. simulans is presently represented by the corresponding single species.

Catalase

Phage typing and biotyping of coagulase-negative staphylococci.

A total of 211 strains of coagulase-negative staphylococci isolated from clinical materials were tested by use of 16 phages of PULVERER's set and biochemical methods proposed by KLOOS and SCHLEIFER. It appeared that 75% of tested strains was typable by used phages and ninety different phage patterns were observed. Most strains were classified as Staphylococcus epidermidis and the rest as S. warneri, S. simulans, S. hominis, Single strains represented species: S. capitis, S. haemolyticus and S. cohnii. No segregation of different phage patterns into particular species was found.

Bacteriological Techniques

Use of a phage set for the ecological typing of coagulase-negative staphylococci.

The staphylococcal flora of skin and acne lesions of 98 patients was analysed by the use of phage typing and biotyping methods. It appeared that in some individuals a relatively stable staphylococcal flora was present while others harboured 7 or more different strains. The same S. epidermidis strains were found on different skin sites and in acne lesions of a given individual. Examples of different carriage patterns were given.

Acne Vulgaris

A proposal for further modification of the phage-typing system for coagulase-negative staphylococci.

Our phage-set, published in 1975 (6) was modified in that other staphylococcal hoststrains were found more suitable for the propagation. This new typing set of 15 phages should replace our old phage-sets. In comparing the phage-sets of Dr. Verhoef, Dr. Parisi and Dr. Blouse with our phages, the advantages of our new phage-set could be demonstrated. Lysogeny induction experiment with mitomycin C and UV-rays showed all staphylococcal host strains to be lysogenic. Conclusions of the studies performed were derived from and discussed.

Bacteriophage Typing

Microbial flora of atopic dermatitis.

The microbial flora of dermatitic skin, uninvolved skin, and the anterior nares of subjects with atopic eczema were investigated. The carriage rate of Staphylococcus aureus was 79% for the anterior nares, 76% for the uninvolved skin (normal skin), and 93% for lesions. The counts of S aureus were 7.5 X 10(4)/sq cm in lesions and 7.1 X 10(3)/sq cm on adjacent normal skin. Staphylococcus aureus was the predominant organism in the lesions and constituted 91% of the total aerobic bacterial flora. The coagulase-negative staphylococci were the second predominant organisms (9%). On normal skin, coagulase-negative staphylococci were the predominant organisms, constituting 63% of the total flora, followed by S aureus (30% of the bacterial flora). The micrococci counts were lower in the lesions (1.6 X 10(2)/sq cm) and higher on normal skin (9.5 X 10(2)/sq cm). Lipophilic diphtheroids were fewer on normal skin (6.7 X 10/sq cm), and there were none in the lesions. Fifty-eight percent of the strains belonged to group 3, and 38% were nontypeable. Staphylococcus aureus strains belonging to phage groups 2 and 4 were not detected.

Adolescent

Genomic diversity and resistance determinants of staphylococci from cow and buffalo milk.

BACKGROUND: Staphylococci are important mastitis pathogens in dairy animals and serve as reservoirs of antimicrobial resistance genes (ARGs) having zoonotic potential. Genomic characterization of resistant isolates is essential to understand their diversity, resistance mechanisms, and One Health implications. METHODS AND RESULTS: A total of 363 cow and buffalo milk samples-including 108 from animals with mastitis-were screened, yielding 98 staphylococcal isolates, comprising 20 Staphylococcus aureus and 78 coagulase-negative staphylococci (CoNS). Antimicrobial susceptibility testing revealed resistance to cefoxitin (CoNS: 21.7%; S. aureus: 10%), tetracycline (CoNS: 19.2%; S. aureus: 10%), erythromycin (CoNS:16.7%; S. aureus: 10%), gentamicin (CoNS: 10.2%; S. aureus: 10%) and fluoroquinolone (CoNS: 10.2%), while the majority were sensitive to chloramphenicol, cotrimoxazole (~ 95%, each), linezolid (~ 97%), and vancomycin (100%). Nineteen isolates, including two S. aureus, were cefoxitin-resistant, and eight carried the mecA gene. Whole genome sequencing of these eight isolates revealed genome sizes ranging from 2.27 to 2.78 MB, with the methicillin resistant S. aureus (MRSA, ERSST98) isolate possessing the largest genome and the highest rRNA copy number. Comparative genomic analysis revealed various SCCmec types along with an extensive array of resistance determinants, encompassing aminoglycosides, macrolides, tetracyclines, efflux systems, and heavy metals, underscoring the multifaceted resistance repertoire of these strains. Virulence profiling of ERSST98 demonstrated a broad arsenal of adhesins, toxins, and biofilm‑associated genes, highlighting its pathogenic capacity. Mobile genetic elements with diverse plasmid replicons and insertion sequence families further contributed to genomic plasticity. CONCLUSIONS: Collectively, this study underscores the genomic diversity of methicillin-resistant staphylococci from dairy animals with extensive resistance determinants and highlights their zoonotic relevance within One Health framework.

Animals

Bacteriological criteria for feeding raw breast-milk to babies on neonatal units.

Aerobic cultures of 207 samples of drip breast-milk from seventy mothers in hospital showed that 6 (3%) were sterile and 170 (82%) contained only the commensal organisms coagulase-negative staphylococci and Streptococcus viridans. 25 (15%) grew potential pathogens--Staphylococcus aureus in 13 (6%); enterobacteria in 15 (7%); and group-B streptococci in 3 (2%). It is proposed that milk with commensals in any numbers may be considered for use unheated but not milk containing any potential pathogens.

Aerobiosis

New bacteriophages of Staphylococcus epidermidis.

Fifty-six phages designated the U-series and 34 phages designated the Ph-series were carefully examined. The spectrum of activity was established for 183 strains of Staphylococcus epidermidis from different countries and for 258 strains of Staphylococcus aureus. All 90 phages were active against strains of both species, but some differences in sensitivity were noted. Sixteen of the 90 phages were selected for phage typing of S. epidermidis. With use of a routine test dilution of phage (the highest dilution that yields confluent lysis of the propagation strain), 71.6% of 183 coagulase-negative staphylococci tested were sensitive to the phages; 42 phage patterns were observed. The results indicate that phage typing of S. epidermidis can be recommended for epidemiological and ecological purposes.

Humans

Antimicrobial resistance among Gram-positive agents of bacteraemia in the UK and Ireland: trends from 2001 to 2019.

OBJECTIVES: The BSAC Bacteraemia Resistance Surveillance collected isolates from UK and Irish hospitals for central testing. Concurrent UKHSA surveillance collated English hospitals' own susceptibility data. Results were collated and compared. METHODS: BSAC Surveillance collected quotas of isolates per site annually from 2001 to 2019. MIC testing was by BSAC agar dilution, with resistance mechanisms identified by synergy tests, interpretive reading and PCR. The UKHSA sought hospitals' data on all bacteraemia isolates. RESULTS: Both surveillance systems recorded dramatic falls in MRSA, from c. 40% of bloodstream Staphylococcus aureus in 2001 to <10% by 2019. Both noted rises in the proportion of MRSA (especially) and MSSA resistant to fusidic acid, along with declines of ciprofloxacin and macrolide resistance amongst MRSA. Methicillin resistance also fell among coagulase-negative staphylococci, albeit only modestly; fusidic acid resistance rose. Shifts for pneumococci were complex, reflecting vaccine-contingent serotype displacements; resistance rates remained low, with high-dose penicillin almost universally active. Enterococcus faecium became more prevalent relative to Enterococcus faecalis; vancomycin resistance averaged 29% among E. faecium versus 2% in E. faecalis, without trend. Erythromycin resistance rose among groups B, C and G (but not group A) streptococci. Oxazolidinones, tigecycline, daptomycin and anti-PBP2' cephalosporins retained near-universal activity against target species, except that tigecycline has been compromised by breakpoint reductions for streptococci. CONCLUSIONS: Gram-positive pathogens were the dominant historical pathogens of bacteraemia. The trends seen here-with many near-universally active antibiotics-indicate little hazard of this situation returning. Nevertheless, few treatments exist in some settings, notably multi-resistant E. faecium endocarditis.

Humans

Comparison of "invasive" and "non-invasive" strains of Staphylococcus epidermidis by phage typing.

Seventy strains of coagulase-negative staphylococci isolated from blood of patients together with 41 strains of these bacteria isolated from the skin were typed by three different phage sets. Different percentages of phage typability by compared phage sets were found. Blood culture strains showed phage pattern Ph10/U14/U16 while other strains were of different phage patterns.

Bacteriophage Typing

Complete genome sequences of Staphylococcus epidermidis phages Cicami, Sazerac, Southeast, Slasher, Spartan, and Undine.

Staphylococci are opportunistic pathogens that cause a variety of antibiotic-resistant infections, and staphylococcal viruses (phages) can be harnessed as alternative therapeutics. Here, we report genome sequences of six Staphylococcus epidermidis phages with siphovirus morphology that lack proteins associated with virulence and lysogeny. Our observations suggest potential uses in therapeutic applications.

bacteriophage therapy

First characterization of Staphylococcus felis in diabetic foot osteomyelitis: from intracellular persistence to phage treatment.

Staphylococcus felis is a coagulase-negative Staphylococcus (CoNS) primarily associated with the feline microbiota and only rarely reported in human disease. Here, we report its implication in diabetic foot osteomyelitis, and provide the first comprehensive characterization of its pathogenic potential. Two isolates (NSF001 and NSF002), recovered 5 months apart from bone biopsies of the same patient, were analyzed for growth kinetics, biofilm formation, and intracellular persistence in macrophages and osteoblasts. Both isolates proliferated efficiently, produced robust biofilm, and persisted within host cells, most markedly in osteoblasts. In a zebrafish embryo infection model, both isolates caused significant mortality, confirming their pathogenic potential in vivo. Whole-genome sequencing revealed conserved virulence determinants, a narrow resistome, and strain-specific genomic variations affecting genes involved in virulence regulation, phage defense, and iron acquisition. The lytic phage SAVM02, previously characterized for activity against other Staphylococcus species, effectively inhibited S. felis growth in vitro and conferred protection in vivo against lethal infection. Notably, the two sequential isolates differed in their in vivo virulence and phage susceptibility, paralleling these within-host microevolutionary changes and illustrating bacterial adaptation during chronic infection. Altogether, this study establishes S. felis as a CoNS capable of intracellular persistence, biofilm formation, and in vivo virulence in chronic human infection. Our findings also highlight the therapeutic potential of lytic phages against virulent CoNS species and support further investigation of phage therapy for chronic staphylococcal infections.IMPORTANCECoagulase-negative staphylococci (CoNS) are increasingly recognized as genuine agents of chronic infection, yet the pathogenic capacity of most individual species remains undefined. Staphylococcus felis, a commensal of cats only exceptionally reported in humans, had never been implicated in a chronic human infection. Here, we describe two sequential S. felis isolates recovered from bone biopsies of a patient with diabetic foot osteomyelitis and show that this species combines biofilm formation, intracellular persistence in macrophages and osteoblasts, and lethality in a zebrafish embryo model. Whole-genome comparison of the two isolates uncovered microevolutionary changes, most notably in iron-acquisition and genome-defense loci, that paralleled differences in virulence and phage susceptibility. These findings extend the list of CoNS capable of causing invasive human disease and provide a rationale for lytic phage therapy against emerging, difficult-to-treat staphylococcal pathogens.

Staphylococcus felis

[Polymorphous Juvenile Acne (author's transl)].

Many factors may be involved in the pathogenesis of acne, the most important of them lie in the sebaceous follicle, in disturbances of the cornification of the follicular channels and in the bacterial flora of the hair follicles. The latter consists of a yeast (pityrosporon ovale), coagulase-negative aerobic staphylococci and propionibacterium acnes. P. acnes is found in the depth of the follicle. It is of particular importance for the pathogenesis because it produces a lipase which releases fatty acids which stimulate the formation of comedones. Many questions are still unanswered. Presently, treatment consists of administration of estrogens or combination preparations of estrogen and progesterone (only recommended for women), of vitamin A acid and antibiotics. Tetracycline and its derivatives have proved particularly valuable for this purpose.

Acne Vulgaris