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Keywords = canine pyoderma

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27 pages, 411 KB  
Review
Bacteriocins in Veterinary Medicine: From Antibiotic Limitations to Targeted Solutions
by Marta Książczyk, Katarzyna Dębowska and Karolina Bierowiec
Int. J. Mol. Sci. 2026, 27(13), 5812; https://doi.org/10.3390/ijms27135812 - 27 Jun 2026
Viewed by 390
Abstract
Antimicrobial resistance (AMR) has emerged as one of the foremost global threats to public health, with the veterinary sector, responsible for nearly three-quarters of global antimicrobial consumption, representing an underappreciated epicenter of this crisis. Despite the extensive literature on bacteriocins as antibiotic alternatives, [...] Read more.
Antimicrobial resistance (AMR) has emerged as one of the foremost global threats to public health, with the veterinary sector, responsible for nearly three-quarters of global antimicrobial consumption, representing an underappreciated epicenter of this crisis. Despite the extensive literature on bacteriocins as antibiotic alternatives, most reviews focus on human medicine or food preservation, leaving a conspicuous gap in evidence specific to veterinary medicine. The present review addresses this gap by examining the molecular basis of bacteriocin activity (lipid II, bacterial RNA polymerase, cytoplasmic membrane), strategies for clinical deployment (topical therapy, antibiotic combinations, disruption of biofilm tolerance), and preclinical evidence relevant to bovine mastitis, canine pyoderma and otitis externa, and infections caused by multidrug-resistant pathogens (MRSA (Methicillin-Resistant Staphylococcus aureus), MRSP (Methicillin-Resistant Staphylococcus pseudintermedius), colistin-resistant P. aeruginosa, XDR (extensively drug-resistant) Acinetobacter baumannii). Translational barriers—pharmacokinetic, regulatory, and evidentiary—are critically appraised, alongside emerging directions including precision nanocarriers, biofilm-targeted therapies, and the animal microbiota as a reservoir of novel molecules. Bacteriocins represent a promising yet underexploited antibacterial class in response to the escalating AMR crisis in the animal sector. Full article
(This article belongs to the Special Issue New Insights in Antibiotic Resistance/Tolerance)
27 pages, 1537 KB  
Article
Cryptocarya alba and Laureliopsis philippiana Essential Oil-Loaded Hydrogels with Antibacterial Activity Against Staphylococcus pseudintermedius: Potential Topical Candidates for Canine Pyoderma
by Martina Jacobs, Noelia Valdivia, Martín Varas, Paola Ramos, Flavia Bruna, Gabriela Valenzuela-Barra, Olosmira Correa, Antonia Díaz, Gabriela Maturana, Irene Martínez, Francisco Abusleme, Belén Rivera, María Olga Bargsted, Daniela Siel and Jessica Bravo
Vet. Sci. 2026, 13(6), 544; https://doi.org/10.3390/vetsci13060544 - 31 May 2026
Viewed by 1217
Abstract
Background/Objectives: The increasing emergence of antimicrobial-resistant Staphylococcus pseudintermedius has limited the effectiveness of conventional therapies for canine pyoderma, highlighting the need for alternative topical strategies. This study aimed to develop hydrogels incorporating essential oils (EOs) from Peumo (Cryptocarya alba) and Tepa [...] Read more.
Background/Objectives: The increasing emergence of antimicrobial-resistant Staphylococcus pseudintermedius has limited the effectiveness of conventional therapies for canine pyoderma, highlighting the need for alternative topical strategies. This study aimed to develop hydrogels incorporating essential oils (EOs) from Peumo (Cryptocarya alba) and Tepa (Laureliopsis philippiana) as potential topical treatments against Staphylococcus pseudintermedius skin infections in veterinary medicine. Methods: EOs were obtained by steam distillation, chemically characterized by gas chromatography–mass spectrometry (GC–MS), and evaluated for antibacterial activity against S. pseudintermedius strains. Carbopol®-based hydrogels incorporating the EOs of C. alba (HCA), L. philippiana (HLP), and a control vehicle (HVE) were formulated and characterized in terms of physicochemical properties, microbiological safety, and stability under accelerated and refrigerated conditions. Preclinical dermal safety was evaluated in BALB/c mice by repeated topical administration for five days. The analysis included clinical observation, skin irritation scoring, and histological analysis. Additionally, a preliminary microbiological evaluation was conducted in client-owned dogs with superficial pyoderma to assess the performance of the formulations in the target species. Skin lesion swabs were collected at baseline and after 21 days of treatment, followed by bacterial culture and automated identification using the VITEK® system. Bacterial detection and bacterial load were evaluated to determine changes in microbiological status over the treatment period. Results: GC–MS analysis identified sabinene and eucalyptol as the main compounds in CA-EO, and linalool, eucalyptol, and safrole in L. philippiana EO. Both EOs exhibited moderate antibacterial activity against S. pseudintermedius (inhibition zones 4.9–10.8 mm; MIC ≥ 2.048 mg mL−1). The hydrogels were microbiologically safe. Among formulations, HLP demonstrated superior physical stability and comparable rheological properties to the vehicle. In vivo safety evaluation demonstrated no signs of systemic toxicity, behavioral alterations, or skin irritation, and histological analysis confirmed preserved skin architecture without evidence of inflammation or tissue damage. In the preliminary microbiological evaluation in dogs, all animals were positive for Staphylococcus spp. at baseline. On Day 21, bacterial elimination was observed in the active treatment groups, but not in the HVE group, with elimination rates of 50.0% for Inveclor® and 25.0% for both HCA and HLP. In parallel, HLP showed the highest proportion of dogs reaching minimal bacterial load levels (75%), followed by Inveclor® (50.0%) and HCA (37.5%), whereas no dogs in the vehicle group reached this category. Conclusions: EOs from C. alba and L. philippiana presented antibacterial activity and were successfully incorporated into microbiologically safe hydrogel formulations. Notably, HLP demonstrated superior stability and a favorable preclinical safety profile, supporting its potential. In the preliminary microbiological evaluation in dogs, numerical differences in bacterial elimination and bacterial load categories were observed among groups; however, these differences were not statistically significant and should be interpreted as exploratory. Full article
(This article belongs to the Topic Advances in Infectious and Parasitic Diseases of Animals)
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9 pages, 503 KB  
Brief Report
Isolation of a Methicillin-Resistant Staphylococcus pseudintermedius Strain from a Domestic Dog with Vulvovaginitis: A Potential Public Health Concern?
by Lorenzo Pace, Valeria Rondinone, Laura Del Sambro, Viviana Manzulli, Stefano Castellana, Luigina Serrecchia, Angelica Bianco, Beatrice Maffei, Leonardo Marino, Antonio Petrella and Domenico Galante
Antibiotics 2026, 15(5), 480; https://doi.org/10.3390/antibiotics15050480 - 9 May 2026
Viewed by 424
Abstract
Background: Staphylococcus pseudintermedius is a major opportunistic pathogen of dogs and the primary cause of canine pyoderma and other infections. The global emergence of methicillin-resistant S. pseudintermedius (MRSP) represents a significant challenge in veterinary medicine due to its frequent multidrug-resistant phenotype and [...] Read more.
Background: Staphylococcus pseudintermedius is a major opportunistic pathogen of dogs and the primary cause of canine pyoderma and other infections. The global emergence of methicillin-resistant S. pseudintermedius (MRSP) represents a significant challenge in veterinary medicine due to its frequent multidrug-resistant phenotype and limited therapeutic options. Methods: We describe the phenotypic and genomic characterization of an MRSP isolate recovered from a vaginal swab of an 11-year-old dog diagnosed with vulvovaginitis in southern Italy. Antimicrobial susceptibility testing was performed using broth microdilution according to CLSI VET01S guidelines. Whole-genome sequencing was conducted to determine sequence type and antimicrobial resistance determinants. Results: The isolate was identified as S. pseudintermedius by MALDI-TOF MS and confirmed by genomic analysis. Multilocus sequence typing assigned the strain to sequence type ST2333. Phenotypically, the isolate exhibited multidrug resistance, including resistance to β-lactams, macrolides, lincosamides, tetracyclines, aminoglycosides, fluoroquinolones, and trimethoprim–sulfamethoxazole, while remaining susceptible to amikacin, rifampicin, florfenicol, and vancomycin. Whole-genome sequencing confirmed the presence of mecA and additional resistance determinants consistent with the observed phenotype. Conclusions: This report suggests the possible occurrence of an MDR MRSP ST2333 lineage in southern Italy and highlights the importance of combined phenotypic and genomic surveillance to support antimicrobial stewardship in veterinary medicine within a One Health framework. Full article
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15 pages, 848 KB  
Article
Investigations of Procalcitonin, Interleukin-8 and Defensin-β in Dogs with Superficial and Deep Pyoderma
by Stephan Neumann and Maren Dölle
Vet. Sci. 2026, 13(2), 183; https://doi.org/10.3390/vetsci13020183 - 12 Feb 2026
Viewed by 952
Abstract
Background: Canine pyoderma is a common bacterial skin disease that can be classified as superficial or deep and is associated with inflammatory processes. Systemic inflammatory biomarkers such as procalcitonin (PCT), interleukin-8 (IL-8), and beta-defensin-2 (Defb2) may reflect immune activation; however, their diagnostic and [...] Read more.
Background: Canine pyoderma is a common bacterial skin disease that can be classified as superficial or deep and is associated with inflammatory processes. Systemic inflammatory biomarkers such as procalcitonin (PCT), interleukin-8 (IL-8), and beta-defensin-2 (Defb2) may reflect immune activation; however, their diagnostic and clinical relevance in canine pyoderma remains unclear. Materials and Methods: Serum concentrations of PCT, IL-8, and Defb2 were measured using enzyme-linked immunosorbent assays (ELISA) in healthy control dogs (group 1, n = 40), dogs with superficial pyoderma (group 2a, n = 16), and dogs with deep pyoderma (group 3a, n = 7). A subset of dogs with superficial pyoderma (group 2b, n = 12) was re-evaluated after clinical remission. Biomarker concentrations were statistically compared between groups and over time. Results: Dogs with superficial and deep pyoderma exhibited significantly higher serum concentrations of PCT and IL-8 compared to healthy controls, whereas Defb2 concentrations were significantly reduced in both disease groups. No statistically significant differences were detected between superficial and deep pyoderma for any of the biomarkers, although IL-8 showed a trend toward higher concentrations in dogs with deep pyoderma (p = 0.07). Follow-up examinations after clinical improvement revealed no significant changes in biomarker concentrations. Conclusions: Canine pyoderma is associated with measurable systemic inflammatory alterations, characterized by increased serum concentrations of PCT and IL-8 and decreased Defb2 levels, irrespective of disease depth. The lack of biomarker normalization following clinical remission suggests that systemic inflammatory responses may persist beyond visible clinical healing. While these biomarkers may provide complementary information on inflammatory activity, their utility for monitoring treatment response appears limited. Full article
(This article belongs to the Section Veterinary Biomedical Sciences)
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20 pages, 2519 KB  
Article
Antibiotic Resistance Patterns of Bacteria Isolated from Canine Skin and Ear Infections in Serbia
by Isidora Prošić, Branislav Vejnović, Dušan Mišić, Andrea Radalj, Aleksandar Nikšić, Ksenija Aksentijević, Marina Radojičić, Vladimir Gajdov, Milica Ilić, Natalija Milčić Matić and Dejan Krnjaić
Antibiotics 2026, 15(1), 21; https://doi.org/10.3390/antibiotics15010021 - 23 Dec 2025
Cited by 3 | Viewed by 1568
Abstract
Background: Canine skin and ear infections are common in small-animal practice and increasingly complicated by multidrug resistance (MDR), yet data from Serbia are limited. This study aimed to describe the bacterial etiology and antimicrobial resistance patterns in canine otitis externa and pyoderma. [...] Read more.
Background: Canine skin and ear infections are common in small-animal practice and increasingly complicated by multidrug resistance (MDR), yet data from Serbia are limited. This study aimed to describe the bacterial etiology and antimicrobial resistance patterns in canine otitis externa and pyoderma. Methods: We retrospectively reviewed laboratory records from the Clinical Bacteriology and Mycology Laboratory, Faculty of Veterinary Medicine, University of Belgrade (January 2017–August 2024). A total of 422 non-invasive swabs from clinically ill dogs were included (ears: n = 210; skin: n = 212). Bacterial identification used conventional methods and commercial systems, and disk-diffusion susceptibility testing followed CLSI/EUCAST guidance. Methicillin resistance in staphylococci was assessed by cefoxitin/oxacillin screening; MRSA was confirmed by PCR and PBP2a detection. Resistance trends were compared between 2017–2020 and 2021–2024. Results: The leading pathogens were Staphylococcus pseudintermedius (ears 48.1%; skin 79.7%) and Pseudomonas aeruginosa (ears 29.1%; skin 7.6%). Staphylococci showed high resistance to macrolides, clindamycin, tetracycline, and first-line β-lactams (amoxicillin–clavulanate, cephalexin), with the highest susceptibilities to amikacin, florfenicol, and rifampicin. P. aeruginosa remained most susceptible to amikacin, polymyxin B, and imipenem. Between the two periods, S. pseudintermedius resistance increased to amikacin, fusidic acid, and cephalexin, while resistance to florfenicol decreased. P. aeruginosa resistance to imipenem increased. The prevalence of methicillin-resistant S. pseudintermedius (MRSP) was 27.4% (74/270). MDR S. pseudintermedius and MDR P. aeruginosa were identified in 38.5% and 53.3% of isolates, respectively. One isolate of each species was resistant to all tested drugs. Conclusions: These findings confirm high levels of antimicrobial resistance in major canine skin and ear pathogens and emphasize the need for susceptibility-based therapy, rational antimicrobial use, and ongoing surveillance in small-animal practice. Full article
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17 pages, 1703 KB  
Article
Canine Pyoderma and Otitis Externa: A Retrospective Analysis of Multidrug-Resistant Bacterial Carriage in Hong Kong
by Wing Yu Chan, Stefan Hobi, Andrew Ferguson and Ibrahim Elsohaby
Antibiotics 2025, 14(7), 685; https://doi.org/10.3390/antibiotics14070685 - 6 Jul 2025
Cited by 5 | Viewed by 4516
Abstract
Background: Canine pyoderma and otitis externa are prevalent bacterial skin infections in veterinary practice, frequently complicated by the emergence of multidrug-resistant (MDR) pathogens. Objectives: To investigate the frequency, antimicrobial resistance (AMR) profiles, and frequency of MDR bacterial isolates from dogs with pyoderma [...] Read more.
Background: Canine pyoderma and otitis externa are prevalent bacterial skin infections in veterinary practice, frequently complicated by the emergence of multidrug-resistant (MDR) pathogens. Objectives: To investigate the frequency, antimicrobial resistance (AMR) profiles, and frequency of MDR bacterial isolates from dogs with pyoderma or otitis externa in Hong Kong. Methods: A retrospective study of bacterial isolates from 215 clinical samples collected from dogs presenting with pyoderma (n = 63) or otitis externa (n = 152) at veterinary clinics across Hong Kong between 2018 and 2022. Bacterial isolates were identified and subjected to antimicrobial susceptibility testing against 13 antimicrobial classes. Results: Staphylococcus spp., particularly S. pseudintermedius, were the most commonly isolated species, followed by Pseudomonas spp. and Proteus spp. High resistance rates were observed for orbifloxacin (61.3% in pyoderma; 76.7% in otitis externa), doxycycline (59.3%; 69.2%), clindamycin (62%; 68.9%), and enrofloxacin (50%; 55.5%). Most isolates were sensitive to ofloxacin, ticarcillin–clavulanate, tobramycin, ciprofloxacin, cefpodoxime, cefuroxime, and cefixime. MDR was detected in 67.5% of pyoderma and 66.8% of otitis externa isolates. Gram-negative bacteria exhibited significantly higher MDR rates than Gram-positive isolates. The multiple antibiotic resistance (MAR) index averaged 0.41 for pyoderma and 0.52 for otitis externa isolates. We found no significant associations between MDR and non-modifiable risk factors (i.e., age, sex, breed, and reproductive status). Conclusions: These findings highlight the critical need for prudent antimicrobial use and continuous surveillance of AMR trends in companion animals. A higher focus should be placed on topical antiseptic therapy, with oral antibiotics used only in exceptional cases and after susceptibility testing. From a One Health perspective, the potential transmission of MDR bacteria between companion animals and humans underscores the importance of a coordinated approach to antimicrobial stewardship across both veterinary and human medicine. Full article
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14 pages, 2330 KB  
Article
Antimicrobial Resistance and Risk Factors of Canine Bacterial Skin Infections
by Qian Wang, Siyu Chen, Shizhen Ma, Ying Jiao, Huiyi Hong, Siying Wang, Wei Huang, Qi An, Yu Song, Xukun Dang, Gege Zhang, Haiqin Ding, Yang Wang, Zhaofei Xia, Lu Wang and Yanli Lyu
Pathogens 2025, 14(4), 309; https://doi.org/10.3390/pathogens14040309 - 24 Mar 2025
Cited by 9 | Viewed by 4209
Abstract
Bacterial skin infections are common in dogs and often secondary to underlying conditions like allergies or ectoparasite infestations. Untreated primary causes can lead to recurrent infections and an increased risk of antimicrobial resistance, including methicillin-resistant Staphylococcus pseudintermedius (MRSP), posing a substantial clinical challenge. [...] Read more.
Bacterial skin infections are common in dogs and often secondary to underlying conditions like allergies or ectoparasite infestations. Untreated primary causes can lead to recurrent infections and an increased risk of antimicrobial resistance, including methicillin-resistant Staphylococcus pseudintermedius (MRSP), posing a substantial clinical challenge. Here, we analyzed 896 canine bacterial skin infection samples collected from the China Agricultural University Veterinary Teaching Hospital between 2018 and 2022. Species identification was confirmed by MALDI-TOF and 16S rRNA gene sequencing. Of the 896 samples, 722 (80.6%) yielded 1123 bacterial isolates, with Staphylococcus pseudintermedius (n = 421), Pseudomonas aeruginosa (n = 108), and Escherichia coli (n = 73) being the most prevalent. Antimicrobial susceptibility was evaluated using the broth microdilution method according to CLSI guidelines. Notably, resistance to florfenicol in S. pseudintermedius increased from 9.1% in 2018 to 20.0% in 2022, while resistance to ceftriaxone in E. coli rose from 30.0% to 72.7% over the same period. Among 305 reviewed cases, pyoderma (47.5%, 145/305) was the most common infection type, predominantly associated with S. pseudintermedius (n = 114), followed by otitis (25.6%, 78/305) primarily linked to P. aeruginosa (n = 24). Mixed infections occurred in 35.4% (108/305) of cases, with S. pseudintermedius as the most frequently isolated species in both single and mixed infections. The multivariable logistic regression model revealed that MRSP infections were correlated with a history of invasion (p <0.001) and prolonged disease duration (six months to less than one year: p = 0.005; one year or longer: p < 0.001). Core-genome SNP analysis showed that eight dogs were infected with identical S. pseudintermedius strains, in which one dog exhibited a shift from gentamicin susceptibility to resistance within nine days. Conversely, three dogs were infected by distinct S. pseudintermedius strains at two time points. To effectively manage MRSP infections and chronic skin infections in dogs, rigorous disinfection protocols in veterinary hospitals, control of disease duration, prevention of recurrent infections, and continuous monitoring of antibiotic resistance patterns are essential. Full article
(This article belongs to the Section Bacterial Pathogens)
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16 pages, 1858 KB  
Article
Antibacterial Effect of Canine Leucocyte Platelet-Rich Plasma (L-PRP) and Canine Platelet-Poor Plasma (PPP) Against Methicillin-Sensitive and Methicillin-Resistant Staphylococcus pseudintermedius
by Roberta Perego, Gabriele Meroni, Piera Anna Martino, Eva Spada, Luciana Baggiani and Daniela Proverbio
Vet. Sci. 2024, 11(12), 670; https://doi.org/10.3390/vetsci11120670 - 20 Dec 2024
Cited by 2 | Viewed by 1981
Abstract
Staphylococcus pseudintermedius (SP) is a commensal and opportunistic pathogen of skin and mucosal surfaces, isolated from healthy dogs and from canine pyoderma cases. It has recently gained attention due to its increasing antibiotic resistance. Platelet-rich plasma (PRP) is a biological product, obtained through [...] Read more.
Staphylococcus pseudintermedius (SP) is a commensal and opportunistic pathogen of skin and mucosal surfaces, isolated from healthy dogs and from canine pyoderma cases. It has recently gained attention due to its increasing antibiotic resistance. Platelet-rich plasma (PRP) is a biological product, obtained through a blood centrifugation process, which has antibacterial properties evidenced by in vitro and in vivo studies conducted in both the human and veterinary field. This in vitro study evaluated the antimicrobial effect of canine non-activated and activated leucocyte-rich PRP (L-PRP) and platelet-poor plasma (PPP) against two strains of SP isolated from dogs with pyoderma: one a multidrug-resistant strain (MDR) and one a non-MDR strain. Twenty healthy un-sedated adult blood donor dogs were enrolled for L-PRP and PPP production via a closed semi-automatic system for veterinary use. The evaluation of antimicrobial effect was performed using the micro-inhibition in broth method, exposing SP strains to 10 L-PRP, 10 activated L-PRP and 10 PPP samples, respectively. Bacterial growth was evaluated using CFU count at three timepoints (immediately after incubation T0, after 1 h T1 and after 2 h T2). L-PRP and PPP had a significant antimicrobial effect at all three timepoints which was similar against both non-MDR and MDR SP strains. Activation appeared to reduce the duration of the antimicrobial effect in L-PRP. More studies are necessary to confirm these preliminary results. Full article
(This article belongs to the Section Veterinary Internal Medicine)
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16 pages, 8398 KB  
Review
Prevalence of Bacterial Pathogens Isolated from Canines with Pyoderma and Otitis Externa in Korea: A Systematic Review and Meta-Analysis
by Maryum Tanveer, Eurade Ntakiyisumba, Fabrice Hirwa, Hakyoung Yoon, Sang-Ik Oh, Chongchan Kim, Mi Hye Kim, Ji-Seon Yoon and Gayeon Won
Vet. Sci. 2024, 11(12), 656; https://doi.org/10.3390/vetsci11120656 - 16 Dec 2024
Cited by 10 | Viewed by 5942
Abstract
Bacterial skin infections, particularly pyoderma and otitis externa, are widespread in dogs, primarily caused by Staphylococcus and Pseudomonas species. This study evaluates the prevalence and types of bacterial pathogens in affected dogs in South Korea using a meta-analytical approach. Following the PRISMA guidelines, [...] Read more.
Bacterial skin infections, particularly pyoderma and otitis externa, are widespread in dogs, primarily caused by Staphylococcus and Pseudomonas species. This study evaluates the prevalence and types of bacterial pathogens in affected dogs in South Korea using a meta-analytical approach. Following the PRISMA guidelines, five electronic databases were searched for relevant studies published between 1990 and 2024. Three researchers independently performed data extraction and quality assessment. A subgroup analysis explored the variability in pathogen prevalence across studies based on bacterial genus, bacterial species, publication year, sampling year, sampling location, infection type, diagnostic method, and sample size. Publication bias was evaluated using funnel plots and Egger’s regression test, with all analyses conducted using the R program. Of the 944 articles, 29 met the eligibility criteria. The pooled bacterial prevalence among infected dogs was 99.95% (95%CI: 99.85–100). Staphylococcus was the most prevalent genus (95.93%), followed by Pseudomonas (48.43%), Enterococcus (20.32%), and Escherichia (17.63%). The most common species were Staphylococcus pseudintermedius (78.89%), Staphylococcus intermedius (71.43%), and Pseudomonas aeruginosa (46.13%). This study underscores the need for comprehensive treatment strategies targeting Gram-negative and Gram-positive bacteria, emphasizing further research on antimicrobial resistance patterns and treatment efficacy to enhance canine health outcomes in South Korea. Full article
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11 pages, 2383 KB  
Article
Therapeutic Potential of Mangosteen Pericarp Extract-Loaded Liposomes against Superficial Skin Infection Caused by Staphylococcus pseudintermedius in a Murine Model
by Seong-Yeop Kim, Seong-Yong Park, Jung-Hwa Lee, Nayeong Kim, Ha-Na Oh, So-Young Yoo, Dae-Sung Lee and Je-Chul Lee
Antibiotics 2024, 13(7), 612; https://doi.org/10.3390/antibiotics13070612 - 1 Jul 2024
Cited by 2 | Viewed by 3565
Abstract
α-mangostin (α-MG) demonstrates antibacterial activity against Staphylococcus species. Therefore, this study aimed to explore the antibacterial activity of α-MG-rich mangosteen pericarp extract (MPE)-loaded liposomes against Staphylococcus isolates from companion animal skin diseases in vitro and evaluated their therapeutic potential in a murine model [...] Read more.
α-mangostin (α-MG) demonstrates antibacterial activity against Staphylococcus species. Therefore, this study aimed to explore the antibacterial activity of α-MG-rich mangosteen pericarp extract (MPE)-loaded liposomes against Staphylococcus isolates from companion animal skin diseases in vitro and evaluated their therapeutic potential in a murine model of superficial skin infection caused by S. pseudintermedius. α-MG-rich extract was purified from mangosteen pericarp and then complexed with γ-cyclodextrin (γ-CD), forming the inclusion complexes. Nanoliposomes containing MPE and γ-CD complexes were prepared by adding lecithin and casein. Minimum inhibitory concentrations (MICs) and minimum bactericidal concentrations (MBCs) of MPE-loaded liposomes were determined using agar dilution and broth microdilution methods. The therapeutic potential of MPE-loaded liposomes was evaluated in vivo on tape-stripped skin lesions infected with S. pseudintermedius. Purified MPE and MPE-loaded liposomes contained 402.43 mg/g and 18.18 mg/g α-MG, respectively. MPE-loaded liposomes showed antibacterial activity against clinical Staphylococcus isolates in vitro but did not show antibacterial activity against Gram-negative bacterial isolates. MPE-loaded liposomes demonstrated consistent MICs and MBCs against Staphylococcus isolates. These liposomes significantly reduced bacterial numbers and lesional sizes in a superficial skin infection model. Moreover, they reconstructed the epidermal barrier in skin lesions. The therapeutic concentrations of MPE-loaded liposomes did not induce cytotoxicity in canine progenitor epidermal keratinocyte cells. In conclusion, MPE-loaded liposomes hold promise for the development of a prospective topical formulation to treat superficial pyoderma in companion animals. Full article
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22 pages, 7870 KB  
Article
In Vitro/Vivo Mechanisms of Antibacterial Peptide NZ2114 against Staphylococcus pseudintermedius and Its Biofilms
by Shuang Zhang, Na Yang, Ruoyu Mao, Ya Hao, Da Teng and Jianhua Wang
Antibiotics 2024, 13(4), 341; https://doi.org/10.3390/antibiotics13040341 - 8 Apr 2024
Cited by 6 | Viewed by 3888
Abstract
Staphylococcus pseudintermedius is an opportunistic pathogen commonly found in canines, and has garnered escalating interest due to its potential for zoonotic transmission and increasing antimicrobial resistance. However, the excessive use of antibiotics and the characteristic of S. pseudintermedius forming biofilms make treatment challenging. [...] Read more.
Staphylococcus pseudintermedius is an opportunistic pathogen commonly found in canines, and has garnered escalating interest due to its potential for zoonotic transmission and increasing antimicrobial resistance. However, the excessive use of antibiotics and the characteristic of S. pseudintermedius forming biofilms make treatment challenging. In this study, the in vivo and in vitro antimicrobial activity and mechanisms of action of NZ2114, a plectasin-derived peptide, against S. pseudintermedius were investigated. NZ2114 exhibited potent antibacterial activity towards S. pseudintermedius (minimum inhibitory concentration, MIC = 0.23 μM) with a lower probability of inducing drug-resistant mutations and efficient bactericidal action, which was superior to those of mopirucin (MIC = 0.25–0.5 μM) and lincomycin (MIC = 4.34–69.41 μM). The results of electron microscopy and flow cytometry showed that NZ2114 disrupted S. pseudintermedius’ cell membrane, resulting in cellular content leakage, cytoplasmic membrane shrinkage, and, eventually, cell death. The intracellular ROS activity and Alamar Blue detection showed that NZ2114 interferes with intracellular metabolic processes. In addition, NZ2114 effectively inhibits biofilm formation, and confocal laser scanning microscopy further revealed its antibacterial and anti-biofilm activity (biofilm thickness reduced to 6.90–17.70 μm). The in vivo therapy of NZ2114 in a mouse pyoderma model showed that it was better than lincomycin in effectively decreasing the number of skin bacteria, alleviating histological damage, and reducing the skin damage area. These results demonstrated that NZ2114 may be a promising antibacterial candidate against S. pseudintermedius infections. Full article
(This article belongs to the Special Issue Insights into Natural Antimicrobial Peptides)
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13 pages, 1233 KB  
Article
Efficiency of NZ2114 on Superficial Pyoderma Infected with Staphylococcus pseudintermedius
by Na Yang, Yan Huang, Yuanyuan Li, Da Teng, Ruoyu Mao, Ya Hao, Lingyun Wei and Jianhua Wang
Pharmaceuticals 2024, 17(3), 277; https://doi.org/10.3390/ph17030277 - 22 Feb 2024
Cited by 4 | Viewed by 2857
Abstract
Staphylococcus pseudintermedius (S. pseudintermedius) is the main pathogen causing pyoderma of canines. With the emergence of drug-resistant bacteria, traditional antibiotic treatments are limited. As a potential antibacterial agent, NZ2114 was effective against S. pseudintermedius, including drug-resistant strains. Its bactericidal efficacy [...] Read more.
Staphylococcus pseudintermedius (S. pseudintermedius) is the main pathogen causing pyoderma of canines. With the emergence of drug-resistant bacteria, traditional antibiotic treatments are limited. As a potential antibacterial agent, NZ2114 was effective against S. pseudintermedius, including drug-resistant strains. Its bactericidal efficacy was superior to mupiroxacin, ofloxacin and lincomycin. To facilitate the transcutaneous delivery of NZ2114 for the treatment of superficial pyoderma, chemical permeation enhancers were added since water-soluble NZ2114 does not easily penetrate the skin lipid layer. Two different NZ2114 sprays were prepared by combining 1% Azone + 10% propylene glycol (PG) or 5% N-methylpyrrolidone (NMP) + 10% PG with NZ2114 after screening. The cumulative permeability of NZ2114 sprays were 244.149 and 405.245 μg/cm2 at 24 h with an in vitro percutaneous assay of mice skin, which showed a 244% and 405% increase in skin permeability than NZ2114, respectively. In addition, the efficacy of NZ2114 sprays in reducing skin bacteria colonisation was demonstrated in a mouse model of superficial pyoderma (24 mice, 3 mice/group) induced by S. pseudintermedius, and the 5% NMP + 10% PG + NZ2114 group had the best therapeutic effect compared to the other groups. This preparation did not cause any skin irritation, laying the foundation for the development of an effective and non-toxic topical product. Full article
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17 pages, 1308 KB  
Article
Time-Kill Analysis of Canine Skin Pathogens: A Comparison of Pradofloxacin and Marbofloxacin
by Stefano Azzariti, Andrew Mead, Pierre-Louis Toutain, Ross Bond and Ludovic Pelligand
Antibiotics 2023, 12(10), 1548; https://doi.org/10.3390/antibiotics12101548 - 17 Oct 2023
Cited by 4 | Viewed by 3409
Abstract
Time-kill curves (TKCs) are more informative compared with the use of minimum inhibitory concentration (MIC) as they allow the capture of bacterial growth and the development of drug killing rates over time, which allows to compute key pharmacodynamic (PD) parameters. Our study aimed, [...] Read more.
Time-kill curves (TKCs) are more informative compared with the use of minimum inhibitory concentration (MIC) as they allow the capture of bacterial growth and the development of drug killing rates over time, which allows to compute key pharmacodynamic (PD) parameters. Our study aimed, using a semi-mechanistic mathematical model, to estimate the best pharmacokinetic/pharmacodynamic (PK/PD) indices (ƒAUC/MIC or %ƒT > MIC) for the prediction of clinical efficacy of veterinary FQs in Staphylococcus pseudintermedius, Staphylococcus aureus, and Escherichia coli collected from canine pyoderma cases with a focus on the comparison between marbofloxacin and pradofloxacin. Eight TCKs for each bacterial species (4 susceptible and 4 resistant) were analysed in duplicate. The best PK/PD index was ƒAUC24h/MIC in both staphylococci and E. coli. For staphylococci, values of 25–40 h were necessary to achieve a bactericidal effect, whereas the calculated values (25–35 h) for E. coli were lower than those predicting a positive clinical outcome (100–120 h) in murine models. Pradofloxacin showed a higher potency (lower EC50) in comparison with marbofloxacin. However, no difference in terms of a maximal possible pharmacological killing rate (Emax) was observed. Taking into account in vivo exposure at the recommended dosage regimen (3 and 2 mg/kg for pradofloxacin and marbofloxacin, respectively), the overall killing rates (Kdrug) computed were also similar in most instances. Full article
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11 pages, 1735 KB  
Article
The Diversity and Zoonotic Potential of Staphylococcus pseudintermedius in Humans and Pet Dogs in Trinidad and Tobago
by Sharianne Suepaul, Marc Stegger, Filip Boyen, Karla Georges and Patrick Butaye
Antibiotics 2023, 12(8), 1266; https://doi.org/10.3390/antibiotics12081266 - 31 Jul 2023
Cited by 9 | Viewed by 2932
Abstract
Staphylococcus pseudintermedius is an opportunistic pathogen that is frequently isolated from canines. It is of escalating interest because of its increasing antimicrobial resistance and zoonotic potential. Although many published articles are available that describe isolates obtained from diseased dogs and humans, this study [...] Read more.
Staphylococcus pseudintermedius is an opportunistic pathogen that is frequently isolated from canines. It is of escalating interest because of its increasing antimicrobial resistance and zoonotic potential. Although many published articles are available that describe isolates obtained from diseased dogs and humans, this study focused on isolates obtained from healthy dogs and their owners who presented at clinics for routine veterinary care and utilized whole genome sequencing-based analyses for strain comparisons. A total of 25 humans and 27 canines were sampled at multiple sites, yielding 47 and 45 isolates, respectively. Whole genome sequence analysis was performed. We detected mostly new sequence types (STs) and a high diversity. Strains carried few antimicrobial resistance genes and plasmids, albeit three MRSP strains were found that belonged to two internationally distributed STs. The virulence content did not provide insights toward a tendency to colonization of humans but supported that there may be differences in the surface proteins between carrier strains and those causing pyoderma. We identified 13 cases in which humans were infected with strains from the dog they owned. Full article
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23 pages, 3229 KB  
Article
Genomic Features of Antimicrobial Resistance in Staphylococcus pseudintermedius Isolated from Dogs with Pyoderma in Argentina and the United States: A Comparative Study
by Mariela E. Srednik, Claudia A. Perea, Gabriela I. Giacoboni, Jessica A. Hicks, Christine L. Foxx, Beth Harris and Linda K. Schlater
Int. J. Mol. Sci. 2023, 24(14), 11361; https://doi.org/10.3390/ijms241411361 - 12 Jul 2023
Cited by 15 | Viewed by 3583
Abstract
Staphylococcus pseudintermedius is the most common opportunistic pathogen in dogs and methicillin resistance (MRSP) has been identified as an emerging problem in canine pyoderma. Here, we evaluated the antimicrobial resistance (AMR) features and phylogeny of S. pseudintermedius isolated from canine pyoderma cases in [...] Read more.
Staphylococcus pseudintermedius is the most common opportunistic pathogen in dogs and methicillin resistance (MRSP) has been identified as an emerging problem in canine pyoderma. Here, we evaluated the antimicrobial resistance (AMR) features and phylogeny of S. pseudintermedius isolated from canine pyoderma cases in Argentina (n = 29) and the United States (n = 29). 62% of isolates showed multi-drug resistance. The AMR genes found: mecA, blaZ, ermB, dfrG, catA, tetM, aac(6′)-aph(2″), in addition to tetK and lnuA (only found in U.S. isolates). Two point mutations were detected: grlA(S80I)-gyrA(S84L), and grlA(D84N)-gyrA(S84L) in one U.S. isolate. A mutation in rpoB (H481N) was found in two isolates from Argentina. SCCmec type III, SCCmec type V, ΨSCCmec57395 were identified in the Argentinian isolates; and SCCmec type III, SCCmec type IVg, SCCmec type V, and SCCmec type VII variant in the U.S. cohort. Sequence type (ST) ST71 belonging to a dominant clone was found in isolates from both countries, and ST45 only in Argentinian isolates. This is the first study to comparatively analyze the population structure of canine pyoderma-associated S. pseudintermedius isolates in Argentina and in the U.S. It is important to maintain surveillance on S. pseudintermedius populations to monitor AMR and gain further understanding of its evolution and dissemination. Full article
(This article belongs to the Special Issue Antibiotic Resistance: Appearance, Evolution, and Spread 2.0)
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