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Search Results (1,096)

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Keywords = hospital-acquired infection

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21 pages, 1644 KB  
Review
Increase in Healthcare-Associated Infections: Is COVID-19 Responsible? A Narrative Review
by Pietro Crispino, Antonello Viceconti and Valentina Camardo
Microorganisms 2026, 14(9), 1952; https://doi.org/10.3390/microorganisms14091952 - 3 Sep 2026
Abstract
During the COVID-19 pandemic, healthcare-associated infections (HAIs) showed a significant increase, exacerbated by the prevalence of multidrug-resistant (MDR) organisms. Antibiotic overuse and infection control practices influenced HAI incidence rates, alongside the rising prevalence of resistant pathogens such as methicillin-resistant Staphylococcus aureus. Antibiotic-resistant pathogens [...] Read more.
During the COVID-19 pandemic, healthcare-associated infections (HAIs) showed a significant increase, exacerbated by the prevalence of multidrug-resistant (MDR) organisms. Antibiotic overuse and infection control practices influenced HAI incidence rates, alongside the rising prevalence of resistant pathogens such as methicillin-resistant Staphylococcus aureus. Antibiotic-resistant pathogens causing healthcare-associated infections in COVID-19 patients include—in addition to methicillin-resistant Staphylococcus aureus—metallo-β-lactamase-producing carbapenem-resistant Enterobacteriaceae, carbapenem-resistant Acinetobacter baumannii, extended-spectrum β-lactamase-producing Klebsiella pneumoniae, and vancomycin-resistant enterococci. COVID-19 impacted bacterial healthcare-associated infections in various ways, with an increase in the incidence of metallo-β-lactamase-producing, carbapenem-resistant organisms—a trend already noted prior to the pandemic. Furthermore, the pandemic laid the groundwork for future challenges in HAI management, highlighting the need for rigorous infection prevention and control protocols. Poorer outcomes were observed in hospitalized COVID-19 patients with antibiotic-resistant infections. Although increased infection prevention and control (IPC) measures led to a reduction in certain site-specific hospital-acquired infections, in other contexts, COVID-19 was associated with an increased incidence of bacterial hospital-acquired infections. Further research is needed to determine the cost–benefit ratio of maintaining COVID-19-related infection prevention and control protocols beyond the pandemic in order to reduce the impact of hospital-acquired infections. Furthermore, it is necessary to assess the long-term impact of the high usage of certain broad-spectrum antibiotics during the COVID-19 pandemic. Full article
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17 pages, 11993 KB  
Article
“Swab-and-Stain” Nanoparticle Assay for Detection of PBP2a-Expressing Methicillin-Resistant Staphylococcus aureus Toward Point-of-Need Environmental Surveillance
by Laura Sutarlie, Sian Yang Ow, Karrie Kwan Ki Ko, Chayaporn Suphavilai, Kar Mun Lim, Patipan Boonsimma, Darren Wei Tan, Niranjan Nagarajan and Xiao Di Su
Microorganisms 2026, 14(9), 1940; https://doi.org/10.3390/microorganisms14091940 - 2 Sep 2026
Abstract
Surveillance of methicillin-resistant Staphylococcus aureus (MRSA) in the environment is crucial for reducing its transmission, particularly in hospitals, nursing homes, and high-contact public areas. Rapid Point-of-Need (PON) tools at healthcare facilities, without involving prolonged bacterial culture in sophisticated laboratories, are needed for environmental [...] Read more.
Surveillance of methicillin-resistant Staphylococcus aureus (MRSA) in the environment is crucial for reducing its transmission, particularly in hospitals, nursing homes, and high-contact public areas. Rapid Point-of-Need (PON) tools at healthcare facilities, without involving prolonged bacterial culture in sophisticated laboratories, are needed for environmental surveillance of MRSA. We have developed a gold nanoparticle (AuNP)-based “Swab-and-Stain” assay for rapid and on-site detection of PBP2a-expressing MRSA from environmental surfaces. The assay utilizes anti-PBP2a antibody immobilized on cotton swabs to specifically capture PBP2a-expressing MRSA and anti-MRSA antibody conjugated on AuNPs to detect the captured MRSA on the swabs via sandwiched complex formation. In the presence of PBP2a-expressing MRSA, the swabs were stained in red, as seen with the naked eye. The color intensity of the stain can be quantified by smartphone image analysis for MRSA quantification. Using PBP2a-expressing MRSA samples spiked in real hospital sink and drain matrices, this pilot study demonstrated a “Swab-and-Stain” assay as a proof-of-concept method for detecting MRSA at a concentration as low as 12 CFU/mL. The assay was validated to specifically detect MRSA spiked in real hospital sink and drain matrices. This “Swab-and-Stain” assay provides a rapid, portable, and easy-to-use platform with potential application for PON environmental surveillance of MRSA. Full article
(This article belongs to the Special Issue Antimicrobial Resistance (AMR): From the Environment to Health)
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16 pages, 2147 KB  
Article
Immunization with mRNA-LNP Elicits De Novo IgG Responses in the Presence of Maternal Antibody
by John M. Ramos, Brittany Plummer, Christian R. Binuya, Mackensie Gross, Adelaide S. Fuller, Krithika P. Karthigeyan, Savannah Berrios, Sallie R. Permar and Caitlin A. Williams
Vaccines 2026, 14(9), 769; https://doi.org/10.3390/vaccines14090769 - 2 Sep 2026
Abstract
Background/Objectives: Maternal antibodies can inhibit vaccine-specific humoral responses in early life, leaving infants at increased risk for severe disease for vaccine-preventable infections. In the case of SARS-CoV-2, infants under the age of 3 months represented most child hospitalizations, yet there is no approved [...] Read more.
Background/Objectives: Maternal antibodies can inhibit vaccine-specific humoral responses in early life, leaving infants at increased risk for severe disease for vaccine-preventable infections. In the case of SARS-CoV-2, infants under the age of 3 months represented most child hospitalizations, yet there is no approved vaccine for children under the age of 6 months. There is a clear need for effective immunization in early life to prevent infant morbidity and mortality. Here, we established a mouse model to define how maternally derived antibodies shape early-life responses to mRNA vaccination. Methods: Adult female mice were immunized with PBS or 5 mcg of the SARS-CoV-2 mRNA-1273 vaccine via intramuscular injection and paired with a male. Pups from subsequent litters were immunized with PBS or 5 mcg of mRNA-1273 vaccine via intramuscular injection. Peripheral blood and spleens were collected at time points post-immunization. We measured vaccine-elicited anti-Spike IgG in mouse pups exposed or unexposed to vaccine-specific maternal IgG. Results: Spike-specific maternal IgG is detectable at high levels immediately after pup immunization or mock immunization; however, in mock immunized pups, it wanes by three weeks post-pup immunization. Pups born to immunized dams developed Spike specific IgG comparable to pups born to naïve dams. IgG subclass analyses distinguished passively acquired antibodies from vaccine-induced responses. Despite robust binding antibody responses, neutralizing activity against D614G pseudovirus was heterogeneous and did not scale proportionally with IgG titers, showing qualitative differences in early-life humoral immunity. Splenic Spike-specific B cell frequencies and T follicular helper (Tfh) cell responses were detectable in vaccinated pups irrespective of maternal immunization status, with Tfh cell frequencies peaking at day 7 post-immunization in both groups. Conclusions: Using SARS-CoV-2 as a model pathogen, we found that early-life mRNA vaccination can elicit humoral immune responses in the presence of maternal antibodies. Furthermore, the presence of maternal antibody did not inhibit the development of antigen-specific B cells or Tfh cells in the spleen. Our findings support the potential of extending vaccination strategies into early infancy and provide a framework for optimizing mRNA-based vaccine timing and design in the context of maternal immunity. Full article
(This article belongs to the Special Issue Innovations in Vaccines for Poorly Responding Populations)
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12 pages, 968 KB  
Article
Development of Loop-Mediated Isothermal Amplification with a Lateral Flow Dipstick for Detection of the BlaOXA-23-like Gene from Carbapenem-Resistant Acinetobacter baumannii
by Saranthum Phurijaruyangkun, Pongbun Tangjitrungrot, Kantima Choosang, Adun Bunchaleamchai, Naiyana Wattanakul, Bajaree Jantrapanukorn, Rungnapa Veeramano, Suphitcha Augkarawaritsawong, Khurawan Kumkrong, Supatra Areekit, Kosum Chansiri, Somchai Santiwatanakul, Pornpun Jaratsing and Sawanya Pongparit
Int. J. Mol. Sci. 2026, 27(17), 7761; https://doi.org/10.3390/ijms27177761 - 29 Aug 2026
Viewed by 287
Abstract
Carbapenem-resistant Acinetobacter baumannii (CRAB) is a major cause of hospital-acquired infections. Conventional phenotyping for carbapenem resistance requires more than 24 h, which delays clinical decisions and increases the risk of outbreaks. This study aims to develop a lateral flow dipstick (LFD) assay that [...] Read more.
Carbapenem-resistant Acinetobacter baumannii (CRAB) is a major cause of hospital-acquired infections. Conventional phenotyping for carbapenem resistance requires more than 24 h, which delays clinical decisions and increases the risk of outbreaks. This study aims to develop a lateral flow dipstick (LFD) assay that detects loop-mediated isothermal amplification (LAMP) products targeting the blaOXA-23-like gene, providing results within 1–1.5 h. Primer specificity was evaluated using seven Gram-positive and nine Gram-negative species commonly present in clinical samples, as well as carbapenem-susceptible A. baumannii and CRAB isolates harboring other resistance genes. The assay detected the blaOXA-23-like gene at concentrations as low as 1.57 pg/µL, demonstrating ~10-fold greater sensitivity than conventional PCR. The gene was present in 224/268 CRAB samples (83.6%) and absent in 100 carbapenem-susceptible A. baumannii samples. Results were fully concordant with PCR, yielding 100% sensitivity and specificity. The method requires no expensive or complex instrumentation. Future studies should validate the assay across multiple hospitals and clinical specimens to confirm its generalizability and clinical utility. Multiplex LAMP with dual LFD readouts could also enable simultaneous detection of additional carbapenem resistance genes, supporting rapid CRAB surveillance and outbreak control. Full article
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16 pages, 6546 KB  
Article
Distinct Epidemiology and Temporal Trends of Multidrug-Resistant Organisms in a Newly Established Hospital: A Five-Year Surveillance Study
by Xiaoju Ma, Zhanjie Li, Zhaofan Luo, Yan Lu, Mingming Chen, Runhan Huang, Xinhai Zhao, Li Du, Huiping Huang and Youpeng Chen
Antibiotics 2026, 15(9), 834; https://doi.org/10.3390/antibiotics15090834 - 27 Aug 2026
Viewed by 131
Abstract
Background: Antimicrobial resistance is a major global health challenge, with multidrug-resistant organisms (MDROs) emerging faster than new antimicrobial agents are being developed. The epidemiology of MDROs varies substantially across healthcare settings; however, newly established hospitals remain understudied. This study aimed to characterise the [...] Read more.
Background: Antimicrobial resistance is a major global health challenge, with multidrug-resistant organisms (MDROs) emerging faster than new antimicrobial agents are being developed. The epidemiology of MDROs varies substantially across healthcare settings; however, newly established hospitals remain understudied. This study aimed to characterise the epidemiology and temporal trends of MDROs in a newly established tertiary hospital. Methods: A five-year retrospective longitudinal surveillance study was conducted from 2019 to 2023 in a newly established tertiary hospital in Southern China. Clinical isolates were collected from intensive care unit (ICU) and non-ICU wards. Nine major MDROs were investigated, including extended-spectrum β-lactamase-producing Klebsiella pneumoniae (ESBL-KP) and Escherichia coli (ESBL-ECO); carbapenem-resistant Klebsiella pneumoniae (CRKP), Escherichia coli (CRECO), Acinetobacter baumannii (CRAB), and Pseudomonas aeruginosa (CRPA); methicillin-resistant Staphylococcus aureus (MRSA); and vancomycin-resistant Enterococcus faecium (VREfm) and Enterococcus faecalis (VREfa). Results: A total of 1533 MDRO isolates were identified during the study period. The predominant pathogens were ESBL-ECO (48.1%), ESBL-KP (16.4%), MRSA (11.4%), and CRPA (11.1%). Most isolates were recovered from non-ICU wards (85.4%), and more than half (51.5%) were community-onset. Isolation rates of ESBL-ECO, CRECO, CRAB, and CRPA were significantly higher in the ICU than in non-ICU wards (all p < 0.05). The incidence density rate of hospital-acquired infections caused by ESBL-KP, CRAB, and CRPA was also significantly higher in the ICU (all p < 0.05). Longitudinal analysis revealed divergent trends among MDROs. While most MDRO isolation rates remained below provincial and national benchmark levels, CRKP and CRAB showed significant increasing trends. CRPA exhibited a distinct pattern, increasing rapidly during the early years after hospital opening, exceeding both provincial and national benchmarks by the second year and remaining elevated thereafter. Conclusions: MDRO epidemiology during the first five complete calendar years after hospital opening was characterised by a predominance of ESBL-ECO, ESBL-KP, MRSA, and CRPA, together with substantial non-ICU and community-onset burdens and heterogeneous temporal patterns across organisms. CRPA increased rapidly and remained above the available external benchmark thereafter. These findings highlight the need for hospital-wide, organism-specific MDRO surveillance, while maintaining intensified infection prevention and control in ICUs and continued vigilance for carbapenem-resistant pathogens, particularly CRPA. Full article
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24 pages, 1673 KB  
Review
Oxford Nanopore Sequencing, a Promising Technology for Precision Diagnostics in Intensive Care Units: A Narrative Review
by Leonard Azamfirei, Dorin Bica, Maier Alexandru Mihai, Balla Beata and Claudia Banescu
Biomedicines 2026, 14(9), 1910; https://doi.org/10.3390/biomedicines14091910 - 26 Aug 2026
Viewed by 285
Abstract
Background: Precision diagnostics are more and more important in intensive care units (ICUs), where rapid identification of infectious agents and antimicrobial resistance determinants is crucial for timely and appropriate treatment. Conventional microbiological methods are frequently limited by long turnaround times and reduced [...] Read more.
Background: Precision diagnostics are more and more important in intensive care units (ICUs), where rapid identification of infectious agents and antimicrobial resistance determinants is crucial for timely and appropriate treatment. Conventional microbiological methods are frequently limited by long turnaround times and reduced sensitivity, which may delay appropriate treatment. Nanopore sequencing allows rapid, direct, and long-read sequencing of DNA/RNA molecules without the need for amplification, avoiding biases introduced by NGS during amplification and library preparation and generating data in real time. Objectives: This narrative review aims to summarize current knowledge of nanopore technology in the ICU, discuss nanopore principles and current clinical applications in intensive care medicine, highlight its advantages and limitations, and explore future perspectives for integrating nanopore-based diagnostics into precision critical care. Methods: A literature search was performed using PubMed and Web of Science. The literature search was conducted with no lower restriction, covering English-language publications. Results: Nanopore sequencing enables real-time, long-read, single-molecule analysis of native nucleic acid molecules, rapid pathogen identification, antimicrobial resistance profiling, metagenomic analysis, and direct sequencing without amplification. Recent studies have proved the clinical utility of nanopore sequencing in critically ill patients with sepsis, bloodstream infections, hospital-acquired pneumonia, ventilator-associated pneumonia, and fungal and viral infections. Its portability, rapid turnaround time, and potential for point-of-care implementation make it particularly attractive for ICU settings. Conclusions: Nanopore sequencing technology represents a promising molecular diagnostic tool, but wider clinical implementation warrants further larger studies with clinical outcome endpoints, standardized bioinformatic pipelines, and clearer validation pathways. Full article
(This article belongs to the Section Nanomedicine and Nanobiology)
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15 pages, 5353 KB  
Review
Acute Respiratory Distress Syndrome in Hospital-Acquired/Ventilator-Associated Pneumonia
by Davide Calabretta, Claudia Accetturo and Antoni Torres
Med. Sci. 2026, 14(5), 514; https://doi.org/10.3390/medsci14050514 - 25 Aug 2026
Viewed by 156
Abstract
Acute respiratory distress syndrome (ARDS) represents a major cause of morbidity and mortality in critically ill patients and is most frequently triggered by severe respiratory infections, including nosocomial pneumonia. Hospital-acquired and ventilator-associated pneumonia (HAP/VAP) are highly prevalent in intensive care units and share [...] Read more.
Acute respiratory distress syndrome (ARDS) represents a major cause of morbidity and mortality in critically ill patients and is most frequently triggered by severe respiratory infections, including nosocomial pneumonia. Hospital-acquired and ventilator-associated pneumonia (HAP/VAP) are highly prevalent in intensive care units and share overlapping pathophysiological mechanisms with ARDS. Despite this close interrelationship, the proportion of patients with nosocomial pneumonia who subsequently develop ARDS remains poorly defined, underscoring the need to identify potential predisposing factors and improve early recognition of patients at risk. While the development of pneumonia in patients with an established diagnosis of ARDS has been extensively investigated, limited data are available on patients who develop ARDS as a complication of HAP/VAP. This narrative review summarizes the limited direct evidence on this topic and discusses potential clinical characteristics, risk factors, and predictive tools, while considering indirect evidence from CAP and broader ARDS populations. Full article
(This article belongs to the Section Pneumology and Respiratory Diseases)
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9 pages, 3669 KB  
Case Report
Multifactorial Respiratory and Circulatory Deterioration After Intraventricular Hemorrhage in a Young Obese Patient: Diagnostic Uncertainty in Neurocritical Care
by Takuto Nishihara, Yuta Arakaki, Kotaro Makita, Kosei Goto and Nobuo Kutsuna
Complications 2026, 3(3), 15; https://doi.org/10.3390/complications3030015 - 24 Aug 2026
Viewed by 122
Abstract
Respiratory and systemic deterioration after intraventricular hemorrhage (IVH) can be difficult to interpret when airway, infectious, neurogenic, and treatment-related factors develop in parallel. A 31-year-old obese man (body mass index 37.56 kg/m2) arrived late at night with right caudate hemorrhage, massive [...] Read more.
Respiratory and systemic deterioration after intraventricular hemorrhage (IVH) can be difficult to interpret when airway, infectious, neurogenic, and treatment-related factors develop in parallel. A 31-year-old obese man (body mass index 37.56 kg/m2) arrived late at night with right caudate hemorrhage, massive IVH, and acute hydrocephalus. Initial consciousness disturbance was mild and oxygenation was preserved, so close observation was selected. Approximately 6–7 h after arrival, worsening headache, restlessness, and progression of hydrocephalus prompted bilateral external ventricular drainage (EVD). The right EVD output remained poor despite lowering the drainage level. From Day 2 to Day 3, positional snoring, desaturation, tachypnea, fever, and inflammatory marker elevation developed; oxygenation improved with lateral positioning and head elevation, suggesting obesity-related upper-airway compromise with probable sleep-disordered breathing (SDB). On Day 4, recurrent hypoxemia required intubation, and computed tomography (CT) showed entrapment of the right lateral ventricle, prompting endoscopic clot evacuation. Chest CT after the second procedure showed bilateral lower-lobe consolidation consistent with hospital-acquired pneumonia (HAP), and cefazolin was changed to meropenem. Serial glucose measurements showed no persistent hypoglycemia, and early coagulation profiles were not markedly abnormal. However, cultures, arterial blood gas analysis, lactate measurement, echocardiography, abdominal CT, and autopsy were not obtained. Despite treatment, hyperpyrexia, persistent tachypnea, and vasopressor-dependent hypotension progressed, and he died on Day 7. The terminal course was most consistent with infection-associated circulatory collapse and ventilatory failure, while central hyperthermia and other unexcluded causes may have contributed. This case illustrates diagnostic uncertainty rather than a single confirmed terminal diagnosis and emphasizes early systemic evaluation when respiratory, thermal, and circulatory findings evolve after IVH. Full article
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24 pages, 386 KB  
Review
Carbapenem-Resistant Klebsiella pneumoniae in Healthcare-Associated Infections: Global and Regional Epidemiology, Resistance Mechanisms, and Therapeutic Strategies, with Particular Attention to Romania and Eastern Europe (2020–2025)
by Oana-Elena Ioniţă, Roxana-Carmen Cernat, Nicola-Maria Militaru, Maria-Elena Vodarici, Maria Fulina, Daniela Pițigoi, Elena Mocanu, Beatrice Severin, Claudia-Simona Cambrea and Irina-Magdalena Dumitru
Microorganisms 2026, 14(9), 1870; https://doi.org/10.3390/microorganisms14091870 - 23 Aug 2026
Cited by 1 | Viewed by 372
Abstract
Healthcare-associated infections (HAIs) caused by multidrug-resistant Klebsiella spp. represent a critical and escalating global public health threat. Carbapenem-resistant Klebsiella pneumoniae (CRKP) has been designated a critical-priority pathogen by the World Health Organization, and in the 2024 WHO Bacterial Priority Pathogens List, it was [...] Read more.
Healthcare-associated infections (HAIs) caused by multidrug-resistant Klebsiella spp. represent a critical and escalating global public health threat. Carbapenem-resistant Klebsiella pneumoniae (CRKP) has been designated a critical-priority pathogen by the World Health Organization, and in the 2024 WHO Bacterial Priority Pathogens List, it was the top-ranked pathogen overall. The convergence of carbapenem resistance with hypervirulence in emerging strains has further complicated therapeutic decision-making. This review provides a narrative synthesis of the evidence published between 2020 and 2025 on the prevalence, resistance mechanisms, molecular epidemiology, clinical outcomes, and therapeutic strategies for Klebsiella pneumoniae infections acquired in healthcare settings, with particular attention to the Eastern European and Romanian context. PubMed/MEDLINE, Embase, Web of Science, and the Cochrane Library were searched for relevant publications from January 2020 to June 2025, supplemented by WHO and ECDC surveillance reports. Studies were selected narratively for their relevance to the themes addressed. No new quantitative pooling was undertaken; all summary estimates reported below are cited from the published meta-analyses and surveillance reports that generated them. In the most recent global meta-analysis of hospital-acquired CRKP infection, which pooled 61 studies and 513,307 patients from 14 countries, the global prevalence of CRKP among nosocomial K. pneumoniae infections was 28.69% (95% CI: 26.53–30.86%), with pronounced regional variation from 14.29% in high-income North America to 66.04% in South Asia, and 42.05% in Western Europe. Pooled mortality among patients infected with CRKP has been estimated in a separate meta-analysis at 42.14%, compared with 21.16% among patients infected with carbapenem-susceptible strains, rising to 54.30% in bloodstream infections. Surveillance data place Romania third in Europe for carbapenem resistance among invasive K. pneumoniae isolates, at 50.30%, with a distinctive predominance of NDM plus OXA-48-like co-producers. Ceftazidime-avibactam is recommended for KPC- and OXA-48-producing strains, whereas metallo-beta-lactamase producers require aztreonam-containing combinations. CRKP in HAIs constitutes a global epidemiological emergency characterised by marked regional heterogeneity in carbapenemase distribution, high attributable mortality and rapidly evolving molecular profiles. Locally adapted surveillance, rapid molecular diagnostics, and stewardship programmes are required since empirical therapy cannot be standardised across regions. Full article
(This article belongs to the Section Public Health Microbiology)
15 pages, 411 KB  
Article
Comorbidity Burden and Radiological Features Associated with Legionella pneumophila Pneumonia: A Retrospective Case–Control Study
by Nicola Serra, Teresa Maria Assunta Fasciana, Paola Di Carlo, Anna Giammanco, Antonio Cascio, Luca Pipitò, Dario De Luca, Caterina Carollo, Valentina Caputo, Martina Maria Federico, Consolato Maria Sergi, Emanuele Grassedonio and Tommaso Vincenzo Bartolotta
Pathogens 2026, 15(8), 866; https://doi.org/10.3390/pathogens15080866 - 19 Aug 2026
Viewed by 371
Abstract
Background: Legionella pneumophila is a leading cause of community- and hospital-acquired pneumonia (HAP/CAP), although the clinical and radiological features associated with infection remain incompletely defined. This study aimed to identify clinical, comorbidity-related, and chest computed tomography (CT) features associated with L. pneumophila [...] Read more.
Background: Legionella pneumophila is a leading cause of community- and hospital-acquired pneumonia (HAP/CAP), although the clinical and radiological features associated with infection remain incompletely defined. This study aimed to identify clinical, comorbidity-related, and chest computed tomography (CT) features associated with L. pneumophila pneumonia in hospitalized adults with community-acquired pneumonia (CAP). Methods: A retrospective case–control study was conducted at a tertiary-care university hospital in Italy between January 2019 and August 2025. Eighty patients positive for L. pneumophila were compared with 79 controls negative for L. pneumophila. Demographic, clinical, microbiological, and radiological data were collected, and factors independently associated with infection were evaluated using multivariable logistic regression analysis. Results: Patients with L. pneumophila infection exhibited a greater comorbidity burden, particularly heart failure, and were more frequently smokers. Bilateral lung involvement and hilar/mediastinal lymphadenopathy were significantly more common among Legionella-positive patients, whereas overall pulmonary complications and bilateral pleural effusion were more frequently observed in controls. Multivariable analysis identified comorbidity burden as an independent positive predictor of L. pneumophila infection, while intensive care unit admission, oxygen therapy, and pulmonary complication score were independently associated with a lower likelihood of infection. Conclusions: The integration of comorbidity assessment with readily available chest CT findings may help raise clinical suspicion of L. pneumophila pneumonia and support consideration of appropriate diagnostic testing. Full article
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20 pages, 695 KB  
Article
Microbial Epidemiology and Antimicrobial Resistance Trends in Urinary Isolates from a Tertiary Hospital in Rome, Italy: A Retrospective Study (2022–2025)
by Fabio Ingravalle, Marco Ciotti, Giovanni Gaetti, Giustino Morlino, Giampiera Bulfone, Dorian Bardhi, Pamela Barbadoro, Francesca Pica, Stefano Di Carlo, Livio Serafinelli, Antonio Vinci and Massimo Maurici
Medicina 2026, 62(8), 1595; https://doi.org/10.3390/medicina62081595 - 19 Aug 2026
Viewed by 250
Abstract
Background and Objectives: Urinary tract infections are common in clinical practice, but in hospital settings, especially among older and catheterized patients, the microbial ecology and resistance burden may differ substantially from community-acquired infections. Local surveillance is therefore essential to support appropriate empirical [...] Read more.
Background and Objectives: Urinary tract infections are common in clinical practice, but in hospital settings, especially among older and catheterized patients, the microbial ecology and resistance burden may differ substantially from community-acquired infections. Local surveillance is therefore essential to support appropriate empirical treatment and antimicrobial stewardship. The objective is to describe the microbiological epidemiology of urinary isolates in a tertiary hospital and evaluate temporal trends in antimicrobial resistance among the most frequently isolated microorganisms. Materials and Methods: This retrospective observational study analyzed microbiology laboratory data from Tor Vergata University Hospital, Rome, Italy, collected from January 2022 to June 2025. After WHONET-based deduplication using a 30-day repeat-isolate rule, 5788 deduplicated urinary isolates and 85,888 microorganism–drug associations were included. Descriptive analyses, cumulative antibiograms/antimycograms, and quarterly resistance trends were assessed using univariable and multivariable regression analyses. Results: The population was predominantly elderly, inpatient, and catheter-exposed. Gram-negative organisms predominated, followed by Gram-positive bacteria and fungi. The most frequent isolates were E. coli, K. pneumoniae, E. faecalis, and C. albicans. Although microorganism distribution remained broadly stable over time, resistance increased in several clinically relevant organism–drug combinations, especially among major Enterobacterales. Conclusions: In this high-complexity hospital population, urinary isolates showed a relatively stable microorganism distribution but progressive changes in susceptibility among selected urinary isolates. These findings support setting-specific microbiological surveillance and stewardship-informed empirical treatment strategies. Full article
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20 pages, 641 KB  
Article
Clinical Outcomes of Pandrug-Resistant Versus Carbapenem-Resistant, Colistin-Susceptible Acinetobacter baumannii Infections: A Retrospective Analysis of a Prospective Multicentre Cohort
by Ilias Karaiskos, George L. Daikos, Sofia Michelidou, Christina Mouratidou, Alexandra Gavala, Aikaterini Gkoufa, Aikaterini Sakagianni, Eleni Mouloudi, Evdoxia Tsigou, Christina Routsi, Stamatis Karakonstantis, Christina Stamatopoulou, Despina Markantonaki, Foteini Veroniki, Maria Pirounaki, Anna Kyriakoudi, Sevasti Ampelioti, Charalambos Anastogiannis, Antonia Koutsoukou, Helen Giamarellou and Konstantinos Pontikisadd Show full author list remove Hide full author list
Antibiotics 2026, 15(8), 809; https://doi.org/10.3390/antibiotics15080809 - 19 Aug 2026
Viewed by 322
Abstract
Background: Pandrug-resistant (PDR) Acinetobacter baumannii represents a major therapeutic challenge in regions where carbapenem-resistant A. baumannii (CRAB) is endemic. Whether the PDR phenotype independently worsens clinical outcomes beyond the effects of disease severity and therapeutic limitations remains uncertain. This study compared the characteristics, [...] Read more.
Background: Pandrug-resistant (PDR) Acinetobacter baumannii represents a major therapeutic challenge in regions where carbapenem-resistant A. baumannii (CRAB) is endemic. Whether the PDR phenotype independently worsens clinical outcomes beyond the effects of disease severity and therapeutic limitations remains uncertain. This study compared the characteristics, management, and outcomes of severe infections caused by PDR and carbapenem-resistant, colistin-susceptible A. baumannii. Methods: We conducted a retrospective analysis of prospectively collected data across 11 tertiary-care hospitals in Greece (February 2022–June 2024). Consecutive adults with bloodstream infection or hospital-acquired/ventilator-associated pneumonia caused by CRAB or PDR A. baumannii were enrolled. The primary outcome was 14-day clinical failure; secondary outcomes included 28-day mortality, microbiological eradication, organ dysfunction, and organ-support-free days. Multivariable logistic and Cox regression analyses, before and after propensity score matching, were performed to adjust for confounding. Results: Among 142 patients, 91 (64%) had PDR and 51 (36%) had carbapenem-resistant, colistin-susceptible infections. Clinical failure occurred in 41% of patients and did not differ significantly between PDR and CRAB infections (39% vs. 45%; p = 0.440). Twenty-eight-day mortality was 33% and 22%, respectively (p = 0.139). After adjustment, the PDR phenotype was not independently associated with clinical failure or mortality. Higher APACHE II score and pneumonia independently predicted clinical failure, whereas sulbactam-containing therapy was associated with lower odds of failure (OR 0.24, 95% CI 0.07–0.79). Older age, higher SOFA score, impaired lactate clearance, and tigecycline-containing therapy independently predicted 28-day mortality. In matched analysis, PDR showed a non-significant upward trend in 28-day mortality (HR 2.36, 95% CI 0.97–5.76; p = 0.059). Conclusions: In severe A. baumannii infections, the PDR phenotype was not an independent determinant of clinical failure or short-term mortality. Patient severity and antimicrobial strategy were major outcome correlates; treatment associations should be interpreted cautiously given the observational design. Full article
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22 pages, 1860 KB  
Review
Valve-Specific Anatomy and Structural Determinants of Susceptibility to Infective Endocarditis: A Review
by Muhd Najmi Hakim Abd Rani, Afifah Mohamed, Zaleha Md Isa, Suhaini Kadiman and Taty Anna Kamarudin
J. Clin. Med. 2026, 15(16), 6281; https://doi.org/10.3390/jcm15166281 - 13 Aug 2026
Viewed by 417
Abstract
Background/Objectives: Infective endocarditis (IE) is a life-threatening cardiovascular infection with in-hospital mortality of 15–30% despite modern therapy. Contemporary IE demonstrates non-random valve involvement: aortic and mitral 35–45%, tricuspid 5–10% (30–50% in intravenous drug users [IVDU]), and pulmonary < 1%. These patterns implicate valve-specific [...] Read more.
Background/Objectives: Infective endocarditis (IE) is a life-threatening cardiovascular infection with in-hospital mortality of 15–30% despite modern therapy. Contemporary IE demonstrates non-random valve involvement: aortic and mitral 35–45%, tricuspid 5–10% (30–50% in intravenous drug users [IVDU]), and pulmonary < 1%. These patterns implicate valve-specific anatomy and hemodynamics as central determinants of susceptibility. This narrative review examines the reported distribution of IE across the aortic, mitral, tricuspid and pulmonary valves and summarises the anatomical, haemodynamic, structural, microbial and patient-related factors associated with valve-specific susceptibility. Methods: A structured narrative review of English-language literature was conducted using PubMed/MEDLINE, Embase, Scopus, and Google Scholar (January 1990–March 2026). Search terms included “infective endocarditis,” “valve anatomy,” “hemodynamics,” “bicuspid aortic valve,” “prosthetic valve endocarditis,” and “transcatheter aortic valve replacement (TAVR) endocarditis.” We included anatomical studies, clinical cohorts, surgical series, imaging research, and international guidelines. Evidence was synthesized narratively using Oxford Centre for Evidence-Based Medicine (CEBM) levels. Results: IE susceptibility follows a biologically coherent gradient determined by the interaction between valve anatomy, hemodynamic stress, endothelial injury, and structural substrate. The aortic valve is most vulnerable because of high shear stress, congenital abnormalities such as bicuspid aortic valve, and direct continuity with the cardiac fibrous skeleton, predisposing to peri-annular extension. Mitral valve IE is largely conditional upon pre-existing structural disease, particularly mitral valve prolapse, rheumatic heart disease, and mitral annular calcification, and is characterized by a high risk of systemic embolization. Tricuspid valve IE reflects the interaction between low-pressure hemodynamics and acquired patient-specific modifiers, including intravenous drug use, cardiovascular implantable electronic devices, and congenital heart disease. Pulmonary valve IE remains uncommon because of favorable native hemodynamics but occurs predominantly in repaired congenital heart disease, right ventricular outflow tract reconstruction, and prosthetic pulmonary valves. Across all valve types, multimodality imaging and anatomical assessment consistently influence complication detection, surgical planning, and long-term surveillance. Conclusions: IE involvement is unevenly distributed among the cardiac valves. Aortic and mitral involvement predominate, tricuspid involvement is strongly influenced by injection drug use and intracardiac devices, and pulmonary-valve IE remains rare and is principally associated with congenital abnormalities or prosthetic material. These patterns highlight the possible contributions of haemodynamic stress, pre-existing structural abnormalities, and age-related valvular changes to the greater susceptibility of left-sided valves. Full article
(This article belongs to the Section Cardiology)
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18 pages, 1604 KB  
Article
Data-Driven Prediction of Hospital-Acquired Infections in Greek ICUs: Comparative Analysis of Machine Learning and Traditional Techniques
by Vasileios Georgakis and Panos Xenos
Algorithms 2026, 19(8), 667; https://doi.org/10.3390/a19080667 - 11 Aug 2026
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Abstract
Hospital-acquired infections (HAIs) constitute a critical challenge in intensive care units (ICUs). In Greece, data limitations due to incomplete electronic record implementation hinder advanced risk management. This study aims to compare the predictive performance of machine learning algorithms versus traditional techniques for HAI [...] Read more.
Hospital-acquired infections (HAIs) constitute a critical challenge in intensive care units (ICUs). In Greece, data limitations due to incomplete electronic record implementation hinder advanced risk management. This study aims to compare the predictive performance of machine learning algorithms versus traditional techniques for HAI risk stratification in non-digitized ICU settings. We analyzed 1500 anonymized ICU patient records from two general hospitals in Athens, comparing Logistic Regression against LASSO, Random Forest, and Gradient Boosting Machine (GBM), while unsupervised K-means clustering identified latent patient profiles. Invasive devices were found to be the strongest predictors; GBM identified urinary catheter use as the dominant factor (Relative Influence Score: 36.66), and all models showed high performance convergence (AUC ≈ 0.85 to 0.919). K-means clustering (Silhouette width 0.47) revealed co-occurring risk factors, such as smoking and alcohol (r = 0.60). Combining machine learning with classical statistics enhances risk stratification, offering superior granularity in risk ranking to support targeted device stewardship and individualized prevention strategies in ICUs. Full article
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24 pages, 4378 KB  
Article
A Step into Medicine for New Silver(I) Complexes—From Antimicrobial Properties to Regenerative Potential
by Kseniya A. Koshenskova, Katia Barbaro, Inna V. Fadeeva, Fedor M. Dolgushin, Lada S. Razvorotneva, Ekaterina A. Samoilenko, Maria A. Teplonogova, Irina L. Udyanskaya, Veronica Manescu (Paltanea), Iulian Vasile Antoniac, Igor L. Eremenko, Julietta V. Rau, Adam Razvan and Irina A. Lutsenko
Int. J. Mol. Sci. 2026, 27(16), 7167; https://doi.org/10.3390/ijms27167167 - 11 Aug 2026
Viewed by 311
Abstract
Silver complexes are potential antimicrobial agents that trigger destructive processes in bacterial cells, leading to their death. Their ability to simultaneously stimulate tissue regenerative properties also makes them promising components in the development of medical materials. A common complication arising from the treatment [...] Read more.
Silver complexes are potential antimicrobial agents that trigger destructive processes in bacterial cells, leading to their death. Their ability to simultaneously stimulate tissue regenerative properties also makes them promising components in the development of medical materials. A common complication arising from the treatment of bone tissue damage is hospital-acquired infection, requiring repeated revision surgeries. The use of bone grafts with antibacterial properties can help solve this problem. New pyridine complexes of silver(I) with thiophenecarboxylic (Htph) and nitric acid anions have been synthesized: [Ag(tph)(py)2]n·nHtph (1, py—pyridine) and [Ag(bpy)]n·nNO3 (2, bpy—4,4′-bipyridine), the structures of which have been determined using X-ray analysis. Despite the fact that 2 is a known structure, we were able to obtain new cell parameters by conducting an X-ray diffraction analysis at a lower temperature of 100 K. According to X-ray diffraction data, both compounds are polymers in which the cationic part is formed by linear fragments (CNAg = 2) [Ag(py)2]+ (1)/[Ag(bpy)2]+ (2), and acid anions act as counterions. The presence of intermolecular and non-valent π-π interactions provides additional stabilization of supramolecular levels. Aqueous solutions 1 and 2 are stable for two weeks, according to UV-Vis data. Incubation of crosslinked resorbable polymer matrices functionalized separately with complex 1 or 2 in saline solution revealed a sustained, prolonged release of silver ions over 14 days. Evaluation of the antimicrobial potential of 1 and 2 against Gram-positive/Gram-negative species and fungi demonstrated moderate, controlled bacteriostatic growth inhibition broadly across tested strains, confirming the bifunctionality of the crosslinked hybrid matrix systems—moderate suppression of bacterial growth while simultaneously stimulating tissue regeneration. An increase in cell viability, expressed in their active proliferation under the influence of complexes 1 and 2 up to 156%, as well as calcium deposition, indicates the high cytocompatibility and pro-mineralization capacity of the new compounds. Full article
(This article belongs to the Special Issue Antimicrobial Materials: Molecular Developments and Applications)
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