• 제목/요약/키워드: Complex infections

검색결과 111건 처리시간 0.024초

Oroantral fistula after a zygomaticomaxillary complex fracture

  • Ahn, Seung Ki;Wee, Syeo Young
    • 대한두개안면성형외과학회지
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    • 제20권3호
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    • pp.212-216
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    • 2019
  • Zygomaticomaxillary complex (ZMC) fractures account for a substantial proportion of trauma cases. The most frequent complications of maxillofacial fracture treatment are infections and soft tissue flap dehiscence. Postoperative infections nearly always resolve in response to oral antibiotics and local wound care. However, a significant infection can cause a permanent fistula. A 52-year-old man visited our clinic to treat an oroantral fistula (OAF), which was a late complication of a ZMC fracture. Postoperatively, the oral suture site dehisced, exposing the absorbable plate. However, he did not seek treatment. After 5 years, an OAF formed with a $2.0{\times}2.0cm$ bony defect on the left maxilla. We completely excised the OAF, harvested a piece of corticocancellous bone from the iliac crest, inserted the harvested bone into the defect, and covered the soft tissue defect with a buccal mucosal transposition flap. Although it is necessary to excise OAFs, the failure rate is higher for large OAFs (> 5 mm in diameter) because of the extensive defect in the underlying bone that supports the overlying flap. Inappropriate management of postoperative wounds after a ZMC fracture can lead to disastrous outcomes, as in this case. Therefore, proper postoperative treatment and follow-up are essential.

Dual-Toehold-Probe-Mediated Exonuclease-III-Assisted Signal Recycles Integrated with CHA for Detection of mecA Gene Using a Personal Glucose Meter in Skin and Soft Tissue Infection

  • Jiaguang Su;Wenjun Zheng
    • Journal of Microbiology and Biotechnology
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    • 제33권12호
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    • pp.1692-1697
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    • 2023
  • Staphylococcus aureus integrated with mecA gene, which codes for penicillin-binding protein 2a, is resistant to all penicillins and other beta-lactam antibiotics, resulting in poor treatment expectations in skin and soft tissue infections. The development of a simple, sensitive and portable biosensor for mecA gene analysis in S. aureus is urgently needed. Herein, we propose a dual-toehold-probe (sensing probe)-mediated exonuclease-III (Exo-III)-assisted signal recycling for portable detection of the mecA gene in S. aureus. When the target mecA gene is present, it hybridizes with the sensing probe, initiating Exo III-assisted dual signal recycles, which in turn release numerous "3" sequences. The released "3" sequences initiate catalytic hairpin amplification, resulting in the fixation of a sucrase-labeled H2 probe on the surface of magnetic beads (MBs). After magnet-based enrichment of an MB-H1-H2-sucrase complex and removal of a liquid supernatant containing free sucrase, the complex is then used to catalyze sucrose to glucose, which can be quantitatively detected by a personal glucose meter. With a limit of detection of 4.36 fM for mecA gene, the developed strategy exhibits high sensitivity. In addition, good selectivity and anti-interference capability were also attained with this method, making it promising for antibiotic tolerance analysis at the point-of-care.

Recurrent Pseudomonas aeruginosa Infection in Chronic Lung Diseases: Relapse or Reinfection?

  • Yum, Ho-Kee;Park, I-Nae;Shin, Bo-Mun;Choi, Soo-Jeon
    • Tuberculosis and Respiratory Diseases
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    • 제77권4호
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    • pp.172-177
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    • 2014
  • Background: Pseudomonas aeruginosa infection is particularly associated with progressive and ultimately chronic recurrent respiratory infections in chronic obstructive pulmonary disease, bronchiectasis, chronic destroyed lung disease, and cystic fibrosis. Its treatment is also very complex because of drug resistance and recurrence. Methods: Forty eight cultures from 18 patients with recurrent P. aeruginosa pneumonia from 1998 to 2002 were included in this study. Two or more pairs of sputum cultures were performed during 2 or more different periods of recurrences. The comparison of strains was made according to the phenotypic patterns of antibiotic resistance and chromosomal fingerprinting by pulsed field gel electrophoresis (PFGE) using the genomic DNA of P. aeruginosa from the sputum culture. Results: Phenotypic patterns of antibiotic resistance of P. aeruginosa were not correlated with their prior antibiotic exposition. Fifteen of 18 patients (83.3%) had recurrent P. aeruginosa pneumonia caused by the strains with same PFGE pattern. Conclusion: These data suggest that the most of the recurrent P. aeruginosa infections in chronic lung disease occurred due to the relapse of prior infections. Further investigations should be performed for assessing the molecular mechanisms of the persistent colonization and for determining how to eradicate clonal persistence of P. aeruginosa.

폐구균 단백 결합 백신의 효능 및 효과 (Efficacy and effectiveness of pneumococcal conjugate vaccine in children)

  • 이환종
    • Clinical and Experimental Pediatrics
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    • 제49권3호
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    • pp.235-241
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    • 2006
  • Streptococus pneumoniae is an important cause of invasive infections as well as non-invasive infections such as acute otitis media and sinusitis both in children and adults. Resistance of S. pneumoniae to multiple antimicrobials is increasing and poses therapeutic challenges, and prevention became more important. 23-valent polysaccharide vaccine has been used for the last several decades, but is not effective in children <2 years of age, the highest risk group of invasive diseases. Recently, a 7-valent pneumococcal protein conjugate vaccine(PCV) which is effective in infants and young children has been developed. The efficacy of PCVs against invasive pneumococcal disease and pneumonia is well established and is documented in several well-conducted studies. However, the effect of PCVs on otitis media is less obvious and more complex. PCVs clearly reduce diseases caused by vaccine-type(VT) pneumococci, but replacement of VT serotypes by non-VT serotypes in nasopharyngeal carriage of S. pneumoniae is responsible for the increase in acute otitis media caused by non-VT serotypes. Three years after introduction of PCV in the US, some increase of invasive infections with serotype 19A possibly due to serotype switching within certain vaccine type strains has been noted. Since most antibiotic-resistance in S. pneumoniae is confined to VT serotypes, vaccine use also reduces antibiotic resistance. With development of PCV, there was a great advance in the prevention of pneumococcal diseases, but replacement with potential virulent organisms and development of antibiotic resistance in non-VT pneumococci is a possibility that needs careful monitoring.

충청지역의 임상검체로부터 분리된 Acinetobacter calcoaceticus-baumannii Complex를 대상으로 항균제 내성 유전자 비교분석 (Distribution of Antimicrobial Resistant Genes in Acinetobacter calcoaceticus-baumannii Complex Isolated from Clinical Specimens in Chungcheong, Korea)

  • 성지연
    • 대한임상검사과학회지
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    • 제49권4호
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    • pp.427-434
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    • 2017
  • Acinetobacter calcoaceticus-baumannii (Acb) complex에 속한 종들은 빈번하게 병원감염 및 기회감염을 일으킨다. 또한 다제내성인 경우가 많아 이 균들의 감염증 치료를 위한 항균제 선택이 매우 제한적이다. 본 연구에서는 ciprofloxacin 내성 Acinetobacter species 53균주를 대상으로 fluoroquinolone 내성기전을 조사했다. 항균제 감수성 양상을 조사하기 위해 디스크확산법이 시행되었다. Fluoroquinolone 내성과 관련된 유전자 및 돌연변이 검출을 위해 PCR과 염기서열분석이 이루어졌다. 본 연구에서 수집된 53균주의 ciprofloxacin 내성 Acinetobacter 중 47균주가 gyrA 유전자의 83번째 serine 아미노산 잔기와 parC 유전자의 80번째 serine 아미노산 잔기가 leucine 잔기로 치환된 sense mutations 가지고 있는 것으로 나타났다. gyrA와 parC 유전자에 sense mutations을 가지고 있는 47균주 중 44균주가 A. baumannii 였고 3균주는 A. pittii였다. 본 연구에서 조사대상이 되었던 Acb complex 균주들 중 plasmid-mediated quinolone resistance (PMQR) determinants를 가지고 있는 균주는 한나도 없었다. 46 균주의 ciprofloxacin 내성 A. baumannii 는 A, B, 또는 F형의 banding pattern을 보였는데 이는 충청지역에 위치한 일개의 병원에 ciprofloxacin 내성 A. baumannii가 수평확산 되어 있음을 의미한다. Fluoroquinolone 내성 Acb complex 균주의 집락화 및 확산을 막기 위해서 다제내성 균주들을 대상으로 항균제 내성인자들을 지속적으로 조사하고 모니터링할 필요가 있을 것으로 사료된다.

Exploring Staphylococcus aureus Virulence Factors; Special Emphasis on Staphyloxanthin

  • Yehia, Fatma Al-zahraa A.;Yousef, Nehal;Askoura, Momen
    • 한국미생물·생명공학회지
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    • 제49권4호
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    • pp.467-477
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    • 2021
  • Staphylococcus aureus is a well-known pathogen that can cause diseases in humans. It can cause both mild superficial skin infections and serious deep tissue infections, including pneumonia, osteomyelitis, and infective endocarditis. To establish host infection, S. aureus manages a complex regulatory network to control virulence factor production in both temporal and host locations. Among these virulence factors, staphyloxanthin, a carotenoid pigment, has been shown to play a leading role in S. aureus pathogenesis. In addition, staphyloxanthin provides integrity to the bacterial cell membrane and limits host oxidative defense mechanisms. The overwhelming rise of Staphylococcus resistance to routinely used antibiotics has necessitated the development of novel anti-virulence agents to overcome this resistance. This review presents an overview of the chief virulence determinants in S. aureus. More attention will be paid to staphyloxanthin, which could be a possible target for anti-virulence agents.

Multiclass Botnet Detection and Countermeasures Selection

  • Farhan Tariq;Shamim baig
    • International Journal of Computer Science & Network Security
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    • 제24권5호
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    • pp.205-211
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    • 2024
  • The increasing number of botnet attacks incorporating new evasion techniques making it infeasible to completely secure complex computer network system. The botnet infections are likely to be happen, the timely detection and response to these infections helps to stop attackers before any damage is done. The current practice in traditional IP networks require manual intervention to response to any detected malicious infection. This manual response process is more probable to delay and increase the risk of damage. To automate this manual process, this paper proposes to automatically select relevant countermeasures for detected botnet infection. The propose approach uses the concept of flow trace to detect botnet behavior patterns from current and historical network activity. The approach uses the multiclass machine learning based approach to detect and classify the botnet activity into IRC, HTTP, and P2P botnet. This classification helps to calculate the risk score of the detected botnet infection. The relevant countermeasures selected from available pool based on risk score of detected infection.

Pasteurella multocida type A의 lipopolysaccharide-protein 복합체의 특성 (Characterization of a lipopolysaccharide-protein complex of type A Pasteurella multocida)

  • 류효익;김철중
    • 대한수의학회지
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    • 제40권1호
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    • pp.63-71
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    • 2000
  • An immunogenic, high molecular weight lipopolysaccharide (LPS)-protein complex isolated from a potassium thioncyanate extract of a Pasteurella multocida (P multocida ; strain P-2383, capsular type A and somatic type 3) was characterized. Chemical analysis of the complex by gas chromatography on a capillary column demonstrated that this complex contained most of the chemical constituents characteristic of LPS extracted by the phenol-water methed from the whole bacterium. However, there was proportionately more carbohydrate than fatty acid in the complex in contrast to LPS in which fatty acid seemed to be in excess. When toxicity of the complex was evaluated in 10-day-old chicken embryos, the complex was less toxic ($LD_{50}=12.72{\mu}g$) than the purified LPS ($LD_{50}=0.44{\mu}g$). The $LD_{50}$, of the LPS moiety extracted from the complex was $5.24{\mu}g$. Composition of the complex was analyzed by SDS-PAGE with silver staining and Western immunoblotting. The complex did not migrate through the polyacrylamide gel unless dissociated with SDS. The complex dissociated with SDS contained at least 32 different protein and polysaccharide components: 18 components reacted with an antiserum against the complex. There was no significant compositional variation between the complexes from different strains, but quantitative differences in individual components were noted. When cross-protectivity of the complex was evaluated in mice, this complex provided substantial protection not only against the homologous bacteriun but also against different P multocida strains of the same serotype. LPS-protein complexes isolated by the same method from other strains also induced protection against an challenge with P-2383.

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Synthesis and radiolabeling of PEGylated dendrimer-G2-Gemifloxacin with 99mTc to Biodistribution study in rabbit

  • Mohtavinejad, Naser;Dolatshahi, Shaya;Amanlou, Massoud;Ardestani, Mehdi Shafiee;Asadi, Mehdi;Pormohammad, Ali
    • Advances in nano research
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    • 제10권5호
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    • pp.461-470
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    • 2021
  • Infection is one of the major mortality causes throughout the globe. Nuclear medicine plays an important role in diagnosis of deep infections such as osteomyelitis, arthritis infection, heart valve and heart prosthesis infections. Techniques such as labeled leukocytes are sensitive and selective for tracking the inflammations but they are not suitable for differentiating infection from inflammation. Anionic linear-globular dendrimer-G2 was synthesized then conjugation to gemifloxacin antibiotic. The structures were identified by FT-IR, 1H-NMR, C-NMR, LC-MS and DLS. The toxicity of gemifloxacin and dendrimer-gemifloxacin complex was compared by MTT test. Dendrimer-G2-gemifloxacin was labeled by Technetium-99m and its in-vitro stability and radiochemical purity were investigated. In-vivo biodistribution and SPECT imaging were studied in a rabbit model. Identify and verify the structure of the each object was confirmed by FT-IR, 1H-NMR, C-NMR and LC-MS, also, the size and charge of this compound were 128 nm and -3/68 mv respectively. MTT test showed less toxicity of the dendrimer-G2-gemifloxacin than free gemifluxacin (P < 0.001). Radiochemical yield was > %98. Human serum stability was 84% up to 24 h. Biodistribution study at 50 min, 24 and 48 h showed that the complex is significantly absorbed by the intestine and accumulation in the lungs and affects them, finally excreted through the kidneys, biodistribution results are consistent with results from full image means of SPECT/CT technique.

Antimicrobial surfaces for craniofacial implants: state of the art

  • Actis, Lisa;Gaviria, Laura;Guda, Teja;Ong, Joo L.
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제39권2호
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    • pp.43-54
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    • 2013
  • In an attempt to regain function and aesthetics in the craniofacial region, different biomaterials, including titanium, hydroxyapatite, biodegradable polymers and composites, have been widely used as a result of the loss of craniofacial bone. Although these materials presented favorable success rates, osseointegration and antibacterial properties are often hard to achieve. Although bone-implant interactions are highly dependent on the implant's surface characteristics, infections following traumatic craniofacial injuries are common. As such, poor osseointegration and infections are two of the many causes of implant failure. Further, as increasingly complex dental repairs are attempted, the likelihood of infection in these implants has also been on the rise. For these reasons, the treatment of craniofacial bone defects and dental repairs for long-term success remains a challenge. Various approaches to reduce the rate of infection and improve osseointegration have been investigated. Furthermore, recent and planned tissue engineering developments are aimed at improving the implants' physical and biological properties by improving their surfaces in order to develop craniofacial bone substitutes that will restore, maintain and improve tissue function. In this review, the commonly used biomaterials for craniofacial bone restoration and dental repair, as well as surface modification techniques, antibacterial surfaces and coatings are discussed.