• Title/Summary/Keyword: 세균성

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Predictors of Meningitis in Febrile Infants Aged 3 Months or Younger (열이 있는 3개월 이하의 영아에서 수막염의 예측에 대한 연구)

  • Song, Hyang Soon;Kim, Eun Ok;Jang, Young Taek
    • Pediatric Infection and Vaccine
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    • v.16 no.1
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    • pp.40-46
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    • 2009
  • Purpose : The purpose of this study was to identify useful predictors for diagnosing bacterial meningitis and performing CSF studies in febrile infants three months or younger. Methods : Six hundred and fifty two febrile infants with a rectal temperature ${\geq}38.0^{\circ}C$ presented from January 2003 to April 2008 and were retrospectively studied. The total white blood cell count (WBC), band count, absolute neutrophil count (ANC), quantitative C-reactive protein (CRP) and blood cultures were performed on admission. The clinical variables associated with bacterial meningitis were analyzed. Results : In patients with bacterial meningitis, the clinical variables including CRP (P=0.036), band count (P=0.037), ANC (P=0.036) and age (P=0.001) were significantly different. The area under the receiver-operating characteristic curve was 0.969 for CRP, 0.946 for the band count, 0.765 for the ANC and 0.235 for age. A CRP cutoff point of 8 mg/dL was determined to maximize both the sensitivity and specificity (sensitivity 83%, specificity 95%, likelihood ratio 16.6). A CRP concentration of <7 mg/dL "ruled-out" bacterial meningitis, with a likelihood ratio of 0.17, a posttest probability of <0.1% and negative predictive value 91%. A CRP concentration greater than 9 mg/dL had a much higher likelihood ratio (20.1) than the band count (16.6) and ANC (2.2). Conclusion : The CRP concentration was a useful laboratory test for the differential diagnosis of bacterial meningitis among febrile infants three months of age or younger. A CRP concentration of <7 mg/dL effectively ruled out bacterial meningitis; a value ${\geq}9mg/dL$ increased the clinical suspicion of bacterial meningitis and the need for CSF evaluation.

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Evaluation of Bioassay Methods to Assess Bacterial Soft Rot Resistance in Radish Cultivars (무 품종의 세균성 무름병 저항성 생물검정법 평가)

  • Afroz, Tania;Hur, Onsook;Ro, Nayoung;Lee, Jae-eun;Hwang, Aejin;Kim, Bichsaem;Assefa, Awraris Derbie;Rhee, Ju Hee;Sung, Jung Sook;Lee, Ho-sun;Hahn, Bum-Soo
    • Journal of Life Science
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    • v.31 no.7
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    • pp.609-616
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    • 2021
  • Bacterial soft rot, caused by Pectobacterium carotovorum subsp. carotovorum (Pcc), is one of the destructive diseases of radish (Raphanus sativus) in Asian countries. The objective of this study was to establish an efficient bioassay method for the evaluation of bacterial soft rot resistance in commercial radish cultivars. First, an efficient bioassay method for examining resistance to bacterial soft rot in commercial radish cultivars was investigated. Six commercial radish cultivars were tested under various conditions: two temperatures (25℃ and 30℃), three inoculations methods (drenching, spraying, and root dipping), and two growth stages (two- and four-leaf stages). The results suggested that spraying with 1×106 cfu/ml of bacterial inoculums during the four-leaf stage and incubating at 30℃ could be the most efficient screening method for bacterial soft rot resistance in commercial radish cultivars. Second, we investigated the degree of resistance of 41 commercial radish cultivars to five Pcc isolates, namely KACC 10225, KACC 10343, KACC 10421, KACC 10458, and KACC 13953. KACC 10421 had the strongest susceptibility in terms of moderately resistant disease response to bacterial soft rot. Out of the 41 radish cultivars, 13 were moderately resistant to this pathogen, whereas 28 were susceptible. The moderately resistant radish cultivars in this investigation could serve as resistance donors in the breeding of soft rot resistance or could be used to determine varietal improvement for direct use by breeders, scientists, farmers, researchers, and end customers.

Gut Microbiome and Gastrointestinal Diseases (장내 세균총과 위장관 질환)

  • Hwang, Soonjae;Kim, Sung Hoon;Rhee, Ki-Jong
    • Korean Journal of Clinical Laboratory Science
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    • v.50 no.1
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    • pp.11-19
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    • 2018
  • The gut microbiome has been studied extensively over the past decade with most scientific reports focused on the adverse role of the gut microbiome on gastrointestinal diseases. For example, the altered gut microbiome exacerbates the development of immune system-mediated damage in many diseases. The most studied pathologies include irritable bowel syndrome, inflammatory bowel diseases, and colitis-associated cancer. On the other hand, intestinal microflora is also beneficial and contributes to the intestinal physiology by the synthesis of vitamins, production of short chain fatty acids and bile acid metabolism, thereby maintaining gut homeostasis. Therefore, the balance between commensal and pathogenic bacteria populations influences mainly the maintenance of intestinal health. Changes in the intestinal microflora have been suspected to be the underlying causes of multiple diseases. Despite the immense amount of published data, the optimal gut microbiome composition is still controversial. This review briefly outlines the connection between the gut microbiome and critical gastrointestinal diseases focusing on three prominent intestinal disorders: irritable bowel syndrome, inflammatory bowel diseases, and colitis-associated cancer disorders. Finally, intervention strategies using natural products for the alleviation of these diseases and the maintenance of a health gut microbiome are suggested.

Possibility of Combined Meningitis in Under 90-Day-Old Infants With Urinary Tract Infection (생후 90일 미만 영아의 요로 감염에서 세균성 수막염의 동반 가능성)

  • Hwang, Jun Ho;Kim, Su Yeong;Lee, Na Mi;Yi, Dae Yong;Yun, Sin Weon;Chae, Soo Ahn;Lim, In Seok;Park, Ji Young
    • Pediatric Infection and Vaccine
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    • v.29 no.2
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    • pp.84-95
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    • 2022
  • Purpose: Urinary tract infections (UTIs) are the most common serious bacterial infections in young infants. Lumbar puncture (LP) has been used to diagnose coexisting meningitis in infants under 90 days of age with suspected UTI in many hospitals. However, the incidence of bacterial meningitis associated with UTIs is low. We aimed to describe the prevalence of concomitant bacterial meningitis in young infants with UTIs. Methods: The medical records of infants with the first episode of UTI admitted to the Chung-Ang University Hospital from January 2010 to December 2019 were retrospectively reviewed. Infants aged < 90 days who underwent LP with initial evaluation were included. Demographic and clinical features, laboratory findings, and imaging findings were collected and analyzed. Results: Eighty-six infants with UTIs were enrolled in the study. The median age was 61.5 days (interquartile range, 42.3-73.8 days) and boys (90.7%) were predominant. Escherichia coli was the most common pathogen (n=80, 93.0%) and followed by Klebsiella species (n=5, 5.8%). Fifteen (18.1%) specimens produced extended spectrum β-lactamase (ESBL). Five (5.8%) infants had positive blood culture results. Seven (8.1%) infants showed pleocytosis in the cerebrospinal fluid, but none had coexisting bacterial meningitis. Twenty-four (30.8%) infants showed renal dilatation or hydronephrosis on ultrasonography. Dimercaptosuccinic acid (DMSA) scans revealed cortical defects in 17 (21.3%) infants while voiding cystourethrography revealed vesicoureteral reflux in 6 (46.2%) infants. Conclusion: Co-existing bacterial meningitis was not observed in young infants with UTIs. LP could not be routinely performed considering the clinical condition of <90 days old UTI patients.

Screening and Characterization of Probiotic Strains for Prevention of Bacterial Fish Diseases (어류의 세균성 질병 예방을 위한 Probiotic균주의 선발 및 특성)

  • 허문수;양병규;전유진
    • Microbiology and Biotechnology Letters
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    • v.31 no.2
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    • pp.129-134
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    • 2003
  • The purpose of the present study was to screen the effective of lactic acid bacteria (LAB) as probiotics, which are able to protect aquacultural fish pathogenic bacteria, and investigate their characterization. Twenty strains of lactic acid bacteria were isolated from fish intestine, fermented fish foods and kimchis. These bacteria were screened for antagonistic activity against fish pathogenic bacteria. Seven tested LAB strains were able to inhibit the fish pathogenic bacteria, including Vibrio anguillarum, Edwardsiella tarda, and Streptococcus sp.. Of the probiotic candidates, BK19 strain isolated from fermented pollack viscera indicated the largest inhibition activity. Moreover, this strain showed a resistance over low pH and antibiotic agents. Therefore this probiotic candidate BK19 was finally selected and identified as a probiotic strain. This particular probiotic bacteria was identified as Lactobacillus sakei BK19 by biochemical characteristics and 165 rRNA PCR amplification.

원유의 세균학적 질:법적요구와 지불제도 - EU와 IDF 회원국 현황 -

  • 손봉환
    • Journal of the korean veterinary medical association
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    • v.33 no.4
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    • pp.222-234
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    • 1997
  • 유질은 성분과 위생상태로 결정되어 진다. 질/위생은 사람건강 보호와 적정소비에 대한 관점에서 보면 장점인 영양적 중요성에서 오는 욕망을 이르키는 성질과 일정범위의 좋은점 사이에 원유변화와 만나게되는 것이 필요하다. 높은 질/위생적 원유에 대한 가치의 주요 평가는 : - 부패미 생물의 낮은 수 - 유방염 병원성균이 포함된 병원성군이 없거나 대단히 낮은 수 - 가능한 한 멀리 피할 것은 잔류와 오염 그리고 또는 최고잔류한계(Maximum Residue linits. )이하를 지킬 것. 우유내 부패세균은 다음 군에서 주요 우유성분에 대한 공격의 그들 주요점에 의하여 세분할 수 있다. - 당분해(Glycolytes) - Streptococci, lactobacill; - 단백질 분해(Proteolytes) - Pseudomonads, Enterobacteriaceae, Aerobic sporeformer - 지방분해(Lipolytes) - Pseudomonads, Micncocci, Aeromonads, Coryneb acteria 원유내 부패세균의 존재와 분열은 우유성분 변화와 생산품의 질에 영향을 줄 것이다. 더구나 원유의 맛은 역의 영향이 될 것이며 열 안정성 세균성 효소는 생산품에서 계속적으로 작용된다. 특히 오랜 저장시에 그러하다. 그리고 안정성, cream의 맛과 UHT 우유에 나쁜 영향을 준다. 이 병원성 세균을 고전적 미생물과 최근 발견된 미생물이 포함된다. 현재는 Salmonella, 병원성 E. Coli 균주, Listeria monocytogenes, Campylobacter Jejuni, Yersinia enterocolitica, Staphylococcm aureu는 대단히 중요하다. 원유의 세균학적 질과 지불제도에 대한 법적요구는 우유위생지침 92/94 EEC와 IDF설문 2893/A(전문가모임 A8군)의 결과를 기준으로 설명되었다. IDF Nr. 305/1995는 농장 지불제도에 관한 정보가92/93년 동안 IDF국가들 사이 차이나는 실제적 위치가 실려있다. 지불제도의 차이나는 현상은 보고의 초점과 연관 유질, 위생적 질, 우유시료채취, 수집방법론 그리고 여러가지 지불공식과 관계된 조사는 논쟁이 있었다. 현재 있는 자료를 제시한 몇 나라는 1992년에 응용한 것이고, 기타는 그후 응답으로 1993년과 1994년에 있던 것이 제시되었다. 식품위생에서 법적인 요구는 HACCP제도가 더욱더 추가로 포함된다. 더우기 위험분석은 위생과 질에 관련시켜 모든 연결결정에 대하여는 과학적 근거가 있어야 한다.

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Molecular Cloning and Expression of the Novel Attacin-Like Antibacterial Protein Gene Isolated from the Bombyx mori (집누에로부터 새로운 attactin 유산 항세균성 펩타이드 유전자의 분리 및 발현)

  • 윤은영;김상현;강석우;진병래;김근영;김호락;한명세;강석권
    • Korean journal of applied entomology
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    • v.36 no.4
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    • pp.331-340
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    • 1997
  • Hyalophora cecropia attacin-like antibacterial gene was isolated from Bombyx mori induced with nonpathogenic bacteria. It was expressed in Spodopfera frugiperda 9 (Sf9 cells using baculovirus expression vector system (BEVS), and examined its antibacterial activity. With a cDNA library constructed from fifthinstar B. mori injected with Escherichia coli(4 X IOhcellsllarva), differential screening was performed using naive and induced mRNA probes. BmInc6 clone was screened by partial nucleotide sequence and GenBank database analysis. A complete nucleotide sequence of Bmlnc6 cDNA was determined (GenBank, AF005384). Its insert size was 852 bp and had open reading frame that started translation at position 35 and stopped at 679. And its putative polyadenylational signal existed at 812 bp. The number of amino acid deduced from Bmlnc6 cDNA was 214 and hydropathy analysis showed that this peptide was hydrophilic. This peptide deduced by BmInc6 was named nuecin. When the nuecin gene was expressed in Sf9 cells using BEVS, about 950 bp of the transcripts was detected. In addition, SDS-PAGE analysis showed that the molecular weights of intracellular expressed protein and the mature protein secreted to culture media were approximately 23 and 20 kDa, respectively. The antibacterial activity of nuecin against E. coli and Bacillus subtilis was significantly high, demonstrating that nuecin had a wider antibacterial spectrum with gram negative and positive bacteria than attacin.

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Microbial hydrogen production: Dark Anaerobic Fermentation and Photo-biological Process (미생물에 의한 수소생산: Dark Anaerobic Fermentation and Photo-biological Process)

  • Kim, Mi-Sun;Baek, Jin-Sook
    • KSBB Journal
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    • v.20 no.6
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    • pp.393-400
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    • 2005
  • Hydrogen($H_2$) as a clean, and renewable energy carrier will be served an important role in the future energy economy. Several biological $H_2$ production processes are known and currently under development, ranging from direct bio-photolysis of water by green algae, indirect bio-photolysis by cyanobacteria including the separated two stage photolysis using the combination of green algae and photosynthetic microorganisms or green algae alone, dark anaerobic fermentation by fermentative bacteria, photo-fermentation by purple bacteria, and water gas shift reaction by photosynthetic or fermentative bacteria. In this paper, biological $H_2$ production processes, that are being explored in fundamental and applied research, are reviewed.