• Title/Summary/Keyword: Infectious agents

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Sequence Analysis of Small Round Structured Viruses (SRSV) Isolated from a Diarrheal Patient in Wonju (원주지역 설사 환자에서 분리한 Small Round Structured Viruses (SRSV) 염기서열 분석)

  • Jee, Young-Mee;Kim, Ki-Soon;Cheon, Doo-Sung;Park, Jeong-Koo;Kang, Young-Hwa;Chung, Yoon-Suck;Go, Un-Yeong;Shin, Young-Hack;Yoon, Jae-Deuk
    • The Journal of Korean Society of Virology
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    • v.29 no.4
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    • pp.247-259
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    • 1999
  • Small round structured viruses (SRSV) are the major ethological agents which can cause outbreaks of non-bacterial gastroenteritis or food poisoning both in children and adults. The classification of family Caliciviridae to which SRSV belong, is based on the genome encoding three open reading frames. The rotavirus is another major pathogen which causes diarrhea in young children. We examined stool specimens obtained from diarrheal patients in Wonju from which bacterial pathogens were not found. To detect causative viruses from stool specimens of patients, reverse transcription (RT)-polymerase chain reaction (PCR) or nested PCR using rotavirus or SRSV specific primers was performed. In this study, RT-nested PCR procedure which can amplify a 330 bp fragment derived from RNA dependent RNA polymerase (RDRP) region within ORF1 was applied for the detection of SRSV. For the detection of rotaviruses, a 877 bp fragment from the VP4 region of rotavirus genome was amplified. As a result, rotavirus was not detected while SRSV sequences were detected from one out of five specimens. The nucleotide and amino acid sequences of the Wonju isolate were compared with other 6 Korean isolates which have been isolated and sequenced in our laboratory. Sequence analysis revealed that the Wonju isolate was rather distinct from other Korean isolates: the Wonju isolate was closer to genogroup I of SRSV while other 6 Korean isolates belonged to genogroup II.

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Perspective on Population Characteristics and Health Problems of Koreans in 21st Century (21세기 초 한국의 인구구조 및 질병양상)

  • Kim, Joung-Soon
    • Journal of Preventive Medicine and Public Health
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    • v.27 no.2 s.46
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    • pp.175-185
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    • 1994
  • In order to anticipate disease pattern and health problems of Koreans in the 1st part of 21st century (by the year 2020), transition of population characteristics, mortality and morbidity data during the last 30 years Koreans have experienced were reviewed. On the actual basis of epidemiologic transition process that has undergone during last 30 years since 1960 along with socioeconomic development and successful implementation of selective national health policies (family planning, medical insurance and etc.), following changes can be expected in the 21st century in Korea, under the assumption that the current rate of progress is maintained. The population of South Korea alone will be doubled the population of 1960 by the year 2013 : aged Population older than 65 years will be increased from 3.3% in 1960 to 11.4% in 2020 with increased average age of the population from 23.6 year in 1970 to 39.2 year in 2020; urban population from 28% in 1960 to 83% in 2005. GNP/capita has increased tremendously from U.S. $120 in 1970 to $6,749 in 1992, and the government estimated it would be 519,350 in 2010 and $29,460 in 2020. Growth and developmental indices of children, educational achievement and social status of women also showed a remarkable improvement and anticipated to make futher progress. Leading causes of mortality and morbidity have shown a striking change during the last 30 years, from infectious diseases to chronic degenerative diseases and man-made injuries. Occurrence of communicable diseases may become minimal although viral hepatitis, venereal diseases Including AIDS, and well adapted herpes virus infections will maintain their endemic level. Newly evolving infectious agents, however, should be carefully monitored because of rapidly changing environments and human behaviours. Tuberculosis may increase up to the epidemic level when AIDS prevails. Ischemic heart diseases may increase steadily with increasing occurrence of hypertension and diabetes mellitus whereas cerebrovascular diseases may be decreased slowly. Musculaskeletal diseases which contribute a lot to the disability of aged people may be a major health problems due to increased aged population. Mental diseases, particularly that caused by alcohol and drug abuse, and senile dementia may become a prominent health problem. On the other hand injuries caused by traffic and industrial accidents that have shown most striking increase till now may be decreased considerably by intensive intervention. The health policies in the 21st century will be oriented to the health promotion for good quality life rather than life-savings.

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Disease monitoring of wild marine fish and crustacea caught from inshore and offshore Korea in 2018 (2018년 국내 연근해 수산생물의 전염병 모니터링)

  • Hwang, Seong Don;Lee, Da-Won;Chun, Won Joo;Jeon, Hae-Ryeon;Kim, Dong Jun;Hwang, Jee-Youn;Seo, Jung-Soo;Kwon, Mun-Gyoung;Ji, Hwan-Sung;Kim, Jung Nyun;Jee, Bo-Young
    • Korean Journal of Environmental Biology
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    • v.37 no.4
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    • pp.474-482
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    • 2019
  • Disease monitoring in wild aquatic animals is necessary to obtain information about disease occurrence, disease agents, and the transmission of diseases between wild and cultured species. In this study, we monitored viral diseases in wild marine fish and crustacea caught by trawl in Korea in April and October 2018. We monitored the viral diseases in 977 fish from 39 different species and 287 crustacea from 14 different species. In fish, we collected kidney and spleen to detect viral hemorrhagic septicemia virus (VHSV), red sea bream iridovirus (RSIV), marine birnavirus (MABV), hirame rhabdovirus (HRV), and lymphocystis disease virus (LCDV). In crustacea, we monitored white spot syndrome virus (WSSV), infectious hypodermal and hematopoietic necrosis virus (IHHNV), taura syndrome virus (TSV), infectious myonecrosis virus (IMNV), yellowhead disease virus (YHDV), and white tail disease virus (WTDV) using pleopods, pereiopods, gills, muscle, and hepatopancreases. Although none of the viral diseases tested in this study were detected in the samples, these results will help disease control between aquaculture species and wild aquatic animals.

Synthesis and Secretion of Mutant Mannose-Binding Lectin (돌연변이 Mannose-binding Lectin 합성과 세포 병리적 연구)

  • Jang, Ho-Jung;Chung, Kyung Tae
    • Journal of Life Science
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    • v.23 no.3
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    • pp.347-354
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    • 2013
  • Innate immunity is the ability to differentiate infectious agents from self. The innate immune system is comprised of a complicated network of recognition and effector molecules that act together to protect the host in the early stage of an infectious challenge. Mannose-binding lectin (MBL or mannose-binding protein, MBP) belongs to the family of $Ca^{2+}$-dependent lectins (C-type lectin with a collagen-like domain), which are considered an important component of innate immunity. While it is associated with increased risk and severity of infections and autoimmunity, the most frequent immuno-deficiency syndrome was reported to be low MBL level in blood. Deficiency of human MBL is caused by mutations in the coding region of the MBL gene. Rat homologue gene of human MBL gene was used to study functions of wild type and mutant MBL proteins. Although extensive studies have yielded the structural information of MBL, the functions of MBL, especially mutant MBL, still require investigation. We previously reported the cloning of rat wild-type MBL gene and the production of a truncated form of MBL protein and its antibody. Here, we present the cloning of mutant MBL cDNA in collagen-like domain (R40C, G42D, and G45E) using site-directed mutagenesis and differential behaviors of wild type and mutant MBL in cells. The major difference between wild type and mutant MBL was that while wild type MBL was secreted, mutant MBL was inhibited for secretion, retained in endoplasmic reticulum, and still functioned as a lectin.

Expression of SARS-3CL Protease in a Cell-Free Protein Synthesis System (무세포 단백질 합성법을 이용한 활성형 SARS-3CL protease의 발현)

  • Park, Sun-Joo;Kim, Yong-Tae
    • Journal of Life Science
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    • v.22 no.4
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    • pp.552-558
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    • 2012
  • Severe acute respiratory syndrome (SARS) is a severe respiratory infectious disease caused by a novel human coronavirus, SARS-CoV. The 3CL protease is a key enzyme in the proteolytic processing of replicase polyprotein precursors, pp1a and pp1ab, which mediate all the functions required for viral genomic replication and transcription. Therefore, this enzyme is a target for the development of chemotherapeutic agents against SARS. A large quantity of active SARS-3CL protease is required for development of anti-SARS agents. Here we have constructed overexpression vector for the production of the SARS-3CL protease. The gene encoding SARS-3CL protease was amplified using polymerase chain reaction and cloned into the pET29a expression vector, resulting in pET29a/SARS-3CLP. Recombinant SARS-3CL protease was successfully synthesized by the dialysis mode of the cell-free protein expression system, and purified by three-step fast protein liquid chromatography using HighQ and MonoP column chromatographies and Sephacryl S-300 gel filtration. In addition, the produced SARS-3CL protease was found to be an active mature form. This study provides efficient methods not only for the development of anti-SARS materials from natural sources, but also for the study of basic properties of the SARS-3CL protease.

Detection of etiologic agents in diarrhea fecal samples from calves in Gyeongnam province, Korea (경남지역에서 송아지 설사병 병원체 검출 조사)

  • Jeong, Myeong-Ho;Lee, Min-Kwon;Kim, Hyeong-Su;Lee, Seong-Uk;Seong, Min-Ho;Park, Dong-Yeop;Hwang, Bo-Won;Park, Hyoung-Joon;Cho, Jae-Hyeon
    • Korean Journal of Veterinary Service
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    • v.35 no.4
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    • pp.339-342
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    • 2012
  • The objective of this study was to determine the infection patterns of etiological agents causing calf diarrhea in the Gyeongnam province, Korea. In this study, from January 2011 to December 2011, feces and necropsy specimens from 249 calves diagnosed with diarrhea (<7 months old) were examined by reverse transcriptase-polymerase chain reaction assay and bacteria & coccidium isolation for detection pathogenic organism. The results of this study showed that 78 cases (31.3%) in spring, 71 cases (28.5) in summer, 62 cases (24.9%) in fall and 38 cases (15.3%) in winter were diagnosed with calf diarrhea, respectively. Calf diarrhea-causing pathogens were diagnosed as bacteria 113 (45.4%), viruses 97 (39.0%), coccidium 1 (0.4%), unknown cases 13 (5.2%), and mixed infections 25 (10.0%). We isolated three virus types from fecal samples (97), which were classified as BVD 64 (66.0%), BRV 21 (21.6%), and BCV 12 (12.4%). Moreover, co-infected pathogens were 25 cases, consisting with BVD & BRV 11 (44%), BVD & BCV& BRV 7 (28.0%), E. coli & BCV 3 (12%), and BVD & IBR 1 (4.0%). In summary, we demonstrated that the enteropathogens of bacteria, viruses, and parasite were detected in samples from cattle with diarrhea, principally in young calves less than 7 months of age. Future studies of infectious diarrhea in cattle should include assays for this etiologic agent.

A 3D "In Vitro" Model to Study Hyaluronan Effect in Nasal Epithelial Cell Line Exposed to Double-Stranded RNA Poly(I:C)

  • Albano, Giusy Daniela;Bonanno, Anna;Giacomazza, Daniela;Cavalieri, Luca;Sammarco, Martina;Ingrassia, Eleonora;Gagliardo, Rosalia;Riccobono, Loredana;Moscato, Monica;Anzalone, Giulia;Montalbano, Angela Marina;Profita, Mirella
    • Biomolecules & Therapeutics
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    • v.28 no.3
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    • pp.272-281
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    • 2020
  • Environmental agents, including viral and bacterial infectious agents, are involved in the alteration of physicochemical and biological parameters in the nasal epithelium. Hyaluronan (HA) has an important role in the regulation of tissue healing properties. High molecular weight HA (HMW-HA) shows greater anti-inflammatory responses than medium molecular weight HA (MMW-HA) and low molecular weight HA (LMW-HA). We investigated the effect of HMW-HA, MMW-HA and LMW-HA on the regulation of physicochemical and biological parameters in an "in vitro" model that might mimic viral infections of the nasal epithelium. Human nasal epithelial cell line RPMI2650 was stimulated with double-stranded RNA (dsRNA) Poly(I:C) for 5 days in air-liquid-interface (ALI) culture (3D model of airway tissue). dsRNA Poly(I:C) treatment significantly decreased transepithelial electrical resistance (TEER) in the stratified nasal epithelium of RPMI2650 and increased pH values, rheological parameters (elastic G' and viscous G''), and Muc5AC and Muc5B production in the apical wash of ALI culture of RPMI2650 in comparison to untreated cells. RPMI2650 treated with dsRNA Poly(I:C) in the presence of HMW-HA showed lower pH values, Muc5AC and Muc5B production, and rheological parameters, as well as increased TEER values in ALI culture, compared to cells treated with Poly(I:C) alone or pretreated with LMW-HA and MMW-HA. Our 3D "in vitro" model of epithelium suggests that HMW-HA might be a coadjuvant in the pharmacological treatment of viral infections, allowing for the control of some physicochemical and biological properties affecting the epithelial barrier of the nose during infection.

Global analysis of Aseptic Meningitis in Pusan Area in 1997 (1997년에 부산지역에서 유행한 무균성 뇌막염)

  • Park, Young Hee;Kim, Won Jung;Son, Byeong Hee;Kim, Sung Won
    • Pediatric Infection and Vaccine
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    • v.5 no.1
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    • pp.115-120
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    • 1998
  • Purpose : In the summer 1997, there was an outbreak of aseptic meningitis in Pusan area. We report the clinical features and viral studies of aseptic meningitis in Pusan area in 1997. Methods : 265 children with aseptic meningitis who had been admitted to Department of Pediatrics, St. Benedict Hospital between April to October 1997 were included. Results : 1) Male-to-female ratio was 1.7:1. 2) Mean age was $6.2{\pm}3.29$ years. 3) It occured mostly April to October. 4) Clinical manifestations were fever 99.6%, vomiting 99.2%, headache 99.2%, rash 6.0%. 5) The duration of fever was $3.34{\pm}2.21$ days. 6) The duration of admission was $5.3{\pm}3.21$ days. 7) WBC count in peripheral blood were $11,200{\pm}4,163/mm^3$. 8) WBC count in CSF were $156.1{\pm}394.7/mm^3$. 9) Causative agents were coxsackievirus B5, echovius 6, 30, type nonspecific enterovirus. Conclusion : Aseptic meningitis in 1997 compared with that in 1996 had clinical feature of increase in age, decrease in duration of fever and incidende of rash. It occurred mostly April to October in 1997 and May to October in 1996. Causative agents were coxackievirus B5, echovirus 6, 30, type nonespecific enterovirus in 1997, and echovirus 9, coxsackievirus A24, type nonespecific enterovirus in 1996.

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Genotyping, Phage Typing, and Antimicrobial Resistance of Salmonella Typhimurium Isolated from Pigs, Cattle, and Humans

  • Ju, Min-Seok;Kang, Zheng-Wu;Jung, Ji-Hun;Cho, Seong-Beom;Kim, Sung-Hun;Lee, Young-Ju;Hong, Chong-Hae;Pak, Son-Il;Hahn, Tae-Wook
    • Food Science of Animal Resources
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    • v.31 no.1
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    • pp.47-53
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    • 2011
  • Salmonella enterica serovar Typhimurium (ST) is one of the most common serovars isolated from humans and animals. It has been suggested that ST infections in Koreans are largely due to the consumption of contaminated pork and beef. To investigate the genotypes, phage types, and antimicrobial resistance patterns for ST isolates of different origins, a total of 70 ST strains, including 19 isolates from humans, 44 isolates from pigs, and 6 isolates from cattle, were analyzed using pulsedfield gel electrophoresis (PFGE), phage typing, and antimicrobial susceptibility tests. Forty-three distinct PFGE patterns were generated from 70 ST isolates, which were grouped into 14 PFGE groups (from A to N) at the level of 75% similarity. The most prevalent group was the A (A1-A17 subtypes) group, encompassing 54.5% (38/70) of ST isolates. ST isolates from pigs and cattle mostly belong to groups A and L, whereas ST isolates from humans mostly belong to groups F and C. Antimicrobial susceptibility tests using 11 antimicrobial agents showed that resistance to tetracycline (TE) (81.4%) was highly prevalent, followed by streptomycin (S) (64.3%) and nalidixic acid (NA) (31.4%) resistance. A total of seventeen antimicrobial resistance patterns were observed. Only 8.6% of isolates, including a reference strain, were susceptible to all antimicrobial agents tested. The most prevalent resistance pattern was TE-S (37.1%), which was seen in 66.6% of bovine, 40.8% of swine and 21.1% of human isolates. Three ST isolates from humans (15.9%) showed resistance to 7-8 antimicrobials. The most predominant phage type (PT) was U302 (64.3%), followed by DT170 (10.0%). PFGE types did not coincide with antimicrobial resistance patterns and phage types; therefore, the combination of those types allowed for further differentiation between tested ST isolates.

Impact of antimicrobial resistance in the $21^{st}$ century

  • Song, Jae-Hoon
    • Proceedings of the Korean Society for Applied Microbiology Conference
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    • 2000.04a
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    • pp.3-6
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    • 2000
  • Antimicrobial resistance has been a well-recognized problem ever since the introduction of penicillin into clinical use. History of antimicrobial development can be categorized based on the major antibiotics that had been developed against emerging resistant $pathogens^1$. In the first period from 1940 to 1960, penicillin was a dominating antibiotic called as a "magic bullet", although S.aureus armed with penicillinase led antimicrobial era to the second period in 1960s and 1970s. The second stage was characterized by broad-spectrum penicillins and early generation cephalosporins. During this period, nosocomial infections due to gram-negative bacilli became more prevalent, while those caused by S.aureus declined. A variety of new antimicrobial agents with distinct mechanism of action including new generation cephalosporins, monobactams, carbapenems, ${\beta}$-lactamase inhibitors, and quinolones characterized the third period from 1980s to 1990s. However, extensive use of wide variety of antibiotics in the community and hospitals has fueled the crisis in emerging antimicrobial resistance. Newly appeared drug-resistant Streptococcus pneumoniae (DRSP), vancomycin-resistant enterococci (VRE), extended-spectrum ${\beta}$-lactamase-producing Klebsiella, and VRSA have posed a serious threat in many parts of the world. Given the recent epidemiology of antimicrobial resistance and its clinical impact, there is no greater challenge related to emerging infections than the emergence of antibiotic resistance. Problems of antimicrobial resistance can be amplified by the fact that resistant clones or genes can spread within or between the species as well as to geographically distant areas which leads to a global concern$^2$. Antimicrobial resistance is primarily generated and promoted by increased use of antimicrobial agents. Unfortunately, as many as 50 % of prescriptions for antibiotics are reported to be inappropriate$^3$. Injudicious use of antibiotics even for viral upper respiratory infections is a universal phenomenon in every part of the world. The use of large quantities of antibiotics in the animal health industry and farming is another major factor contributing to selection of antibiotic resistance. In addition to these background factors, the tremendous increase in the immunocompromised hosts, popular use of invasive medical interventions, and increase in travel and mixing of human populations are contributing to the resurgence and spread of antimicrobial resistance$^4$. Antimicrobial resistance has critical impact on modem medicine both in clinical and economic aspect. Patients with previously treatable infections may have fatal outcome due to therapeutic failure that is unusual event no more. The potential economic impact of antimicrobial resistance is actually uncountable. With the increase in the problems of resistant organisms in the 21st century, however, additional health care costs for this problem must be enormously increasing.

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