• 제목/요약/키워드: infectious disease viruses

검색결과 119건 처리시간 0.022초

High Frequency of Enteric Protozoan, Viral, and Bacterial Potential Pathogens in Community-Acquired Acute Diarrheal Episodes: Evidence Based on Results of Luminex Gastrointestinal Pathogen Panel Assay

  • Hawash, Yousry A.;Ismail, Khadiga A.;Almehmadi, Mazen
    • Parasites, Hosts and Diseases
    • /
    • 제55권5호
    • /
    • pp.513-521
    • /
    • 2017
  • Infectious diarrhea is endemic in most developing countries. We aimed to investigate the protozoan, viral, and bacterial causes of acute diarrhea in Taif, Saudi Arabia. A cross-sectional prospective 1-year study was conducted on 163 diarrheal patients of various ages. Stool samples were collected, 1 per patient, and tested for 3 protozoa, 3 viruses, and 9 bacteria with the Luminex Gastrointestinal Pathogen Panel. Overall, 53.4% (87/163) of samples were positives (20.8% protozoa, 19.6% viruses, 2.8% bacteria, and 9.8% mixed). Rotavirus (19.6%), Giardia duodenalis (16.5%), and Cryptosporidium spp. (8.5%) were the mostly detected pathogens. Adenovirus 40/41 (4.2%), Salmonella (3%), Shiga toxin-producing Escherichia coli (3%), and Entamoeba histolytica (2.4%) were also detected. Norovirus GI/II, Vibrio cholerae, Yersinia enterocolitica, and Clostridium difficile toxin A/B were not detected in any patients. All pathogens were involved in coinfections except E. histolytica. Giardia (5.5%) and rotavirus (3%) were the most commonly detected in co-infections. Enterotoxigenic E. coli (2.4%), Campylobacter spp. (2.4%), E. coli 0157 (1.8%), and Shigella spp. (1.2%) were detected in patients only as co-infections. Infections were more in children 0-4 years, less in adults <40 years, and least >40 years, with statistically significant differences in risk across age groups observed with rotavirus (P<0.001), Giardia (P=0.006), and Cryptosporidium (P=0.036) infections. Lastly, infections were not significantly more in the spring. This report demonstrates the high burden of various enteropathogens in the setting. Further studies are needed to define the impact of these findings on the clinical course of the disease.

하수 처리 과정의 염소 소독에 대한 여러 박테리오파지들의 저항성 평가; 물 재이용 과정의 안전성 관리를 위한 바이러스 지표미생물의 개발 (Inactivation of various bacteriophages in wastewater by chlorination; Development of more reliable bacteriophage indicator systems for water reuse)

  • 배경선;신귀암
    • 상하수도학회지
    • /
    • 제30권3호
    • /
    • pp.285-291
    • /
    • 2016
  • There has been an accelerating increase in water reuse due to growing world population, rapid urbanization, and increasing scarcity of water resources. However, it is well recognized that water reuse practice is associated with many human health and ecological risks due to numerous chemicals and pathogenic microorganisms. Especially, the potential transmission of infectious disease by hundreds of pathogenic viruses in wastewater is one of the most serious human health risks associated with water reuse. In this study, we determined the response of different bacteriophages representing various bacteriophage groups to chlorination in real wastewater in order to identify a more reliable bacteriophage indicator system for chlorination in wastewater. Different bacteriophages were spiked into secondary effluents from wastewater plants from three different geographic areas, and then subjected to various doses of free chlorine and contact time at $5^{\circ}C$ in a bench-scale batch disinfection system. The inactivation of ${\phi}X174$ was relatively rapid and reached ~4 log10 with a CT value of 5 mg/L*min. On the other hand, the inactivation of bacteriophage PRD1 and MS2 were much slower than the one for ${\phi}X174$ and only ~1 log10 inactivation was achieved by a CT value of 10 mg/L*min. Overall, the results of this study suggest that bacteriophage both MS2 and PRD1 could be a reliable indicator for human pathogenic viruses for chlorination in wastewater treatment processes and water reuse practice.

파장별 지표 자외선 복사량을 이용한 SARS-CoV-2 바이러스 비활성화 시간 추정 연구 (Estimation of the SARS-CoV-2 Virus Inactivation Time Using Spectral Ultraviolet Radiation)

  • 박선주;이윤곤;박상서
    • 대기
    • /
    • 제32권1호
    • /
    • pp.51-60
    • /
    • 2022
  • Corona Virus Disease 19 pandemic (COVID-19) causes many deaths worldwide, and has enormous impacts on society and economy. The COVID-19 was caused by a new type of coronavirus (Severe Acute Respiratory Syndrome Cornonavirus 2; SARS-CoV-2), which has been found that these viruses can be effectively inactivated by ultraviolet (UV) radiation of 290~315 nm. In this study, 90% inactivation time of the SARS-CoV-2 virus was analyzed using ground observation data from Brewer spectrophotometer at Yonsei University, Seoul and simulation data from UVSPEC for the period of 2015~2017 and 2020. Based on 12:00-13:00 noon time, the shortest virus inactivation time were estimated as 13.5 minutes in June and 4.8 minutes in July/August, respectively, under all sky and clear sky conditions. In the diurnal and seasonal variations, SARS-CoV-2 could be inactivated by 90% when exposed to UV radiation within 60 minutes from 10:00 to 14:00, for the period of spring to autumn. However, in winter season, the natural prevention effect was meaningless because the intensity of UV radiation weakened, and the time required for virus inactivation increased. The spread of infectious diseases such as COVID-19 is related to various and complex interactions of several variables, but the natural inactivation of viruses by UV radiation presented in this study, especially seasonal differences, need to be considered as major variables.

아데노바이러스를 이용한 바이러스 제거율 평가를 위한 기법 개발 (Development of Techniques for Evaluating the Virus Removal Rate using Adenovirus)

  • 조윤정;임재원;백다운;이상훈;이인수;이혜영;박동희;정동주;김태우
    • 상하수도학회지
    • /
    • 제29권6호
    • /
    • pp.633-641
    • /
    • 2015
  • Waterborne infectious disease is induced by several pathogenic microbes such as bacteria, viruses and protozoans, and the cases caused by viral infection is currently increasing. Water treatment process could reduce the number of virus in the water, but there were many difficulties to completely remove the virus particles from water. Therefore, the membrane separation technology which was reported to effectively remove pollutants from raw water has attracted increasing attention and demand. Since its efficiency has been introduced, demands for evaluation method toward the membrane filtration process are increasing. However, progression of the method development is slow due to the difficulties in cultivation of several waterborne viruses from animal models or cell culture system. To overcome the difficulties, we used adenovirus, one of the commonly isolated pathogenic waterborne viruses which can grow in cell culture system in vitro. The adenovirus used in this study was identified as human adenovirus C strain. The adenovirus was spiked in the raw water and passed through the microfiltration membrane produced by Econity, a Korean membrane company, and then the viral removal rate was evaluated by real-time PCR. In the results, the amount of virus in the filtered water was decreased approximately by 5 log scale. Because coagulant treatment has been known to reduce filtering function of the membrane by inducing fouling, we also investigated whether there was any interference of coagulant. In the results, we confirmed that coagulant treatment did not show significant interference on microfiltration membrane. In this study, we found that waterborne virus can be effectively removed by membrane filtration system. In particular, here we also suggest that real-time PCR method can rapidly, sensitively and quantitatively evaluate the removal rate of virus. These results may provide a standard method to qualifying membrane filtration processes.

2020년 충남지역 집단급식소에서 발생한 대형 식중독의 사례 보고 (Case Report for a Large-Scale Food Poisoning Outbreak that Occurred in a Group Food Service Center in Chungnam, Korea)

  • 이현아;김준영;남해성;최지혜;이다연;박성민;임지애;천영희;최진하;박준혁
    • 한국환경보건학회지
    • /
    • 제46권5호
    • /
    • pp.525-531
    • /
    • 2020
  • Objectives: This study was performed to identify the epidemiological features of a food poisoning outbreak in a company cafeteria located in Chungcheongnam-do Province, Korea in June of 2020 and to suggest preventive measures for a similar incidence. Methods: A total of 84 patients with acute gastroenteritis were examined. Environmental samples were obtained from 16 food handlers, six food utensils, 135 preserved foods served over three days and nine menus, and six drinking water samples. These are analyzed to detect viruses and bacteria. Results: Ninety-four out of the 402 people who were served meals (23.4%) predominantly showed symptoms of diarrhea, and the number was over 3 times. Among the 84 patients under investigation, 17 cases (20.2%) were positive for Enteropathogenic E. coli (EPEC) and 18 cases were positive for Clostridium (C.) perfringens (21.4%). Based on the investigation, it was concluded that the main pathogens were EPEC and C. perfringens. For EPEC, it was detected in three of the food service employees and in the preserved food and curry rice. The results of pulsed field gel electrophoresis indicate that all EPEC cases are closely related except for one food service employee. Assuming that isolated EPEC originated from the preserved food, the incubation period is about 25 hours. The origin of the C. perfringens was not determined as it was not detected in the food service employees or environmental samples. Conclusions: This case suggests that food provided in group food service centers must be thoroughly managed. In addition, identifying the pathogens in preserved food is very important for tracing the causes of food poisoning, so food must be preserved in an appropriate condition. To prevent similar food poisoning cases, analyzing cases based on epidemiological investigation and sharing the results is needed.

차세대 감염병 백신 (Next-generation Vaccines for Infectious Viral Diseases)

  • 윤선우
    • 생명과학회지
    • /
    • 제33권9호
    • /
    • pp.746-753
    • /
    • 2023
  • 바이러스성 전염병은 전 세계 공중 보건에 가장 큰 위협 중 하나로 간주된다. 최근 중증급성호흡기증후군 코로나바이러스-2(SARS-CoV-2)로 인한 COVID-19 대유행은 신종 바이러스 감염의 위협을 극명하게 상기시켜 주었다. 효율적인 백신과 치료제 개발 및 생산은 팬데믹을 퇴치할 수 있는 유일한 대안일 것이며 COVID-19 대유행은 새로운 바이러스성 질병을 통제하고 예방하기 위한 새로운 백신 플랫폼의 필요성을 보여주었다. 기존의 백신 플랫폼인 약독화 생백신, 불활성화 백신은 백신 개발 속도, 제조 등이 광범위한 백신 적용을 위한 긴급 사용에 한계가 있다. 흥미롭게도, COVID-19 예방을 위한 SARS-CoV-2 mRNA-지질나노입자(LNP) 플랫폼은 기존 백신 플랫폼 한계에 대한 효과적인 대안임이 확인되었다. 또한 COVID-19 mRNA 핵산 백신과 나노입자 기반 플랫폼은 SARS-CoV-2 및 변종 SARS-CoV-2 모두에 효과적인 백신임이 확인되었다. 이 논문에서는 mRNA 백신, 디지털 백신 및 나노입자백신 등의 차세대 백신 플랫폼을 중점으로 백신 기술 및 플랫폼의 장단점에 대해 기술하였다.

치과위생사의 코로나19 감염관련 지식, 감염관리 수행 및 사회심리적 건강 관련 연구 (A study on the relations of COVID-19 infection related knowledge, infection control performance, and psychosocial well-being of dental hygienists)

  • 문상은;양진주;홍선화;이보람;김희정;서가혜;김은채
    • 한국치위생학회지
    • /
    • 제21권5호
    • /
    • pp.675-683
    • /
    • 2021
  • Objectives: This study aimed to verify the relations of COVID-19 infection-related knowledge, dental infection control performance, and psychosocial health of dental hygienists. Methods: From the data was analyzed through the frequency analysis, t-test, one way ANOVA, and pearson's correlation analysis with a total of 198 dental hygienists using SPSS Statistics 21.0. Results: The correct answer rate for knowledge about COVID-19 was higher with a bachelor's degree or higher. Thus, when the level of education was higher, the performance was also high (p<0.01). COVID-19 infection control performance was highly shown in case of high age (4.43) (p<0.05) and the married (4.42) (p<0.01). Infection control performance was high when they had an educational experience of COVID-19 infection control (4.46), and when the infection control guidebooks were equipped in their workplaces (p<0.001). Degree of psychosocial health of research subjects was shown in the order of potential stress (60.6%), high-risk stress (23.7%), and healthy (15.7%). Infection control performance was higher, the psychosocial health was healthy. Conclusions: For the response to COVID-19 infectious disease and the preparation for mutated viruses and new infectious diseases in the future, it would be necessary to establish the concrete measures for establishing the strict infection control system for dental clinics and also enhancing the psychosocial health of dental hygienists.

Application on Microwave Energy in the Preparation of Fish Samples for Electron Microscopic Observation

  • Kim Soo Jin;Oh Hae Keun;Song Young-Hwan;Chung Hyun-Do;Kim Young-Tae;Park Nam-Kyu;Choi Tae-Jin
    • Fisheries and Aquatic Sciences
    • /
    • 제1권2호
    • /
    • pp.187-191
    • /
    • 1998
  • Chemotherapy can not be applied for the control of fish viral diseases because viruses depend on host machinery for their replication. Although new control strategies including vaccination are under development, avoidance of virus introduction by rapid and correct diagnosis is the best way of fish viral disease control. Although observation of virus particles with an electron microscope is an easy method for virus detection, it take a few days for the sample preparation. In order to shorten the sample preparation time, microwave radiation was applied in the procedure. With this method, 15 seconds was enough for fixation of virus infected fish samples or cultured cells inoculated with infectious hematopoietic necrosis virus, which takes 2-4 hours with routine methods. Also four minutes was enough for polymerization of embedding resin which takes 24-48 hours with routine methods. Samples prepared with microwave were good enough for direct electron microscopic observation and immunogold labeling assay.

  • PDF

Structure and Function of the Influenza A Virus Non-Structural Protein 1

  • Han, Chang Woo;Jeong, Mi Suk;Jang, Se Bok
    • Journal of Microbiology and Biotechnology
    • /
    • 제29권8호
    • /
    • pp.1184-1192
    • /
    • 2019
  • The influenza A virus is a highly infectious respiratory pathogen that sickens many people with respiratory disease annually. To prevent outbreaks of this viral infection, an understanding of the characteristics of virus-host interaction and development of an anti-viral agent is urgently needed. The influenza A virus can infect mammalian species including humans, pigs, horses and seals. Furthermore, this virus can switch hosts and form a novel lineage. This so-called zoonotic infection provides an opportunity for virus adaptation to the new host and leads to pandemics. Most influenza A viruses express proteins that antagonize the antiviral defense of the host cell. The non-structural protein 1 (NS1) of the influenza A virus is the most important viral regulatory factor controlling cellular processes to modulate host cell gene expression and double-stranded RNA (dsRNA)-mediated antiviral response. This review focuses on the influenza A virus NS1 protein and outlines current issues including the life cycle of the influenza A virus, structural characterization of the influenza A virus NS1, interaction between NS1 and host immune response factor, and design of inhibitors resistant to the influenza A virus.

Targeting the Epithelium-Derived Innate Cytokines: From Bench to Bedside

  • Jongho Ham;Jae Woo Shin;Byeong Cheol Ko;Hye Young Kim
    • IMMUNE NETWORK
    • /
    • 제22권1호
    • /
    • pp.11.1-11.26
    • /
    • 2022
  • When epithelial cells are exposed to potentially threatening external stimuli such as allergens, bacteria, viruses, and helminths, they instantly produce "alarmin" cytokines, namely, IL-33, IL-25, and TSLP. These alarmins alert the immune system about these threats, thereby mobilizing host immune defense mechanisms. Specifically, the alarmins strongly stimulate type-2 immune cells, including eosinophils, mast cells, dendritic cells, type-2 helper T cells, and type-2 innate lymphoid cells. Given that the alarm-raising role of IL-33, IL-25, and TSLP was first detected in allergic and infectious diseases, most studies on alarmins focus on their role in these diseases. However, recent studies suggest that alarmins also have a broad range of effector functions in other pathological conditions, including psoriasis, multiple sclerosis, and cancer. Therefore, this review provides an update on the epithelium-derived cytokines in both allergic and non-allergic diseases. We also review the progress of clinical trials on biological agents that target the alarmins and discuss the therapeutic potential of these agents in non-allergic diseases.