• 제목/요약/키워드: SARS-CoV2

검색결과 290건 처리시간 0.026초

SARS-CoV-2 IgG Antibody Seroprevalence in Children from the Amritsar District of Punjab

  • Kaur, Amandeep;Singh, Narinder;Singh, Kanwardeep;Sidhu, Shailpreet Kaur;Kaur, Harleen;Jain, Poonam;Kaur, Manmeet;Jairath, Mohan
    • 대한임상검사과학회지
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    • 제54권3호
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    • pp.173-178
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    • 2022
  • The majority of the children experience milder coronavirus disease 2019 (COVID-19) symptoms. Children represent a significant source of community transmission. Children under 18 years of age account for an estimated 4.8% of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infections globally. However, no conclusive statements pertaining to the multi-fold aspects of the virus in children could be drawn due to the lower prevalence of pediatric cases. The present study was conducted to identify the indirect impact of SARS-CoV-2 infections on developing herd immunity among children in the age group 3 to 18 years by investigating their antibody levels. In the study, 240 children aged 3~18 years were recruited by the Department of Pediatrics, Government Medical College and Hospital, Amritsar, India, and quantification of the antibodies was performed at the Viral Research and Diagnostic Laboratory (VRDL), Government Medical College (GMC), Amritsar, India. Out of the 240 serum samples, 197 (82.08%) showed seropositivity, while 43 (17.92%) were seronegative. When stratified, it was observed that in the age group 3~6 years, 22.33% of children were found to have anti-SARS-CoV-2 antibodies while in the age groups 7~10 years, 11~14 years, and 15~18 years, respectively, 37.06%, 30.46%, and 10.15% were seropositive. Although there was seroconversion among children which was useful for predicting the next wave, no differences in seropositivity were observed between adults and children.

Radiologic Abnormalities in Prolonged SARS-CoV-2 Infection: A Systematic Review

  • Kyongmin Sarah Beck;Jeong-Hwa Yoon;Soon Ho Yoon
    • Korean Journal of Radiology
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    • 제25권5호
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    • pp.473-480
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    • 2024
  • We systematically reviewed radiological abnormalities in patients with prolonged SARS-CoV-2 infection, defined as persistently positive polymerase chain reaction (PCR) results for SARS-CoV-2 for > 21 days, with either persistent or relapsed symptoms. We extracted data from 24 patients (median age, 54.5 [interquartile range, 44-64 years]) reported in the literature and analyzed their representative CT images based on the timing of the CT scan relative to the initial PCR positivity. Our analysis focused on the patterns and distribution of CT findings, severity scores of lung involvement on a scale of 0-4, and the presence of migration. All patients were immunocompromised, including 62.5% (15/24) with underlying lymphoma and 83.3% (20/24) who had received anti-CD20 therapy within one year. Median duration of infection was 90 days. Most patients exhibited typical CT appearance of coronavirus disease 19 (COVID-19), including ground-glass opacities with or without consolidation, throughout the follow-up period. Notably, CT severity scores were significantly lower during ≤ 21 days than during > 21 days (P < 0.001). Migration was observed on CT in 22.7% (5/22) of patients at ≤ 21 days and in 68.2% (15/22) to 87.5% (14/16) of patients at > 21 days, with rare instances of parenchymal bands in previously affected areas. Prolonged SARS-CoV-2 infection usually presents as migrating typical COVID-19 pneumonia in immunocompromised patients, especially those with impaired B-cell immunity.

Effect of severe acute respiratory syndrome coronavirus 2 infection during pregnancy in K18-hACE2 transgenic mice

  • Byeongseok, Kim;Ki Hoon, Park;Ok-Hee, Lee;Giwan, Lee;Hyukjung, Kim;Siyoung, Lee;Semi, Hwang;Young Bong, Kim;Youngsok, Choi
    • Animal Bioscience
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    • 제36권1호
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    • pp.43-52
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    • 2023
  • Objective: This study aimed to examine the influence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection on pregnancy in cytokeratin-18 (K18)-hACE2 transgenic mice. Methods: To determine the expression of hACE2 mRNA in the female reproductive tract of K18-hACE2 mice, real-time polymerase chain reaction (RT-PCR) was performed using the ovary, oviduct, uterus, umbilical cord, and placenta. SARS-CoV-2 was inoculated intranasally (30 μL/mouse, 1×104 TCID50/mL) to plug-checked K18-hACE2 homozygous female mice at the pre-and post-implantation stages at 2.5 days post-coitum (dpc) and 15.5 dpc, respectively. The number of implantation sites was checked at 7.5 dpc, and the number of normally born pups was investigated at 20.5 dpc. Pregnancy outcomes, including implantation and childbirth, were confirmed by comparison with the non-infected group. Tissues of infected mice were collected at 7.5 dpc and 19.5 dpc to confirm the SARS-CoV-2 infection. The infection was identified by performing RT-PCR on the infected tissues and comparing them to the non-infected tissues. Results: hACE2 mRNA expression was confirmed in the female reproductive tract of the K18-hACE2 mice. Compared to the non-infected group, no significant difference in the number of implantation sites or normally born pups was found in the infected group. SARS-CoV-2 infection was detected in the lungs but not in the female reproductive system of infected K18-hACE2 mice. Conclusion: In K18-hACE2 mice, intranasal infection with SARS-CoV-2 did not induce implantation failure, preterm labor, or miscarriage. Although the viral infection was not detected in the uterus, placenta, or fetus, the infection of the lungs could induce problems in the reproductive system. However, lung infections were not related to pregnancy outcomes.

Molecular detection of bat coronaviruses in three bat species in Indonesia

  • Dharmayanti, Ni Luh Putu Indi;Nurjanah, Diana;Nuradji, Harimurti;Maryanto, Ibnu;Exploitasia, Indra;Indriani, Risa
    • Journal of Veterinary Science
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    • 제22권6호
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    • pp.70.1-70.12
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    • 2021
  • Bats are an important reservoir of several zoonotic diseases. However, the circulation of bat coronaviruses (BatCoV) in live animal markets in Indonesia has not been reported. Genetic characterization of BatCoV was performed by sequencing partial RdRp genes. Real-time polymerase chain reaction based on nucleocapsid protein (N) gene and Enzyme-linked immunosorbent assay against the N protein were conducted to detect the presence of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) viral RNA and antibody, respectively. We identified the presence of BatCoV on Cynopterus brachyotis, Macroglossus minimus, and Rousettus amplexicaudatus. The results showed that the BatCoV included in this study are from an unclassified coronavirus group. Notably, SARS-CoV-2 viral RNA and antibodies were not detected in the sampled bats.

Experimental Models for SARS-CoV-2 Infection

  • Kim, Taewoo;Lee, Jeong Seok;Ju, Young Seok
    • Molecules and Cells
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    • 제44권6호
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    • pp.377-383
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    • 2021
  • Severe acute respiratory syndrome-coronavirus 2 (SARS-CoV-2) is a novel virus that causes coronavirus disease 2019 (COVID-19). To understand the identity, functional characteristics and therapeutic targets of the virus and the diseases, appropriate infection models that recapitulate the in vivo pathophysiology of the viral infection are necessary. This article reviews the various infection models, including Vero cells, human cell lines, organoids, and animal models, and discusses their advantages and disadvantages. This knowledge will be helpful for establishing an efficient system for defense against emerging infectious diseases.

COVID-19 and veterinarians for one health, zoonotic- and reverse-zoonotic transmissions

  • Yoo, Han Sang;Yoo, Dongwan
    • Journal of Veterinary Science
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    • 제21권3호
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    • pp.51.1-51.5
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    • 2020
  • A novel coronavirus emerged in human populations and spread rapidly to cause the global coronavirus disease 2019 pandemic. Although the origin of the associated virus (severe acute respiratory syndrome coronavirus 2 [SARS-CoV-2]) remains unclear, genetic evidence suggests that bats are a reservoir host of the virus, and pangolins are a probable intermediate. SARS-CoV-2 has crossed the species barrier to infect humans and other animal species, and infected humans can facilitate reverse-zoonotic transmission to animals. Considering the rapidly changing interconnections among people, animals, and ecosystems, traditional roles of veterinarians should evolve to include transdisciplinary roles.

Pre-existing Immunity to Endemic Human Coronaviruses Does Not Affect the Immune Response to SARS-CoV-2 Spike in a Murine Vaccination Model

  • Ahn Young Jeong;Pureum Lee;Moo-Seung Lee;Doo-Jin Kim
    • IMMUNE NETWORK
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    • 제23권2호
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    • pp.19.1-19.10
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    • 2023
  • Endemic human coronaviruses (HCoVs) have been evidenced to be cross-reactive to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Although a correlation exists between the immunological memory to HCoVs and coronavirus disease 2019 (COVID-19) severity, there is little experimental evidence for the effects of HCoV memory on the efficacy of COVID-19 vaccines. Here, we investigated the Ag-specific immune response to COVID-19 vaccines in the presence or absence of immunological memory against HCoV spike Ags in a mouse model. Pre-existing immunity against HCoV did not affect the COVID-19 vaccine-mediated humoral response with regard to Ag-specific total IgG and neutralizing Ab levels. The specific T cell response to the COVID-19 vaccine Ag was also unaltered, regardless of pre-exposure to HCoV spike Ags. Taken together, our data suggest that COVID-19 vaccines elicit comparable immunity regardless of immunological memory to spike of endemic HCoVs in a mouse model.

코로나바이러스: 사스, 메르스 그리고 코비드-19 (Coronaviruses: SARS, MERS and COVID-19)

  • 김은중;이동섭
    • 대한임상검사과학회지
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    • 제52권4호
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    • pp.297-309
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    • 2020
  • 코로나바이러스는 본래 자연동물숙주에 한정된 엔주틱 감염으로 발견되었으나, 이후 일부 종들은 동물-인간 종의 장벽을 넘어 인간에게 주노틱 감염을 확립하기 위해 진행되었다. 이에 따라 이종 간 장벽의 점프로 인해 사스-코로나바이러스, 메르스-코로나바이러스 그리고 사스- 코로나바이러스2 등의 치명적인 인간 바이러스로 나타났다. 코로나바이러스에는 스파이크, 막, 외피 그리고 뉴클레오캡시드 단백질의 4가지 주요 단백질이 함유되어 있다. 코로나바이러스의 복제 주기는 세포 이입, 게놈 번역, 복제, 조립 그리고 방출로 이어진다. 이들은 2002년 중국 광동성 사스-코로나바이러스가 발병하기 전까지 인간에게 고병원성으로 여겨지지 않았다. 그러나 2002년 중증 급성 호흡기 증후군이 세계적으로 8,422명이 발병하고, 치사율이 11%에 이르는 유행병으로 발생했다. 메르스 코로나바이러스는 낙타 코로나바이러스와 연관성이 높다. 2019년 12월 중국 우한에서 발생한 발병으로 2019-nCoV에 감염된 환자의 군집이 확인되었으며, 곧 전 세계로 확산되었다. 2019-nCoV는 호흡기를 통해 전파된 후 심할 경우 폐렴도 유발할 수 있다. 이 바이러스의 확인에는 감염자의 상기호흡기 표본 검체에 기초한 분자진단법이 사용되었다. 이 리뷰에서는 우리는 바이러스의 구조와 유전적 구성뿐 아니라 생명주기, 진단과 잠재적 치료법을 검토하였다.

Detection of Antibodies Against SARS-Coronavirus Using Recombinant Truncated Nucleocapsid Proteins by ELISA

  • Lee, Hyun-Kyoung;Lee, Byoung-Hee;Dutta, Noton Kumar;Seok, Seung-Hyeok;Baek, Min-Won;Lee, Hui-Young;Kim, Dong-Jae;Na, Yi-Rang;Noh, Kyoung-Jin;Park, Sung-Hoon;Kariwa, Hiroaki;Nakauche, Mina;Mai, Le Quynh;Heo, Suk-Jin;Park, Jae-Hak
    • Journal of Microbiology and Biotechnology
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    • 제18권10호
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    • pp.1717-1721
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    • 2008
  • Severe acute respiratory syndrome (SARS) is a life-threatening emerging respiratory disease caused by the coronavirus, SARS-CoV. The nucleocapsid (N) protein of SARS-CoV is highly antigenic and may be a suitable candidate for diagnostic applications. We constructed truncated recombinant N proteins (N1 [1-422 aa], N2 [1-109 aa], and N3 [110-422 aa]) and determined their antigenicity by Western blotting using convalescent SARS serum. The recombinants containing N1 and N3 reacted with convalescent SARS serum in Western blotting. However, the recombinant with N2 did not. In ELISA using N1 or N3 as the antigens, positive results were observed in 10 of to (100%) SARS-CoV-positive human sera. None of 50 healthy sera gave positive results in either assay. These data indicate that the ELISA using N1 or N3 has high sensitivity and specificity. These results suggest that the middle or C-terminal region of the SARS N protein is important for eliciting antibodies against SARS-CoV during the immune response, and ELISA reactions using N1 or N3 may be a valuable tool for SARS diagnosis.

Current Status of Epidemiology, Diagnosis, Therapeutics, and Vaccines for Novel Coronavirus Disease 2019 (COVID-19)

  • Ahn, Dae-Gyun;Shin, Hye-Jin;Kim, Mi-Hwa;Lee, Sunhee;Kim, Hae-Soo;Myoung, Jinjong;Kim, Bum-Tae;Kim, Seong-Jun
    • Journal of Microbiology and Biotechnology
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    • 제30권3호
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    • pp.313-324
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    • 2020
  • Coronavirus disease 2019 (COVID-19), which causes serious respiratory illness such as pneumonia and lung failure, was first reported in Wuhan, the capital of Hubei, China. The etiological agent of COVID-19 has been confirmed as a novel coronavirus, now known as severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which is most likely originated from zoonotic coronaviruses, like SARS-CoV, which emerged in 2002. Within a few months of the first report, SARS-CoV-2 had spread across China and worldwide, reaching a pandemic level. As COVID-19 has triggered enormous human casualties and serious economic loss posing global threat, an understanding of the ongoing situation and the development of strategies to contain the virus's spread are urgently needed. Currently, various diagnostic kits to test for COVID-19 are available and several repurposing therapeutics for COVID-19 have shown to be clinically effective. In addition, global institutions and companies have begun to develop vaccines for the prevention of COVID-19. Here, we review the current status of epidemiology, diagnosis, treatment, and vaccine development for COVID-19.