1.A hnRNPA2B1 agonist effectively inhibits HBV and SARS-CoV-2 omicron in vivo.
Daming ZUO ; Yu CHEN ; Jian-Piao CAI ; Hao-Yang YUAN ; Jun-Qi WU ; Yue YIN ; Jing-Wen XIE ; Jing-Min LIN ; Jia LUO ; Yang FENG ; Long-Jiao GE ; Jia ZHOU ; Ronald J QUINN ; San-Jun ZHAO ; Xing TONG ; Dong-Yan JIN ; Shuofeng YUAN ; Shao-Xing DAI ; Min XU
Protein & Cell 2023;14(1):37-50
The twenty-first century has already recorded more than ten major epidemics or pandemics of viral disease, including the devastating COVID-19. Novel effective antivirals with broad-spectrum coverage are urgently needed. Herein, we reported a novel broad-spectrum antiviral compound PAC5. Oral administration of PAC5 eliminated HBV cccDNA and reduced the large antigen load in distinct mouse models of HBV infection. Strikingly, oral administration of PAC5 in a hamster model of SARS-CoV-2 omicron (BA.1) infection significantly decreases viral loads and attenuates lung inflammation. Mechanistically, PAC5 binds to a pocket near Asp49 in the RNA recognition motif of hnRNPA2B1. PAC5-bound hnRNPA2B1 is extensively activated and translocated to the cytoplasm where it initiates the TBK1-IRF3 pathway, leading to the production of type I IFNs with antiviral activity. Our results indicate that PAC5 is a novel small-molecule agonist of hnRNPA2B1, which may have a role in dealing with emerging infectious diseases now and in the future.
Animals
;
Mice
;
Antiviral Agents/pharmacology*
;
COVID-19
;
Hepatitis B virus
;
Interferon Type I/metabolism*
;
SARS-CoV-2/drug effects*
;
Heterogeneous-Nuclear Ribonucleoprotein Group A-B/antagonists & inhibitors*
2.Perceived stress and associated factors among healthcare workers in a primary healthcare setting: the Psychological Readiness and Occupational Training Enhancement during COVID-19 Time (PROTECT) study.
Eng Sing LEE ; Shu Yun TAN ; Poay Sian Sabrina LEE ; Hui Li KOH ; Shok Wen Winnie SOON ; Kang SIM ; Wern Ee TANG ; Phui-Nah CHONG
Singapore medical journal 2022;63(1):20-27
INTRODUCTION:
Disease outbreaks such as the COVID-19 pandemic significantly heighten the psychological stress of healthcare workers (HCWs). The objective of this study was to understand the factors contributing to the perceived stress levels of HCWs in a public primary care setting during the COVID-19 pandemic, including their training, protection and support (TPS), job stress (JS), and perceived stigma and interpersonal avoidance.
METHODS:
This cross-sectional study using an electronic self-administered questionnaire was conducted at the National Healthcare Group Polyclinics in March 2020. Data was collected anonymously. Analysis was performed using regression modelling.
RESULTS:
The response rate was 69.7% (n = 1,040). The mean perceived stress level of HCWs in various departments ranged from 17.2 to 20.3. Respondents who reported higher perceived stress were those who made alternative living arrangements, were more affected by the current pandemic, reported higher JS and were Muslims. Respondents who reported lower perceived stress were those who had been through the severe acute respiratory syndrome epidemic in 2003 and H1N1 pandemic in 2009 as HCWs, and those who had higher confidence in the organisation's TPS.
CONCLUSION
All HCWs, regardless of their scope of work, were similarly stressed by the current pandemic compared to the general population. Improving the confidence of HCWs in their training, protection and the support of personal protective equipment, and retaining experienced HCWs who can provide advice and emotional support to younger colleagues are important. Adequate psychological support for HCWs in the pandemic can be transformed into reserves of psychological resilience for future disease outbreaks.
COVID-19/epidemiology*
;
Cross-Sectional Studies
;
Health Personnel/psychology*
;
Humans
;
Influenza A Virus, H1N1 Subtype
;
Pandemics
;
Primary Health Care
;
SARS-CoV-2
;
Stress, Psychological
3.Vasoactive intestinal peptide: a potential target for antiviral therapy.
Yu HE ; Na ZANG ; En-Mei LIU
Acta Physiologica Sinica 2022;74(3):419-433
Viral infection is clinically common and some viral diseases, such as the ongoing global outbreak of coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), have high morbidity and mortality. However, most viral infections are currently lacking in specific therapeutic agents and effective prophylactic vaccines, due to inadequate response, increased rate of drug resistance and severe adverse side effects. Therefore, it is urgent to find new specific therapeutic targets for antiviral defense among which "peptide-based therapeutics" is an emerging field. Peptides may be promising antiviral drugs because of their high efficacy and low toxic side effects. Vasoactive intestinal peptide (VIP) is a prospective antiviral peptide. Since its successful isolation in 1970, VIP has been reported to be involved in infections of SARS-CoV-2, human immune deficiency virus (HIV), vesicular stomatitis virus (VSV), respiratory syncytial virus (RSV), Zika virus (ZIKV) and cytomegalovirus (CMV). Additionally, given that viral attacks sometimes cause severe complications due to overaction of inflammatory and immune responses, the potent anti-inflammatory and immunoregulator properties of VIP facilitate it to be a powerful and promising candidate. This review summarizes the role and mechanisms of VIP in all reported viral infections and suggests its clinical potential as an antiviral therapeutic target.
Antiviral Agents/therapeutic use*
;
COVID-19/drug therapy*
;
Humans
;
Prospective Studies
;
SARS-CoV-2
;
Vasoactive Intestinal Peptide/therapeutic use*
;
Zika Virus
;
Zika Virus Infection/drug therapy*
4.Host metabolism dysregulation and cell tropism identification in human airway and alveolar organoids upon SARS-CoV-2 infection.
Rongjuan PEI ; Jianqi FENG ; Yecheng ZHANG ; Hao SUN ; Lian LI ; Xuejie YANG ; Jiangping HE ; Shuqi XIAO ; Jin XIONG ; Ying LIN ; Kun WEN ; Hongwei ZHOU ; Jiekai CHEN ; Zhili RONG ; Xinwen CHEN
Protein & Cell 2021;12(9):717-733
The coronavirus disease 2019 (COVID-19) pandemic is caused by infection with the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), which is spread primary via respiratory droplets and infects the lungs. Currently widely used cell lines and animals are unable to accurately mimic human physiological conditions because of the abnormal status of cell lines (transformed or cancer cells) and species differences between animals and humans. Organoids are stem cell-derived self-organized three-dimensional culture in vitro and model the physiological conditions of natural organs. Here we showed that SARS-CoV-2 infected and extensively replicated in human embryonic stem cells (hESCs)-derived lung organoids, including airway and alveolar organoids which covered the complete infection and spread route for SARS-CoV-2 within lungs. The infected cells were ciliated, club, and alveolar type 2 (AT2) cells, which were sequentially located from the proximal to the distal airway and terminal alveoli, respectively. Additionally, RNA-seq revealed early cell response to virus infection including an unexpected downregulation of the metabolic processes, especially lipid metabolism, in addition to the well-known upregulation of immune response. Further, Remdesivir and a human neutralizing antibody potently inhibited SARS-CoV-2 replication in lung organoids. Therefore, human lung organoids can serve as a pathophysiological model to investigate the underlying mechanism of SARS-CoV-2 infection and to discover and test therapeutic drugs for COVID-19.
Adenosine Monophosphate/therapeutic use*
;
Alanine/therapeutic use*
;
Alveolar Epithelial Cells/virology*
;
Antibodies, Neutralizing/therapeutic use*
;
COVID-19/virology*
;
Down-Regulation
;
Drug Discovery
;
Human Embryonic Stem Cells/metabolism*
;
Humans
;
Immunity
;
Lipid Metabolism
;
Lung/virology*
;
RNA, Viral/metabolism*
;
SARS-CoV-2/physiology*
;
Virus Replication/drug effects*
5.Avian influenza A (H7N9) virus: from low pathogenic to highly pathogenic.
William J LIU ; Haixia XIAO ; Lianpan DAI ; Di LIU ; Jianjun CHEN ; Xiaopeng QI ; Yuhai BI ; Yi SHI ; George F GAO ; Yingxia LIU
Frontiers of Medicine 2021;15(4):507-527
The avian influenza A (H7N9) virus is a zoonotic virus that is closely associated with live poultry markets. It has caused infections in humans in China since 2013. Five waves of the H7N9 influenza epidemic occurred in China between March 2013 and September 2017. H7N9 with low-pathogenicity dominated in the first four waves, whereas highly pathogenic H7N9 influenza emerged in poultry and spread to humans during the fifth wave, causing wide concern. Specialists and officials from China and other countries responded quickly, controlled the epidemic well thus far, and characterized the virus by using new technologies and surveillance tools that were made possible by their preparedness efforts. Here, we review the characteristics of the H7N9 viruses that were identified while controlling the spread of the disease. It was summarized and discussed from the perspectives of molecular epidemiology, clinical features, virulence and pathogenesis, receptor binding, T-cell responses, monoclonal antibody development, vaccine development, and disease burden. These data provide tools for minimizing the future threat of H7N9 and other emerging and re-emerging viruses, such as SARS-CoV-2.
Animals
;
COVID-19
;
China/epidemiology*
;
Humans
;
Influenza A Virus, H7N9 Subtype
;
Influenza in Birds/epidemiology*
;
Influenza, Human/prevention & control*
;
Poultry
;
SARS-CoV-2
6.Factors associated with prolonged duration of viral clearance in non-severe SARS-CoV-2 patients in Osaka, Japan.
Emma Nakagawa HOFFMAN ; Haruna KAWACHI ; Atsushi HIRAYAMA ; Jingwen ZHANG ; Ayumi MURAYAMA ; Jun MASUI ; Satomi FUJITA ; Yasushi MORI ; Takanori HIRAYAMA ; Toshitake OHARA ; Rumiko ASADA ; Hiroyasu ISO
Environmental Health and Preventive Medicine 2021;26(1):115-115
BACKGROUND:
We investigated factors associated with prolonged viral clearance of SARS-CoV-2 among non-severe adult patients in Osaka, Japan. A total of 706 laboratory-confirmed COVID-19 patients were enrolled in this longitudinal observational study between 29 January 2020 and 31 May 2020, across 62 hospitals and three non-hospital recuperation facilities.
METHODS:
Logistic regression analysis was performed to investigate the factors associated with prolonged (29 days: upper 25% in duration) viral clearance of SARS-CoV-2. Linear regression analysis was conducted to assess these factors 14 days after symptom onset.
RESULTS:
The median duration of viral clearance was 22 days from symptom onset. After adjustment for sex, age, symptoms, comorbidity, and location of recuperation, comorbidities were associated with prolonged duration: (OR, 1.77 [95% CI, 1.11-2.82]) for one, (OR, 2.47 [95% CI, 1.32-4.61]) for two or more comorbidities. Viral clearance 14 days after symptom onset was 3 days longer for one comorbidity and 4 days longer for two or more comorbidities compared to clearance when there was no comorbidity.
CONCLUSION
The presence of comorbidity was a robust factor associated with a longer duration of viral clearance, extending by 3 to 4 days compared to patients with no comorbidity.
Adult
;
COVID-19
;
Humans
;
Japan/epidemiology*
;
RNA, Viral
;
SARS-CoV-2
;
Virus Shedding
7.Role of cyclophilin A during coronavirus replication and the antiviral activities of its inhibitors.
Lu TIAN ; Wenjun LIU ; Lei SUN
Chinese Journal of Biotechnology 2020;36(4):605-611
Cyclophilin A (CypA) is a widely distributed and highly conserved protein in organisms. It has peptidyl-prolyl cis/trans isomerase activity and is a receptor for cyclosporin A (CsA). Coronaviruses are enveloped, single-stranded, positive-sense RNA viruses. Seven types of coronaviruses are currently known to infect humans, among which SARS-CoV, MERS-CoV, and SARS-CoV-2 are fatal for humans. It is well established that CypA is essential for the replication of various coronaviruses such as SARS-CoV, CoV-229E, CoV-NL63, and FCoV. Additionally, CsA and its derivatives (ALV, NIM811, etc.) have obvious inhibitory effects on a variety of coronaviruses. These results suggest that CypA is a potential antiviral target and the existing drug CsA might be used as an anti-coronavirus drug. At the end of 2019, SARS-CoV-2 raged in China, which seriously theatern human health and causes huge economic lases. In view of this, we describe the effects of CypA on the replication of coronaviruses and the antiviral activities of its inhibitors, which will provide the scientific basis and ideas for the development of antiviral drugs for SARS-CoV-2.
Antiviral Agents
;
pharmacology
;
therapeutic use
;
Betacoronavirus
;
drug effects
;
growth & development
;
Coronavirus
;
drug effects
;
growth & development
;
Coronavirus Infections
;
drug therapy
;
epidemiology
;
virology
;
Cyclophilin A
;
antagonists & inhibitors
;
Cyclosporine
;
chemistry
;
pharmacology
;
therapeutic use
;
Humans
;
Pandemics
;
Pneumonia, Viral
;
drug therapy
;
epidemiology
;
virology
;
SARS Virus
;
drug effects
;
growth & development
;
Virus Replication
;
drug effects
8.Strategies for vaccine development of COVID-19.
Limin YANG ; Deyu TIAN ; Wenjun LIU
Chinese Journal of Biotechnology 2020;36(4):593-604
An epidemic of acute respiratory syndrome in humans, which appeared in Wuhan, China in December 2019, was caused by a novel coronavirus (SARS-CoV-2). This disease was named as "Coronavirus Disease 2019" (COVID-19). SARS-CoV-2 was first identified as an etiological pathogen of COVID-19, belonging to the species of severe acute respiratory syndrome-related coronaviruses (SARSr-CoV). The speed of both the geographical transmission and the sudden increase in numbers of cases is much faster than SARS and Middle East respiratory syndrome (MERS). COVID-19 is the first global pandemic caused by a coronavirus, which outbreaks in 211 countries/territories/areas. The vaccine against COVID-19, regarded as an effective prophylactic strategy for control and prevention, is being developed in about 90 institutions worldwide. The experiences and lessons encountered in the previous SARS and MERS vaccine research can be used for reference in the development of COVID-19 vaccine. The present paper hopes to provide some insights for COVID-19 vaccines researchers.
Betacoronavirus
;
immunology
;
Biomedical Research
;
Coronavirus Infections
;
epidemiology
;
immunology
;
prevention & control
;
virology
;
Humans
;
Internationality
;
Middle East Respiratory Syndrome Coronavirus
;
immunology
;
Pandemics
;
prevention & control
;
Pneumonia, Viral
;
epidemiology
;
immunology
;
prevention & control
;
virology
;
SARS Virus
;
immunology
;
Severe Acute Respiratory Syndrome
;
immunology
;
Viral Vaccines
;
immunology
9.Diagnosis, treatment, control and prevention of SARS-CoV-2 and coronavirus disease 2019: back to the future.
Chinese Journal of Biotechnology 2020;36(4):571-592
The ongoing outbreak of the coronavirus disease 2019 (COVID-19) as named by the World Health Organization has millions of confirmed cases around the world and has claimed hundreds of thousands of lives. The virus was named SARS-CoV-2 in February by International Committee on Taxonomy of Viruses. COVID-19 presents as fever, dry cough, dyspnea, headache and pneumonia. In a small subset of severe cases, the disease quickly progresses to respiratory failure and even death. Since the 21st century, there have been three major outbreaks caused by human coronaviruses, including the severe acute respiratory syndrome (SARS) that broke out in 2003, the Middle East respiratory syndrome (MERS) in 2012, and the recent pandemic of COVID-19. Since 2003, significant progress has been made in the study of SARS-CoV and MERS-CoV concerning their natural origins, pathogenesis, antiviral development and vaccine design. Since SARS-CoV-2 and SARS-CoV are closely related, previous findings on SARS-CoV are highly relevant to a better understanding as well as diagnosis, treatment, prevention and control of SARS-CoV-2. In this review, we highlight recent progresses in the field; compare the biological characteristics of SARS-CoV and SARS-CoV-2; summarize the urgently-needed diagnostic, treatment, prevention and control options; and provide future perspectives for the outcome of the outbreak and research questions to be answered, including some of the difficulties in vaccine development. Hopefully, our comments and suggestions would prove useful for the control of the SARS-CoV-2 epidemic in China and the world.
Antiviral Agents
;
pharmacology
;
therapeutic use
;
Betacoronavirus
;
drug effects
;
immunology
;
pathogenicity
;
Coronavirus Infections
;
diagnosis
;
prevention & control
;
therapy
;
virology
;
Humans
;
Middle East Respiratory Syndrome Coronavirus
;
drug effects
;
immunology
;
pathogenicity
;
Pandemics
;
prevention & control
;
Pneumonia, Viral
;
diagnosis
;
prevention & control
;
therapy
;
virology
;
SARS Virus
;
drug effects
;
immunology
;
pathogenicity
;
Severe Acute Respiratory Syndrome
;
diagnosis
;
prevention & control
;
therapy
;
virology
;
Viral Vaccines
10.Structure of SARS-CoV-2 and treatment of COVID-19.
Hai-Xia CHEN ; Zhi-Hua CHEN ; Hua-Hao SHEN
Acta Physiologica Sinica 2020;72(5):617-630
Corona virus disease 2019 (COVID-19) is a new type of coronavirus pneumonia, which is caused by infection of a novel coronavirus, SARS-CoV-2. The virus infects lung cells by binding angiotensin-converting enzyme 2 (ACE2) of cell surface, which leads to leukocyte infiltration, increased permeability of blood vessels and alveolar walls, and decreased surfactant in the lung, causing respiratory symptoms. The aggravation of local inflammation causes cytokine storm, resulting in systemic inflammatory response syndrome. In December 2019, a number of new pneumonia cases were reported by Wuhan Municipal Health Commission, after then a novel coronavirus was isolated and identified as SARS-CoV-2. To the date of Sep. 13th, 2020, COVID-19 is affecting 216 countries or regions, causing 28 637 952 cases, 917 417 deaths, and the mortality rate is 3.20%. This review will summarize the structure of SARS-CoV-2 and the pharmaceutical treatment of COVID-19, and their potential relationships.
Betacoronavirus
;
COVID-19
;
Coronavirus Infections/drug therapy*
;
Humans
;
Pandemics
;
Pneumonia, Viral
;
SARS Virus
;
SARS-CoV-2

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