scholarly journals Scientometric trends for coronaviruses and other emerging viral infections

GigaScience ◽  
2020 ◽  
Vol 9 (8) ◽  
Author(s):  
Dima Kagan ◽  
Jacob Moran-Gilad ◽  
Michael Fire

Abstract Background COVID-19 is the most rapidly expanding coronavirus outbreak in the past 2 decades. To provide a swift response to a novel outbreak, prior knowledge from similar outbreaks is essential. Results Here, we study the volume of research conducted on previous coronavirus outbreaks, specifically SARS and MERS, relative to other infectious diseases by analyzing >35 million articles from the past 20 years. Our results demonstrate that previous coronavirus outbreaks have been understudied compared with other viruses. We also show that the research volume of emerging infectious diseases is very high after an outbreak and decreases drastically upon the containment of the disease. This can yield inadequate research and limited investment in gaining a full understanding of novel coronavirus management and prevention. Conclusions Independent of the outcome of the current COVID-19 outbreak, we believe that measures should be taken to encourage sustained research in the field.

Author(s):  
Dima Kagan ◽  
Jacob Moran-Gilad ◽  
Michael Fire

AbstractCOVID-19 is the most rapidly expanding coronavirus outbreak in the past two decades. To provide a swift response to a novel outbreak, prior knowledge from similar outbreaks is essential. Here, we study the volume of research conducted on previous coronavirus outbreaks, specifically SARS and MERS, relative to other infectious diseases by analyzing over 35 million papers from the last 20 years. Our results demonstrate that previous coronavirus outbreaks have been understudied compared to other viruses. We also show that the research volume of emerging infectious diseases is very high after an outbreak and drops drastically upon the containment of the disease. This can yield inadequate research and limited investment in gaining a full understanding of novel coronavirus management and prevention. Independent of the outcome of the current COVID-19 outbreak, we believe that measures should be taken to encourage sustained research in the field.


2004 ◽  
Vol 359 (1447) ◽  
pp. 1049-1058 ◽  
Author(s):  
A. J. McMichael

During the processes of human population dispersal around the world over the past 50 000–100 000 years, along with associated cultural evolution and inter–population contact and conflict, there have been several major transitions in the relationships of Homo sapiens with the natural world, animate and inanimate. Each of these transitions has resulted in the emergence of new or unfamiliar infectious diseases. The three great historical transitions since the initial advent of agriculture and livestock herding, from ca . 10 000 years ago, occurred when: (i) early agrarian–based settlements enabled sylvatic enzootic microbes to make contact with Homo sapiens ; (ii) early Eurasian civilizations (such as the Greek and Roman empires, China and south Asia) came into military and commercial contact, ca . 3000–2000 years ago, swapping their dominant infections; and (iii) European expansionism, over the past five centuries, caused the transoceanic spread of often lethal infectious diseases. This latter transition is best known in relation to the conquest of the Americas by Spanish conquistadores , when the inadvertent spread of measles, smallpox and influenza devastated the Amerindian populations. Today, we are living through the fourth of these great transitional periods. The contemporary spread and increased lability of various infectious diseases, new and old, reflect the combined and increasingly widespread impacts of demographic, environmental, behavioural, technological and other rapid changes in human ecology. Modern clinical medicine has, via blood transfusion, organ transplantation, and the use of hypodermic syringes, created new opportunities for microbes. These have contributed to the rising iatrogenic problems of hepatitis C, HIV/AIDS and several other viral infections. Meanwhile, the injudicious use of antibiotics has been a rare instance of human action actually increasing ‘biodiversity’. Another aspect of this fourth transition is that modern hyper–hygienic living restricts microbial exposure in early life. This, in the 1950s, may have contributed to an epidemic of more serious, disabling, poliomyelitis, affecting older children than those affected in earlier, more endemic decades. As with previous human–microbe transitions, a new equilibrial state may lie ahead. However, it certainly will not entail a world free of infectious diseases. Any mature, sustainable, human ecology must come to terms with both the need for, and the needs of, the microbial species that help to make up the interdependent system of life on Earth. Humans and microbes are not ‘at war’; rather, both parties are engaged in amoral, self–interested, coevolutionary struggle. We need to understand better, and therefore anticipate, the dynamics of that process.


2020 ◽  
Vol 11 (SPL1) ◽  
pp. 86-93
Author(s):  
Dhirajsingh Sumersingh Rajput

Evolution is continuous process of changes in structural and physiological mechanism in living being. Microbes/pathogens can evolve naturally or artificially and become resistant to various medicines. Novel coronavirus is such evolved pathogen of coronavirus group. Enough strong immunity is needed to prevent or survive from COVID-19 pandemic. Ayurveda provides ways for evolving physiological responses to built immunity. Present work is brief attempt to increase insight in this filed.Present review was done based on simple theory of evolution, recent updates regarding prevention of COVID-19, Ayurveda aspect toward infectious diseases and Ayurveda ways towards prevention of infectious diseases with special reference to COVID-19. Person with impaired immunity is more susceptible for COVID-19 and thus immunity is an important preventing factor. Ayurveda Rasayana (rejuvanation) herbs, Yoga exercises, Pranayama (special breathing exercise), daily regimens and personal hygiene guidelines can be helpful strategies in controlling the spread of COVID-19.The preventive aspects of pandemic situations are narrated in Ayurveda with enough details. These ways need to be scientifically explored and refined for precision. As prevention is always better than cure hence Ayurveda ways can be considered for future strategies to avoid pandemics such as COVID-19.  There is great need of research on Ayurveda medicines on COVID-19 like diseases.


npj Vaccines ◽  
2021 ◽  
Vol 6 (1) ◽  
Author(s):  
Camille Zenobia ◽  
Karla-Luise Herpoldt ◽  
Marcelo Freire

AbstractMucosal tissues act as a barrier throughout the oral, nasopharyngeal, lung, and intestinal systems, offering first-line protection against potential pathogens. Conventionally, vaccines are applied parenterally to induce serotype-dependent humoral response but fail to drive adequate mucosal immune protection for viral infections such as influenza, HIV, and coronaviruses. Oral mucosa, however, provides a vast immune repertoire against specific microbial pathogens and yet is shaped by an ever-present microbiome community that has co-evolved with the host over thousands of years. Adjuvants targeting mucosal T-cells abundant in oral tissues can promote soluble-IgA (sIgA)-specific protection to confer increased vaccine efficacy. Th17 cells, for example, are at the center of cell-mediated immunity and evidence demonstrates that protection against heterologous pathogen serotypes is achieved with components from the oral microbiome. At the point of entry where pathogens are first encountered, typically the oral or nasal cavity, the mucosal surfaces are layered with bacterial cohabitants that continually shape the host immune profile. Constituents of the oral microbiome including their lipids, outer membrane vesicles, and specific proteins, have been found to modulate the Th17 response in the oral mucosa, playing important roles in vaccine and adjuvant designs. Currently, there are no approved adjuvants for the induction of Th17 protection, and it is critical that this research is included in the preparedness for the current and future pandemics. Here, we discuss the potential of oral commensals, and molecules derived thereof, to induce Th17 activity and provide safer and more predictable options in adjuvant engineering to prevent emerging infectious diseases.


Author(s):  
V. O. Bitsadze ◽  
T. A. Sukontseva ◽  
S. V. Akinshina ◽  
Ya. Yu. Sulina ◽  
J. Kh. Khizroeva ◽  
...  

The problem of sepsis and septic shock has recently become more and more actual. In obstetrics and gynaecology, the number of cases of sepsis has more than doubled over the past 10 years. The review examines the clinical forms of septic conditions, risk factors, pathogenesis of sepsis and septic shock, the main pathogens of septic conditions. Special attention is paid to neonatal sepsis. The relationship between septic shock and viral infections is considered in the context of the novel coronavirus infection caused by SARS-CoV-2 (COVID-19) pandemic. Hemostasis abnormalities have been demonstrated in patients with septic shock, including disseminated intravascular coagulation (DIC). The importance of determining the level of ADAMTS-13 to refine the forecast is discussed.


2017 ◽  
Vol 44 ◽  
pp. 28-30 ◽  
Author(s):  
Philippe Charlier ◽  
Jean-Michel Claverie ◽  
Philippe Sansonetti ◽  
Yves Coppens ◽  
Anaïs Augias ◽  
...  

Author(s):  
Jayakumar K ◽  
Aneen Suresh ◽  
Sony Peter

Infectious diseases continue to impose unpredictable burdens on global health and economies. Therefore, this has become a concern, even in terms of national security.  In this sense, the objective of the present article was to review the role of wild animals as reservoirs and/or dispersers of etiological agents of human infectious diseases in order to compile data on the main wild animals and etiological agents involved in zoonotic outbreaks. The zoonotic threat of these etiological agents and the impact on public health can be enormous as shown by the ongoing epidemic of 2019 novel coronavirus (2019- nCoV) infections. Keywords:  Infection, Emerging, Virus, Epedimiology, Pandemic, COVID


Author(s):  
Sebastián Campbell-Quintero ◽  
Santiago Campbell-Quintero ◽  
Santiago Campbell-Silva

Emerging infectious diseases, such as severe acute respiratory syndrome (SARS), present a major threat to public health. In December 2019, a novel coronavirus referred to as severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) was identified as the causative agent of a respiratory syndrome named coronavirus disease 2019 (COVID-19). Since then, the pandemic has escalated. The spectrum of COVID-19 presentations ranges from mild self-limited flulike illness to severe viral pneumonia leading to acute respiratory distress syndrome that can be potentially fatal.


Author(s):  
V. O. Bitsadze ◽  
T. A. Sukontseva ◽  
S. V. Akinshina ◽  
Ya. Yu. Sulina ◽  
J. Kh. Khizroeva ◽  
...  

The problem of sepsis and septic shock has recently become more and more actual. In obstetrics and gynaecology, the number of cases of sepsis has more than doubled over the past 10 years. The review examines the clinical forms of septic conditions, risk factors, pathogenesis of sepsis and septic shock, the main pathogens of septic conditions. Special attention is paid to neonatal sepsis. The relationship between septic shock and viral infections is considered in the context of the novel coronavirus infection caused by SARS-CoV-2 (COVID-19) pandemic. Hemostasis abnormalities have been demonstrated in patients with septic shock, including disseminated intravascular coagulation (DIC). The importance of determining the level of ADAMTS-13 to refine the forecast is discussed.


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