scholarly journals Development of COVID-19 vaccines utilizing gene therapy technology

Author(s):  
Hironori Nakagami

Abstract There is currently an outbreak of respiratory disease caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Coronavirus disease 2019 (COVID-19) is caused by infection with SARS-CoV-2. Individuals with COVID-19 have symptoms that are usually asymptomatic or mild in most initial cases. However, in some cases, moderate and severe symptoms have been observed with pneumonia. Many companies are developing COVID-19 vaccine candidates using different technologies that are classified into four groups (intact target viruses, proteins, viral vectors and nucleic acids). For rapid development, RNA vaccines and adenovirus vector vaccines have been urgently approved, and their injection has already started across the world. These types of vaccine technologies have been developed over more than 20 years using translational research for use against cancer or diseases caused by genetic disorders but the COVID-19 vaccines are the first licensed drugs to prevent infectious diseases using RNA vaccine technology. Although these vaccines are highly effective in preventing COVID-19 for a short period, safety and efficiency evaluations should be continuously monitored over a long time period. As the time of writing, more than 10 projects are now in phase 3 to evaluate the prevention of infection in double-blind studies. Hopefully, several projects may be approved to ensure high-efficiency and safe vaccines.

Author(s):  
Youmei Han ◽  
Minglian Jiao ◽  

With the rapid development of the oblique photogrammetry, many cities have built some real 3D model with this technology. Although it has the advantages of short period, high efficiency and good air angle effect, the near ground view angle of these real 3D models are not very good. With increasing development of smart cities, the requirements of reality, practicality and accuracy on real 3D models are becoming higher. How to produce and improve the real 3D models quickly has become one of the hot research directions of geospatial information. To meet this requirement In this paper, Combined with the characteristics of current oblique photogrammetry modeling and the terrestrial photogrammetry, we proposed a new technological process, which consists of close range sensor design, data acquisition and processing. The proposed method is being tested by using oblique photography images acquired. The results confirm the effectiveness of the proposed approach.


2018 ◽  
Author(s):  
Tilman Polster ◽  
Lieven Lagae ◽  
Joseph Sullivan ◽  
Ulrich Brandl ◽  
Arne Herting ◽  
...  

2017 ◽  
Vol 1 ◽  
pp. s82
Author(s):  
Steven Dayan ◽  
Patricia Ogilvie ◽  
Alexander Z Rivkin ◽  
Steven G Yoelin ◽  
Julie K Garcia ◽  
...  

Abstract Not Available Disclosures: Study supported by Allergan.


2017 ◽  
Vol 1 ◽  
pp. s96
Author(s):  
David M Pariser ◽  
Adelaide A Hebert ◽  
Janice Drew ◽  
John Quiring ◽  
Dee Anna Glaser

Abstract Not AvailableDisclosure: Study supported by Dermira.


2018 ◽  
Vol 2 ◽  
pp. S41
Author(s):  
David M Pariser ◽  
Adelaide A Hebert ◽  
Janice Drew ◽  
John Quiring ◽  
Dee Anna Glaser

Abstract not available. Disclosures: Study supported by Dermira. Copyright SKIN 2018


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