Author: Sohrab, Sayed Sartaj; Suhail, Mohd; Kamal, Mohammad Amjad; Ahmad, Fahim; Azhar, Esam Ibraheem
Title: Emergence of human pathogenic Coronaviruses: Lectins as antivirals for SARS-CoV-2. Cord-id: vbaa3k8o Document date: 2020_8_21
ID: vbaa3k8o
Snippet: BACKGROUND Human coronaviruses (HCoV) are common viruses and known to be associated with respiratory diseases, including pneumonia. Currently, there are seven human coronaviruses have been identified and known to cause upper and lower respiratory infections as well as nosocomial viral infections in human. The bats, palm civets and camels are identified as the reservoir of human coronaviruses. In 2002-2003, the emergence of SARS-CoV resulted in an outbreak and led towards the more awareness and i
Document: BACKGROUND Human coronaviruses (HCoV) are common viruses and known to be associated with respiratory diseases, including pneumonia. Currently, there are seven human coronaviruses have been identified and known to cause upper and lower respiratory infections as well as nosocomial viral infections in human. The bats, palm civets and camels are identified as the reservoir of human coronaviruses. In 2002-2003, the emergence of SARS-CoV resulted in an outbreak and led towards the more awareness and importance of scientific research and medical urgency. METHODS The recently identified SARS-CoV-2 was identified from the seafood market of the city Wuhan, China in December 2019 and caused a global pandemic. This virus has now spread to more than 213 countries. This is the third highly pathogenic human coronavirus after SARS and MERS-CoV. The coronaviruses have RNA as genetic material and known to have frequent recombination and mutations in their genome which led to the emergence and re-emergence of new virus strains and isolates with novel properties and their extended hosts.The genetic mutations and suitable environmental conditions result in emergence and re-emergence of a pathogenic coronaviruses and pose a serious issue for human health and economy globally. Lectins are the ubiquitous group of proteins which binds to glycosylated molecules. CONCLUSION The plant lectins are known to have significant antiviral activities against coronaviruses. Additionally, the plant lectins can be used as potential therapeutics against bacteria, fungus, yeast and protozoa. In this review, we have discussed the current status of human pathogenic coronavirus emergence and the use of plant lectins as antivirals against SARS-CoV-2.
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