TY - JOUR
T1 - Phytopharmaceuticals mediated Furin and TMPRSS2 receptor blocking
T2 - can it be a potential therapeutic option for Covid-19?
AU - Palit, Partha
AU - Chattopadhyay, Debprasad
AU - Thomas, Sabu
AU - Kundu, Amit
AU - Kim, Hyung Sik
AU - Rezaei, Nima
N1 - Publisher Copyright:
© 2020
PY - 2021/5
Y1 - 2021/5
N2 - Background: Currently, novel coronavirus disease (Covid-19) outbreak creates global panic across the continents, as people from almost all countries and territories have been affected by this highly contagious viral disease. The scenario is deteriorating due to lack of proper & specific target-oriented pharmacologically safe prophylactic agents or drugs, and or any effective vaccine. drug development is urgently required to back in the normalcy in the community and to combat this pandemic. Purpose: Thus, we have proposed two novel drug targets, Furin and TMPRSS2, as Covid-19 treatment strategy. We have highlighted this target-oriented novel drug delivery strategy, based on their pathophysiological implication on SARS-CoV-2 infection, as evident from earlier SARS-CoV-1, MERS, and influenza virus infection via host cell entry, priming, fusion, and endocytosis. Study design & Methods: An earlier study suggested that Furin and TMPRSS2 knockout mice had reduced level of viral load and a lower degree of organ damage such as the lung. The present study thus highlights the promise of some selected novel and potential anti-viral Phytopharmaceutical that bind to Furin and TMPRSS2 as target. Result: Few of them had shown promising anti-viral response in both preclinical and clinical study with acceptable therapeutic safety-index. Conclusion: Hence, this strategy may limit life-threatening Covid-19 infection and its mortality rate through nano-suspension based intra-nasal or oral nebulizer spray, to treat mild to moderate SARS-COV-2 infection when Furin and TMPRSS2 receptor may initiate to express and activate for processing the virus to cause cellular infection by replication within the host cell and blocking of host-viral interaction.
AB - Background: Currently, novel coronavirus disease (Covid-19) outbreak creates global panic across the continents, as people from almost all countries and territories have been affected by this highly contagious viral disease. The scenario is deteriorating due to lack of proper & specific target-oriented pharmacologically safe prophylactic agents or drugs, and or any effective vaccine. drug development is urgently required to back in the normalcy in the community and to combat this pandemic. Purpose: Thus, we have proposed two novel drug targets, Furin and TMPRSS2, as Covid-19 treatment strategy. We have highlighted this target-oriented novel drug delivery strategy, based on their pathophysiological implication on SARS-CoV-2 infection, as evident from earlier SARS-CoV-1, MERS, and influenza virus infection via host cell entry, priming, fusion, and endocytosis. Study design & Methods: An earlier study suggested that Furin and TMPRSS2 knockout mice had reduced level of viral load and a lower degree of organ damage such as the lung. The present study thus highlights the promise of some selected novel and potential anti-viral Phytopharmaceutical that bind to Furin and TMPRSS2 as target. Result: Few of them had shown promising anti-viral response in both preclinical and clinical study with acceptable therapeutic safety-index. Conclusion: Hence, this strategy may limit life-threatening Covid-19 infection and its mortality rate through nano-suspension based intra-nasal or oral nebulizer spray, to treat mild to moderate SARS-COV-2 infection when Furin and TMPRSS2 receptor may initiate to express and activate for processing the virus to cause cellular infection by replication within the host cell and blocking of host-viral interaction.
KW - Covid-19
KW - FURIN
KW - Host cell entry inhibitor
KW - Nasal or oral inhaler
KW - TMPRSS2
KW - Virus-host cell interaction blocking
UR - https://www.scopus.com/pages/publications/85098522033
U2 - 10.1016/j.phymed.2020.153396
DO - 10.1016/j.phymed.2020.153396
M3 - Review article
C2 - 33380375
AN - SCOPUS:85098522033
SN - 0944-7113
VL - 85
JO - Phytomedicine
JF - Phytomedicine
M1 - 153396
ER -