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Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases

The classical antivenom therapy has appreciably reduced snakebite mortality rate and thus is the only savior drug available. Unfortunately, it considerably fails to shield the viper bite complications like hemorrhage, local tissue degradation and necrosis responsible for severe morbidity. Moreover,...

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Autores principales: Srinivasa, Venkatachalaiah, Sundaram, Mahalingam S., Anusha, Sebastian, Hemshekhar, Mahadevappa, Chandra Nayaka, Siddaiah, Kemparaju, Kempaiah, Basappa, Girish, Kesturu S., Rangappa, Kanchugarakoppal S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4153592/
https://www.ncbi.nlm.nih.gov/pubmed/25184206
http://dx.doi.org/10.1371/journal.pone.0106364
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author Srinivasa, Venkatachalaiah
Sundaram, Mahalingam S.
Anusha, Sebastian
Hemshekhar, Mahadevappa
Chandra Nayaka, Siddaiah
Kemparaju, Kempaiah
Basappa,
Girish, Kesturu S.
Rangappa, Kanchugarakoppal S.
author_facet Srinivasa, Venkatachalaiah
Sundaram, Mahalingam S.
Anusha, Sebastian
Hemshekhar, Mahadevappa
Chandra Nayaka, Siddaiah
Kemparaju, Kempaiah
Basappa,
Girish, Kesturu S.
Rangappa, Kanchugarakoppal S.
author_sort Srinivasa, Venkatachalaiah
collection PubMed
description The classical antivenom therapy has appreciably reduced snakebite mortality rate and thus is the only savior drug available. Unfortunately, it considerably fails to shield the viper bite complications like hemorrhage, local tissue degradation and necrosis responsible for severe morbidity. Moreover, the therapy is also tagged with limitations including anaphylaxis, serum sickness and poor availability. Over the last decade, snake venom metalloproteases (SVMPs) are reported to be the primary component responsible for hemorrhage and tissue degradation at bitten site. Thus, antivenom inability to offset viper venom-induced local toxicity has been a basis for an insistent search for SVMP inhibitors. Here we report the inhibitory effect of compound 5d, an apigenin based molecule against SVMPs both in silico and in vivo. Several apigenin analogues are synthesized using multicomponent Ugi reactions. Among them, compound 5d effectively abrogated Echis carinatus (EC) venom-induced local hemorrhage, tissue necrosis and myotoxicity in a dose dependant fashion. The histopathological study further conferred effective inhibition of basement membrane degradation, and accumulation of inflammatory leucocytes at the site of EC venom inoculation. The compound also protected EC venom-induced fibrin and fibrinogen degradation. The molecular docking of compound 5d and bothropasin demonstrated the direct interaction of hydroxyl group of compound with Glu146 present in hydrophobic pocket of active site and does not chelate Zn(2+). Hence, it is concluded that compound 5d could be a potent agent in viper bite management.
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spelling pubmed-41535922014-09-05 Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases Srinivasa, Venkatachalaiah Sundaram, Mahalingam S. Anusha, Sebastian Hemshekhar, Mahadevappa Chandra Nayaka, Siddaiah Kemparaju, Kempaiah Basappa, Girish, Kesturu S. Rangappa, Kanchugarakoppal S. PLoS One Research Article The classical antivenom therapy has appreciably reduced snakebite mortality rate and thus is the only savior drug available. Unfortunately, it considerably fails to shield the viper bite complications like hemorrhage, local tissue degradation and necrosis responsible for severe morbidity. Moreover, the therapy is also tagged with limitations including anaphylaxis, serum sickness and poor availability. Over the last decade, snake venom metalloproteases (SVMPs) are reported to be the primary component responsible for hemorrhage and tissue degradation at bitten site. Thus, antivenom inability to offset viper venom-induced local toxicity has been a basis for an insistent search for SVMP inhibitors. Here we report the inhibitory effect of compound 5d, an apigenin based molecule against SVMPs both in silico and in vivo. Several apigenin analogues are synthesized using multicomponent Ugi reactions. Among them, compound 5d effectively abrogated Echis carinatus (EC) venom-induced local hemorrhage, tissue necrosis and myotoxicity in a dose dependant fashion. The histopathological study further conferred effective inhibition of basement membrane degradation, and accumulation of inflammatory leucocytes at the site of EC venom inoculation. The compound also protected EC venom-induced fibrin and fibrinogen degradation. The molecular docking of compound 5d and bothropasin demonstrated the direct interaction of hydroxyl group of compound with Glu146 present in hydrophobic pocket of active site and does not chelate Zn(2+). Hence, it is concluded that compound 5d could be a potent agent in viper bite management. Public Library of Science 2014-09-03 /pmc/articles/PMC4153592/ /pubmed/25184206 http://dx.doi.org/10.1371/journal.pone.0106364 Text en © 2014 Srinivasa et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Srinivasa, Venkatachalaiah
Sundaram, Mahalingam S.
Anusha, Sebastian
Hemshekhar, Mahadevappa
Chandra Nayaka, Siddaiah
Kemparaju, Kempaiah
Basappa,
Girish, Kesturu S.
Rangappa, Kanchugarakoppal S.
Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases
title Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases
title_full Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases
title_fullStr Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases
title_full_unstemmed Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases
title_short Novel Apigenin Based Small Molecule that Targets Snake Venom Metalloproteases
title_sort novel apigenin based small molecule that targets snake venom metalloproteases
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4153592/
https://www.ncbi.nlm.nih.gov/pubmed/25184206
http://dx.doi.org/10.1371/journal.pone.0106364
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