An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones

Ankita Khataniar,1,* Abhichandan Das,1,* Manash J Baruah,2 Kusum K Bania,2 Sanchaita Rajkhowa,1,* Sami A Al-Hussain,3 Magdi EA Zaki3 1Centre for Biotechnology and Bioinformatics, Dibrugarh University, Dibrugarh, As-786004, India; 2Department of Chemical Sciences, Tezpur Unive...

Descrizione completa

Dettagli Bibliografici
Autori principali: Khataniar A, Das A, Baruah MJ, Bania KK, Rajkhowa S, Al-Hussain SA, Zaki ME
Natura: Articolo
Lingua:English
Pubblicazione: Dove Medical Press 2023-11-01
Serie:Drug Design, Development and Therapy
Soggetti:
Accesso online:https://www.dovepress.com/an-integrative-approach-to-study-the-inhibition-of-providencia-vermico-peer-reviewed-fulltext-article-DDDT
_version_ 1827762542000209920
author Khataniar A
Das A
Baruah MJ
Bania KK
Rajkhowa S
Al-Hussain SA
Zaki ME
author_facet Khataniar A
Das A
Baruah MJ
Bania KK
Rajkhowa S
Al-Hussain SA
Zaki ME
author_sort Khataniar A
collection DOAJ
description Ankita Khataniar,1,&ast; Abhichandan Das,1,&ast; Manash J Baruah,2 Kusum K Bania,2 Sanchaita Rajkhowa,1,&ast; Sami A Al-Hussain,3 Magdi EA Zaki3 1Centre for Biotechnology and Bioinformatics, Dibrugarh University, Dibrugarh, As-786004, India; 2Department of Chemical Sciences, Tezpur University, Tezpur, As-784028, India; 3Department of Chemistry, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh, Saudi Arabia&ast;These authors contributed equally to this workCorrespondence: Sanchaita Rajkhowa; Magdi EA Zaki, Email s_rajkhowa@dibru.ac.in; mezaki@imamu.edu.saBackground: The present study investigates the potential bioactivity of twelve experimentally designed C-2 quaternary indolinones against Providencia spp., a bacterial group of the Enterobacteriaceae family known to cause urinary tract infections. The study aims to provide insights into the bioactive properties of the investigated compounds and their potential use in developing novel treatments against Providencia spp. The experimental design of indolinones, combined with their unique chemical structure, makes them attractive candidates for further investigation. The results of this research may contribute to the development of novel therapeutic agents to combat Providencia spp. infections.Methods: The synthesized indolinones (moL1-moL12) are evaluated to identify any superior activity, particularly focusing on moL12, which possesses aza functionality. The antimicrobial activities of all twelve compounds are tested in triplicates against six different Gram-positive and Gram-negative organisms, including P. vermicola (P< 0.05). Computational methods have been employed to assess the pharmacokinetic properties of the compounds.Results: Among the synthesized indolinones, moL12 exhibits superior activity compared to the other compounds with similar skeleton but different functional moieties. All six strains tested, including P. vermicola, demonstrated sensitivity to moL12. Computational studies support the pharmacokinetic properties of moL12, indicating acceptable absorption, distribution, metabolism, excretion, and toxicity characteristics.Conclusion: Utilizing the PPI approach, we have identified a promising target, FabD, in Gram-negative bacteria. Our analysis has shown that moL12 exhibits significant potential in binding with FabD, thereby, might inhibit cell wall formation, and display superior antimicrobial activity compared to other compounds. Consequently, moL12 may be a potential therapeutic agent that could be used to combat urinary tract infections caused by Providencia spp. The findings of this research hold significant promise for the development of new and effective treatments for bacterial infections. Keywords: C-2 quaternary indolinones, Providencia vermicola, Providencia stuartii, multi-drug resistance, molecular docking, molecular dynamics simulation
first_indexed 2024-03-11T10:32:05Z
format Article
id doaj.art-df60e5e55a6e4d63bbc84bbf96a1b1e5
institution Directory Open Access Journal
issn 1177-8881
language English
last_indexed 2024-03-11T10:32:05Z
publishDate 2023-11-01
publisher Dove Medical Press
record_format Article
series Drug Design, Development and Therapy
spelling doaj.art-df60e5e55a6e4d63bbc84bbf96a1b1e52023-11-14T17:11:38ZengDove Medical PressDrug Design, Development and Therapy1177-88812023-11-01Volume 173325334788147An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary IndolinonesKhataniar ADas ABaruah MJBania KKRajkhowa SAl-Hussain SAZaki MEAnkita Khataniar,1,&ast; Abhichandan Das,1,&ast; Manash J Baruah,2 Kusum K Bania,2 Sanchaita Rajkhowa,1,&ast; Sami A Al-Hussain,3 Magdi EA Zaki3 1Centre for Biotechnology and Bioinformatics, Dibrugarh University, Dibrugarh, As-786004, India; 2Department of Chemical Sciences, Tezpur University, Tezpur, As-784028, India; 3Department of Chemistry, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh, Saudi Arabia&ast;These authors contributed equally to this workCorrespondence: Sanchaita Rajkhowa; Magdi EA Zaki, Email s_rajkhowa@dibru.ac.in; mezaki@imamu.edu.saBackground: The present study investigates the potential bioactivity of twelve experimentally designed C-2 quaternary indolinones against Providencia spp., a bacterial group of the Enterobacteriaceae family known to cause urinary tract infections. The study aims to provide insights into the bioactive properties of the investigated compounds and their potential use in developing novel treatments against Providencia spp. The experimental design of indolinones, combined with their unique chemical structure, makes them attractive candidates for further investigation. The results of this research may contribute to the development of novel therapeutic agents to combat Providencia spp. infections.Methods: The synthesized indolinones (moL1-moL12) are evaluated to identify any superior activity, particularly focusing on moL12, which possesses aza functionality. The antimicrobial activities of all twelve compounds are tested in triplicates against six different Gram-positive and Gram-negative organisms, including P. vermicola (P< 0.05). Computational methods have been employed to assess the pharmacokinetic properties of the compounds.Results: Among the synthesized indolinones, moL12 exhibits superior activity compared to the other compounds with similar skeleton but different functional moieties. All six strains tested, including P. vermicola, demonstrated sensitivity to moL12. Computational studies support the pharmacokinetic properties of moL12, indicating acceptable absorption, distribution, metabolism, excretion, and toxicity characteristics.Conclusion: Utilizing the PPI approach, we have identified a promising target, FabD, in Gram-negative bacteria. Our analysis has shown that moL12 exhibits significant potential in binding with FabD, thereby, might inhibit cell wall formation, and display superior antimicrobial activity compared to other compounds. Consequently, moL12 may be a potential therapeutic agent that could be used to combat urinary tract infections caused by Providencia spp. The findings of this research hold significant promise for the development of new and effective treatments for bacterial infections. Keywords: C-2 quaternary indolinones, Providencia vermicola, Providencia stuartii, multi-drug resistance, molecular docking, molecular dynamics simulationhttps://www.dovepress.com/an-integrative-approach-to-study-the-inhibition-of-providencia-vermico-peer-reviewed-fulltext-article-DDDTc-2 quaternary indolinonesprovidencia vermicolaprovidencia stuartiimulti-drug resistancemolecular dockingmolecular dynamics simulation
spellingShingle Khataniar A
Das A
Baruah MJ
Bania KK
Rajkhowa S
Al-Hussain SA
Zaki ME
An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones
Drug Design, Development and Therapy
c-2 quaternary indolinones
providencia vermicola
providencia stuartii
multi-drug resistance
molecular docking
molecular dynamics simulation
title An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones
title_full An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones
title_fullStr An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones
title_full_unstemmed An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones
title_short An Integrative Approach to Study the Inhibition of Providencia vermicola FabD Using C2-Quaternary Indolinones
title_sort integrative approach to study the inhibition of providencia vermicola fabd using c2 quaternary indolinones
topic c-2 quaternary indolinones
providencia vermicola
providencia stuartii
multi-drug resistance
molecular docking
molecular dynamics simulation
url https://www.dovepress.com/an-integrative-approach-to-study-the-inhibition-of-providencia-vermico-peer-reviewed-fulltext-article-DDDT
work_keys_str_mv AT khataniara anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT dasa anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT baruahmj anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT baniakk anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT rajkhowas anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT alhussainsa anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT zakime anintegrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT khataniara integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT dasa integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT baruahmj integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT baniakk integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT rajkhowas integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT alhussainsa integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones
AT zakime integrativeapproachtostudytheinhibitionofprovidenciavermicolafabdusingc2quaternaryindolinones