In silico molecular docking and in vitro antimicrobial efficacy of phytochemicals against multi-drug-resistant enteroaggregative Escherichia coli and non-typhoidal Salmonella spp.

被引:41
作者
Abishad, Padikkamannil [1 ]
Niveditha, Pollumahanti [2 ]
Unni, Varsha [1 ]
Vergis, Jess [1 ]
Kurkure, Nitin Vasantrao [3 ]
Chaudhari, Sandeep [3 ]
Rawool, Deepak Bhiwa [2 ]
Barbuddhe, Sukhadeo Baliram [2 ]
机构
[1] KVASU, Coll Vet & Anim Sci, Dept Vet Publ Hlth, Pookode 673576, Wayanad, India
[2] ICAR Natl Res Ctr Meat, Hyderabad 500092, India
[3] MAFSU, Nagpur Vet Coll, Nagpur 440006, Maharashtra, India
关键词
Phytochemical; Docking; Enteroaggregative E; coli; Non-typhoidal Salmonella; DELIVERY; INFANTS;
D O I
10.1186/s13099-021-00443-3
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background In the wake of emergence of antimicrobial resistance, bioactive phytochemical compounds are proving to be important therapeutic agents. The present study envisaged in silico molecular docking as well as in vitro antimicrobial efficacy screening of identified phytochemical ligands to the dispersin (aap) and outer membrane osmoporin (OmpC) domains of enteroaggregative Escherichia coli (EAEC) and non-typhoidal Salmonella spp. (NTS), respectively. Materials and methods The evaluation of drug-likeness, molecular properties, and bioactivity of the identified phytocompounds (thymol, carvacrol, and cinnamaldehyde) was carried out using Swiss ADME, while Protox-II and StopTox servers were used to identify its toxicity. The in silico molecular docking of the phytochemical ligands with the protein motifs of dispersin (PDB ID: 2jvu) and outer membrane osmoporin (PDB ID: 3uu2) were carried out using AutoDock v.4.20. Further, the antimicrobial efficacy of these compounds against multi-drug resistant EAEC and NTS strains was determined by estimating the minimum inhibitory concentrations and minimum bactericidal concentrations. Subsequently, these phytochemicals were subjected to their safety (sheep and human erythrocytic haemolysis) as well as stability (cationic salts, and pH) assays. Results All the three identified phytochemicals ligands were found to be zero violators of Lipinski's rule of five and exhibited drug-likeness. The compounds tested were categorized as toxicity class-4 by Protox-II and were found to be non- cardiotoxic by StopTox. The docking studies employing 3D model of dispersin and ompC motifs with the identified phytochemical ligands exhibited good binding affinity. The identified phytochemical compounds were observed to be comparatively stable at different conditions (cationic salts, and pH); however, a concentration-dependent increase in the haemolytic assay was observed against sheep as well as human erythrocytes. Conclusions In silico molecular docking studies provided useful insights to understand the interaction of phytochemical ligands with protein motifs of pathogen and should be used routinely before the wet screening of any phytochemicals for their antibacterial, stability, and safety aspects.
引用
收藏
页数:11
相关论文
共 44 条
[31]   Leveraging phytochemicals: the plant phylogeny predicts sources of novel antibacterial compounds [J].
Prasad, Malini A. ;
Zolnik, Christine P. ;
Molina, Jeanmaire .
FUTURE SCIENCE OA, 2019, 5 (07)
[32]   Prevalence, antimicrobial resistance and virulence genes characterization of nontyphoidal Salmonella isolated from retail chicken meat shops in Northern India [J].
Sharma, Jaishree ;
Kumar, Deepak ;
Hussain, Sheeba ;
Pathak, Anubha ;
Shukla, Maansi ;
Kumar, Prasanna, V ;
Anisha, P. N. ;
Rautela, Richa ;
Upadhyay, A. K. ;
Singh, S. P. .
FOOD CONTROL, 2019, 102 :104-111
[33]   A novel dispersin protein in enteroaggregative Escherichia coli [J].
Sheikh, J ;
Czeczulin, JR ;
Harrington, S ;
Hicks, S ;
Henderson, IR ;
Le Bouguénec, C ;
Gounon, P ;
Phillips, A ;
Nataro, JP .
JOURNAL OF CLINICAL INVESTIGATION, 2002, 110 (09) :1329-1337
[34]   Occurrence and Characterization of Salmonella Isolated from Table Egg Layer Farming Environments in Western Australia and Insights into Biosecurity and Egg Handling Practices [J].
Sodagari, Hamid Reza ;
Habib, Ihab ;
Whiddon, Scott ;
Wang, Penghao ;
Mohammed, Arkan Baraa ;
Robertson, Ian ;
Goodchild, Stan .
PATHOGENS, 2020, 9 (01)
[35]   Exploring the future of infectious disease treatment in a post-antibiotic era: A comparative review of alternative therapeutics [J].
Streicher, Laura Michelle .
JOURNAL OF GLOBAL ANTIMICROBIAL RESISTANCE, 2021, 24 :285-295
[36]   Antimicrobial resistance in the environment: The Indian scenario [J].
Taneja, Neelam ;
Sharma, Megha .
INDIAN JOURNAL OF MEDICAL RESEARCH, 2019, 149 (02) :119-128
[37]   Comparison of different approaches to antibiotic restriction in food-producing animals: stratified results from a systematic review and meta-analysis [J].
Tang, Karen L. ;
Caffrey, Niamh P. ;
Nobrega, Diego B. ;
Cork, Susan C. ;
Ronksley, Paul E. ;
Barkema, Herman W. ;
Polachek, Alicia J. ;
Ganshorn, Heather ;
Sharma, Nishan ;
Kellner, James D. ;
Checkley, Sylvia L. ;
Ghali, William A. .
BMJ GLOBAL HEALTH, 2019, 4 (04)
[38]   Editorial: Alternative Therapeutics Against Antimicrobial-Resistant Pathogens [J].
Thombre, Rebecca ;
Jangid, Kamlesh ;
Shukla, Ravi ;
Dutta, Noton Kumar .
FRONTIERS IN MICROBIOLOGY, 2019, 10
[39]   Conservation of the OmpC Porin Among Typhoidal and Non-Typhoidal Salmonella Serovars [J].
Valero-Pacheco, Nuriban ;
Blight, Joshua ;
Aldapa-Vega, Gustavo ;
Kemlo, Phillip ;
Perez-Toledo, Marisol ;
Wong-Baeza, Isabel ;
Kurioka, Ayako ;
Perez-Shibayama, Christian ;
Gil-Cruz, Cristina ;
Sanchez-Torres, Luvia E. ;
Pastelin-Palacios, Rodolfo ;
Isibasi, Armando ;
Reyes-Sandoval, Arturo ;
Klenerman, Paul ;
Lopez-Macias, Constantino .
FRONTIERS IN IMMUNOLOGY, 2020, 10
[40]   A Critical Analysis of the Interplay between Cytochrome P450 3A and P-Glycoprotein: Recent Insights from Knockout and Transgenic Mice [J].
van Waterschoot, Robert A. B. ;
Schinkel, Alfred H. .
PHARMACOLOGICAL REVIEWS, 2011, 63 (02) :390-410