Report for Shaikh S

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References (19)

Title : Identification of active compounds as novel dipeptidyl peptidase-4 inhibitors through machine learning and structure-based molecular docking simulations - Ali_2023_J.Biomol.Struct.Dyn__1
Author(s) : Ali S , Shaikh S , Ahmad K , Choi I
Ref : J Biomol Struct Dyn , :1 , 2023
Abstract : Ali_2023_J.Biomol.Struct.Dyn__1
ESTHER : Ali_2023_J.Biomol.Struct.Dyn__1
PubMedSearch : Ali_2023_J.Biomol.Struct.Dyn__1
PubMedID: 38100571

Title : Natural Products in Therapeutic Management of Multineurodegenerative Disorders by Targeting Autophagy - Shaikh_2021_Oxid.Med.Cell.Longev_2021_6347792
Author(s) : Shaikh S , Ahmad K , Ahmad SS , Lee EJ , Lim JH , Beg MMA , Verma AK , Choi I
Ref : Oxid Med Cell Longev , 2021 :6347792 , 2021
Abstract : Shaikh_2021_Oxid.Med.Cell.Longev_2021_6347792
ESTHER : Shaikh_2021_Oxid.Med.Cell.Longev_2021_6347792
PubMedSearch : Shaikh_2021_Oxid.Med.Cell.Longev_2021_6347792
PubMedID: 34557265

Title : Biocomputational Screening of Natural Compounds against Acetylcholinesterase - Ahmad_2021_Molecules_26_
Author(s) : Ahmad SS , Khan MB , Ahmad K , Lim JH , Shaikh S , Lee EJ , Choi I
Ref : Molecules , 26 : , 2021
Abstract : Ahmad_2021_Molecules_26_
ESTHER : Ahmad_2021_Molecules_26_
PubMedSearch : Ahmad_2021_Molecules_26_
PubMedID: 33946559

Title : Design, synthesis and biological evaluation of novel antipyrine based alpha-aminophosphonates as anti-Alzheimer and anti-inflammatory agent - Shaikh_2021_J.Biomol.Struct.Dyn__1
Author(s) : Shaikh S , Dhavan P , Singh P , Uparkar J , Vaidya SP , Jadhav BL , Ramana MMV
Ref : J Biomol Struct Dyn , :1 , 2021
Abstract : Shaikh_2021_J.Biomol.Struct.Dyn__1
ESTHER : Shaikh_2021_J.Biomol.Struct.Dyn__1
PubMedSearch : Shaikh_2021_J.Biomol.Struct.Dyn__1
PubMedID: 34878960

Title : Design, synthesis and evaluation of dihydropyranoindole derivatives as potential cholinesterase inhibitors against Alzheimer's disease - Shaikh_2021_Bioorg.Chem_110_104770
Author(s) : Shaikh S , Pavale G , Dhavan P , Singh P , Uparkar J , Vaidya SP , Jadhav BL , Ramana MMV
Ref : Bioorg Chem , 110 :104770 , 2021
Abstract : Shaikh_2021_Bioorg.Chem_110_104770
ESTHER : Shaikh_2021_Bioorg.Chem_110_104770
PubMedSearch : Shaikh_2021_Bioorg.Chem_110_104770
PubMedID: 33667902

Title : Synthesis, characterization, in vitro cholinesterase and hRBCs hemolysis assay and computational evaluation of novel 2,3,4,5-tetrahydrobenzothiazepine appended alpha-aminophosphonates - Shaikh_2021_Bioorg.Chem_116_105397
Author(s) : Shaikh S , Dhavan P , Uparkar J , Singh P , Vaidya SP , Jadhav BL , Ramana MMV
Ref : Bioorg Chem , 116 :105397 , 2021
Abstract : Shaikh_2021_Bioorg.Chem_116_105397
ESTHER : Shaikh_2021_Bioorg.Chem_116_105397
PubMedSearch : Shaikh_2021_Bioorg.Chem_116_105397
PubMedID: 34628223

Title : Design, synthesis and evaluation of new chromone-derived aminophosphonates as potential acetylcholinesterase inhibitor - Shaikh_2020_Mol.Divers__
Author(s) : Shaikh S , Dhavan P , Ramana MMV , Jadhav BL
Ref : Mol Divers , : , 2020
Abstract : Shaikh_2020_Mol.Divers__
ESTHER : Shaikh_2020_Mol.Divers__
PubMedSearch : Shaikh_2020_Mol.Divers__
PubMedID: 32124162

Title : Synthesis of carbazole based alpha-aminophosphonate derivatives: design, molecular docking and in vitro cholinesterase activity - Shaikh_2020_J.Biomol.Struct.Dyn__1
Author(s) : Shaikh S , Dhavan P , Singh P , Uparkar J , Vaidya SP , Jadhav BL , Ramana MV
Ref : J Biomol Struct Dyn , :1 , 2020
Abstract : Shaikh_2020_J.Biomol.Struct.Dyn__1
ESTHER : Shaikh_2020_J.Biomol.Struct.Dyn__1
PubMedSearch : Shaikh_2020_J.Biomol.Struct.Dyn__1
PubMedID: 33345710

Title : Design, synthesis and evaluation of pyrazole bearing alpha-aminophosphonate derivatives as potential acetylcholinesterase inhibitors against Alzheimer's disease - Shaikh_2020_Bioorg.Chem_96_103589
Author(s) : Shaikh S , Dhavan P , Pavale G , Ramana MMV , Jadhav BL
Ref : Bioorg Chem , 96 :103589 , 2020
Abstract : Shaikh_2020_Bioorg.Chem_96_103589
ESTHER : Shaikh_2020_Bioorg.Chem_96_103589
PubMedSearch : Shaikh_2020_Bioorg.Chem_96_103589
PubMedID: 31978679

Title : Silver nanoparticles from leaf extract of Mentha piperita: Eco-friendly synthesis and effect on acetylcholinesterase activity - Khatoon_2018_Life.Sci_209_430
Author(s) : Khatoon A , Khan F , Ahmad N , Shaikh S , Rizvi SMD , Shakil S , Al-Qahtani MH , Abuzenadah AM , Tabrez S , Ahmed ABF , Alafnan A , Islam H , Iqbal D , Dutta R
Ref : Life Sciences , 209 :430 , 2018
Abstract : Khatoon_2018_Life.Sci_209_430
ESTHER : Khatoon_2018_Life.Sci_209_430
PubMedSearch : Khatoon_2018_Life.Sci_209_430
PubMedID: 30138593

Title : Prediction of Anti-Diabetic Drugs as Dual Inhibitors Against Acetylcholinesterase and Beta-Secretase: A Neuroinformatics Study - Shaikh_2016_CNS.Neurol.Disord.Drug.Targets_15_1216
Author(s) : Shaikh S , Rizvi SM , Suhail T , Shakil S , Abuzenadah AM , Anis R , Naaz D , Dallol A , Haneef M , Ahmad A , Choudhary L
Ref : CNS Neurol Disord Drug Targets , 15 :1216 , 2016
Abstract : Shaikh_2016_CNS.Neurol.Disord.Drug.Targets_15_1216
ESTHER : Shaikh_2016_CNS.Neurol.Disord.Drug.Targets_15_1216
PubMedSearch : Shaikh_2016_CNS.Neurol.Disord.Drug.Targets_15_1216
PubMedID: 27697060

Title : Kinetics and Molecular Docking Study of an Anti-diabetic Drug Glimepiride as Acetylcholinesterase Inhibitor: Implication for Alzheimer's Disease-Diabetes Dual Therapy - Rizvi_2016_Neurochem.Res_41_1475
Author(s) : Rizvi SM , Shaikh S , Naaz D , Shakil S , Ahmad A , Haneef M , Abuzenadah AM
Ref : Neurochem Res , 41 :1475 , 2016
Abstract : Rizvi_2016_Neurochem.Res_41_1475
ESTHER : Rizvi_2016_Neurochem.Res_41_1475
PubMedSearch : Rizvi_2016_Neurochem.Res_41_1475
PubMedID: 26886763

Title : Forxiga (dapagliflozin): Plausible role in the treatment of diabetes-associated neurological disorders - Shaikh_2016_Biotechnol.Appl.Biochem_63_145
Author(s) : Shaikh S , Rizvi SM , Shakil S , Riyaz S , Biswas D , Jahan R
Ref : Biotechnol Appl Biochem , 63 :145 , 2016
Abstract : Shaikh_2016_Biotechnol.Appl.Biochem_63_145
ESTHER : Shaikh_2016_Biotechnol.Appl.Biochem_63_145
PubMedSearch : Shaikh_2016_Biotechnol.Appl.Biochem_63_145
PubMedID: 25402624

Title : Combined in silico and in vivo studies shed insights into the acute acetylcholinesterase response in rat and human brain - Nazam_2015_Biotechnol.Appl.Biochem_62_407
Author(s) : Nazam N , Shaikh S , Lone MI , Sharma M , Ahmad W
Ref : Biotechnol Appl Biochem , 62 :407 , 2015
Abstract : Nazam_2015_Biotechnol.Appl.Biochem_62_407
ESTHER : Nazam_2015_Biotechnol.Appl.Biochem_62_407
PubMedSearch : Nazam_2015_Biotechnol.Appl.Biochem_62_407
PubMedID: 25082528

Title : A neuroinformatics study to compare inhibition efficiency of three natural ligands (Fawcettimine, Cernuine and Lycodine) against human brain acetylcholinesterase - Shaikh_2015_Network_26_25
Author(s) : Shaikh S , Zainab T , Shakil S , Rizvi SM
Ref : Network , 26 :25 , 2015
Abstract : Shaikh_2015_Network_26_25
ESTHER : Shaikh_2015_Network_26_25
PubMedSearch : Shaikh_2015_Network_26_25
PubMedID: 25611730

Title : Molecular interaction of human brain acetylcholinesterase with a natural inhibitor huperzine-B: an enzoinformatics approach - Alam_2014_CNS.Neurol.Disord.Drug.Targets_13_487
Author(s) : Alam A , Shaikh S , Ahmad SS , Ansari MA , Shakil S , Rizvi SM , Imran M , Haneef M , Abuzenadah AM , Kamal MA
Ref : CNS Neurol Disord Drug Targets , 13 :487 , 2014
Abstract : Alam_2014_CNS.Neurol.Disord.Drug.Targets_13_487
ESTHER : Alam_2014_CNS.Neurol.Disord.Drug.Targets_13_487
PubMedSearch : Alam_2014_CNS.Neurol.Disord.Drug.Targets_13_487
PubMedID: 24059299

Title : Invokana (Canagliflozin) as a dual inhibitor of acetylcholinesterase and sodium glucose co-transporter 2: advancement in Alzheimer's disease- diabetes type 2 linkage via an enzoinformatics study - Rizvi_2014_CNS.Neurol.Disord.Drug.Targets_13_447
Author(s) : Rizvi SM , Shakil S , Biswas D , Shaikh S , Bagga P , Kamal MA
Ref : CNS Neurol Disord Drug Targets , 13 :447 , 2014
Abstract : Rizvi_2014_CNS.Neurol.Disord.Drug.Targets_13_447
ESTHER : Rizvi_2014_CNS.Neurol.Disord.Drug.Targets_13_447
PubMedSearch : Rizvi_2014_CNS.Neurol.Disord.Drug.Targets_13_447
PubMedID: 24059302

Title : Prediction of comparative inhibition efficiency for a novel natural ligand, galangin against human brain acetylcholinesterase, butyrylcholinesterase and 5-lipoxygenase: a neuroinformatics study - Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_452
Author(s) : Shaikh S , Ahmad SS , Ansari MA , Shakil S , Rizvi SM , Tabrez S , Akhtar S , Kamal MA
Ref : CNS Neurol Disord Drug Targets , 13 :452 , 2014
Abstract : Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_452
ESTHER : Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_452
PubMedSearch : Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_452
PubMedID: 24059300

Title : Current acetylcholinesterase-inhibitors: a neuroinformatics perspective - Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_391
Author(s) : Shaikh S , Verma A , Siddiqui S , Ahmad SS , Rizvi SM , Shakil S , Biswas D , Singh D , Siddiqui MH , Tabrez S , Kamal MA
Ref : CNS Neurol Disord Drug Targets , 13 :391 , 2014
Abstract : Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_391
ESTHER : Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_391
PubMedSearch : Shaikh_2014_CNS.Neurol.Disord.Drug.Targets_13_391
PubMedID: 24059296