Browsing by Author Palanimuthu, Duraippandi

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Issue DateTitleAuthor(s)Citation
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2018Novel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's diseaseJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Wu, Zhixuan; Bernhardt, Paul V.; Braidy, Nady; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyNovel chelators based on adamantane-derived semicarbazones and hydrazones that target multiple hallmarks of Alzheimer's disease, Dalton Transactions, vol.47, 21, 2018,pp 7190-7205
2017A novel class of thiosemicarbazones show multi-functional activity for the treatment of Alzheimer's diseaseAnjum, Rukhsana; Hibbs, David; Kalinowski, Danuta; Lin, Hsuan-Yu Jennifer; Palanimuthu, Duraippandi; Poon, Rachal; Richardson, Desi (Des); Sahni, Sumit; Bernhardt, Paul V; School of Medical Sciences: Pathology; Pharmacy; School of Medical Sciences: Pathology; Pharmacy; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyA novel class of thiosemicarbazones show multi-functional activity for the treatment of Alzheimer's disease, European Journal of Medicinal Chemistry, vol.139, N/A, 2017,pp 612-632
2016Structure-Activity Relationships of Di-2-pyridylketone, 2-Benzoylpyridine, and 2-Acetylpyridine Thiosemicarbazones for Overcoming Pgp-Mediated Drug ResistanceJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Stacy, Alexandra Elizabeth; Bernhardt, Paul V; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyStructure-Activity Relationships of Di-2-pyridylketone, 2-Benzoylpyridine, and 2-Acetylpyridine Thiosemicarbazones for Overcoming Pgp-Mediated Drug Resistance, Journal of Medicinal Chemistry, vol.59, 18, 2016,pp 8601-8620
2016Structure-Activity Relationships of Di-2-pyridylketone, 2-Benzoylpyridine, and 2-Acetylpyridine Thiosemicarbazones for Overcoming Pgp-Mediated Drug ResistanceJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Stacy, Alexandra Elizabeth; Bernhardt, Paul V; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyStructure-Activity Relationships of Di-2-pyridylketone, 2-Benzoylpyridine, and 2-Acetylpyridine Thiosemicarbazones for Overcoming Pgp-Mediated Drug Resistance, Journal of Medicinal Chemistry, vol.59, 18, 2016,pp 8601-8620
2015The use of iron chelators in biocidal compositions: evaluation of patent, WO2014059417A1Krishan, Sukriti; Palanimuthu, Duraippandi; Richardson, Desi (Des); Sahni, Sumit; School of Medical Sciences: Bosch Institute; Central Clinical School: Pathology; School of Medical Sciences: Pathology; MedicineThe use of iron chelators in biocidal compositions: evaluation of patent, WO2014059417A1, Expert Opinion on Therapeutic Patents, vol.25, 3, 2015,pp 367-372
2016Zinc(II)-Thiosemicarbazone Complexes Are Localized to the Lysosomal Compartment Where They Transmetallate with Copper Ions to Induce CytotoxicityJansson, Patric; Kalinowski, Danuta; Palanimuthu, Duraippandi; Richardson, Desi (Des); Stacy, Alexandra Elizabeth; Bernhardt, Paul V; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; Central Clinical School: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyZinc(II)-Thiosemicarbazone Complexes Are Localized to the Lysosomal Compartment Where They Transmetallate with Copper Ions to Induce Cytotoxicity, Journal of Medicinal Chemistry, vol.59, 10, 2016,pp 4965-4984