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Mi Hee Lim

Showing results (21-30 of 161) with videos related to

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Journal of the American Chemical Society|April 15, 2004
Dirhodium tetracarboxylate scaffolds as reversible fluorescence-based nitric oxide sensorsScott A Hilderbrand, Mi Hee Lim, Stephen J Lippard
Inorganic Chemistry|December 18, 2018
Strategies Employing Transition Metal Complexes To Modulate Amyloid-β AggregationJong-Min Suh, Gunhee Kim, Juhye Kang, et al.
Journal of Inorganic Biochemistry|September 5, 2021
Drug repurposing: small molecules against Cu(II)-amyloid-β and free radicalsGeewoo Nam, Jong-Min Suh, Yelim Yi, et al.
Chemical Society Reviews|August 6, 2011
Misfolded proteins in Alzheimer's disease and type II diabetesAlaina S DeToma, Samer Salamekh, Ayyalusamy Ramamoorthy, et al.
Advanced Healthcare Materials|September 2, 2024
Transition Metal Complexes as Therapeutics: A New Frontier in Combatting Neurodegenerative Disorders through Protein Aggregation ModulationGovinda R Navale, Imtiaz Ahmed, Mi Hee Lim, et al.
ACS Chemical Biology|March 20, 2013
Untangling amyloid-β, tau, and metals in Alzheimer's diseaseMasha G Savelieff, Sanghyun Lee, Yuzhong Liu, et al.
Chemical Communications (Cambridge, England)|November 11, 2015
Amyloid-β adopts a conserved, partially folded structure upon binding to zwitterionic lipid bilayers prior to amyloid formationKyle J Korshavn, Anirban Bhunia, Mi Hee Lim, et al.
Inorganic Chemistry|October 13, 2009
Effects of clioquinol on metal-triggered amyloid-beta aggregation revisitedAllana M Mancino, Sarmad S Hindo, Akiko Kochi, et al.
Chemical Science|January 15, 2025
Multi-target-directed therapeutic strategies for Alzheimer's disease: controlling amyloid-β aggregation, metal ion homeostasis, and enzyme inhibitionJeasang Yoo, Jimin Lee, Byeongha Ahn, et al.
Accounts of Chemical Research|August 1, 2014
The ongoing search for small molecules to study metal-associated amyloid-β species in Alzheimer's diseaseMasha G Savelieff, Alaina S DeToma, Jeffrey S Derrick, et al.
Pageof 17

Showing results (21-30 of 161) with videos related to

Sort By:
Pageof 17
Journal of the American Chemical Society|April 15, 2004
Dirhodium tetracarboxylate scaffolds as reversible fluorescence-based nitric oxide sensorsScott A Hilderbrand, Mi Hee Lim, Stephen J Lippard
Inorganic Chemistry|December 18, 2018
Strategies Employing Transition Metal Complexes To Modulate Amyloid-β AggregationJong-Min Suh, Gunhee Kim, Juhye Kang, et al.
Journal of Inorganic Biochemistry|September 5, 2021
Drug repurposing: small molecules against Cu(II)-amyloid-β and free radicalsGeewoo Nam, Jong-Min Suh, Yelim Yi, et al.
Chemical Society Reviews|August 6, 2011
Misfolded proteins in Alzheimer's disease and type II diabetesAlaina S DeToma, Samer Salamekh, Ayyalusamy Ramamoorthy, et al.
Advanced Healthcare Materials|September 2, 2024
Transition Metal Complexes as Therapeutics: A New Frontier in Combatting Neurodegenerative Disorders through Protein Aggregation ModulationGovinda R Navale, Imtiaz Ahmed, Mi Hee Lim, et al.
ACS Chemical Biology|March 20, 2013
Untangling amyloid-β, tau, and metals in Alzheimer's diseaseMasha G Savelieff, Sanghyun Lee, Yuzhong Liu, et al.
Chemical Communications (Cambridge, England)|November 11, 2015
Amyloid-β adopts a conserved, partially folded structure upon binding to zwitterionic lipid bilayers prior to amyloid formationKyle J Korshavn, Anirban Bhunia, Mi Hee Lim, et al.
Inorganic Chemistry|October 13, 2009
Effects of clioquinol on metal-triggered amyloid-beta aggregation revisitedAllana M Mancino, Sarmad S Hindo, Akiko Kochi, et al.
Chemical Science|January 15, 2025
Multi-target-directed therapeutic strategies for Alzheimer's disease: controlling amyloid-β aggregation, metal ion homeostasis, and enzyme inhibitionJeasang Yoo, Jimin Lee, Byeongha Ahn, et al.
Accounts of Chemical Research|August 1, 2014
The ongoing search for small molecules to study metal-associated amyloid-β species in Alzheimer's diseaseMasha G Savelieff, Alaina S DeToma, Jeffrey S Derrick, et al.
Pageof 17