Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of Alzheimer's Disease

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Last updated 02 junho 2024
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Crafting Carbazole-Based Vorinostat and Tubastatin-A-like Histone
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
PDF) Novel Sustainable-by-Design HDAC Inhibitors for the Treatment
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Molecules, Free Full-Text
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Design, synthesis, and biological evaluation of novel N-Benzyl
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Largazole is a Brain-Penetrant Class I HDAC Inhibitor with
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
IJMS, Free Full-Text
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Dual-Target Inhibitors Based on HDACs: Novel Antitumor Agents for
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Visible-Light-Controlled Histone Deacetylase Inhibitors for
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Pharmaceuticals, Free Full-Text
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Frontiers The Application of Nanotechnology for the Diagnosis
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Pharmaceuticals, Free Full-Text
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Design of First-in-Class Dual EZH2/HDAC Inhibitor: Biochemical
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Pharmaceutics, Free Full-Text
Novel Sustainable-by-Design HDAC Inhibitors for the Treatment of  Alzheimer's Disease
Discovery of Novel Tacrine–Pyrimidone Hybrids as Potent Dual AChE

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