Title | Multitarget Therapeutic Strategies for Alzheimer's Disease: Review on Emerging Target Combinations. |
Publication Type | Journal Article |
Year of Publication | 2020 |
Authors | Maramai S, Benchekroun M, Gabr MT, Yahiaoui S |
Journal | Biomed Res Int |
Volume | 2020 |
Pagination | 5120230 |
Date Published | 2020 |
ISSN | 2314-6141 |
Keywords | Alzheimer Disease, Animals, Endocannabinoids, Humans, Ligands, Molecular Targeted Therapy, Neuroprotective Agents, Oxidative Stress |
Abstract | Neurodegenerative diseases represent nowadays one of the major health problems. Despite the efforts made to unveil the mechanism leading to neurodegeneration, it is still not entirely clear what triggers this phenomenon and what allows its progression. Nevertheless, it is accepted that neurodegeneration is a consequence of several detrimental processes, such as protein aggregation, oxidative stress, and neuroinflammation, finally resulting in the loss of neuronal functions. Starting from these evidences, there has been a wide search for novel agents able to address more than a single event at the same time, the so-called multitarget-directed ligands (MTDLs). These compounds originated from the combination of different pharmacophoric elements which endowed them with the ability to interfere with different enzymatic and/or receptor systems, or to exert neuroprotective effects by modulating proteins and metal homeostasis. MTDLs have been the focus of the latest strategies to discover a new treatment for Alzheimer's disease (AD), which is considered the most common form of dementia characterized by neurodegeneration and cognitive dysfunctions. This review is aimed at collecting the latest and most interesting target combinations for the treatment of AD, with a detailed discussion on new agents with favorable properties and on optimized structures that have already been assessed in animal models of dementia. |
DOI | 10.1155/2020/5120230 |
Alternate Journal | Biomed Res Int |
PubMed ID | 32714977 |
PubMed Central ID | PMC7354643 |
Related Institute:
Molecular Imaging Innovations Institute (MI3)