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Published on: May 28, 2017
Therapeutic strategies for Alzheimer's disease in clinical trials
Justyna Godyń1, Jakub Jończyk1, Dawid Panek1
1Department of Physicochemical Drug Analysis, Faculty of Pharmacy, Jagiellonian University Medical College, Kraków, Poland.
Insights
Researchers are exploring new Alzheimer's disease (AD) treatments targeting beta-amyloid and tau proteins. Promising strategies include antibodies, vaccines, and small molecules, though clinical trial success remains challenging.
Area of Science:
- Neuroscience
- Pharmacology
- Gerontology
Background:
- Alzheimer's disease (AD) is the leading cause of dementia, characterized by progressive neurodegeneration.
- Current AD treatments offer symptomatic relief but lack disease-modifying efficacy.
- No new AD drugs have been approved since 2003, highlighting an unmet medical need.
Purpose of the Study:
- To review current research and promising strategies for novel Alzheimer's disease (AD) treatments.
- To discuss agents targeting beta-amyloid and tau proteins.
- To examine novel therapeutic approaches including small molecules and neurotransmitter system modulators.
Main Methods:
- Review of ongoing and recent clinical trials for AD therapeutics.
- Analysis of agents targeting beta-amyloid (Aβ) pathways, including vaccines and secretase inhibitors.
- Evaluation of tau-targeting agents and modulators of neurotransmitter systems (e.g., 5-HT6, H3 receptors).
Main Results:
- Clinical trials involving Aβ antibodies (e.g., solanezumab) show promise.
- Early-stage trials are underway for tau protein vaccines (e.g., AADvac1).
- Small molecule inhibitors (e.g., β-secretase inhibitors) and receptor modulators are under investigation.
Conclusions:
- Developing effective central nervous system drugs for AD is complex and lengthy.
- High failure rates in AD clinical trials, particularly from Phase II to Phase III, necessitate careful evaluation.
- Novel therapeutic strategies targeting specific AD pathologies offer potential for future treatments.
Abstract:
Alzheimer's disease (AD) is considered to be the most common cause of dementia and is an incurable, progressive neurodegenerative disorder. Current treatment of the disease, essentially symptomatic, is based on three cholinesterase inhibitors and memantine, affecting the glutamatergic system. Since 2003, no new drugs have been approved for treatment of AD. This article presents current directions in the search for novel, potentially effective agents for the treatment of AD, as well as selected promising treatment strategies. These include agents acting upon the beta-amyloid, such as vaccines, antibodies and inhibitors or modulators of γ- and β-secretase; agents directed against the tau protein as well as compounds acting as antagonists of neurotransmitter systems (serotoninergic 5-HT6 and histaminergic H3). Ongoing clinical trials with Aβ antibodies (solanezumab, gantenerumab, crenezumab) seem to be promising, while vaccines against the tau protein (AADvac1 and ACI-35) are now in early-stage trials. Interesting results have also been achieved in trials involving small molecules such as inhibitors of β-secretase (MK-8931, E2609), a combination of 5-HT6 antagonist (idalopirdine) with donepezil, inhibition of advanced glycation end product receptors by azeliragon or modulation of the acetylcholine response of α-7 nicotinic acetylcholine receptors by encenicline. Development of new effective drugs acting upon the central nervous system is usually a difficult and time-consuming process, and in the case of AD to-date clinical trials have had a very high failure rate. Most phase II clinical trials ending with a positive outcome do not succeed in phase III, often due to serious adverse effects or lack of therapeutic efficacy.
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