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Designing drugs with multi-target activity: the next step in the treatment of neurodegenerative disorders
Werner J Geldenhuys1, Cornelis J Van der Schyf
1Northeast Ohio Medical University, College of Pharmacy, Neurotherapeutics Emphasis Group, Department of Pharmaceutical Sciences, Rootstown, 4209 State Route 44, P.O. Box 95, OH 44272, USA.
Introduction:
Neurodegenerative diseases have had devastating effects on patients' quality of life. These complex diseases have several pathways that are affected to initiate cell death. Current therapies, designed to address only a single target, fall short in mitigating or preventing disease progression, and disease-modifying drugs are desperately needed. Over the past several years, a new paradigm has emerged which has as a goal the targeting of multiple disease etiological pathways. Such "multi-targeted designed drugs" (MTDD) have shown great promise in preclinical studies as neuroprotective agents, as well as being able to afford symptomatic relief to blunt the day-to-day burden of these illnesses.
Areas Covered:
In this review, the authors evaluate the use of chemical scaffolds that led themselves exquisitely to the development of MTDDs in central nervous system disorders. Some of the examples discussed have also transitioned into the clinic, which underscores the importance of pursuing drug discovery programs within the multifunctional arena.
Expert Opinion:
Currently, very little can be done to slow the progress of neurodegeneration. The multifaceted profile of neurodegeneration necessitates a change in paradigm toward the design of compounds that address several drug targets simultaneously. With successful compounds in clinical trials as well as compounds moving into the clinic, support is growing and the feasibility of this approach is now becoming recognized. This review shows that several small molecule scaffolds can be successfully utilized to design MTDD compounds with good CNS pharmacokinetics.
Insights
Developing multi-targeted designed drugs (MTDDs) offers a promising new approach to combat neurodegenerative diseases. These innovative therapies target multiple pathways, showing potential for neuroprotection and symptomatic relief.
Area of Science:
- Neuroscience
- Pharmacology
- Drug Discovery
Background:
- Neurodegenerative diseases significantly impair quality of life.
- Current single-target therapies are insufficient for disease modification.
- A new paradigm involves targeting multiple etiological pathways simultaneously.
Purpose of the Study:
- To review chemical scaffolds suitable for developing multi-targeted designed drugs (MTDDs).
- To highlight MTDDs for central nervous system (CNS) disorders.
- To discuss the transition of MTDDs into clinical application.
Main Methods:
- Literature review of chemical scaffolds for MTDD development.
- Evaluation of MTDDs targeting CNS disorders.
- Analysis of compounds that have entered clinical trials.
Main Results:
- Several small molecule scaffolds are effective for designing MTDDs.
- MTDDs demonstrate potential for neuroprotection and symptomatic relief.
- Successful compounds are progressing through clinical trials.
Conclusions:
- A shift towards multi-target drug design is necessary for neurodegeneration.
- MTDDs show feasibility and growing support in clinical settings.
- Effective MTDDs with good CNS pharmacokinetics can be developed from small molecule scaffolds.
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