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Published on: May 28, 2017
Overcoming translational barriers impeding development of Alzheimer's disease modifying therapies
1Department of Neuroscience, Center for Translational Research in Neurodegenerative Disease, McKnight Brain Institute, College of Medicine, University of Florida, Gainesville, Florida, USA. tgolde@ufl.edu.
Abstract:
It has now been ~ 30 years since the Alzheimer's disease (AD) research entered what may be termed the 'molecular era' that began with the identification of the amyloid β protein (Aβ) as the primary component of amyloid within senile plaques and cerebrovascular amyloid and the microtubule-associated protein tau as the primary component of neurofibrillary tangles in the AD brain. These pivotal discoveries and the subsequent genetic, pathological, and modeling studies supporting pivotal roles for tau and Aβ aggregation and accumulation have provided firm rationale for a new generation of AD therapies designed not to just provide symptomatic benefit, but as disease modifying agents that would slow or even reverse the disease course. Indeed, over the last 20 years numerous therapeutic strategies for disease modification have emerged, been preclinically validated, and advanced through various stages of clinical testing. Unfortunately, no therapy has yet to show significant clinical disease modification. In this review, I describe 10 translational barriers to successful disease modification, highlight current efforts addressing some of these barriers, and discuss how the field could focus future efforts to overcome barriers that are not major foci of current research efforts. Seminal discoveries made over the past 25 years have provided firm rationale for a new generation of Alzheimer's disease (AD) therapies designed as disease modifying agents that would slow or even reverse the disease course. Unfortunately, no therapy has yet to show significant clinical disease modification. In this review, I describe 10 translational barriers to successful AD disease modification, highlight current efforts addressing some of these barriers, and discuss how the field could focus future efforts to overcome these barriers. This article is part of the 60th Anniversary special issue.
Insights
Despite decades of research, no Alzheimer's disease (AD) therapies have successfully modified the disease course. This review identifies 10 key barriers hindering therapeutic progress and suggests future research directions for effective AD treatments.
Area of Science:
- Neuroscience
- Biomedical Research
- Drug Development
Background:
- Alzheimer's disease (AD) research entered its molecular era ~30 years ago with the identification of amyloid beta (Aβ) and tau.
- These discoveries fueled the development of disease-modifying therapies targeting Aβ and tau aggregation.
- Despite extensive preclinical and clinical testing over 20 years, no AD therapy has demonstrated significant clinical disease modification.
Purpose of the Study:
- To identify and describe 10 translational barriers impeding the development of effective Alzheimer's disease therapies.
- To highlight current research efforts aimed at overcoming these identified barriers.
- To propose future research focuses for advancing disease modification in Alzheimer's disease.
Main Methods:
- Review of seminal discoveries in Alzheimer's disease research over the past 25 years.
- Analysis of therapeutic strategies and clinical trial outcomes for disease modification.
- Identification and categorization of translational challenges in AD drug development.
Main Results:
- Ten significant translational barriers to successful Alzheimer's disease modification have been identified.
- Current efforts are underway to address some of these barriers.
- Significant challenges remain in areas not currently the focus of major research initiatives.
Conclusions:
- The field of Alzheimer's disease research has made substantial progress in understanding disease mechanisms.
- Overcoming specific translational barriers is critical for developing effective disease-modifying therapies.
- Future research must strategically address the identified barriers to achieve clinical success in Alzheimer's disease treatment.
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