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Addressing Alzheimer's Disease (AD) Neuropathology Using Anti-microRNA (AM) Strategies
Vivian R Jaber1, Yuhai Zhao1,2, Nathan M Sharfman1
1LSU Neuroscience Center, Louisiana State University Health Sciences Center, New Orleans, LA, 70112, USA.
Abstract:
Disruptions in multiple neurobiological pathways and neuromolecular processes have been widely implicated in the etiopathology of Alzheimer's disease (AD), a complex, progressive, and ultimately lethal neurological disorder whose current incidence, both domestically and globally, is reaching epidemic proportions. While only a few percent of all AD cases appear to have a strong genetic or familial component, the major form of this disease, known as idiopathic or sporadic AD, displays a multi-factorial pathology and represents one of the most complex and perplexing neurological disorders known. More effective and innovative pharmacological strategies for the successful intervention and management of AD might be expected: (i) to arise from strategic-treatments that simultaneously address multiple interrelated AD targets that are directed at the initiation, development, and/or propagation of this disease and (ii) those that target the "neuropathological core" of the AD process at early or upstream stages of AD. This "Perspectives paper" will review current research involving microRNA (miRNA)-mediated, messenger RNA (mRNA)-targeted gene expression pathways in sporadic AD and address the potential implementation of evolving anti-microRNA (AM) strategies in the amelioration and clinical management of AD. This novel-therapeutic approach: (i) incorporates a system involving the restoration of multiple miRNA-regulated mRNA-targets via the use of selectively-stabilized AM species; and (ii) that via implementation of synthetic AMs, the abundance of only relatively small-families of miRNAs need be modulated or neutralized to re-establish neural-homeostasis in the AD-affected brain. In doing so, these strategic approaches will jointly and interactively address multiple AD-associated processes such as the disruption of synaptic communication, defects in amyloid peptide clearance and amyloidogenesis, tau pathology, deficits in neurotrophic support, alterations in the innate immune response, and the proliferation of neuroinflammatory signaling.
Insights
Novel anti-microRNA (AM) strategies offer a promising approach to simultaneously target multiple pathways involved in Alzheimer's disease (AD) progression. This therapeutic strategy aims to restore neural homeostasis by modulating microRNA (miRNA)-regulated gene expression in the brain.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Alzheimer's disease (AD) is a progressive neurological disorder with complex, multifactorial pathology, particularly in its sporadic form.
- Current therapeutic strategies for AD are limited, highlighting the need for innovative treatments that address multiple disease pathways.
- MicroRNA (miRNA)-mediated messenger RNA (mRNA)-targeted gene expression is increasingly recognized as a key factor in AD pathogenesis.
Purpose of the Study:
- To review current research on miRNA-mRNA pathways in sporadic Alzheimer's disease.
- To explore the potential of anti-microRNA (AM) strategies for AD amelioration and clinical management.
- To discuss how AM strategies can simultaneously address multiple AD-associated neurobiological disruptions.
Main Methods:
- Review of existing scientific literature on miRNA and mRNA pathways in Alzheimer's disease.
- Analysis of the potential therapeutic applications of anti-microRNA (AM) species.
- Discussion of the mechanism of action for AM strategies in restoring neural homeostasis.
Main Results:
- Anti-microRNA (AM) strategies can restore multiple miRNA-regulated mRNA targets through stabilized AM species.
- Synthetic AMs can selectively modulate or neutralize small families of miRNAs to re-establish neural homeostasis.
- This approach targets key AD-associated processes including synaptic communication, amyloid pathology, tau pathology, neurotrophic support, and neuroinflammation.
Conclusions:
- Anti-microRNA (AM) strategies represent a novel therapeutic avenue for Alzheimer's disease management.
- By targeting miRNA-mRNA interactions, AMs can address the multifactorial nature of sporadic AD.
- This approach holds potential for restoring neural homeostasis and ameliorating core AD pathologies.
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