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siRNA Electroporation to Modulate Autophagy in Herpes Simplex Virus Type 1-Infected Monocyte-Derived Dendritic Cells
Published on: October 28, 2019
Autophagy Modulation as a Treatment of Amyloid Diseases
Zoe Mputhia1, Eugene Hone2, Timir Tripathi3
1Centre of Excellence for Alzheimer's Disease Research and Care, School of Medical and Health Sciences, Edith Cowan University, Nedlands, WA 6009, Australia. zoe.mputhia@gmail.com.
Abstract:
Amyloids are fibrous proteins aggregated into toxic forms that are implicated in several chronic disorders. More than 30 diseases show deposition of fibrous amyloid proteins associated with cell loss and degeneration in the affected tissues. Evidence demonstrates that amyloid diseases result from protein aggregation or impaired amyloid clearance, but the connection between amyloid accumulation and tissue degeneration is not clear. Common examples of amyloid diseases are Alzheimer's disease (AD), Parkinson's disease (PD) and tauopathies, which are the most common forms of neurodegenerative diseases, as well as polyglutamine disorders and certain peripheral metabolic diseases. In these diseases, increased accumulation of toxic amyloid proteins is suspected to be one of the main causative factors in the disease pathogenesis. It is therefore important to more clearly understand how these toxic amyloid proteins accumulate as this will aide in the development of more effective preventive and therapeutic strategies. Protein homeostasis, or proteostasis, is maintained by multiple cellular pathways-including protein synthesis, quality control, and clearance-which are collectively responsible for preventing protein misfolding or aggregation. Modulating protein degradation is a very complex but attractive treatment strategy used to remove amyloid and improve cell survival. This review will focus on autophagy, an important clearance pathway of amyloid proteins, and strategies for using it as a potential therapeutic target for amyloid diseases. The physiological role of autophagy in cells, pathways for its modulation, its connection with apoptosis, cell models and caveats in developing autophagy as a treatment and as a biomarker is discussed.
Insights
Amyloid diseases stem from toxic protein buildup. This review explores autophagy, a cellular clearance pathway, as a promising therapeutic target to combat amyloid accumulation and neurodegeneration.
Area of Science:
- Biochemistry
- Cell Biology
- Neuroscience
Background:
- Amyloid proteins aggregate into toxic forms, implicated in over 30 chronic disorders including Alzheimer's and Parkinson's disease.
- Amyloid accumulation is linked to cell loss and tissue degeneration, but the precise connection remains unclear.
- Understanding amyloid accumulation mechanisms is crucial for developing effective treatments for amyloid diseases.
Purpose of the Study:
- To review the role of autophagy in clearing amyloid proteins.
- To explore strategies for modulating autophagy as a therapeutic target for amyloid diseases.
- To discuss the physiological role of autophagy, its modulation pathways, and its connection to apoptosis.
Main Methods:
- Literature review focusing on autophagy and amyloid diseases.
- Analysis of cellular pathways involved in protein homeostasis and clearance.
- Discussion of cell models and challenges in developing autophagy-based therapies and biomarkers.
Main Results:
- Autophagy is a key cellular pathway for clearing toxic amyloid proteins.
- Modulating autophagy presents a potential strategy for removing amyloid and enhancing cell survival.
- The review highlights the complexity of protein degradation pathways and their therapeutic implications.
Conclusions:
- Targeting autophagy offers a promising therapeutic avenue for amyloid diseases.
- Further research into autophagy modulation is needed to develop effective treatments and biomarkers.
- A deeper understanding of the interplay between amyloid accumulation, autophagy, and disease pathogenesis is essential.
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