Designed Nanodrugs for Ultrasonic Removal of Toxic Polyglutamine Aggregates from Neuron Cells.
Authors: Sarkar AK, Sarkar AR, Sahoo R, Jana NR, Jana NR
Clearing of toxic polyglutamine aggregates from neuronal cells is crucial for ameliorating Huntington's disease. However, such clearance is challenging, requiring the targeting of affected neuron cells in the brain, followed by the removal of polyglutamine from cells. Here we report a designed nanodrug that can be used for the ultrasound-based removal of toxic polyglutamine aggregates from neuron cells. The nanodrug is composed of a sonosensitizer molecule, chlorin e6- or protoporphyrin IX-loaded polymer micelle of 20-30 nm in size that rapidly delivers the sonosensitizer into the cell nucleus. Ultrasound exposure of these cells generates singlet oxygen in the nucleus/perinuclear region that induces strong autophagic flux and clears toxic polyglutamine aggregates from cells. It has been demonstrated that the nanodrug and ultrasound treatment can enhance the cell survival against polyglutamine aggregates by 4 times. This result suggests that the nanodrug can be designed for focused ultrasound-based wireless treatment of various neurodegenerative diseases.
Introduction
Purpose
Drug delivery WITHOUT BBB opening
Study Objective
To develop and evaluate designed nanodrugs that, when combined with ultrasonic treatment, remove toxic polyglutamine aggregates from neuronal cells.
Disease model
Polyglutamine-related neurodegenerative disease (e.g., Huntington's disease)
Cargo name and characteristics
Ultrasound-responsive designed nanodrugs — nanoparticle-based therapeutic formulated to remove/disaggregate toxic polyglutamine aggregates in neuron cells (nanoparticle)
Outcomes and Safety
Summary of Outcomes
Designed nanodrugs enabled ultrasonic removal/reduction of toxic polyglutamine aggregates from neuronal cells, resulting in aggregate clearance and improved cellular outcomes; no specific focused ultrasound parameters were reported in the provided text.
Safety-related matter
No safety issues or adverse effects are mentioned in the provided text; the paper excerpt contains only the title and does not report any safety data or adverse events.
Brain Region
Ultrasound Parameters
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
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