Evaluation the Effect of Sonodynamic Therapy with 5-Aminolevulinic Acid and Sodium Fluorescein by Preclinical Animal Study.
Authors: Huang CY, Li JC, Chen KT, Lin YJ, Feng LY, Liu HL, Wei KC
Sonodynamic therapy (SDT) is a novel tumor treatment that combines biosafe sonosensitizers and noninvasive focused ultrasound to eradicate solid tumors. Sonosensitizers such as 5-aminolevulinic acid and fluorescein have great potential in tumor treatment. Here, rodent subcutaneous and brain tumor models were used to evaluate the treatment effect of both 5-ALA- and fluorescein-mediated SDT. The subcutaneous tumor growth rates of both SDT groups were significantly inhibited compared with that of the control groups. For intracranial tumors, 5-ALA-SDT treatment significantly inhibited brain tumor growth, while fluorescein-SDT exerted no therapeutic effect in animals. The distribution of fluorescein in the brain tumor region underwent further assessment. Seven days post tumor implantation, experimental animals received fluorescein and were sacrificed for brain specimen collection. Analysis of the dissected brains revealed no fluorescence signals, indicating an absence of fluorescein accumulation in the early-stage glioma tissue. These data suggest that the fluorescein-SDT treatment response is closely related to the amount of accumulated fluorescein. This study reports the equivalent effects of 5-ALA and fluorescein on the treatment of somatic tumors. For orthotopic brain tumor models, tumor vascular permeability should be considered when choosing fluorescein as a sonosensitizer. In conclusion, both fluorescein and 5-ALA are safe and effective SDT sonosensitizers, and the tumor microenvironment and pathologic type should be considered in the selection of adequate sonosensitizers.
Introduction
Purpose
Sonodynamic therapy
Study Objective
To compare the efficacy and tumor accumulation of 5-aminolevulinic acid versus fluorescein as sonosensitizers for sonodynamic therapy in rodent subcutaneous and intracranial brain tumor models.
Animal model / Human subject
Sprague–Dawley rats (6–8 weeks, 200–220 g)
Disease model
Glioma (brain tumor)
Cargo name and characteristics
5-aminolevulinic acid (5-ALA) — small-molecule prodrug sonosensitizer (metabolized to protoporphyrin IX); Fluorescein — small-molecule fluorescent dye sonosensitizer
Outcomes and Safety
Summary of Outcomes
In rodent models both 5-ALA- and fluorescein-mediated sonodynamic therapy equivalently inhibited subcutaneous tumor growth, but only 5-ALA-SDT significantly inhibited intracranial (early-stage glioma) growth because fluorescein failed to accumulate in brain tumors with an intact blood–brain barrier. No different focused-ultrasound parameter variations were reported as being tested or compared.
Safety-related matter
The authors state that both fluorescein and 5-ALA are safe and effective sonosensitizers for sonodynamic therapy and report no adverse effects observed.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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