Cleavable collagenase-assistant nanosonosensitizer for tumor penetration and sonodynamic therapy.
basic_science · Level V
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- Record sourced from PubMed, PMID 36603445.
- Also identified by DOI 10.1016/j.biomaterials.2022.121992.
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Abstract
Sonodynamic therapy (SDT), a combination of low-intensity ultrasound with a sonosensitizer, has been explored as a promising alternative for cancer therapy. However, condensed extracellular matrix (ECM) resulting in poor perfusion and extreme hypoxia in solid tumor potentially compromises effective SDT. Herein, we develop a novel cleavable collagenase-assistant and O<sub>2</sub>-supplied nanosonosensitizer (FePO<sub>2</sub>@HC), which is embedded through fusing collagenase (CLG) and human serum albumin (HSA), followed by encapsulating Ferric protoporphyrin (FeP) and dioxygen. As a smart carrier, HSA is stimuli-responsive and collapsed by reduced glutathione (GSH) overexpressed in tumor, resulting to the release of the components in FePO<sub>2</sub>@HC. The released CLG acting as an artificial scissor, degrades the collagen fibers in tumor, thus, breaking tumor tissue and enhancing FePO<sub>2</sub> accumulation in tumor inner with higher than that without CLG. Simultaneously, oxygen molecules are released from FePO<sub>2</sub> in hypoxic environment and alleviate the tumor hypoxia. As a sonosensitizer, FeP is subsequently irradiated by ultrosound wave (US) and activates surrounding dioxygen to generate amount of singlet oxygen (<sup>1</sup>O<sub>2</sub>). Contributed from the ECM-degradation, such SDT-based nanosystem with increased sonosensitizer permeability and oxygen content highly improved the tumor inhibition efficacy without toxic effects. This study presents a new paradigm for ECM depletion-based strategy of deep-seated penetration, and will expand the nanomedicine application of metalloporphyrin sonosensitizers in SDT.
Medical subject headings
- Ultrasonic Therapy
- Neoplasms
- Metalloporphyrins
- Nanoparticles