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Sonosynthetic Cyanobacteria Oxygenation for Self-Enhanced Tumor-Specific Treatment

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Journal Adv Sci (Weinh)
Date 2024 Jun 13
PMID 38867396
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Abstract

Photosynthesis, essential for life on earth, sustains diverse processes by providing nutrition in plants and microorganisms. Especially, photosynthesis is increasingly applied in disease treatments, but its efficacy is substantially limited by the well-known low penetration depth of external light. Here, ultrasound-mediated photosynthesis is reported for enhanced sonodynamic tumor therapy using organic sonoafterglow (ultrasound-induced afterglow) nanoparticles combined with cyanobacteria, demonstrating the proof-of-concept sonosynthesis (sonoafterglow-induced photosynthesis) in cancer therapy. Chlorin e6, a typical small-molecule chlorine, is formulated into nanoparticles to stimulate cyanobacteria for sonosynthesis, which serves three roles, i.e., overcoming the tissue-penetration limitations of external light sources, reducing hypoxia, and acting as a sonosensitizer for in vivo tumor suppression. Furthermore, sonosynthetic oxygenation suppresses the expression of hypoxia-inducible factor 1α, leading to reduced stability of downstream SLC7A11 mRNA, which results in glutathione depletion and inactivation of glutathione peroxidase 4, thereby inducing ferroptosis of cancer cells. This study not only broadens the scope of microbial nanomedicine but also offers a distinct direction for sonosynthesis.

Citing Articles

A Dual-Targeting Biomimetic Nanoplatform Integrates SDT/CDT/Gas Therapy to Boost Synergistic Ferroptosis for Orthotopic Hepatocellular Carcinoma Therapy.

Meng W, Chen T, Li X, Li Y, Zhang L, Xu Y Adv Sci (Weinh). 2025; 12(8):e2413833.

PMID: 39783849 PMC: 11848614. DOI: 10.1002/advs.202413833.


Sonosynthetic Cyanobacteria Oxygenation for Self-Enhanced Tumor-Specific Treatment.

Yang Z, Shen X, Jin J, Jiang X, Pan W, Wu C Adv Sci (Weinh). 2024; 11(29):e2400251.

PMID: 38867396 PMC: 11304326. DOI: 10.1002/advs.202400251.

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