Turning Waste into Wealth: A Potent Sono‐Immune Strategy Based on Microcystis

Author:

Yang Yuqi123,Ge Jun4,Zhong Xiaoyan5,Liu Luyao5,Chen Linfu1,Lu Shunyi4,Ren Jiacheng1,Chen Youdong1,Sun Shumin1,Song Zhuorun4,Cheng Yuan23,Cheng Liang1ORCID

Affiliation:

1. Institute of Functional Nano & Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon‐Based Functional Materials & Devices Soochow University Suzhou 215123 China

2. Monash Suzhou Research Institute Monash University Suzhou 215000 China

3. Department of Materials Science and Engineering Monash University Clayton VIC3800 Australia

4. Department of Orthopedic Surgery The First Affiliated Hospital of Soochow University Suzhou 215123 China

5. Department of Toxicology School of Public Health Suzhou Medical College of Soochow University Suzhou 215123 China

Abstract

AbstractCurrently, sonodynamic therapy (SDT) has limited therapeutic outcomes and immune responses, highlighting the urgent need for enhanced strategies that can stimulate robust and long‐lasting antitumor effects. Microcystis, a notorious microalga, reveals the possibility of mediating SDT owing to the presence of gas vesicles (GVs) and phycocyanin (PC). Herein, a nontoxic strain of Microcystis elabens (labeled Me) is developed as a novel agent for SDT because it generates O2 under red light (RL) illumination, while GVs and PC act as cavitation nuclei and sonosensitizers, respectively. Moreover, algal debris is released after ultrasound (US) irradiation, which primes the Toll‐like receptor pathway to initiate a cascade of immune responses. This sono‐immune strategy inhibits CT26 colon tumor growth largely by promoting dendritic cell (DC) maturation and cytotoxic T‐cell activation. After combination with the immune checkpoint blockade (ICB), the therapeutic outcome is further amplified, accompanied by satisfactory abscopal and immune memory effects; the similar potency is proven in the “cold” 4T1 triple‐negative breast tumor. In addition, Me exhibits good biosafety without significant acute or chronic toxicity. Briefly, this study turns waste into wealth by introducing sono‐immunotherapy based on Microcystis that achieved encouraging therapeutic effects on cancer, which is expected to be translated into the clinic.

Funder

National Natural Science Foundation of China

Collaborative Innovation Center of Suzhou Nano Science and Technology

Higher Education Discipline Innovation Project

Publisher

Wiley

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