19F MRI/CEUS Dual Imaging‐Guided Sonodynamic Therapy Enhances Immune Checkpoint Blockade in Triple‐Negative Breast Cancer

Author:

Chen Qiu1,Xiao Hong2,Hu Lijun1,Huang Yongquan1,Cao Zhong34ORCID,Shuai Xintao5ORCID,Su Zhongzhen1ORCID

Affiliation:

1. Department of Ultrasound The Fifth Affiliated Hospital Sun Yat‐Sen University Zhuhai 519000 P. R. China

2. Department of Medical Ultrasonic The Third Affiliated Hospital of Sun Yat‐sen University Guangzhou 510630 P. R. China

3. School of Biomedical Engineering Shenzhen Campus of Sun Yat‐sen University Shenzhen Guangdong 518107 P. R. China

4. Shenzhen International Institute for Biomedical Research Longhua District Shenzhen Guangdong 518116 P. R. China

5. Nanomedicine Research Center The Third Affiliated Hospital of Sun Yat‐sen University Guangzhou 510630 P. R. China

Abstract

AbstractTreatment of highly aggressive triple‐negative breast cancer (TNBC) in the clinic is challenging. Here, a liposome nanodrug (LP@PFH@HMME) integrating imaging agents and therapeutic agents for bimodal imaging‐guided sonodynamic therapy (SDT) is developed, which boosted immunogenicity to enable potent immunotherapy via immune checkpoint blockade (ICB) in TNBC. In the acidic tumor microenvironment (TME), LP@PFH@HMME undergoes “nano‐to‐micro” transformation due to a pH‐responsive lipid fusion, which makes droplets much more sensitive to ultrasound (US) in contrast‐enhanced ultrasound (CEUS) and SDT studies. The nanodrug demonstrates robust bimodal imaging ability through fluorine‐19 magnetic resonance imaging (19F MRI) and CEUS bimodal imaging, and it exhibits excellent solubility in aqueous solution with relatively high 19F content and desirable long transverse relaxation time (T2 = 1.072 s), making it suitable for high‐performance 19F MRI, in addition to effective accumulation of nanodrugs after tail vein injection. Thus, 19F MRI/CEUS dual imaging is achievable to show adequate time points for US irradiation of tumor sites to induce highly effective SDT, which produces abundant reactive oxygen species (ROS) triggering immunogenic cell death (ICD) to assist ICB‐based immunotherapy. The combination treatment design of sonodynamic therapy with immunotherapy effectively inhibited TNBC growth and recurrence, highlighting the promise of multifunctional nanodrugs in treating TNBC.

Funder

National Natural Science Foundation of China

Basic and Applied Basic Research Foundation of Guangdong Province

Publisher

Wiley

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