Single‐Cell RNA‐Sequencing‐Aided Covalent Organic Frameworks‐Based Microneedle Design Targeting Phototherapy Resistant Tumor Cell

Author:

Zhang Boxin1,Zhang Liang12,Wang Wuyin1,Yang Enli1,Song An1,Xiong Dian1,Yang Qi‐Chao1,Li Hao1,Deng Hexiang2,Sun Zhi‐Jun1ORCID

Affiliation:

1. State Key Laboratory of Oral & Maxillofacial Reconstruction and Regeneration Key Laboratory of Oral Biomedicine Ministry of Education Hubei Key Laboratory of Stomatology School & Hospital of Stomatology Frontier Science Center for Immunology and Metabolism, Taikang Center for Life and Medical Sciences Wuhan University Wuhan 430079 P. R. China

2. Key Laboratory of Biomedical Polymers‐Ministry of Education College of Chemistry and Molecular Sciences Wuhan University Luojiashan Wuhan 430072 P. R. China

Abstract

AbstractCovalent organic frameworks (COFs) exhibit immense potential for phototherapy due to their exceptional light absorption, photostability, and biocompatibility. Nevertheless, tumor cells can develop resistance to phototherapy after an initial response, posing a significant challenge for complete eradication. In this study, a COF‐based photosensitizer, TCN‐PPDA‐COF, is designed with outstanding photothermal properties and delivered to tumors using microneedles (MN) to enhance cancer phototherapy. Single‐cell RNA‐sequencing (scRNA‐seq) technology is then utilized to explore the mechanisms underlying tumor cell adaptation to COF‐mediated phototherapy. The scRNA‐seq analysis revealed that phototherapy‐resistant tumor cells displayed elevated expression of HIF‐1α and VEGF signaling pathways, fostering intratumoral angiogenesis and facilitating their continued survival during phototherapy. In response to this phenomenon, a unique CA‐microneedle (MN) patch is developed, tailored for co‐delivering TCN‐PPDA‐COF and angiogenesis inhibitors AL3818 to the tumor site. The CA‐MN patches can effectively inhibit angiogenesis in tumors while mediating phototherapy, thereby obliterating the phototherapy‐resistant tumor cells. In 4T1 tumor‐bearing mouse model, the CA‐MN patches achieved nearly complete regression of tumor grafts and activated host anti‐tumor immunity, thereby enhancing the response rate of αPD‐1 and effectively restraining tumor metastasis and recurrence. This study underscored an ingenious approach to modify COF‐MN patches through scRNA‐seq technology.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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