Tumor Microenvironment‐Responsive Nanocapsule Delivery CRISPR/Cas9 to Reprogram the Immunosuppressive Microenvironment in Hepatoma Carcinoma

Author:

He Lei1ORCID,Li Zhaozhao1,Su Danjie2,Du Haichen13,Zhang Kuo1,Zhang Wangqian1,Wang Shuning1,Xie Fei1,Qiu Yueyuan1,Ma Shuangxin1,Shi Gege4,Yu Duo5,Lei Xiaoying1,Li Weina1,Li Meng1,Wang Zhaowei1,Gu Jintao1,Zhang Yingqi1

Affiliation:

1. State Key Laboratory of Holistic Integrative Management of Gastrointestinal Cancers Department of Biopharmaceutics School of Pharmacy The Fourth Military Medical University Xi'an 710032 China

2. Department of Obstetrics and Gynecology Tangdu Hospital The Fourth Military Medical University Xi'an 710038 China

3. Department of Oncology 940th Hospital Joint Logistic Support Force Lanzhou 730050 China

4. College of Life Sciences Northwest University Xi'an 710069 China

5. Department of Neurosurgery General Hospital of Central Theater Command Wuhan 430012 China

Abstract

AbstractCancer immunotherapy has demonstrated significant efficacy in various tumors, but its effectiveness in treating Hepatocellular Carcinoma (HCC) remains limited. Therefore, there is an urgent need to identify a new immunotherapy target and develop corresponding intervention strategies. Bioinformatics analysis has revealed that growth differentiation factor 15 (GDF15) is highly expressed in HCC and is closely related to poor prognosis of HCC patients. The previous study revealed that GDF15 can promote immunosuppression in the tumor microenvironment. Therefore, knocking out GDF15 through gene editing could potentially reverse the suppressive tumor immune microenvironment permanently. To deliver the CRISPR/Cas9 system specifically to HCC, nanocapsules (SNC) coated with HCC targeting peptides (SP94) on their surface is utilized. These nanocapsules incorporate disulfide bonds (SNCSS) that release their contents in the tumor microenvironment characterized by high levels of glutathione (GSH). In vivo, the SNCSS target HCC cells, exert a marked inhibitory effect on HCC progression, and promote HCC immunotherapy. Mechanistically, CyTOF analysis showed favorable changes in the immune microenvironment of HCC, immunocytes with killer function increased and immunocytes with inhibitive function decreased. These findings highlight the potential of the CRISPR‐Cas9 gene editing system in modulating the immune microenvironment and improving the effectiveness of existing immunotherapy approaches for HCC.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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