A Multifunctional Delivery System for Remodulating Cell Behaviors of Circulating Malignant Cells to Prevent Cell Fusion

Author:

Han Di1,He Xiao‐Yan2,Huang Yun3,Gao Min3,Guo Tao4,Ren Xiao‐He1,Liao Xin‐Ru1,Chen Xue‐Si5ORCID,Pang Xuan5,Cheng Si‐Xue1

Affiliation:

1. Key Laboratory of Biomedical Polymers of Ministry of Education Department of Chemistry Wuhan University Wuhan Hubei 430072 China

2. School of Life Sciences Anhui Medical University Hefei Anhui 230011 China

3. Department of Respiratory and Critical Care Medicine The First Affiliated Hospital of Anhui Medical University Anhui Public Health Clinical Center Hefei Anhui 230011 China

4. Department of Thyroid and Breast Surgery The First Affiliated Hospital of Anhui Medical University Anhui Public Health Clinical Center Hefei Anhui 230011 China

5. Key Laboratory of Polymer Ecomaterials Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun Jilin 130022 China

Abstract

AbstractCell fusion plays a critical role in cancer progression and metastasis. However, effective modulation of the cell fusion behavior and timely evaluation on the cell fusion to provide accurate information for personalized therapy are facing challenges. Here, it demonstrates that the cancer cell fusion behavior can be efficiently modulated and precisely detected through employing a multifunctional delivery vector to realize cancer targeting delivery of a genome editing plasmid and a molecular beacon‐based AND logic gate. The multifunctional delivery vector decorated by AS1411 conjugated hyaluronic acid and NLS‐GE11 peptide conjugated hyaluronic acid can specifically target circulating malignant cells (CMCs) of cancer patients to deliver the genome editing plasmid for epidermal growth factor receptor (EGFR) knockout. The cell fusion between CMCs and endothelial cells can be detected by the AND logic gate delivered by the multifunctional vector. After EGFR knockout, the edited CMCs exhibit dramatically inhibited cell fusion capability, while unedited CMCs can easily fuse with human umbilical vein endothelial cells (HUVEC) to form hybrid cells. This study provides a new therapeutic strategy for preventing cancer progression and a reliable tool for evaluating cancer cell fusion for precise personalized therapy.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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