Affiliation:
1. Department of Liver Surgery Renji Hospital School of Medicine Shanghai Jiao Tong University Shanghai 200127 China
2. Shanghai Institute of Transplantation Shanghai 200127 China
3. Shanghai Engineering Research Center of Transplantation and Immunology Shanghai 200127 China
4. Shanghai First Maternity and Infant Hospital Shanghai 200127 China
5. Institute of Molecular Medicine Shanghai Key Laboratory for Nucleic Acid Chemistry and Nanomedicine Shanghai Jiao Tong University School of Medicine Shanghai 200127 China
Abstract
AbstractSurgical residual tumor lesions (R1 resection of surgical procedures (e.g., liver cancer infiltrating the diaphragm, surgical residual breast cancer, postoperative residual ovarian cancer) or boundary residual after ablation) and lymph node metastasis that cannot be surgically resected (retroperitoneal lymph nodes) significantly affect postoperative survival of tumor patients. This clinical conundrum poses three challenges for local drug delivery systems: stable and continuous delivery, good biocompatibility, and the ability to package new targeted drugs that can synergize with other treatments. Here, a drug‐laden hydrogel generated from pure DNA strands and highly programmable in adjusting its mesh size is reported. Meanwhile, the DNA hydrogel can assist the microcrystallization of novel radiosensitizing drugs, ataxia telangiectasia and rad3‐related protein (ATR) inhibitor (Elimusertib), further facilitating its long‐term release. When applied to the tumor site, the hydrogel system demonstrates significant antitumor activity, minimized systemic toxicity, and has a modulatory effect on the tumor‐immune cell interface. This drug‐loaded DNA‐hydrogel platform represents a novel modality for adjuvant therapy in patients with surgical residual tumor lesions and lymph node metastasis.
Funder
Shanghai Science and Technology Development Foundation
Subject
Pharmaceutical Science,Biomedical Engineering,Biomaterials
Cited by
5 articles.
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