In situ implantable DNA hydrogel for diagnosis and therapy of postoperative rehemorrhage following intracerebral hemorrhage surgery

Author:

Yu Wenyan123,Gong Enpeng13,Wang Changlin12,Che Chengyuan1,Zhao Yuzhen1,Wu Xinyun1,Yang Yi1,Shi Haiyu1,Chen Mengjuan1,Li Mingge1,Xie Li1,Guo Yue1,Guo Mingming1,Mu Liya1,Wang Zhenya1ORCID,Zhang Zhenzhong13ORCID,Zhang Kaixiang12ORCID,Liu Junjie123ORCID,Shi Jinjin123ORCID

Affiliation:

1. School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou 450001, China.

2. Key Laboratory of Targeting Therapy and Diagnosis for Critical Diseases, Zhengzhou 450001, China.

3. Collaborative Innovation Center of New Drug Research and Safety Evaluation, Zhengzhou 450001, China.

Abstract

Postoperative rehemorrhage following intracerebral hemorrhage surgery is intricately associated with a high mortality rate, yet there is now no effective clinical treatment. In this study, we developed a hemoglobin (Hb)–responsive in situ implantable DNA hydrogel comprising Hb aptamers cross-linked with two complementary chains and encapsulating deferoxamine mesylate (DFO). Functionally, the hydrogel generates signals upon postoperative rehemorrhage by capturing Hb, demonstrating a distinctive “self-diagnosis” capability. In addition, the ongoing capture of Hb mediates the gradual disintegration of the hydrogel, enabling the on-demand release of DFO without compromising physiological iron-dependent functions. This process achieves self-treatment by inhibiting the ferroptosis of neurocytes. In a collagenase and autologous blood injection model–induced mimic postoperative rehemorrhage model, the hydrogel exhibited a 5.58-fold increase in iron absorption efficiency, reducing hematoma size significantly (from 8.674 to 4.768 cubic millimeters). This innovative Hb-responsive DNA hydrogel not only offers a therapeutic intervention for postoperative rehemorrhage but also provides self-diagnosis feedback, holding notable promise for enhancing clinical outcomes.

Publisher

American Association for the Advancement of Science (AAAS)

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