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一种具有显著止血效果的温敏水凝胶通过抗失巢凋亡抵抗防止肿瘤复发。

A thermo-sensitive hydrogel with prominent hemostatic effect prevents tumor recurrence via anti-anoikis-resistance.

机构信息

Department of Urology, Zhongnan Hospital of Wuhan University, Wuhan, 430071, People's Republic of China.

Hubei Key Laboratory of Urological Diseases, Wuhan University, Wuhan, 430071, People's Republic of China.

出版信息

J Nanobiotechnology. 2024 Aug 20;22(1):496. doi: 10.1186/s12951-024-02739-3.

Abstract

Tumor cells can survive when detached from the extracellular matrix (ECM) or lose cell-cell connections, a phenomenon known as anoikis-resistance (AR). AR is closely associated with tumor cell metastasis and recurrence, enabling tumor cells to disseminate, migrate, and invade after detachment. To address this issue, a novel intervention method combining intraoperative hemostasis with multifunctional nanozyme driven-enhanced chemodynamic therapy (ECDT) has been proposed, which holds the potential to weaken the AR capability of tumor cells and suppress tumor recurrence. Here, a nanocomposite containing a dendritic mesoporous nanoframework with Cu was developed using an anion-assisted approach after surface PEG grafting and glucose oxidase (GOx) anchoring (DMSN-Cu@GOx/PEG). DMSN-Cu@GOx/PEG was further encapsulated in a thermal-sensitive hydrogel (H@DMSN-Cu@GOx/PEG). DMSN-Cu@GOx/PEG utilizes its high peroxidase (POD) activity to elevate intracellular ROS levels, thereby weakening the AR capability of bladder cancer cells. Additionally, through its excellent catalase (CAT) activity, DMSN-Cu@GOx/PEG converts the high level of hydrogen peroxide (HO) catalyzed by intracellular GOx into oxygen (O), effectively alleviating tumor hypoxia, downregulating hypoxia-inducible factor-1α (HIF-1α) expression, inhibiting epithelial-mesenchymal transition (EMT) processes, and ultimately suppressing the migration and invasion of bladder cancer cells. Interestingly, in vivo results showed that the thermosensitive hydrogel H@DMSN-Cu@GOx/PEG could rapidly gel at body temperature, forming a gel film on wounds to eliminate residual tumor tissue after tumor resection surgery. Importantly, H@DMSN-Cu@GOx/PEG exhibited excellent hemostatic capabilities, effectively enhancing tissue coagulation during post-tumor resection surgery and mitigating the risk of cancer cell dissemination and recurrence due to surgical bleeding. Such hydrogels undoubtedly possess strong surgical application. Our developed novel nanosystem and hydrogel can inhibit the AR capability of tumor cells and prevent recurrence post-surgery. This study represents the first report of using dendritic mesoporous silica-based nanoreactors for inhibiting the AR capability of bladder cancer cells and suppressing tumor recurrence post-surgery, providing a new avenue for developing strategies to impede tumor recurrence after surgery.

摘要

肿瘤细胞在脱离细胞外基质(ECM)或失去细胞间连接时可以存活,这种现象称为失巢凋亡抗性(AR)。AR 与肿瘤细胞转移和复发密切相关,使肿瘤细胞在脱离后能够扩散、迁移和侵袭。为了解决这个问题,提出了一种将术中止血与多功能纳米酶驱动增强化学动力学治疗(ECDT)相结合的新的干预方法,该方法有可能削弱肿瘤细胞的 AR 能力并抑制肿瘤复发。在这里,通过阴离子辅助方法,在表面接枝聚乙二醇(PEG)和葡萄糖氧化酶(GOx)锚定(DMSN-Cu@GOx/PEG)后,开发了一种含有 Cu 的树枝状介孔纳米框架的纳米复合材料。DMSN-Cu@GOx/PEG 进一步封装在热敏水凝胶(H@DMSN-Cu@GOx/PEG)中。DMSN-Cu@GOx/PEG 利用其高过氧化物酶(POD)活性来提高细胞内 ROS 水平,从而削弱膀胱癌细胞的 AR 能力。此外,通过其出色的过氧化氢酶(CAT)活性,DMSN-Cu@GOx/PEG 将细胞内 GOx 催化的高浓度过氧化氢(HO)转化为氧气(O),有效缓解肿瘤缺氧,下调缺氧诱导因子-1α(HIF-1α)表达,抑制上皮-间充质转化(EMT)过程,最终抑制膀胱癌细胞的迁移和侵袭。有趣的是,体内结果表明,热敏水凝胶 H@DMSN-Cu@GOx/PEG 可以在体温下迅速凝胶,在肿瘤切除手术后在伤口上形成凝胶膜,以消除残留的肿瘤组织。重要的是,H@DMSN-Cu@GOx/PEG 表现出出色的止血能力,在肿瘤切除手术后有效增强组织凝血,并减轻由于手术出血导致的肿瘤细胞扩散和复发的风险。这种水凝胶无疑具有强大的手术应用潜力。我们开发的新型纳米系统和水凝胶可以抑制肿瘤细胞的 AR 能力并防止手术后复发。这项研究代表了首次使用基于树枝状介孔硅的纳米反应器抑制膀胱癌细胞的 AR 能力并抑制手术后肿瘤复发的报告,为开发阻止手术后肿瘤复发的策略提供了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d4f/11334358/d054daa80ebe/12951_2024_2739_Sch1_HTML.jpg

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