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Activable Photodynamic DNA Probe with an AND Logic Gate for Precision Skin Cancer Therapy

机译:带有AND逻辑门的可激活光动力 DNA 探针用于精准皮肤癌治疗

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摘要

Photodynamic therapy (PDT) has emerged as a promising approach for squamous cell carcinoma treatment but hindered by tumor hypoxia, acquired resistance, phototoxicity, and so on. To address these issues, we developed a smart strategy utilizing activable photosensitizers delivered by an aptamer-functionalized DNA probe (ADP). The ADP incorporated an AS1411 aptamer for tumor targeting and a linear antisense oligonucleotide (ASO) for recognition of Survivin mRNA. In the absence of the target, PDT remained quenched, thereby avoiding phototoxicity during circulation and nonselective distribution. With the aid of the aptamer, ADP achieved selective targeting of tumors. Upon internalization, ADP targeted recognized Survivin mRNA, triggering PDT activation, and releasing ASO to down-regulate Survivin expression and reverse tumor resistance. Consequently, the activable photosensitizers exhibited an “AND” logic gate, combining tumor-targeting delivery and tumor-related gene activation, thus enhancing its specificity. Additionally, the incorporation of hemin into the ADP provided catalase activity, converting tumor-abundant H2O2 into O2, thereby ameliorating tumor hypoxia. The resulting functionalized G-quadruplex/hemin–DNA probe complex demonstrated targeted delivery and activation, minimized side effects, and enhanced PDT efficacy in both xenograft tumor-bearing mice and patient-derived xenograft models. This study offers a unique and promising platform for efficient and safe PDT, thus holding great potential for future clinical translation and improved cancer therapy.
机译:光动力疗法 (PDT) 已成为鳞状细胞癌治疗的一种很有前途的方法,但受到肿瘤缺氧、获得性耐药、光毒性等的阻碍。为了解决这些问题,我们开发了一种智能策略,利用适配体功能化 DNA 探针 (ADP) 提供的可激活光敏剂。ADP 结合了用于肿瘤靶向的 AS1411 适配体和用于识别存活素 mRNA 的线性反义寡核苷酸 (ASO)。在没有靶标的情况下,PDT 保持淬灭状态,从而避免了循环和非选择性分布过程中的光毒性。在适配体的帮助下,ADP 实现了对肿瘤的选择性靶向。内化后,ADP 靶向识别的 Survivin mRNA,触发 PDT 激活,并释放 ASO 以下调 Survivin 表达并逆转肿瘤耐药性。因此,可激活的光敏剂表现出“AND”逻辑门,结合了肿瘤靶向递送和肿瘤相关基因激活,从而增强了其特异性。此外,血红素掺入 ADP 提供了过氧化氢酶活性,将肿瘤丰富的 H 2 O 2 转化为 O 2,从而改善肿瘤缺氧。所得的功能化 G-四链体/血红素-DNA 探针复合物在异种移植荷瘤小鼠和患者来源的异种移植模型中都显示出靶向递送和激活、副作用最小化和增强的 PDT 疗效。这项研究为高效和安全的 PDT 提供了一个独特而有前途的平台,因此为未来的临床转化和改进癌症治疗具有巨大潜力。

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