Tao Yining, Li Leike, Yang Xiyu, Yin Shiyu, Zhang Zhanxiang, Wang Haoyu, Pu Ruochen, Wang Zongyi, Zhang Qi, Mu Haoran, Wu Chenqiong, He Jin, Yang Liu
Department of Orthopedics, Shanghai General Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.
Shanghai Bone Tumor Institution, Shanghai, China.
Front Chem. 2024 Apr 4;12:1386076. doi: 10.3389/fchem.2024.1386076. eCollection 2024.
The advancements in the field of micro-robots for drug delivery systems have garnered considerable attention. In contrast to traditional drug delivery systems, which are dependent on blood circulation to reach their target, these engineered micro/nano robots possess the unique ability to navigate autonomously, thereby enabling the delivery of drugs to otherwise inaccessible regions. Precise drug delivery systems can improve the effectiveness and safety of synthetic lethality strategies, which are used for targeted therapy of solid tumors. MYC-overexpressing tumors show sensitivity to CDK1 inhibition. This study delves into the potential of Ro-3306 loaded magnetic-driven hydrogel micro-robots in the treatment of MYC-dependent osteosarcoma. Ro-3306, a specific inhibitor of CDK1, has been demonstrated to suppress tumor growth across various types of cancer. We have designed and fabricated this micro-robot, capable of delivering Ro-3306 precisely to tumor cells under the influence of a magnetic field, and evaluated its chemosensitizing effects, thereby augmenting the therapeutic efficacy and introducing a novel possibility for osteosarcoma treatment. The clinical translation of this method necessitates further investigation and validation. In summary, the Ro-3306-loaded magnetic-driven hydrogel micro-robots present a novel strategy for enhancing the chemosensitivity of MYC-dependent osteosarcoma, paving the way for new possibilities in future clinical applications.
用于药物递送系统的微型机器人领域的进展已引起了相当大的关注。与依赖血液循环到达靶点的传统药物递送系统不同,这些工程化的微/纳米机器人具有自主导航的独特能力,从而能够将药物递送至其他难以到达的区域。精确的药物递送系统可以提高合成致死策略的有效性和安全性,合成致死策略用于实体瘤的靶向治疗。MYC过表达的肿瘤对CDK1抑制敏感。本研究深入探讨了负载Ro-3306的磁驱动水凝胶微型机器人在治疗MYC依赖性骨肉瘤中的潜力。Ro-3306是一种CDK1的特异性抑制剂,已被证明可抑制各种类型癌症的肿瘤生长。我们设计并制造了这种微型机器人,它能够在磁场的影响下将Ro-3306精确地递送至肿瘤细胞,并评估了其化学增敏作用,从而提高了治疗效果,并为骨肉瘤治疗引入了一种新的可能性。这种方法的临床转化需要进一步的研究和验证。总之,负载Ro-3306的磁驱动水凝胶微型机器人为增强MYC依赖性骨肉瘤的化学敏感性提供了一种新策略,为未来临床应用的新可能性铺平了道路。