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声致压电催化和低剂量药物渗透用于通过肿瘤类器官进行个性化治疗。

Sono-promoted piezocatalysis and low-dose drug penetration for personalized therapy via tumor organoids.

机构信息

Center for Evidence-Based and Translational Medicine, Zhongnan Hospital of Wuhan University, Wuhan 430071, China; Hubei Jiufengshan Laboratory, Wuhan 430206, China; Key Laboratory of Artificial Micro- and Nano-structures of Ministry of Education, School of Microelectronics, School of Physics and Technology, Wuhan University, Wuhan 430072, China.

Key Laboratory of Artificial Micro- and Nano-structures of Ministry of Education, School of Microelectronics, School of Physics and Technology, Wuhan University, Wuhan 430072, China.

出版信息

J Colloid Interface Sci. 2024 Dec;675:192-206. doi: 10.1016/j.jcis.2024.07.010. Epub 2024 Jul 2.

Abstract

Chemotherapy is a widely used cancer treatment, however, it can have notable side effects owing to the high-doses of drugs administered. Sonodynamic therapy (SDT) induced by sonosensitizers has emerged as a promising approach to treat cancer, however, there is limited research evaluating its therapeutic effects on human tumors. In this study, we introduced a dual therapy that combines low-dose chemotherapeutic drugs with enhanced sonodynamic therapy, utilizing barium titanate (BaTiO, BTO) nanoparticles (NPs) as sonosensitizers to treat tumor organoids. We demonstrated that ultrasound could improve the cellular uptake of chemotherapy drugs, while the chemotherapeutic effect of the drugs made it easier for BTO NPs to enter tumor cells, and the dual therapy synergistically inhibited tumor cell viability. Moreover, different patient-derived tumor organoids exhibited different sensitivities to this therapy, highlighting the potential to evaluate individual responses to combination therapies prior to clinical intervention. Furthermore, this dual therapy exhibited therapeutic effects equivalent to those of high-dose chemotherapy drugs on drug-resistant tumor organoids and showed the potential to enhance the efficacy of killing drug-resistant tumors. In addition, the biosafety of the BTO NPs was successfully verified in live mice via oral administration. This evidence confirms the reliable and safe nature of the dual therapy approach, making it a feasible option for precise and personalized therapy in clinical applications.

摘要

化疗是一种广泛应用于癌症治疗的方法,但由于使用了高剂量的药物,它会产生显著的副作用。声动力学疗法(SDT)是一种利用声敏剂诱导的有前途的癌症治疗方法,但对其治疗人类肿瘤的疗效的研究有限。在本研究中,我们引入了一种联合治疗方法,将低剂量化疗药物与增强的声动力学疗法相结合,利用钛酸钡(BaTiO 3 ,BTO)纳米颗粒(NPs)作为声敏剂来治疗肿瘤类器官。我们证明了超声可以提高化疗药物的细胞摄取率,而药物的化疗作用使 BTO NPs 更容易进入肿瘤细胞,并且双重治疗协同抑制肿瘤细胞活力。此外,不同的患者来源的肿瘤类器官对这种治疗方法表现出不同的敏感性,这突出了在临床干预之前评估个体对联合治疗反应的潜力。此外,这种双重治疗对耐药肿瘤类器官的疗效相当于高剂量化疗药物,并且具有增强杀伤耐药肿瘤的潜力。此外,通过口服途径在活体小鼠中成功验证了 BTO NPs 的生物安全性。这一证据证实了双重治疗方法的可靠和安全性,使其成为临床应用中精确和个性化治疗的可行选择。

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