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癌症治疗中声动力疗法的最新进展与未来方向

Recent Advances and Future Directions in Sonodynamic Therapy for Cancer Treatment.

作者信息

Datta Priyankan, Moolayadukkam Sreejesh, Chowdhury Dhrubajyoti, Rayes Adnan, Lee Nan Sook, Sahu Rakesh P, Zhou Qifa, Puri Ishwar K

机构信息

Department of Aerospace and Mechanical Engineering, University of Southern California, Los Angeles, CA 90089, USA.

Iovine and Young Academy, University of Southern California, Los Angeles, CA 90089, USA.

出版信息

BME Front. 2024 Dec 27;2024:0080. doi: 10.34133/bmef.0080. eCollection 2024.

Abstract

Deep-tissue solid cancer treatment has a poor prognosis, resulting in a very low 5-year patient survival rate. The primary challenges facing solid tumor therapies are accessibility, incomplete surgical removal of tumor tissue, the resistance of the hypoxic and heterogeneous tumor microenvironment to chemotherapy and radiation, and suffering caused by off-target toxicities. Here, sonodynamic therapy (SDT) is an evolving therapeutic approach that uses low-intensity ultrasound to target deep-tissue solid tumors. The ability of ultrasound to deliver energy safely and precisely into small deep-tissue (>10 cm) volumes makes SDT more effective than conventional photodynamic therapy. While SDT is currently in phase 1/2 clinical trials for glioblastoma multiforme, its use for other solid cancer treatments, such as breast, pancreatic, liver, and prostate cancer, is still in the preclinical stage, with further investigation required to improve its therapeutic efficacy. This review, therefore, focuses on recent advances in SDT cancer treatments. We describe the interaction between ultrasound and sonosensitizer molecules and the associated energy transfer mechanism to malignant cells, which plays a central role in SDT-mediated cell death. Different sensitizers used in clinical and preclinical trials of various cancer treatments are listed, and the critical ultrasound parameters for SDT are reviewed. We also discuss approaches to improve the efficacies of these sonosensitizers, the role of the 3-dimensional spheroid in vitro investigations, ultrasound-controlled CAR-T cell and SDT-based multimodal therapy, and machine learning for sonosensitizer optimization, which could facilitate clinical translation of SDT.

摘要

深部组织实体癌的治疗预后较差,导致患者5年生存率极低。实体瘤治疗面临的主要挑战包括可及性、肿瘤组织手术切除不完全、缺氧且异质性的肿瘤微环境对化疗和放疗的抗性以及脱靶毒性所带来的痛苦。在此,声动力疗法(SDT)是一种不断发展的治疗方法,它利用低强度超声靶向深部组织实体瘤。超声能够将能量安全且精确地传递到深部小体积组织(>10厘米)中的能力,使得声动力疗法比传统光动力疗法更有效。虽然声动力疗法目前正处于多形性胶质母细胞瘤的1/2期临床试验阶段,但它在其他实体癌治疗中的应用,如乳腺癌、胰腺癌、肝癌和前列腺癌,仍处于临床前阶段,需要进一步研究以提高其治疗效果。因此,本综述聚焦于声动力疗法治疗癌症的最新进展。我们描述了超声与声敏剂分子之间的相互作用以及相关的向恶性细胞的能量转移机制,这在声动力疗法介导的细胞死亡中起着核心作用。列出了各种癌症治疗的临床和临床前试验中使用的不同敏化剂,并综述了声动力疗法的关键超声参数。我们还讨论了提高这些声敏剂疗效的方法、三维球体在体外研究中的作用、超声控制的嵌合抗原受体T细胞及基于声动力疗法的多模态治疗,以及用于声敏剂优化的机器学习,这些都有助于声动力疗法的临床转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6085/11671681/22db990073ca/bmef.0080.fig.001.jpg

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