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整合氧增强型声动力疗法和铁死亡工程外泌体用于有效的癌症治疗。

Integrating oxygen-boosted sonodynamic therapy and ferroptosis engineered exosomes for effective cancer treatment.

作者信息

Wu Mingbo, Zhang Zhanlin, Li Dong, Ruan Xiaomiao, Yang Jingwen, Chen Siyi, Li Xin, Ling Wenwu

机构信息

Department of Medical Ultrasound, West China Hospital, Sichuan University, Chengdu 610041, P.R. China.

Department of Oncology, The General Hospital of Western Theater Command, Chengdu610083, P.R. China.

出版信息

Theranostics. 2025 Jan 1;15(1):68-85. doi: 10.7150/thno.102977. eCollection 2025.

Abstract

Ferroptosis and sonodynamic therapy (SDT) are both promising therapeutic modalities, but their clinical application remains challenging due to the hypoxic tumor microenvironment and limited supply of polyunsaturated fatty acids. Developing an agent with oxygen-enhanced SDT and increased ferroptosis sensitivity is crucial for advancing tumor therapy. In this study, catalase (Cat) and Acyl-CoA synthetase long-chain family member 4 (ACSL4) highly expressed 4T1 cells were constructed lentivirus transfection. Cat and ACSL4 enriched exosomes (EXO@CA) were then extracted and loaded with the sonosensitizer tetrakis (4-carboxyphenyl) porphyrin (TCPP) through electroporation to create engineered exosomes (EXO@CAT). We evaluated the ability of EXO@CAT to generate oxygen in a hydrogen peroxide environment and investigated its effect on motion profiles and permeability of EXO@CAT. The antitumor activity was assessed cytotoxicity, ROS levels, live/dead staining, and apoptosis, with ferroptosis biomarkers confirming ferroptosis activation. We also evaluated the anticancer efficacy of EXO@CAT by tumor growth analysis and histological and immunohistochemical staining in mouse models bearing breast tumor. EXO@CAT harnesses ultrasound stimulation to facilitate oxygen-enriched SDT, demonstrating significant capacity for singlet oxygen (O) generating, which promotes the accumulation of lipid peroxidation (LPO), ultimately leading to the induction of ferroptosis. Concurrently, ACSL4 released from EXO@CAT also increases LPO accumulation by modifying cellular lipid composition, thereby enhancing cellular sensitivity to ferroptosis. Moreover, both and experiments demonstrate that the homologous targeting ability of EXO@CAT enables its efficient accumulation in tumor tissues, and the oxygen generation catalyzed by Cat not only alleviates tumor hypoxia but also facilitates the penetration of EXO@CAT into deeper layers of tumor tissue. EXO@CAT combines endogenous proteins, which are prone to inactivation, with an exogenous sonosensitizer, allowing synergistic anticancer treatment of both ferroptosis and SDT with improved efficacy.

摘要

铁死亡和超声动力疗法(SDT)都是很有前景的治疗方式,但由于肿瘤微环境缺氧以及多不饱和脂肪酸供应有限,它们的临床应用仍然具有挑战性。开发一种具有增强氧的超声动力疗法和提高铁死亡敏感性的药物对于推进肿瘤治疗至关重要。在本研究中,通过慢病毒转染构建了过氧化氢酶(Cat)和酰基辅酶A合成酶长链家族成员4(ACSL4)高表达的4T1细胞。然后提取富含Cat和ACSL4的外泌体(EXO@CA),并通过电穿孔将超声敏化剂四(4-羧基苯基)卟啉(TCPP)加载到其中,以制备工程化外泌体(EXO@CAT)。我们评估了EXO@CAT在过氧化氢环境中产生氧气的能力,并研究了其对EXO@CAT运动特性和通透性的影响。通过细胞毒性、活性氧水平、活/死染色和凋亡评估抗肿瘤活性,铁死亡生物标志物证实了铁死亡的激活。我们还通过对荷乳腺肿瘤小鼠模型进行肿瘤生长分析以及组织学和免疫组化染色来评估EXO@CAT的抗癌疗效。EXO@CAT利用超声刺激促进富氧超声动力疗法,显示出显著的单线态氧(O)生成能力,这促进了脂质过氧化(LPO)的积累,最终导致铁死亡的诱导。同时,从EXO@CAT释放的ACSL4还通过改变细胞脂质组成增加LPO积累,从而增强细胞对铁死亡的敏感性。此外,体内和体外实验均表明,EXO@CAT的同源靶向能力使其能够在肿瘤组织中有效积累,并且Cat催化产生的氧气不仅减轻了肿瘤缺氧,还促进了EXO@CAT渗透到肿瘤组织的更深层。EXO@CAT将易于失活的内源性蛋白质与外源性超声敏化剂结合,实现了铁死亡和超声动力疗法的协同抗癌治疗,疗效得到改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0980/11667237/d3447ffa34cc/thnov15p0068g001.jpg

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