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声动力学肿瘤溶解菌群抑制固有菌群的乳酸代谢并阻断 CD24-Siglec10 免疫逃逸,从而恢复免疫监视。

Sonocatalytic oncolysis microbiota curb intrinsic microbiota lactate metabolism and blockade CD24-Siglec10 immune escape to revitalize immunological surveillance.

机构信息

Department of Ultrasound and Central Laboratory, Sichuan Academy of Medical Sciences, Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China, No. 32, West Second Section, First Ring Road, Chengdu, 610072, Sichuan, PR China.

Department of Ultrasound and Central Laboratory, Sichuan Academy of Medical Sciences, Sichuan Provincial People's Hospital, School of Medicine, University of Electronic Science and Technology of China, No. 32, West Second Section, First Ring Road, Chengdu, 610072, Sichuan, PR China; Department of Medical Ultrasound, Shanghai Tenth People's Hospital, School of Medicine, Tongji University, No. 301 Yan-chang-zhong Road, Shanghai, 200072, PR China.

出版信息

Biomaterials. 2024 Dec;311:122662. doi: 10.1016/j.biomaterials.2024.122662. Epub 2024 Jun 11.

Abstract

Intrinsic lactate retention of chemically- or genetically-engineered bacteria therapy aggravates tumor immunosuppression, which will collaborate with immune escape to cause immunological surveillance failure. To address them, sonocatalytic oncolysis Escherichia coli (E.coli) that chemically chelated anti-CD24 and TiO have been engineered to blockade CD24-siglec10 interaction, regulate microbiota colonization and curb its lactate metabolism, which are leveraged to revitalize immunological surveillance and repress breast cancer. The chemically-engineered E.coli inherited their parent genetic information and expansion function. Therefore, their intrinsic hypoxia tropism and CD24 targeting allow them to specifically accumulate and colonize in solid breast cancer to lyse tumor cells. The conjugated CD24 antibody is allowed to blockade CD24-Siglec10 signaling axis and revitalize immunological surveillance. More significantly, the chelated TiO sonosensitizers produce ROS to render bacteria expansion controllable and curb immunosuppression-associated lactate birth that are usually neglected. Systematic experiments successfully vlaidate hypoxia-objective active targeting, sonocatalytic therapy, microbiota expansion-enabled oncolysis, CD24-Siglec10 communication blockade and precise microbiota abundance & lactate metabolism attenuations. These actions contribute to the potentiated anti-tumor immunity and activated anti-metastasis immune memory against breast cancer development. Our pioneering work provide a route to sonocatalytic cancer immunotherapy.

摘要

化学或基因工程细菌疗法的内在乳酸保留会加重肿瘤免疫抑制,这将与免疫逃避合作导致免疫监视失败。为了解决这些问题,已经设计了声催化溶瘤大肠杆菌(E.coli),通过化学螯合抗 CD24 和 TiO 来阻断 CD24-siglec10 相互作用,调节微生物群定植并抑制其乳酸代谢,从而重新激活免疫监视并抑制乳腺癌。化学工程大肠杆菌继承了其亲本的遗传信息和扩增功能。因此,它们内在的缺氧趋向性和 CD24 靶向性使它们能够特异性地积累和定植在实体乳腺癌中,裂解肿瘤细胞。共轭 CD24 抗体被允许阻断 CD24-Siglec10 信号轴并重新激活免疫监视。更重要的是,螯合的 TiO 声敏剂产生 ROS 使细菌扩增可控,并抑制通常被忽视的与免疫抑制相关的乳酸产生。系统实验成功验证了缺氧靶向主动靶向、声催化治疗、微生物群扩增介导的溶瘤、CD24-Siglec10 通讯阻断以及精确的微生物群丰度和乳酸代谢衰减。这些作用有助于增强抗肿瘤免疫和激活针对乳腺癌发展的抗转移免疫记忆。我们的开创性工作为声催化癌症免疫治疗提供了一条途径。

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