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Ultrasound-Activated Cascade Effect for Synergistic Orthotopic Pancreatic Cancer Therapy

机译:超声激活级联效应在原位胰腺癌的协同治疗中的作用

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摘要

In some malignant tumor, especially for pancreatic tumor, poor solid-tumor penetration of nanotherapeutics impedes their treatment efficacy. Herein, we develop a polymer-peptide conjugate with the deep tissue penetration ability, which undergoes a cascade process under ultrasound (US), including (1) the singlet oxygen O is generated by P18, (2) the thioketal bond is cleaved by the O , (3) the departure of PEG chains leads to the self-assembly, and (4) the resultant self-assembled PK nanoparticles show considerable cellular internalization. Owing to the synergistic effect of US on increasing the membrane permeability, the endocytosis and lysosome escape of PK nanoparticles are further enhanced effectively, resulting in the improved therapeutic efficacy. Thanks to the high tissue-penetrating depth and spatial precision of US, PTPK presents enhanced tumor inhibition in an orthotopic pancreatic tumor model. Therefore, the US-activated cascade effect offers a novel perspective for precision medicine and disease theranostics.
机译:在某些恶性肿瘤中,特别是对于胰腺肿瘤,纳米治疗剂对实体瘤的不良渗透会阻碍其治疗效果。本文中,我们开发了一种具有深层组织穿透能力的聚合物-肽共轭物,它在超声(US)下经历了级联过程,包括(1)单线态氧O由P18生成,(2)硫代缩酮键被P18裂解。 O,(3)PEG链的离开导致自组装,(4)所得的自组装PK纳米颗粒表现出可观的细胞内在化。由于US对增加膜通透性的协同作用,PK纳米颗粒的内吞作用和溶酶体逸出被进一步有效地增强,从而导致治疗效果的改善。由于US具有高的组织穿透深度和空间精度,PTPK在原位胰腺肿瘤模型中表现出增强的肿瘤抑制作用。因此,美国激活的级联效应为精密医学和疾病治疗学提供了新的视角。

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