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Multistage signal-interactive nanoparticles improve tumor targeting through efficient nanoparticle-cell communications

机译:多级信号交互纳米颗粒通过高效纳米粒子 - 细胞通信改善肿瘤靶向

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Communication between biological components is critical for homeostasis maintenance among the convergence of complicated bio-signals. For therapeutic nanoparticles (NPs), the general lack of effective communication mechanisms with the external cellular environment causes loss of homeostasis, resulting in deprived autonomy, severe macrophage-mediated clearance, and limited tumor accumulation. Here, we develop a multistage signal-interactive system on porous silicon particles through integrating the Self-peptide and Tyr-Ile-Gly-Ser-Arg (YIGSR) peptide into a hierarchical chimeric signaling interface with “don't eat me” and “eat me” signals. This biochemical transceiver can act as both the signal receiver for amantadine to achieve NP transformation and signal conversion as well as the signal source to present different signals sequentially by reversible self-mimicking. Compared with the non-interactive controls, these signal-interactive NPs loaded with AS1411 and tanespimycin (17-AAG) as anticancer drugs improve tumor targeting 2.8-fold and tumor suppression 6.5-fold and showed only 51% accumulation in the liver with restricted hepatic injury.
机译:生物成分之间的通信对于复杂生物信号的收敛性的稳态维持至关重要。对于治疗纳米颗粒(NPS),普遍缺乏具有外部细胞环境的有效通信机制,导致稳态失去,导致贫困的自治,严重的巨噬细胞介导的间隙和有限的肿瘤积累。在这里,我们通过将自肽和Tyr-ILE-GLY-SER-ARG(YIGSR)肽与“不吃我”和“不吃”和“吃我“信号。这种生化收发器可以充当Amantadine的信号接收器,以实现NP变换和信号转换以及信号源,以通过可逆的自模拟方式顺序地呈现不同的信号。与非交互式对照相比,随着抗癌药物加载的这些信号交互NPS和TaneSpimycin(17-AAG)改善肿瘤靶向2.8倍和肿瘤抑制6.5倍,肝脏肝脏中仅显示51%的积累受伤。

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