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Pulsed-Focused Ultrasound Slows B16 Melanoma and 4T1 Breast Tumor Growth through Differential Tumor Microenvironmental Changes

机译:脉冲聚焦超声波通过差异肿瘤微环境变化减缓B16黑素瘤和4T1乳腺肿瘤生长

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摘要

Focused ultrasound (FUS) has shown promise as a non-invasive treatment modality for solid malignancies. FUS targeting to tumors has been shown to initiate pro-inflammatory immune responses within the tumor microenvironment. Pulsed FUS (pFUS) can alter the expression of cytokines, chemokines, trophic factors, cell adhesion molecules, and immune cell phenotypes within tissues. Here, we investigated the molecular and immune cell effects of pFUS on murine B16 melanoma and 4T1 breast cancer flank tumors. Temporal changes following sonication were evaluated by proteomics, RNA-seq, flow-cytometry, and histological analyses. Proteomic profiling revealed molecular changes occurring over 24 h post-pFUS that were consistent with a shift toward inflamed tumor microenvironment. Over 5 days post-pFUS, tumor growth rates were significantly decreased while flow cytometric analysis revealed differences in the temporal migration of immune cells. Transcriptomic analyses following sonication identified differences in gene expression patterns between the two tumor types. Histological analyses further demonstrated reduction of proliferation marker, Ki-67 in 4T1, but not in B16 tumors, and activated cleaved-caspase 3 for apoptosis remained elevated up to 3 days post-pFUS in both tumor types. This study revealed diverse biological mechanisms following pFUS treatment and supports its use as a possible adjuvant to ablative tumor treatment to elicit enhanced anti-tumor responses and slow tumor growth.
机译:聚焦超声(FUS)显示了承诺作为固体恶性肿瘤的非侵入性治疗方式。已显示靶向肿瘤的FUS引发肿瘤微环境中的炎症免疫应答。脉冲FUS(PFU)可以改变组织内细胞因子,趋化因子,营养因子,细胞粘附分子和免疫细胞表型的表达。在这里,我们研究了PFU对小鼠B16黑色素瘤和4T1乳腺癌侧瘤的分子和免疫细胞效应。通过蛋白质组学,RNA-SEQ,流式细胞术和组织学分析来评估超声处理后的时间变化。蛋白质组学分析显示出在24小时后发生的分子变化,其与发炎肿瘤微环境的转变一致。 PFU后超过5天,肿瘤生长率显着降低,而流式细胞术分析显示免疫细胞的时间迁移的差异。经过破坏的转录组分析鉴定了两种肿瘤类型之间基因表达模式的差异。组织学分析进一步证明了4T1中的增殖标记物的减少,但在B16肿瘤中,对于凋亡的激活切割的Caspase 3,肿瘤类型的PFU后仍然升高至3天。本研究揭示了PFU治疗后多样化的生物机制,并支持其用作可能的肿瘤治疗可能的佐剂,以引发增强的抗肿瘤反应和缓慢的肿瘤生长。

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