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超声微泡增强肿瘤热疗效果。

Ultrasound microbubble potentiated enhancement of hyperthermia-effect in tumours.

机构信息

Physical Sciences, Sunnybrook Research Institute, Toronto, ON, Canada.

Department of Radiation Oncology, Sunnybrook Health Sciences Centre, Toronto, ON, Canada.

出版信息

PLoS One. 2019 Dec 18;14(12):e0226475. doi: 10.1371/journal.pone.0226475. eCollection 2019.

Abstract

It is now well established that for tumour growth and survival, tumour vasculature is an important element. Studies have demonstrated that ultrasound-stimulated microbubble (USMB) treatment causes extensive endothelial cell death leading to tumour vascular disruption. The subsequent rapid vascular collapse translates to overall increases in tumour response to various therapies. In this study, we explored USMB involvement in the enhancement of hyperthermia (HT) treatment effects. Human prostate tumour (PC3) xenografts were grown in mice and were treated with USMB, HT, or with a combination of the two treatments. Treatment parameters consisted of ultrasound pressures of 0 to 740 kPa, the use of perfluorocarbon-filled microbubbles administered intravenously, and an HT temperature of 43°C delivered for various times (0-50 minutes). Single and multiple repeated treatments were evaluated. Tumour response was monitored 24 hours after treatments and tumour growth was monitored for up to over 30 days for a single treatment and 4 weeks for multiple treatments. Tumours exposed to USMB combined with HT exhibited enhanced cell death (p<0.05) and decreased vasculature (p<0.05) compared to untreated tumours or those treated with either USMB alone or HT alone within 24 hours. Deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL) staining and cluster of differentiation 31 (CD31) staining were used to assess cell death and vascular content, respectively. Further, tumours receiving a single combined USMB and HT treatment exhibited decreased tumour volumes (p<0.05) compared to those receiving either treatment alone when monitored over the duration of 30 days. Additionally, tumour response monitored weekly up to 4 weeks demonstrated a reduced vascular index and tumour volume, increased fibrosis and lesser number of proliferating cells with combined treatment of USMB and HT. Thus in this study, we characterize a novel therapeutic approach that combines USMB with HT to enhance treatment responses in a prostate cancer xenograft model in vivo.

摘要

现在已经证实,肿瘤的生长和存活与肿瘤血管密切相关。研究表明,超声微泡(USMB)治疗会导致广泛的内皮细胞死亡,从而破坏肿瘤血管。随后的快速血管塌陷导致肿瘤对各种治疗的反应整体增加。在这项研究中,我们探讨了 USMB 如何增强热疗(HT)治疗效果。将人前列腺肿瘤(PC3)异种移植到小鼠体内,并对其进行 USMB、HT 或两者联合治疗。治疗参数包括 0 至 740 kPa 的超声压力、静脉内给予全氟碳填充微泡,以及 43°C 的 HT 温度,持续时间为 0-50 分钟。评估单次和多次重复治疗。在治疗后 24 小时监测肿瘤反应,并对单次治疗进行长达 30 天以上的肿瘤生长监测,对多次治疗进行 4 周的监测。与未治疗的肿瘤或仅接受 USMB 或 HT 治疗的肿瘤相比,接受 USMB 联合 HT 治疗的肿瘤在 24 小时内表现出增强的细胞死亡(p<0.05)和减少的血管生成(p<0.05)。脱氧核苷酸转移酶 dUTP 缺口末端标记(TUNEL)染色和分化簇 31(CD31)染色分别用于评估细胞死亡和血管含量。此外,在监测 30 天期间,接受单次联合 USMB 和 HT 治疗的肿瘤体积明显小于单独接受任何一种治疗的肿瘤(p<0.05)。此外,在 4 周内每周监测肿瘤反应显示,与单独接受 USMB 和 HT 治疗相比,联合治疗可降低血管指数和肿瘤体积,增加纤维化,减少增殖细胞数量。因此,在这项研究中,我们描述了一种新的治疗方法,即联合 USMB 和 HT 以增强前列腺癌异种移植模型中的治疗反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1332/6919613/2714a3b9ad99/pone.0226475.g001.jpg

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