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超声激活纳米乳剂/微泡实现的可控靶向肿瘤化疗

Controlled and targeted tumor chemotherapy by ultrasound-activated nanoemulsions/microbubbles.

作者信息

Rapoport Natalya Y, Kennedy Anne M, Shea Jill E, Scaife Courtney L, Nam Kweon-Ho

机构信息

Department of Bioengineering, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

J Control Release. 2009 Sep 15;138(3):268-76. doi: 10.1016/j.jconrel.2009.05.026. Epub 2009 May 25.

Abstract

The paper reports the results of nanotherapy of ovarian, breast, and pancreatic cancerous tumors by paclitaxel-loaded nanoemulsions that convert into microbubbles locally in tumor tissue under the action of tumor-directed therapeutic ultrasound. Tumor accumulation of nanoemulsions was confirmed by ultrasound imaging. Dramatic regression of ovarian, breast, and orthotopic pancreatic tumors was observed in tumor therapy through systemic injections of drug-loaded nanoemulsions combined with therapeutic ultrasound, signifying efficient ultrasound-triggered drug release from tumor-accumulated nanodroplets. The mechanism of drug release in the process of droplet-to-bubble conversion is discussed. No therapeutic effect from the nanodroplet/ultrasound combination was observed without the drug, indicating that therapeutic effect was caused by the ultrasound-enhanced chemotherapeutic action of the tumor-targeted drug, rather than the mechanical or thermal action of ultrasound itself. Tumor recurrence was observed after the completion of the first treatment round; a second treatment round with the same regimen proved less effective, suggesting that drug-resistant cells were either developed or selected during the first treatment round.

摘要

该论文报道了载有紫杉醇的纳米乳剂对卵巢癌、乳腺癌和胰腺癌肿瘤进行纳米治疗的结果,这种纳米乳剂在肿瘤导向治疗超声的作用下在肿瘤组织中局部转化为微泡。通过超声成像证实了纳米乳剂在肿瘤中的蓄积。通过全身注射载药纳米乳剂并结合治疗超声进行肿瘤治疗时,观察到卵巢癌、乳腺癌和原位胰腺癌肿瘤显著消退,这表明从肿瘤蓄积的纳米液滴中有效释放出超声触发的药物。讨论了液滴向气泡转化过程中药物释放的机制。在没有药物的情况下,未观察到纳米液滴/超声组合产生治疗效果,这表明治疗效果是由肿瘤靶向药物的超声增强化疗作用引起的,而不是超声本身的机械或热作用。在第一轮治疗结束后观察到肿瘤复发;采用相同方案进行的第二轮治疗效果较差,这表明在第一轮治疗期间产生或选择了耐药细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f7e/2746980/c4533ea4aba9/nihms129480f1.jpg

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