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超声增强按需乳腺肿瘤放射增敏和凋亡作用的三响应性组合递药治疗平台。

Ultrasound augments on-demand breast tumor radiosensitization and apoptosis through a tri-responsive combinatorial delivery theranostic platform.

机构信息

Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Mumbai 400076, Maharashtra, India.

Department of Radiation Oncology, Tata Memorial Centre, Mumbai, & Homi Bhabha National Institute, Maharashtra, India.

出版信息

Nanoscale. 2021 Oct 21;13(40):17077-17092. doi: 10.1039/d1nr04211d.

Abstract

Advanced inoperable triple-negative breast cancer (TNBC) comprises aggressive tumors with a modest pathological response to neoadjuvant chemotherapy. The concomitant use of chemoradiotherapy improves the pathological response rates. However, the dose-dependent systemic toxicity of clinical radiosensitizers with poor circulation half-life and limited passive bioavailability limits their clinical utility. We address these challenges by rationally designing a stealth and tumor microenvironment responsive nano-conjugate platform for the ultrasound-mediated on-demand spatio-temporal delivery of plant flavonoid curcumin as a combinatorial regimen with clinically approved paclitaxel for the neoadjuvant chemoradiotherapy of locally advanced triple-negative breast cancer (TNBC). Interestingly, the focused application of ultrasound at the orthotopic TNBC xenograft of NOD-SCID mice facilitated the immediate infiltration of nano-conjugates at the tumor interstitium, and conferred safety over marketed paclitaxel formulation. In addition, curcumin significantly potentiated the chemoradiotherapeutic efficacy of paclitaxel upon loading into nano-conjugates. This gets further enhanced by the concurrent pulse of ultrasound, as confirmed by PET-CT imaging, along with a significant improvement in the mice survival. The quadrapeutic apoptotic effect by the combination of paclitaxel, curcumin, radiation, and ultrasound, along with a reduction in the tumor microvessel density and cell proliferation marker, confers the broad chemo-radiotherapeutic potential of this regimen for radio-responsive solid tumors, as well as metastatic niches.

摘要

晚期不可手术的三阴性乳腺癌(TNBC)由侵袭性肿瘤组成,对新辅助化疗仅有适度的病理反应。放化疗的同时使用可以提高病理反应率。然而,临床放射增敏剂的剂量依赖性全身毒性、循环半衰期差和有限的被动生物利用度限制了其临床应用。我们通过合理设计一种隐形和肿瘤微环境响应的纳米偶联平台来解决这些挑战,用于超声介导的按需时空递送达那曲素作为一种组合方案,与临床批准的紫杉醇联合用于局部晚期三阴性乳腺癌(TNBC)的新辅助放化疗。有趣的是,在 NOD-SCID 小鼠的原位 TNBC 异种移植中聚焦应用超声,促进了纳米偶联物在肿瘤间质中的即时渗透,并提供了优于市售紫杉醇制剂的安全性。此外,当将姜黄素加载到纳米偶联物中时,姜黄素显著增强了紫杉醇的放化疗疗效。通过 PET-CT 成像证实,超声的同时脉冲进一步增强了这种效果,同时显著提高了小鼠的存活率。紫杉醇、姜黄素、辐射和超声联合的四药凋亡作用,以及肿瘤微血管密度和细胞增殖标志物的减少,赋予了这种方案对放射反应性实体肿瘤和转移灶的广泛化疗-放疗潜力。

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