Functional nanocrystal as effective contrast agents for dual-mode imaging: Live-cell sonoluminescence and contrast-enhanced echography

IF 9.7 1区 化学 Q1 ACOUSTICS Ultrasonics Sonochemistry Pub Date : 2025-02-01 Epub Date: 2025-01-22 DOI:10.1016/j.ultsonch.2025.107242
V. Vighetto , E. Pascucci , N.M. Percivalle , A. Troia , K.M. Meiburger , M.R.P. van den Broek , T. Segers , V. Cauda
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Abstract

In the context of molecular imaging, the present work explores an innovative platform made of lipid-coated nanocrystals as contrast-enhanced agent for both ultrasound imaging and sonoluminescence. At first, the dynamics of gas bubbles generation and cavitation under insonation with either pristine or lipid-coated nanocrystals (ZnO-Lip) are described, and the differences between the two colloidal systems are highlighted. These ZnO-Lip show an unprecedented ability to assist cavitation, which is reflected in enhanced sonoluminescent light emission with respect to the pristine nanocrystals or the pure water. Highly defined and sharp sonoluminescent images of cultured cells are indeed obtained, for the first time, when ZnO-Lip are used. Furthermore, ZnO-Lip were adopted as a nanosized agent for contrast-enhanced ultrasound imaging, i.e. echography, first in solutions, and then on ex-vivo tissues. A prolonged over time and bright imaging effect is observed when adopting the developed nanoparticles. Furthermore, their nanometric size and potential targeting with biomolecules would allow ease extravasation and tissue or even cell penetration, achieving enhanced-contrast imaging. Finally, the stimuli-responsive therapeutic applications of ZnO-Lip against tumors is overviewed, aiming to achieve a fully theranostic approach.

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功能纳米晶体作为双模成像的有效造影剂:活细胞声致发光和对比增强超声。
在分子成像的背景下,本研究探索了一种由脂质包被纳米晶体制成的创新平台,作为超声成像和声致发光的对比度增强剂。首先,描述了原始纳米晶体(ZnO-Lip)和脂质纳米晶体(ZnO-Lip)在声波作用下产生气泡和空化的动力学,并强调了两种胶体体系的区别。这些ZnO-Lip显示出前所未有的辅助空化能力,这反映在相对于原始纳米晶体或纯水增强的声致发光发射上。当使用ZnO-Lip时,确实首次获得了培养细胞的高度清晰和清晰的声致发光图像。此外,ZnO-Lip被用作纳米级超声造影剂,首先用于溶液中,然后用于离体组织。采用显影纳米粒子时,观察到长时间和明亮的成像效果。此外,它们的纳米尺寸和潜在的生物分子靶向性将使外渗和组织甚至细胞渗透变得容易,从而实现增强的对比度成像。最后,对ZnO-Lip的刺激反应治疗肿瘤的应用进行了概述,旨在实现一个全面的治疗方法。
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来源期刊
Ultrasonics Sonochemistry
Ultrasonics Sonochemistry 化学-化学综合
CiteScore
15.80
自引率
11.90%
发文量
361
审稿时长
59 days
期刊介绍: Ultrasonics Sonochemistry stands as a premier international journal dedicated to the publication of high-quality research articles primarily focusing on chemical reactions and reactors induced by ultrasonic waves, known as sonochemistry. Beyond chemical reactions, the journal also welcomes contributions related to cavitation-induced events and processing, including sonoluminescence, and the transformation of materials on chemical, physical, and biological levels. Since its inception in 1994, Ultrasonics Sonochemistry has consistently maintained a top ranking in the "Acoustics" category, reflecting its esteemed reputation in the field. The journal publishes exceptional papers covering various areas of ultrasonics and sonochemistry. Its contributions are highly regarded by both academia and industry stakeholders, demonstrating its relevance and impact in advancing research and innovation.
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