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三元生物相容性杂化二氧化硅基纳米颗粒内核中协同 Ag-黑色素相互作用增强光声响应。

Enhanced Photoacoustic Response by Synergistic Ag-Melanin Interplay at the Core of Ternary Biocompatible Hybrid Silica-Based Nanoparticles.

机构信息

Department of Civil, Architectural and Environmental Engineering, University of Naples Federico II, Via Claudio 21, 80125 Fuorigrotta, Naples, Italy.

Institute of Clinical Physiology, National Research Council, Via Giuseppe Moruzzi 1, 56124 Pisa, Italy.

出版信息

ACS Appl Mater Interfaces. 2023 Oct 11;15(40):46756-46764. doi: 10.1021/acsami.3c13523. Epub 2023 Sep 29.

Abstract

Photoacoustics (PA) is gaining increasing credit among biomolecular imaging methodologies by virtue of its poor invasiveness, deep penetration, high spatial resolution, and excellent endogenous contrast, without the use of any ionizing radiation. Recently, we disclosed the excellent PA response of a self-structured biocompatible nanoprobe, consisting of ternary hybrid nanoparticles with a silver core and a melanin component embedded into a silica matrix. Although preliminary evidence suggested a crucial role of the Ag sonophore and the melanin-containing nanoenvironment, whether and in what manner the PA response is controlled and affected by the self-structured hybrid nanosystems remained unclear. Because of their potential as multifunctional platforms for biomedical applications, a detailed investigation of the metal-polymer-matrix interplay underlying the PA response was undertaken to understand the physical and chemical factors determining the enhanced response and to optimize the architecture, composition, and performance of the nanoparticles for efficient imaging applications. Herein, we provide the evidence for a strong synergistic interaction between eumelanin and Ag which suggests an important role in the in situ-generated metal-organic interface. In particular, we show that a strict ratio between melanin and silver precursors and an accurate choice of metal nanoparticle dimension and the kind of metal are essential for achieving strong enhancements of the PA response. Systematic variation of the metal/melanin component is thus shown to offer the means of tuning the stability and intensity of the photoacoustic response for various biomedical and theranostic applications.

摘要

光声(PA)凭借其非侵入性、深穿透性、高空间分辨率和出色的内源性对比,而无需使用任何电离辐射,在生物分子成像方法中越来越受到重视。最近,我们揭示了一种自结构化生物相容性纳米探针的优异 PA 响应,该探针由具有银核和嵌入二氧化硅基质中的黑色素成分的三元混合纳米粒子组成。尽管初步证据表明 Ag 声子和含黑色素的纳米环境起着关键作用,但 PA 响应是否以及以何种方式受到自结构化混合纳米系统的控制和影响尚不清楚。由于它们作为用于生物医学应用的多功能平台的潜力,我们对 PA 响应的金属-聚合物-基质相互作用进行了详细研究,以了解决定增强响应的物理和化学因素,并优化纳米粒子的结构、组成和性能,以实现高效成像应用。在这里,我们提供了 eumelanin 和 Ag 之间存在强烈协同相互作用的证据,这表明它们在原位生成的金属-有机界面中起着重要作用。特别是,我们表明,黑色素和银前体之间的严格比例以及金属纳米粒子尺寸和金属种类的准确选择对于实现 PA 响应的强烈增强至关重要。因此,系统地改变金属/黑色素成分可提供用于调整各种生物医学和治疗应用的光声响应的稳定性和强度的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b46a/10571004/bd66f8f758a1/am3c13523_0001.jpg

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