Biosustainable Hybrid Nanoplatforms as Photoacoustic Agents

IF 4.4 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Macromolecular bioscience Pub Date : 2024-03-20 DOI:10.1002/mabi.202400013
Giulio Pota, Paolo Armanetti, Brigida Silvestri, Bruno de Gennaro, Anna Zanfardino, Michela Di Napoli, Mario Varcamonti, Gianluca Landi, Alessandro Pezzella, Aniello Costantini, Giuseppina Luciani, Luca Menichetti
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Abstract

The development of biosafe theranostic nanoplatforms has attracted great attention due to their multifunctional behavior, reduced potential toxicity, and improved long-term safety. When considering photoacoustic contrast agents and photothermal conversion tools, melanin and constructs like melanin are highly appealing due to their ability to absorb optical energy and convert it into heat. Following a sustainable approach, in this study, silver-melanin like-silica nanoplatforms are synthesized exploiting different bio-available and inexpensive phenolic acids as potential melanogenic precursors and exploring their role in tuning the final systems architecture. The UV–Vis combined with X-Ray Diffraction investigation proves metallic silver formation, while Transmission Electron Microscopy analysis reveals that different morphologies can be obtained by properly selecting the phenolic precursors. By looking at the characterization results, a tentative formation mechanism is proposed to explain how phenolic precursors' redox behavior may affect the nanoplatforms' structure. The antibacterial activity experiments showed that all synthesized systems have a strong inhibitory effect on Escherichia coli, even at low concentrations. Furthermore, very sensitive Photoacoustic Imaging capabilities and significant photothermal behavior under laser irradiation are exhibited. Finally, a marked influence of phenol nature on the final system architecture is revealed resulting in a significant effect on both biological and photoacoustic features of the obtained systems. These melanin-based hybrid systems exhibit excellent potential as triggerable nanoplatforms for various biomedical applications.

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作为光声剂的生物可持续混合纳米平台。
生物安全治疗纳米平台因其多功能性、降低潜在毒性和提高长期安全性而备受关注。在考虑光声造影剂和光热转换工具时,黑色素和类似黑色素的构造物因其吸收光能并将其转化为热能的能力而极具吸引力。本研究采用一种可持续的方法,利用不同的生物可得性和廉价酚酸作为潜在的黑色素生成前体,合成了类似银-黑色素-二氧化硅纳米平台,并探索了它们在调整最终系统结构中的作用。紫外可见光谱(UV-Vis)结合 X 射线衍射(XRD)研究证明了金属银的形成,而透射电子显微镜(TEM)分析表明,通过适当选择酚类前体可以获得不同的形态。通过观察表征结果,提出了一种初步的形成机制,以解释酚类前体的氧化还原行为如何影响纳米平台的结构。抗菌活性实验表明,即使在低浓度下,所有合成系统对大肠杆菌都有很强的抑制作用。此外,在激光照射下,还表现出非常灵敏的光声成像(PAI)能力和显著的光热行为。最后,苯酚性质对最终系统结构的显著影响被揭示出来,从而对所获系统的生物和光声特性产生了重大影响。这些基于黑色素的混合系统作为可触发的纳米平台,在各种生物医学应用中展现出了卓越的潜力。本文受版权保护。保留所有权利。
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来源期刊
Macromolecular bioscience
Macromolecular bioscience 生物-材料科学:生物材料
CiteScore
7.90
自引率
2.20%
发文量
211
审稿时长
1.5 months
期刊介绍: Macromolecular Bioscience is a leading journal at the intersection of polymer and materials sciences with life science and medicine. With an Impact Factor of 2.895 (2018 Journal Impact Factor, Journal Citation Reports (Clarivate Analytics, 2019)), it is currently ranked among the top biomaterials and polymer journals. Macromolecular Bioscience offers an attractive mixture of high-quality Reviews, Feature Articles, Communications, and Full Papers. With average reviewing times below 30 days, publication times of 2.5 months and listing in all major indices, including Medline, Macromolecular Bioscience is the journal of choice for your best contributions at the intersection of polymer and life sciences.
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