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用于龋齿成像的上转换纳米颗粒

Upconversion Nanoparticles as Imaging Agents for Dental Caries.

作者信息

Bulmahn Julia C, Kuzmin Andrey N, Parker Carol, Genco Robert J, Kutscher Hilliard L, Prasad Paras N

机构信息

Institute for Lasers, Photonics and Biophotonics, Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, New York 14260, United States.

Department of Chemistry, University at Buffalo, The State University of New York, Buffalo, New York 14260, United States.

出版信息

Chem Biomed Imaging. 2023 Aug 21;1(6):566-574. doi: 10.1021/cbmi.3c00064. eCollection 2023 Sep 25.

Abstract

Dental caries (cavities) is the most prevalent disease worldwide; however, current detection methods suffer from issues associated with sensitivity, subjective interpretations, and false positive identification of carious lesions. Therefore, there is a great need for the development of more sensitive, noninvasive imaging methods. The 30 nm core@shell NaYF; Yb20%, Er2%@NaYF upconversion nanoparticles (UCNPs), exhibiting strong upconversion emission from erbium upon excitation at 975 nm, were used in the imaging of locations of demineralized enamel and oral biofilm formation for the detection of dental caries. UCNPs were modified with poly(acrylic acid) (PAA) or poly-d-lysine (PDL), and targeting peptides were conjugated to their surface with affinity for either hydroxyapatite (HA), the material dentin is composed of, or the caries causing bacteria . A statistical difference in the binding of targeted vs nontargeted UCNPs to HA was observed after 15 min, using both upconversion fluorescence of UCNP ( < 0.001) and elemental analysis ( = 0.0091). Additionally, using the HA targeted UCNPs, holes drilled in the enamel of bovine teeth with diameters of 1.0 and 0.5 mm were visible by the green emission after a 20 min incubation with no observable nonspecific binding. A statistical difference was also observed in the binding of targeted versus nontargeted UCNPs to biofilms. This difference was observed after 15 min, using the fluorescence measurements ( = 0.0125), and only 10 min ( < 0.001) using elemental analysis via ICP-OES measurements of Y concentration present in the biofilms. These results highlight the potential of these UCNPs for use in noninvasive imaging diagnosis of oral disease.

摘要

龋齿(蛀牙)是全球最普遍的疾病;然而,目前的检测方法存在与敏感性、主观解释以及龋损的假阳性识别相关的问题。因此,迫切需要开发更灵敏、非侵入性的成像方法。30纳米的核壳结构NaYF₄:Yb₂₀%,Er₂%@NaYF₄上转换纳米颗粒(UCNPs),在975纳米激发时铒表现出强烈的上转换发射,被用于脱矿釉质位置成像以及口腔生物膜形成的检测以诊断龋齿。UCNPs用聚丙烯酸(PAA)或聚-D-赖氨酸(PDL)进行修饰,靶向肽通过与羟基磷灰石(HA,牙本质的组成材料)或致龋细菌的亲和力连接到其表面。在15分钟后,使用UCNP的上转换荧光(P<0.001)和元素分析(P = 0.0091),观察到靶向与非靶向UCNPs与HA结合的统计学差异。此外,使用HA靶向的UCNPs,在与牛牙釉质上钻出的直径为1.0和0.5毫米的孔孵育20分钟后,通过绿色发射可见,且未观察到非特异性结合。在靶向与非靶向UCNPs与生物膜的结合方面也观察到统计学差异。使用荧光测量(P = 0.0125)在15分钟后观察到这种差异,而通过电感耦合等离子体质谱(ICP-OES)测量生物膜中Y浓度的元素分析在仅10分钟后(P<0.001)就观察到了这种差异。这些结果突出了这些UCNPs在口腔疾病非侵入性成像诊断中的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/741f/11504167/5dcf37b2ef44/im3c00064_0001.jpg

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