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采用巯基丙氨酸保护的金/EDC 纳米粒子制剂对牙本质胶原进行交联。

Dentine collagen cross-linking using tiopronin-protected Au/EDC nanoparticles formulations.

机构信息

Clinical Dentistry, Restorative Division, Faculty of Dentistry, International Medical University Kuala Lumpur, 126, Jalan Jalil Perkasa 19, Bukit Jalil, 57000 Bukit Jalil, Wilayah Persekutuan Kuala Lumpur, Malaysia.

Department of Periodontology, Faculty of Dentistry, Ziauddin University, Karachi, Pakistan.

出版信息

Dent Mater. 2019 Jul;35(7):1017-1030. doi: 10.1016/j.dental.2019.04.005. Epub 2019 May 4.

Abstract

OBJECTIVE

The aim of this study was to investigate EDC-assisted collagen crosslinking effect with different concentrations of tiopronin-protected gold (TPAu) nanoparticles on demineralized dentine.

METHODS

TPAu nanoparticles were fabricated from 0.31-g tetrachloroauric acid and 0.38-g of N-(2-mercaptopropionyl) glycine (2.4-mmol). Then co-dissolved using 35-mL of 6:1 methanol/acetic acid and mixed using NaBH. EDC (0.3-M) was conjugated to TPAu nanoparticles at TPAU/EDC-0.25:1, and TPAU/EDC-0.5:1 treatment formulations ratios. Dentin specimens treated with 0.3-M EDC solution alone or left untreated were used as control. Nanoparticles formulations were characterized in term of particles morphology and size, Zeta potential, thermogravimetric analysis and small-angle X-ray scattering. Dentin substrates were characterized in term of TEM investigation, dentin proteases characterization, hydroxyproline liberation, elastic modulus measurement, Raman analysis and confocal microscopy viewing.

RESULTS

TEM evaluation of tiopronin protected gold nanoparticles dispersion revealed nano-clusters formations in both groups. However, based on our TEM measurements, the particle-size was ranging from ˜20 to 50 nm with spherical core-shape which were almost similar for both TPAu/EDC ratios (0.5:1 and 0.25:1). Zeta potential measurements indicate negative nanoparticles surface charge. SAXS profiles for both formulations, suggest a typical profile for uni-lamellar nanoparticles. Superior dentin collagen cross-linking effect was found with the TPAu/EDC nanoparticles formulations compared to the control and EDC treated groups.

SIGNIFICANCE

Cross-linking of dentin collagen using TPAu coupled with EDC through TPAu/EDC nanoparticles formulations is of potential significance in improving the biodegradation resistance, proteases inhibition, mechanical and structural stability of demineralized dentin substrates. In addition, the cross-linking effect is dependent on TPAu/EDC ratio, whereas higher cross-linking effect was found at TPAu/EDC ratio of 0.5:1.

摘要

目的

本研究旨在探讨不同浓度巯基丙氨酸保护的金(TPAu)纳米粒子辅助 EDC 交联对脱矿牙本质的影响。

方法

采用 0.31g 四氯金酸和 0.38g N-(2-巯基丙酰基)甘氨酸(2.4mmol)制备 TPAu 纳米粒子。然后,将其溶解在 35ml 6:1 的甲醇/乙酸中,并使用 NaBH 混合。将 0.3M 的 EDC 与 TPAu 纳米粒子偶联,形成 TPAU/EDC-0.25:1 和 TPAU/EDC-0.5:1 的处理配方比例。单独用 0.3M 的 EDC 溶液处理或未处理的牙本质标本作为对照。采用 TEM 研究、牙本质蛋白酶表征、羟脯氨酸释放、弹性模量测量、拉曼分析和共聚焦显微镜观察对纳米粒子配方进行表征。采用 TEM 研究、牙本质蛋白酶表征、羟脯氨酸释放、弹性模量测量、拉曼分析和共聚焦显微镜观察对牙本质基质进行表征。

结果

Tiopronin 保护的金纳米粒子分散体的 TEM 评价显示,两组均存在纳米簇形成。然而,根据我们的 TEM 测量结果,粒径范围为 ˜20 至 50nm,具有球形核形状,两种 TPAu/EDC 比例(0.5:1 和 0.25:1)之间几乎相似。Zeta 电位测量表明纳米粒子表面带负电荷。两种配方的 SAXS 图谱表明,典型的单层纳米粒子图谱。与对照组和 EDC 处理组相比,TPAu/EDC 纳米粒子配方对牙本质胶原的交联效果更好。

意义

通过 TPAu/EDC 纳米粒子配方将牙本质胶原交联,可提高脱矿牙本质基质的抗生物降解性、蛋白酶抑制、机械稳定性和结构稳定性。此外,交联效果取决于 TPAu/EDC 比例,而在 TPAu/EDC 比例为 0.5:1 时,交联效果更高。

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