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通过电流体动力学雾化制备矿化微凝胶:牙本质-牙髓复合体的优化及体外模型

Mineralized Microgels via Electrohydrodynamic Atomization: Optimization and In Vitro Model for Dentin-Pulp Complex.

作者信息

Cruz-Maya Iriczalli, Altobelli Rosaria, Alvarez-Perez Marco Antonio, Guarino Vincenzo

机构信息

Institute of Polymers, Composites and Biomaterials (IPCB), National Research Council of Italy, Mostra d'Oltremare Pad. 20, Viale J.F. Kennedy 54, 80125 Naples, Italy.

Tissue Bioengineering Laboratory of DEPeI-FO, Universidad Nacional Autonoma de Mexico (UNAM), Mexico City 04510, Mexico.

出版信息

Gels. 2023 Oct 25;9(11):846. doi: 10.3390/gels9110846.

Abstract

There is growing interest in the use of micro-sized hydrogels, including bioactive signals, as efficient platforms for tissue regeneration because they are able to mimic cell niche structure and selected functionalities. Herein, it is proposed to optimize bioactive composite microgels via electrohydrodynamic atomization (EHDA) to regenerate the dentin-pulp complex. The addition of disodium phosphate (NaHPO) salts as mineral precursors triggered an in situ reaction with divalent ions in solution, thus promoting the encapsulation of different amounts of apatite-like phases. Morphological analysis via image analysis of optical images confirmed a narrow distribution of perfectly rounded particles, with an average diameter ranging from 223 ± 18 μm to 502 ± 64 μm as a function of mineral content and process parameters used. FTIR, TEM, and EDAX analyses confirmed the formation of calcium phosphates with a characteristic Ca/P ratio close to 1.67 and a needle-like crystal shape. In vitro studies-using dental pulp stem cells (DPSCs) in crown sections of natural teeth slices-showed an increase in cell viability until 14 days, recording a decay of proliferation at 21 days, independent on the mineral amount, suggesting that differentiation is started, as confirmed by the increase of ALP activity at 14 days. In this view, mineralized microgels could be successfully used to support in vitro osteogenesis, working as an interesting model to study dental tissue regeneration.

摘要

作为组织再生的有效平台,包括生物活性信号在内的微米级水凝胶正受到越来越多的关注,因为它们能够模拟细胞微环境结构和特定功能。本文提出通过电液动力雾化(EHDA)优化生物活性复合微凝胶,以再生牙本质-牙髓复合体。添加磷酸氢二钠(NaHPO)盐作为矿物前驱体引发了与溶液中二价离子的原位反应,从而促进了不同量类磷灰石相的包封。通过光学图像的图像分析进行的形态学分析证实,完美圆形颗粒的分布狭窄,平均直径范围为223±18μm至502±64μm,这是所用矿物含量和工艺参数的函数。傅里叶变换红外光谱(FTIR)、透射电子显微镜(TEM)和能量散射X射线能谱(EDAX)分析证实形成了磷酸钙,其特征钙磷比接近1.67,呈针状晶体形状。体外研究——在天然牙切片的冠部切片中使用牙髓干细胞(DPSC)——显示细胞活力在14天前增加,在21天时增殖下降,与矿质含量无关,这表明分化开始,14天时碱性磷酸酶(ALP)活性增加证实了这一点。从这个角度来看,矿化微凝胶可以成功用于支持体外成骨,作为研究牙组织再生的一个有趣模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deb5/10670945/3814b1e8e86c/gels-09-00846-g001.jpg

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