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可注射载姜黄素和 α-生育酚脂质体水凝胶制剂用于牙科组织工程。

Injectable Liposome-Loaded Hydrogel Formulations with Controlled Release of Curcumin and α-Tocopherol for Dental Tissue Engineering.

机构信息

International Centre for Research on Innovative Bio-based Materials (ICRI-BioM) - International Research Agenda, Lodz University of Technology, Lodz, 90-924, Poland.

Department of Genetics and Bioengineering, Istanbul Bilgi University, Istanbul, 34060, Turkey.

出版信息

Adv Healthc Mater. 2024 Sep;13(23):e2400966. doi: 10.1002/adhm.202400966. Epub 2024 Jun 18.

Abstract

An injectable hydrogel formulation is developed utilizing low- and high-molecular-weight chitosan (LCH and HCH) incorporated with curcumin and α-tocopherol-loaded liposomes (Lip/Cur+Toc). Cur and Toc releases are delayed within the hydrogels. The injectability of hydrogels is proved via rheological analyses. In vitro studies are conducted using human dental pulp stem cells (hDPSCs) and human gingival fibroblasts (hGFs) to examine the biological performance of the hydrogels toward endodontics and periodontics, respectively. The viability of hDPSCs treated with the hydrogels with Lip/Cur+Toc is the highest till day 14, compared to the neat hydrogels. During odontogenic differentiation tests, alkaline phosphatase (ALP) enzyme activity of hDPSCs is induced in the Cur-containing groups. Biomineralization is enhanced mostly with Lip/Cur+Toc incorporation. The viability of hGFs is the highest in HCH combined with Lip/Cur+Toc while wound healing occurs almost 100% in both (Lip/Cur+Toc@LCH and Lip/Cur+Toc@HCH) after 2 days. Antioxidant activity of Lip/Cur+Toc@LCH on hGFs is significantly the highest among the groups. Antimicrobial tests demonstrate that Lip/Cur+Toc@LCH is more effective against Escherichia coli whereas so is Lip/Cur+Toc@HCH against Staphylococcus aureus. The antimicrobial mechanism of the hydrogels is investigated for the first time through various computational models. LCH and HCH loaded with Lip/Cur+Toc are promising candidates with multi-functional features for endodontics and periodontics.

摘要

一种可注射水凝胶制剂是利用低分子量和高分子量壳聚糖(LCH 和 HCH)与姜黄素和载有 α-生育酚的脂质体(Lip/Cur+Toc)一起开发的。Cur 和 Toc 在水凝胶内的释放被延迟。通过流变学分析证明了水凝胶的可注射性。通过使用人牙髓干细胞(hDPSCs)和人牙龈成纤维细胞(hGFs)进行体外研究,分别考察水凝胶在牙髓学和牙周病学方面的生物学性能。与纯凝胶相比,用含有 Lip/Cur+Toc 的水凝胶处理的 hDPSCs 的活力最高,直到第 14 天。在成牙本质分化试验中,含 Cur 的组中 hDPSCs 的碱性磷酸酶(ALP)酶活性被诱导。生物矿化主要通过加入 Lip/Cur+Toc 得到增强。当 HCH 与 Lip/Cur+Toc 结合时,hGFs 的活力最高,而在 2 天后,(Lip/Cur+Toc@LCH 和 Lip/Cur+Toc@HCH)中几乎 100%发生伤口愈合。Lip/Cur+Toc@LCH 对 hGFs 的抗氧化活性在各组中最高。抗菌试验表明,Lip/Cur+Toc@LCH 对大肠杆菌更有效,而 Lip/Cur+Toc@HCH 对金黄色葡萄球菌也更有效。首次通过各种计算模型研究了水凝胶的抗菌机制。载有 Lip/Cur+Toc 的 LCH 和 HCH 是牙髓学和牙周病学具有多功能特性的有前途的候选物。

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