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嵌入分化因子的脂质体作为增强牙髓干细胞成骨定向分化的新策略。

Liposomes embedded with differentiating factors as a new strategy for enhancing DPSC osteogenic commitment.

作者信息

Gallorini M, Di Carlo R, Pilato S, Ricci A, Schweikl H, Cataldi A, Fontana A, Zara S

机构信息

University "G. d'Annunzio" Chieti-Pescara, 66100, Chieti,

出版信息

Eur Cell Mater. 2021 Jan 27;41:108-120. doi: 10.22203/eCM.v041a08.

Abstract

Human dental pulp stem cell (DPSC) differentiation toward the osteoblastic phenotype is enhanced when culture media are supplemented with differentiating factors, i.e. ascorbic acid, β-glycerophosphate and dexamethasone. Liposomes, spherical vesicles formed by a phospholipid bilayer, are frequently used as carriers for drugs, growth factors and hydrophobic molecules. The aim of this work was to speed up DPSC commitment to the osteogenic lineage by embedding differentiating factors within liposomes. Firstly, liposomes were prepared by rehydrating a phospholipidic thin film and characterised in terms of dimensions. Secondly, liposome-exposed DPSCs were characterised by their immunophenotypic profile. Levels of CD90 were significantly decreased in the presence of liposomes filled with ascorbic acid, β-glycerophosphate and dexamethasone (Lipo-Mix) with respect to normal differentiation medium (DM), while CD73 and CD29 expression were enhanced, suggesting osteogenic commitment. Additionally, an appreciable extracellular matrix deposition is detected. Thirdly, the Lipo-Mix formulation better increases alkaline phosphatase activity and levels of Collagen I secretion with respect to DM. In parallel, the new liposome formulation is capable of decreasing the release of H2O2 and of triggering a precocious antioxidant cell response, redressing the redox balance required upon mesenchymal stem cell commitment to osteogenesis. It can be therefore hypothesised that Lipo-Mix could represent a suitable tool for clinical regenerative purposes in the field of tissue engineering by speeding up DPSC osteogenic commitment, mineralised matrix deposition and remodelling.

摘要

当培养基中添加分化因子(即抗坏血酸、β-甘油磷酸酯和地塞米松)时,人牙髓干细胞(DPSC)向成骨细胞表型的分化会增强。脂质体是由磷脂双层形成的球形囊泡,经常被用作药物、生长因子和疏水分子的载体。这项工作的目的是通过将分化因子包埋在脂质体内来加速DPSC向成骨谱系的定向分化。首先,通过复水磷脂薄膜制备脂质体,并对其尺寸进行表征。其次,通过免疫表型分析对暴露于脂质体的DPSC进行表征。与正常分化培养基(DM)相比,在填充有抗坏血酸、β-甘油磷酸酯和地塞米松的脂质体(Lipo-Mix)存在下,CD90水平显著降低,而CD73和CD29表达增强,表明发生了成骨定向分化。此外,检测到有明显的细胞外基质沉积。第三,与DM相比,Lipo-Mix制剂能更好地提高碱性磷酸酶活性和I型胶原蛋白分泌水平。同时,新的脂质体制剂能够减少过氧化氢的释放,并引发早熟的抗氧化细胞反应,纠正间充质干细胞向成骨分化时所需的氧化还原平衡。因此可以推测,Lipo-Mix可能是组织工程领域临床再生用途的合适工具,通过加速DPSC的成骨定向分化、矿化基质沉积和重塑来实现。

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