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利用电纺支架中的多糖-聚乳酸或聚二氧六环混合物调节基质-多细胞反应,用于皮肤组织再生。

Modulating matrix-multicellular response using polysucrose-blended with poly-L-lactide or polydioxanone in electrospun scaffolds for skin tissue regeneration.

机构信息

Biomaterials, Drug Delivery and Nanotechnology Unit, Center for Biomedical and Biomaterials Research (CBBR), University of Mauritius, MSIRI Building, Réduit, Mauritius.

出版信息

J Biomed Mater Res A. 2018 Dec;106(12):3275-3291. doi: 10.1002/jbm.a.36527. Epub 2018 Oct 26.

DOI:10.1002/jbm.a.36527
PMID:30367544
Abstract

Polysucrose (PSuc) is hydrophilic, has excellent biocompatibility with cells as a density gradient and is resistant to enzymes. Its use in electrospun mats for tissue engineering applications has not been investigated due to its amorphous nature. For spinnability and robustness, polysucrose was blended with poly-L-lactide (PLLA) and polydioxanone (PDX) respectively and electrospun into nanofibrous mats. Interaction with cells was assessed using L929 mouse fibroblasts and HaCaT keratinocytes separately and in co-culture. Effect of parameters such as porosity, fiber diameter, surface wettability and mechanical properties of mats on cell-scaffold interactions was studied. Depending on nature and composition of mats, fibroblasts showed dendritic, spindle or round cell morphologies along with the formation of lamellipodia, filopodia, fibrillar or fiber-like projections of 100 nm and 200-300 nm in diameter respectively from the periphery or center of cells. Granular extracellular matrix was formed on both PLLA-PSuc and PDX-PSuc 50-50 seeded with keratinocytes. Growth of keratinocytes was enhanced in co-culture with fibroblasts with the formation of a skin-like layer. Both cells showed the ability to form multilayer structures. The mats maintained their physical integrity during the period of study. © 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 3275-3291, 2018.

摘要

聚蔗糖(PSuc)具有亲水性,作为密度梯度与细胞具有极好的生物相容性,并且能抵抗酶的作用。由于其非晶态性质,其在组织工程应用的静电纺丝垫中的使用尚未被研究过。为了可纺性和坚固性,聚蔗糖分别与聚-L-丙交酯(PLLA)和聚二氧六环酮(PDX)混合,并被电纺成纳米纤维垫。使用 L929 小鼠成纤维细胞和 HaCaT 角质形成细胞分别和共培养来评估与细胞的相互作用。研究了垫的孔隙率、纤维直径、表面润湿性和机械性能等参数对细胞-支架相互作用的影响。根据垫的性质和组成,成纤维细胞显示出树突状、梭形或圆形细胞形态,同时形成了由细胞外周或中心发出的具有 100nm 和 200-300nm 直径的片状伪足、丝状伪足、纤维状或纤维状突起。在 PLLA-PSuc 和 PDX-PSuc 50-50 上接种角质形成细胞后,均形成了颗粒状细胞外基质。在与成纤维细胞共培养时,角质形成细胞的生长得到了增强,形成了类似皮肤的层。两种细胞都显示出形成多层结构的能力。在研究期间,垫保持了其物理完整性。 © 2018 Wiley Periodicals, Inc. J 生物材料研究杂志 A 部分:106A:3275-3291,2018 年。

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