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用于组织工程应用的透明质酸香豆素衍生物光交联水凝胶。

Photocrosslinked hydrogels from coumarin derivatives of hyaluronic acid for tissue engineering applications.

机构信息

Fidia Farmaceutici S.p.A., Via Ponte Della Fabbrica 3/A, 35031 Abano Terme, Italy.

Fidia Farmaceutici S.p.A., Via Ponte Della Fabbrica 3/A, 35031 Abano Terme, Italy.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Mar;96:625-634. doi: 10.1016/j.msec.2018.11.052. Epub 2018 Nov 27.

DOI:10.1016/j.msec.2018.11.052
PMID:30606574
Abstract

Hydrogels are an increasingly attractive choice in the fields of regenerative medicine, wound care and tissue engineering as important forms of bio-scaffolds. For many clinical needs, injectable in situ crosslinkable hydrogels are strongly preferred, due to treatment effectiveness and ease of use. In this study, hyaluronic acid (HA), containing side-arms linked to photo-active coumarin moieties, was used for the preparation of wall-to-wall hydrogels. This photocrosslinkable HA, hereafter called HA-TEG-coumarin, produces colourless aqueous solutions that solidify upon near-UV irradiation (at a specific wavelength of 365 nm) via a clean [2 + 2] photocycloaddition reaction, without by-products formation. The crosslinking event, a robust and non-cytotoxic process, does not require catalysts or radical initiators: in the field of hyaluronan photocrosslinking, this innovative feature is significant to ensure the whole biocompatibility and to avoid collateral reactions. Mechanical and rheological tests showed that hyaluronan derivatives became hydrogels after 3-5 min of irradiation, with average values for bulk and surface elastic moduli of about 32 kPa and 193 kPa, respectively. Fluorescence recovery after photobleaching (FRAP) assay showed that the hydrogels are porous and allow a good permeation for nutrients and growth factors. Cell metabolism and proliferation assays revealed that hydrogel-encapsulated fibroblasts maintained their viability and that HA-TEG-coumarin sustained the proliferation of non-adherent myoblasts. For all of these reasons and thanks to a safe free-radical approach, this novel hyaluronan coumarin derivative could be a good candidate for tissue engineering and regenerative medicine applications.

摘要

水凝胶作为再生医学、伤口护理和组织工程领域的重要生物支架形式,越来越受到关注。对于许多临床需求,由于治疗效果和使用方便,可注射原位交联水凝胶受到强烈青睐。在这项研究中,使用含有与光活性香豆素部分连接的侧臂的透明质酸(HA)制备壁到壁水凝胶。这种光交联透明质酸,以下称为 HA-TEG-香豆素,可制备出无色的水溶液,在近紫外线(特定波长 365nm)照射下通过清洁的[2+2]光环加成反应固化,不产生副产物。交联事件是一种稳健且非细胞毒性的过程,不需要催化剂或自由基引发剂:在透明质酸光交联领域,这种创新特性对于确保整个生物相容性并避免副反应非常重要。机械和流变学测试表明,透明质酸衍生物在照射 3-5 分钟后变成水凝胶,其体弹性模量和表面弹性模量的平均值分别约为 32kPa 和 193kPa。光漂白后荧光恢复(FRAP)测定表明,水凝胶具有多孔性,允许营养物质和生长因子良好渗透。细胞代谢和增殖试验表明,水凝胶包封的成纤维细胞保持其活力,并且 HA-TEG-香豆素维持非贴壁成肌细胞的增殖。由于所有这些原因,并且由于采用了安全的自由基方法,这种新型透明质酸香豆素衍生物可能是组织工程和再生医学应用的良好候选物。

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