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Thiolated hyaluronan-based hydrogels crosslinked using oxidized glutathione: An injectable matrix designed for ophthalmic applications

机译:使用氧化型谷胱甘肽交联的硫酰透明质酸基水凝胶:专为眼科应用设计的可注射基质

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摘要

Future ophthalmic therapeutics will require the sustained delivery of bioactive proteins and nucleic acid-based macromolecules and/or provide a suitable microenvironment for the localization and sustenance of reparative progenitor cells after transplantation into or onto the eye. Water-rich hydrogels are ideal vehicles for such cargo, but few have all the qualities desired for novel ophthalmic use, namely in situ gelation speed, cytocompatibility, biocompatibility and capacity to functionalize. We describe here the development of an ophthalmic-compatible crosslinking system using oxidized glutathione (GSSG), a physiologically relevant molecule with a history of safe use in humans. When GSSG is used in conjunction with an existing hyaluronate-based, in situ crosslinkable hydrogel platform, gels form in less than 5 min using the thiol-disulfide exchange reaction. This GSSG hydrogel supports the 3-D culture of adipose-derived stem cells in vitro and shows biocompatibility in preliminary intracutaneous and subconjunctival experiments in vivo. In addition, the thiol-disulfide exchange reaction can also be used in conjunction with other thiol-compatible chemistries to covalently link peptides for more complex formulations. These data suggest that this hydrogel could be well suited for local ocular delivery, focusing initially on front of the eye therapies. Subsequent uses of the hydrogel include delivery of back of the eye treatments and eventually into other soft, hyaluronan-rich tissues such as those from the liver and brain.
机译:未来的眼科治疗药物将需要持续递送生物活性蛋白和基于核酸的大分子和/或提供合适的微环境,用于在移植到眼内或眼上后修复性祖细胞的定位和维持。富含水的水凝胶是用于这种货物的理想载体,但是很少有具有新颖眼科用途所需的全部品质,即原位胶凝速度,细胞相容性,生物相容性和功能化能力。我们在这里描述使用氧化型谷胱甘肽(GSSG)的眼科相容性交联体系的发展,后者是一种在人类中可以安全使用的生理相关分子。当将GSSG与现有的透明质酸基,原位可交联水凝胶平台结合使用时,使用硫醇-二硫键交换反应可在不到5分钟的时间内形成凝胶。这种GSSG水凝胶支持体外脂肪干细胞的3-D培养,并在体内初步的皮内和结膜下实验中显示出生物相容性。另外,硫醇-二硫键交换反应也可以与其他与硫醇相容的化学结合使用,以共价连接肽以制备更复杂的制剂。这些数据表明,这种水凝胶可能非常适合局部眼部递送,最初着眼于眼部疗法。水凝胶的后续用途包括提供眼部护理,并最终进入其他富含透明质酸的柔软组织,例如来自肝脏和大脑的组织。

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