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具有不对称和可逆湿生物粘附性的复合凝聚层衍生水凝胶用于预防紫外线诱导的疾病。

Complex coacervate-derived hydrogel with asymmetric and reversible wet bioadhesion for preventing UV light-induced morbidities.

作者信息

Peng Xin, Li Yuan, Liu Menghui, Li Zhuo, Wang Xuemei, Zhang Kunyu, Zhao Xin, Li Gang, Bian Liming

机构信息

Guangdong Provincial Engineering Research Center of Molecular Imaging, The Fifth Affiliated Hospital, Sun Yat-sen University, Zhuhai, 519000, China.

Department of Orthopaedics & Traumatology, Stem Cells and Regenerative Medicine Laboratory, Li Ka Shing Institute of Health Sciences, The Chinese University of Hong Kong, Prince of Wales Hospital, Shatin, 999077, Hong Kong Special Administrative Region.

出版信息

Bioact Mater. 2023 Jul 25;30:62-72. doi: 10.1016/j.bioactmat.2023.07.016. eCollection 2023 Dec.

Abstract

Protecting the skin from UV light irradiation in wet and underwater environments is challenging due to the weak adhesion of existing sunscreen materials but highly desired. Herein we report a polyethyleneimine/thioctic acid/titanium dioxide (PEI/TA/TiO) coacervate-derived hydrogel with robust, asymmetric, and reversible wet bioadhesion and effective UV-light-shielding ability. The PEI/TA/TiO complex coacervate can be easily obtained by mixing a PEI solution and TA/TiO powder. The fluid PEI/TA/TiO coacervate deposited on wet skin can spread into surface irregularities and subsequently transform into a hydrogel with increased cohesion, thereby establishing interdigitated contact and adhesion between the bottom surface and skin. Meanwhile, the functional groups between the skin and hydrogel can form physical interactions to further enhance bioadhesion, whereas the limited movement of amine and carboxyl groups on the top hydrogel surface leads to low adhesion. Therefore, the coacervate-derived hydrogel exhibits asymmetric adhesiveness on the bottom and top surfaces. Moreover, the PEI/TA/TiO hydrogel formed on the skin could be easily removed using a NaHCO aqueous solution without inflicting damage. More importantly, the PEI/TA/TiO hydrogel can function as an effective sunscreen to block UV light and prevent UV-induced MMP-9 overexpression, inflammation, and DNA damage in animal skin. The advantages of PEI/TA/TiO coacervate-derived hydrogels include robust, asymmetric, and reversible wet bioadhesion, effective UV light-shielding ability, excellent biocompatibility, and easy preparation and usage, making them a promising bioadhesive to protect the skin from UV light-associated damage in wet and underwater environments.

摘要

在潮湿和水下环境中保护皮肤免受紫外线照射具有挑战性,因为现有的防晒材料附着力较弱,但这一需求却极为迫切。在此,我们报道了一种由聚乙烯亚胺/硫辛酸/二氧化钛(PEI/TA/TiO)凝聚层衍生的水凝胶,它具有强大、不对称且可逆的湿态生物粘附性以及有效的紫外线屏蔽能力。通过将PEI溶液与TA/TiO粉末混合,可轻松获得PEI/TA/TiO复合凝聚层。沉积在湿皮肤上的流体状PEI/TA/TiO凝聚层能够扩散到表面不规则处,随后转变为内聚力增强的水凝胶,从而在底面与皮肤之间建立起相互交错的接触和粘附。同时,皮肤与水凝胶之间的官能团可形成物理相互作用,进一步增强生物粘附性,而顶部水凝胶表面上胺基和羧基的有限移动导致粘附力较低。因此,这种由凝聚层衍生的水凝胶在底面和顶面上表现出不对称的粘附性。此外,皮肤上形成的PEI/TA/TiO水凝胶可使用碳酸氢钠水溶液轻松去除,且不会造成损伤。更重要的是,PEI/TA/TiO水凝胶可作为一种有效的防晒霜,阻挡紫外线并防止动物皮肤中紫外线诱导的MMP - 9过度表达、炎症和DNA损伤。PEI/TA/TiO凝聚层衍生水凝胶的优点包括强大、不对称且可逆的湿态生物粘附性、有效的紫外线屏蔽能力、出色的生物相容性以及易于制备和使用,使其成为一种有前景的生物粘合剂,可在潮湿和水下环境中保护皮肤免受与紫外线相关的损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34c4/10412988/8e7bdd4f76d7/ga1.jpg

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