On-demand photoresponsive liposomes-in-gel to prevent UV light-induced cellular damage

IF 4.7 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Patrick Pan, Shaun W. P. Rees, Darren Svirskis, David Barker, Geoffrey I. N. Waterhouse and Zimei Wu
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Abstract

To achieve prolonged and on-demand sunscreen effects, liposomes containing a lipid with a photoresponsive azobenzene moiety (BisAzo-PC) were constructed and photoprotective effects were demonstrated on a fibroblast cell line. The synthesis of BisAzo-PC was confirmed by FTIR, LC–MS, and 1H NMR. Photoresponsive and thermal properties of BisAzo-PC were studied, revealing a rapid UV-induced transcis isomerization and a slow cistrans isomerisation. BisAzo-PC liposomes (∼120 nm, optimal size for dermal delivery) were prepared and loaded with both hydrophilic (benzophenone-4) and lipophilic (octocrylene) UV filters, achieving high entrapment efficiencies (24.8% and 99.9%) and loading capacities (12.2% and 9.9%, w/w), respectively. The liposomes demonstrated rapid UV filter release triggered by UV irradiation (365 nm), with an extended-release period of 6 hours. Liposomes incorporated into a hydroxypropyl methylcellulose (HPMC)–polyvinylpyrrolidone (PVP)-based bioadhesive hydrogel provided a universal sun protection factor (uSPF) value of 38.1 ± 1.1, exceeding that of a commercial sunscreen of 32.3 ± 0.1. The liposome-in-gel reproducibly protected fibroblasts from UV exposure and reduced intracellular reactive oxygen species (ROS) by 72% for up to 6 hours, accompanied by a 45% reduction of the lipid peroxidation marker malondialdehyde (MDA) and antioxidant enzyme activities of superoxide dismutase (SOD) and glutathione peroxidase (GPx). The results highlight the potential of photoresponsive liposomes-in-gel with extended photoprotective properties to be further translated into a long-acting sunscreen by addressing the main concerns of conventional sunscreens, reducing the need for frequent applications and the risk of systemic absorption of UV filters.

Abstract Image

按需光反应脂质体凝胶防止紫外线引起的细胞损伤
为了获得持久的按需防晒效果,构建了含有具有光响应性偶氮苯片段的脂质脂质体(BisAzo-PC),并在成纤维细胞系上证明了光保护作用。通过FTIR、LC-MS、1H NMR等手段证实了双偶氮- pc的合成。研究了双偶氮- pc的光响应性和热响应性,揭示了紫外诱导的快速反-顺异构化和缓慢的顺-反异构化。制备了BisAzo-PC脂质体(约120nm,皮肤递送的最佳尺寸),并负载亲水性(二苯甲酮-4)和亲脂性(八烯)紫外线过滤器,分别获得了高捕获效率(24.8%和99.9%)和负载容量(12.2%和9.9%,w/w)。该脂质体在紫外线照射下(365 nm)快速释放,延长释放时间为6小时。将脂质体掺入羟丙基甲基纤维素(HPMC) -聚乙烯吡罗烷酮(PVP)基生物胶粘剂水凝胶中,可提供38.1±1.1的通用防晒系数(uSPF),超过商用防晒霜的32.3±0.1。凝胶中脂质体可再生地保护成纤维细胞免受紫外线照射,并在长达6小时的时间内将细胞内活性氧(ROS)降低72%,同时将脂质过氧化标志物丙二醛(MDA)和超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GPx)的抗氧化酶活性降低45%。研究结果强调了具有广泛光防护性能的光反应性脂质体凝胶的潜力,通过解决传统防晒霜的主要问题,进一步转化为长效防晒霜,减少频繁使用的需要和系统吸收紫外线过滤器的风险。
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来源期刊
Materials Advances
Materials Advances MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.60
自引率
2.00%
发文量
665
审稿时长
5 weeks
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