Synthesis and biological applications of nanocomposite hydrogels based on the methacrylation of hydroxypropyl methylcellulose and lignin loaded with alpha-pinene

IF 10.7 1区 化学 Q1 CHEMISTRY, APPLIED Carbohydrate Polymers Pub Date : 2024-08-22 DOI:10.1016/j.carbpol.2024.122642
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Abstract

Oral conditions, such as recurrent aphthous stomatitis, are chronic inflammatory disorders that significantly affect the life quality. This study aims to develop a novel buccal mucoadhesive based on methacrylate hydroxypropyl methylcellulose (M-HPMC) and methacrylate lignin (M-SLS) encapsulated with nanostructured lipid carriers (NLCs) for controlled release of alpha-pinene (α-pinene). NLCs with particle sizes of 152 ± 3 nm were prepared by using stearic acid and oleic acid as solid and liquid lipids, respectively. Following the successful synthesis of M-HPMC and M-SLS, various concentrations of α-pinene loaded NLCs (0, 18, 38, and 50 wt%) were encapsulated in M-HPMC/M-SLS hydrogel. It was demonstrated that the physiological and mechanical performances of hydrogels were changed, depending on the NLC content. Remarkably, the incorporation of 18 wt% NLC improved the compressive strength (143 ± 14 kPa) and toughness (17 ± 1 kJ/m3) of M-HPMC/M-SLS hydrogel. This nanocomposite hydrogel considerably decreased dissipated energy from 1.64 kJ/m3 to 0.99 kJ/m3, after a five-cycle compression test. The nanocomposite hydrogel exhibited controlled α-pinene release for up to 96 h which could significantly improve the antioxidant activity of M-HPMC/M-SLS matrix. Moreover, the reinforcing M-HPMC/M-SLS hydrogel with α-pinene-loaded NLCs resulted in increased adhesive strength (113.5 ± 7.5 kPa) to bovine buccal mucosa and cytocompatibility in contact with fibroblasts.

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基于羟丙基甲基纤维素和负载α-蒎烯的木质素的甲基丙烯酸化的纳米复合水凝胶的合成及其生物应用
复发性口腔炎等口腔疾病是严重影响生活质量的慢性炎症性疾病。本研究旨在开发一种基于甲基丙烯酸羟丙基甲基纤维素(M-HPMC)和甲基丙烯酸木质素(M-SLS)与纳米结构脂质载体(NLCs)包裹的新型口腔黏附剂,用于控制α-蒎烯(α-pinene)的释放。以硬脂酸和油酸分别作为固态和液态脂质制备了粒径为 152 ± 3 nm 的 NLC。成功合成 M-HPMC 和 M-SLS 后,将不同浓度(0、18、38 和 50 wt%)的α-蒎烯负载 NLCs 包封在 M-HPMC/M-SLS 水凝胶中。结果表明,水凝胶的生理和机械性能随 NLC 含量的变化而改变。值得注意的是,18 wt% NLC 的加入提高了 M-HPMC/M-SLS 水凝胶的抗压强度(143 ± 14 kPa)和韧性(17 ± 1 kJ/m3)。经过五个循环的压缩试验后,这种纳米复合水凝胶大大降低了耗散能量,从 1.64 kJ/m3 降至 0.99 kJ/m3。这种纳米复合水凝胶在长达 96 小时的时间内都能控制α-蒎烯的释放,从而显著提高了 M-HPMC/M-SLS 基质的抗氧化活性。此外,用α-蒎烯负载的 NLCs 增强 M-HPMC/M-SLS 水凝胶可提高与牛口腔粘膜的粘合强度(113.5 ± 7.5 kPa)以及与成纤维细胞接触时的细胞相容性。
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来源期刊
Carbohydrate Polymers
Carbohydrate Polymers 化学-高分子科学
CiteScore
22.40
自引率
8.00%
发文量
1286
审稿时长
47 days
期刊介绍: Carbohydrate Polymers stands as a prominent journal in the glycoscience field, dedicated to exploring and harnessing the potential of polysaccharides with applications spanning bioenergy, bioplastics, biomaterials, biorefining, chemistry, drug delivery, food, health, nanotechnology, packaging, paper, pharmaceuticals, medicine, oil recovery, textiles, tissue engineering, wood, and various aspects of glycoscience. The journal emphasizes the central role of well-characterized carbohydrate polymers, highlighting their significance as the primary focus rather than a peripheral topic. Each paper must prominently feature at least one named carbohydrate polymer, evident in both citation and title, with a commitment to innovative research that advances scientific knowledge.
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