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大麦β-葡聚糖活性薄膜:用于伤口愈合的有前途的环保材料。

Barley β-glucan bioactive films: Promising eco-friendly materials for wound healing.

机构信息

Institute of Polymers, Composites and Biomaterials (IPCB), National Research Council, Viale J.F. Kennedy 54, Mostra d'Oltremare Pad 20, 80125 Naples, Italy.

Institute of Polymers, Composites and Biomaterials (IPCB), National Research Council, Via Campi Flegrei, 34, Pozzuoli, Naples, Italy.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 2):134434. doi: 10.1016/j.ijbiomac.2024.134434. Epub 2024 Aug 6.

Abstract

Mixtures containing β-glucans were extracted from barley, under both mild and high alkaline conditions, to prepare biodegradable films (MA and HA, respectively), as natural dressings with intrinsic therapeutic properties. An in-depth characterization was performed to evaluate the impact of mild and high alkaline conditions on chemical, physicochemical, and biological features for potential use in wound treatments. Both MA and HA films exhibited a good ability to absorb water and simulate wound fluid, which helps maintain optimal tissue hydration. Moreover, their oxygen permeability (147.6 and 16.4 cm × μm/m × 24 h × Pa × 10, respectively) appeared adequate for the intended application. Biocompatibility tests showed that the films do not harm human dermal fibroblasts. Impressively, they promote cell attachment and growth, with MA having a stronger effect due to its higher β-glucan content. Furthermore, MA films can modulate macrophage behaviour in an inflamed microenvironment, reducing oxidative stress and pro-inflammatory cytokines, while simultaneously increasing levels of anti-inflammatory cytokines. In a scratch test, HA films allowed for faster fibroblast migration within the first 16 h compared to MA. Overall, this study demonstrates that developing β-glucan based films from barley, through a sustainable and cost-effective process, holds great promise for skin applications. These films exhibit significant potential to promote wound healing and modulate inflammation.

摘要

从大麦中提取含有β-葡聚糖的混合物,分别在温和碱性和高碱性条件下制备可生物降解薄膜(MA 和 HA),作为具有内在治疗特性的天然敷料。对其进行了深入的特性评估,以评估温和碱性和高碱性条件对化学、物理化学和生物学特性的影响,以期用于伤口治疗。MA 和 HA 薄膜均表现出良好的吸水能力和模拟伤口液的能力,有助于维持最佳的组织水合作用。此外,它们的氧气透过率(分别为 147.6 和 16.4 cm×μm/m×24 h×Pa×10)对于预期的应用似乎是足够的。细胞相容性测试表明,这些薄膜不会伤害人类皮肤成纤维细胞。令人印象深刻的是,它们促进细胞附着和生长,MA 由于其较高的β-葡聚糖含量,具有更强的效果。此外,MA 薄膜可以调节炎症微环境中巨噬细胞的行为,降低氧化应激和促炎细胞因子水平,同时增加抗炎细胞因子水平。在划痕试验中,HA 薄膜在最初的 16 小时内允许纤维母细胞更快地迁移,而 MA 则没有。总的来说,这项研究表明,通过可持续且具有成本效益的方法从大麦中开发基于β-葡聚糖的薄膜,在皮肤应用方面具有很大的潜力。这些薄膜具有显著的促进伤口愈合和调节炎症的潜力。

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