Istanbul University-Cerrahpaşa, Institute of Nanotechnology and Biotechnology, Istanbul, Turkey.
Marmara University, Department of Biology, Istanbul, Turkey.
Int J Biol Macromol. 2023 Jun 15;240:124418. doi: 10.1016/j.ijbiomac.2023.124418. Epub 2023 Apr 18.
Demand on natural products that contain biological ingredients mimicking growth factors and cytokines made natural polysaccharides popular in pharmaceutical and cosmetic industries. Levan is the β-(2-6) linked, nontoxic, biocompatible, water-soluble, film former fructan polymer that has diverse applications in pharmacy and cosmeceutical industries with its moisturizing, whitening, anti-irritant, anti-aging and slimming activities. Driven by the limited reports on few structurally similar levan polymers, this study presents the first systematic investigation on the effects of structurally different extremophilic Halomonas levan polysaccharides on human skin epidermis cells. In-vitro experiments with microbially produced linear Halomonas levan (HL), its hydrolyzed, (hHL) and sulfonated (ShHL) derivatives as well as enzymatically produced branched levan (EL) revealed increased keratinocyte and fibroblast proliferation (113-118 %), improved skin barrier function through induced expressions of involucrin (2.0 and 6.43 fold changes for HL and EL) and filaggrin (1.74 and 3.89 fold changes for hHL and ShHL) genes and increased type I collagen (2.63 for ShHL) and hyaluronan synthase 3 (1.41 for HL) gene expressions together with fast wound healing ability within 24 h (100 %, HL) on 2D wound models clearly showed that HL and its derivatives have high potential to be used as natural active ingredients in cosmeceutical and skin regenerating formulations.
对含有模仿生长因子和细胞因子的生物成分的天然产物的需求,使得天然多糖在制药和化妆品行业中受到欢迎。蔗果低聚糖是一种β-(2-6)键合的、无毒的、生物相容的、水溶性的、成膜性的低聚糖聚合物,具有保湿、美白、抗刺激、抗老化和减肥等多种应用。由于少数结构相似的蔗果低聚糖聚合物的报道有限,本研究首次对结构不同的嗜盐菌 Halomonas 蔗果低聚糖聚合物对人体表皮细胞的影响进行了系统研究。通过微生物产生的线性 Halomonas levan (HL)、其水解产物(hHL)和磺化产物(ShHL)以及酶促产生的支链 levan(EL)进行体外实验,结果表明,角化细胞和成纤维细胞增殖率分别提高了 113-118%(HL 和 EL),通过诱导表皮蛋白( involucrin 基因的 2.0 和 6.43 倍变化,filaggrin 基因的 1.74 和 3.89 倍变化)和丝聚蛋白( hHL 和 ShHL 的 1.74 和 3.89 倍变化)的表达,改善了皮肤屏障功能,同时还增加了 I 型胶原蛋白(ShHL 为 2.63)和透明质酸合酶 3(HL 为 1.41)的基因表达,并在 2D 伤口模型上显示出快速的愈合能力(HL 为 100%),在 24 小时内完全愈合。这些结果清楚地表明,HL 及其衍生物具有作为化妆品和皮肤再生制剂中天然活性成分的高潜力。