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蓝藻次生代谢产物作为天然抗衰老化妆品中的生物技术成分:克服色素沉着过度、皮肤密度丧失和紫外线辐射有害影响的潜力。

Cyanobacteria Secondary Metabolites as Biotechnological Ingredients in Natural Anti-Aging Cosmetics: Potential to Overcome Hyperpigmentation, Loss of Skin Density and UV Radiation-Deleterious Effects.

机构信息

CIIMAR/CIMAR, Interdisciplinary Centre of Marine and Environmental Research, Novo Edifício do Terminal de Cruzeiros do Porto de Leixões, Avenida General Norton de Matos, S/N, 4450-208 Matosinhos, Portugal.

FCUP, Department of Biology, Faculty of Sciences, University of Porto, Rua do Campo Alegre, 4169-007 Porto, Portugal.

出版信息

Mar Drugs. 2022 Mar 1;20(3):183. doi: 10.3390/md20030183.

Abstract

The loss of density and elasticity, the appearance of wrinkles and hyperpigmentation are among the first noticeable signs of skin aging. Beyond UV radiation and oxidative stress, matrix metalloproteinases (MMPs) assume a preponderant role in the process, since their deregulation results in the degradation of most extracellular matrix components. In this survey, four cyanobacteria strains were explored for their capacity to produce secondary metabolites with biotechnological potential for use in anti-aging formulations. Leptolyngbya boryana LEGE 15486 and Cephalothrix lacustris LEGE 15493 from freshwater ecosystems, and Leptolyngbya cf. ectocarpi LEGE 11479 and Nodosilinea nodulosa LEGE 06104 from marine habitats were sequentially extracted with acetone and water, and extracts were analyzed for their toxicity in cell lines with key roles in the skin context (HaCAT, 3T3L1, and hCMEC). The non-toxic extracts were chemically characterized in terms of proteins, carotenoids, phenols, and chlorophyll a, and their anti-aging potential was explored through their ability to scavenge the physiological free radical superoxide anion radical (O2•−), to reduce the activity of the MMPs elastase and hyaluronidase, to inhibit tyrosinase and thus avoid melanin production, and to block UV-B radiation (sun protection factor, SPF). Leptolyngbya species stood out for anti-aging purposes: L. boryana LEGE 15486 presented a remarkable SPF of 19 (at 200 µg/mL), being among the best species regarding O2•− scavenging, (IC50 = 99.50 µg/mL) and also being able to inhibit tyrosinase (IC25 = 784 µg/mL), proving to be promising against UV-induced skin-aging; L. ectocarpi LEGE 11479 was more efficient in inhibiting MMPs (hyaluronidase, IC50 = 863 µg/mL; elastase, IC50 = 391 µg/mL), thus being the choice to retard dermal density loss. Principal component analysis (PCA) of the data allowed the grouping of extracts into three groups, according to their chemical composition; the correlation of carotenoids and chlorophyll a with MMPs activity (p < 0.01), O2•− scavenging with phenolic compounds (p < 0.01), and phycocyanin and allophycocyanin with SPF, pointing to these compounds in particular as responsible for UV-B blockage. This original survey explores, for the first time, the biotechnological potential of these cyanobacteria strains in the field of skin aging, demonstrating the promising, innovative, and multifactorial nature of these microorganisms.

摘要

皮肤老化的最初迹象包括密度和弹性丧失、皱纹出现和色素沉着过度等。除了紫外线辐射和氧化应激之外,基质金属蛋白酶(MMPs)在这个过程中起着主导作用,因为它们的失调会导致大多数细胞外基质成分的降解。在这项研究中,探索了四种蓝藻菌株产生具有生物技术潜力的次生代谢产物的能力,可用于抗衰老制剂。淡水生态系统中的 Leptolyngbya boryana LEGE 15486 和 Cephalothrix lacustris LEGE 15493,以及海洋生境中的 Leptolyngbya cf. ectocarpi LEGE 11479 和 Nodosilinea nodulosa LEGE 06104 依次用丙酮和水进行提取,然后对细胞系中的关键角色进行毒性分析(HaCAT、3T3L1 和 hCMEC)。非毒性提取物在蛋白质、类胡萝卜素、酚类和叶绿素 a 方面进行了化学表征,并通过其清除生理自由基超氧阴离子自由基(O2•−)的能力、降低 MMPs 弹性蛋白酶和透明质酸酶的活性、抑制酪氨酸酶从而避免黑色素生成以及阻止 UV-B 辐射(防晒因子,SPF)来探索其抗衰老潜力。蓝藻物种在抗衰老方面表现出色:L. boryana LEGE 15486 具有显著的 SPF 为 19(在 200 µg/mL 时),在清除 O2•−方面(IC50 = 99.50 µg/mL)和抑制酪氨酸酶方面(IC25 = 784 µg/mL),是最有前途的抗 UV 诱导皮肤衰老的物种之一;L. ectocarpi LEGE 11479 在抑制 MMPs(透明质酸酶,IC50 = 863 µg/mL;弹性蛋白酶,IC50 = 391 µg/mL)方面更为有效,因此是延缓真皮密度丧失的选择。数据的主成分分析(PCA)允许根据化学组成将提取物分为三组;类胡萝卜素和叶绿素 a 与 MMPs 活性之间的相关性(p < 0.01),O2•−清除与酚类化合物之间的相关性(p < 0.01),以及藻蓝蛋白和别藻蓝蛋白与 SPF 之间的相关性,这表明特别是这些化合物负责阻挡 UV-B。这项原始研究首次探索了这些蓝藻菌株在皮肤老化领域的生物技术潜力,证明了这些微生物具有有前途、创新和多因素的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/094e/8950663/e75c4161b90b/marinedrugs-20-00183-g001.jpg

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