Dipartimento di Scienze Biomediche, Sperimentali e Cliniche "Mario Serio", Università degli Studi di Firenze, viale Morgagni 50, 50134 Firenze, Italy.
Dipartimento di Neuroscienze, Psicologia, Area del Farmaco e Salute del Bambino (NEUROFARBA), Università degli Studi di Firenze, viale Pieraccini 6, 50139 Firenze, Italy.
Mar Drugs. 2018 Apr 21;16(4):137. doi: 10.3390/md16040137.
(L.) Delile is a marine plant with interesting biological properties potentially ascribed to the synergistic combination of bioactive compounds. Our previously described extract, obtained from the leaves of , showed the ability to impair HT1080 cell migration by targeting both expression and activity of gelatinases. Commonly, the lack of knowledge about the mechanism of action of phytocomplexes may be an obstacle regarding their therapeutic use and development. The aim of this study was to gain insight into the molecular signaling through which such bioactive compounds impact on malignant cell migration and gelatinolytic activity. The increase in autophagic vacuoles detected by confocal microscopy suggested an enhancement of autophagy in a time and dose dependent manner. This autophagy activation was further confirmed by monitoring pivotal markers of autophagy signaling as well as by evidencing an increase in IGF-1R accumulation on cell membranes. Taken together, our results confirm that the phytocomplex is a promising reservoir of potent and cell safe molecules able to defend against malignancies and other diseases in which gelatinases play a major role in progression. In conclusion, the attractive properties of this phytocomplex may be of industrial interest in regard to the development of novel health-promoting and pharmacological products for the treatment or prevention of several diseases.
(L.)Delile 是一种具有有趣生物特性的海洋植物,其生物活性化合物的协同组合可能具有潜在的治疗效果。我们之前描述的提取物是从 Delile 的叶子中提取的,它显示出通过靶向明胶酶的表达和活性来抑制 HT1080 细胞迁移的能力。通常,由于缺乏对植物复合物作用机制的了解,可能会成为其治疗用途和开发的障碍。本研究的目的是深入了解这些生物活性化合物影响恶性细胞迁移和明胶酶活性的分子信号通路。共聚焦显微镜检测到自噬小泡增加,表明自噬在时间和剂量依赖性方式下增强。通过监测自噬信号的关键标志物以及证明 IGF-1R 在细胞膜上的积累增加,进一步证实了这种自噬激活。总之,我们的结果证实,Delile 植物复合物是一种有前途的潜在强效且细胞安全的分子库,能够抵抗癌症和其他在进展过程中明胶酶起主要作用的疾病。总之,鉴于这种植物复合物具有吸引人的特性,它可能具有工业价值,可用于开发新型促进健康和具有药理学作用的产品,以治疗或预防多种疾病。