Maraldi Tullia, Prata Cecilia, Marrazzo Pasquale, Hrelia Silvana, Angeloni Cristina
Department of Surgery, Medicine, Dentistry and Morphological Sciences, University of Modena and Reggio Emilia, Modena, Italy.
Department of Pharmacy and Biotechnology, Alma Mater Studiorum-University of Bologna, Bologna, Italy.
Rejuvenation Res. 2020 Apr;23(2):93-106. doi: 10.1089/rej.2019.2187. Epub 2019 Sep 23.
The efficient use of stem cells for transplantation is often limited by the relatively low number of stem cells collected. The expansion of human stem cells for clinical use is a potentially valuable approach to increase stem cell number. Currently, most of the procedures used to expand stem cells are carried out using a 21% oxygen concentration, which is about 4- to 10-fold greater than the concentration characteristic of their natural niches. Hyperoxia might cause oxidative stress with a deleterious effect on the physiology of cultured stem cells. In this review, we investigate and critically examine the available information on the ability of natural compounds to counteract hyperoxia-induced damage in different types of stem cells . In particular, we focused on proliferation and stemness maintenance in an attempt to draw up useful indications to define new culture media with a promoting activity on cell expansion .
干细胞用于移植时的有效利用常常受到所采集干细胞数量相对较少的限制。扩增用于临床的人类干细胞是增加干细胞数量的一种潜在有价值的方法。目前,大多数用于扩增干细胞的程序是在21%的氧气浓度下进行的,这比其天然微环境的特征浓度大约高4至10倍。高氧可能会引起氧化应激,对培养的干细胞生理产生有害影响。在本综述中,我们调查并批判性地审视了有关天然化合物抵消不同类型干细胞中高氧诱导损伤能力的现有信息。特别是,我们专注于增殖和干性维持,试图制定有用的指标以定义对细胞扩增具有促进活性的新培养基。