Department of Molecular Biology and Genetics, Bilkent University, Ankara, Turkey.
Stem Cell Rev Rep. 2012 Jun;8(2):393-401. doi: 10.1007/s12015-011-9292-0.
Mesenchymal Stem Cells (MSCs) have high therapeutic value for regenerative medicine and tissue engineering due to their differentiation potential and non-immunogenic characteristics. They are also considered as an effective in vivo delivery agent because of their ability to migrate to the site of injury. A major roadblock in their use for cell-based therapies is their rareness in vivo. Therefore, it is important to obtain increased number of functional MSCs in vitro in order to have adequate numbers for therapeutic regiments. We aimed to investigate the role of estrogen and its mechanism in obtaining more MSCs. MSCs were isolated from female and ovariectomized rats and cultured in the presence and absence of 10(-7) M estrogen. In the presence of estrogen, not only their CFU-F activity increased but also apoptotic rate decreased as shown by TUNEL staining leading to obtain more MSCs. Also the number of the cells in the colonies increased upon estrogen treatment. To reveal the mechanism of this effect, we focused on Bcl-2 family of proteins. Our immunoblotting experiments combined with knockdown studies suggested a critical role for anti-apoptotic Bcl-x(L) and Bcl-2. Estrogen treatment up regulated the expression Bcl-x(L) and Bcl-2. When we knocked down the expression of bcl-x ( L ) and bcl-2, MSCs lacking these genes showed an increase in the apoptotic rate in contrast to normal MSCs following estrogen treatment. Therefore, estrogen treatment will be of great advantage for cell-based therapies in order to get more functional MSCs and may provide opportunities to develop new strategies for debilitating diseases.
间充质干细胞(MSCs)因其分化潜能和非免疫原性特征,在再生医学和组织工程中有很高的治疗价值。它们还被认为是一种有效的体内递送剂,因为它们能够迁移到损伤部位。它们在细胞治疗中的一个主要障碍是其在体内的稀有性。因此,获得更多的功能性 MSCs 是非常重要的,以便有足够数量的治疗方案。我们旨在研究雌激素及其在获得更多 MSCs 中的作用机制。MSCs 从雌性和卵巢切除大鼠中分离出来,并在存在和不存在 10(-7)M 雌激素的情况下培养。在雌激素的存在下,不仅 CFU-F 活性增加,而且通过 TUNEL 染色显示凋亡率降低,从而获得更多的 MSCs。此外,细胞在集落中的数量也增加了。为了揭示这种作用的机制,我们专注于 Bcl-2 家族蛋白。我们的免疫印迹实验结合敲低研究表明,抗凋亡 Bcl-x(L)和 Bcl-2 对这种作用具有关键作用。雌激素处理上调了 Bcl-x(L)和 Bcl-2 的表达。当我们敲低 bcl-x ( L ) 和 bcl-2 的表达时,与正常 MSCs 相比,缺乏这些基因的 MSCs 在雌激素处理后凋亡率增加。因此,雌激素处理将对细胞治疗非常有利,以获得更多功能的 MSCs,并可能为治疗衰弱性疾病提供新的策略。