Department of Physiology, BMSB, College of Medicine, University of Oklahoma Health Sciences Center (OUHSC), 940 Stanton L. Young Blvd, Oklahoma City, OK, 73126-0901, USA.
Stem Cell Res Ther. 2018 Jan 10;9(1):3. doi: 10.1186/s13287-017-0746-4.
Aging impacts diseases and lifespan. With current knowledge of stem cells, it is feasible to design and test interventions that delay aging and improve both health and lifespan. Stem cells, together with anti-aging genes such as Klotho, play a crucial role in delaying the aging process. Stem cells in combination with anti-aging genes make a complex and protective shield, which stand against the eroding effects of aging. Increased wear and tear of the stem cells, as well as Klotho deficiency, is expected to heavily increase cellular damage and accelerate the process of aging. Stem cells in conjugation with anti-aging genes probably receive and neutralize most of the devastating signaling effects which are known to cause premature aging. The shield of stem cells combined with anti-aging genes is a primary target for absorbing the shock of aging. If this shield neutralizes the shocks, it could lead to a youthful state, but if not it will accelerate the aging journey. In this review, we concisely discuss the neutralizing ability, operated and regulated by stem cells and other life-extension factors. We suggest that stem cell interventions that increase rejuvenation and keep in balance the expression of anti-aging genes could delay the aging phenotypes and result in prolonged lifespan.
衰老会影响疾病和寿命。基于目前对干细胞的了解,设计和测试能够延缓衰老、改善健康和寿命的干预措施是可行的。干细胞与 Klotho 等抗衰老基因一起,在延缓衰老过程中起着至关重要的作用。干细胞与抗衰老基因的结合形成了一个复杂而有保护作用的盾牌,可以抵御衰老的侵蚀作用。预计干细胞的磨损增加以及 Klotho 缺乏会大大增加细胞损伤并加速衰老过程。与抗衰老基因结合的干细胞可能会接收和中和大多数已知会导致过早衰老的破坏性信号作用。干细胞与抗衰老基因的结合形成了一个主要的靶点,用于吸收衰老的冲击。如果这个盾牌能够中和这些冲击,它可能会导致年轻状态,但如果不能,它将加速衰老过程。在这篇综述中,我们简要讨论了由干细胞和其他延长寿命的因素来操作和调节的中和能力。我们认为,增加细胞更新并保持抗衰老基因表达平衡的干细胞干预措施可能会延缓衰老表型并延长寿命。