Kim Sun Jeong, Kwon Soojin, Chung Soobeen, Lee Eun Joo, Park Sang Eon, Choi Suk-Joo, Oh Soo-Young, Ryu Gyu Ha, Jeon Hong Bae, Chang Jong Wook
Cell and Gene Therapy Institute, ENCell Co. Ltd., Seoul, Korea.
Cell and Gene Therapy Institute, Samsung Medical Center, Seoul, Korea.
Int J Stem Cells. 2024 Feb 28;17(1):80-90. doi: 10.15283/ijsc23101. Epub 2023 Oct 12.
Cellular senescence causes cell cycle arrest and promotes permanent cessation of proliferation. Since the senescence of mesenchymal stem cells (MSCs) reduces proliferation and multipotency and increases immunogenicity, aged MSCs are not suitable for cell therapy. Therefore, it is important to inhibit cellular senescence in MSCs. It has recently been reported that metabolites can control aging diseases. Therefore, we aimed to identify novel metabolites that regulate the replicative senescence in MSCs. Using a fecal metabolites library, we identified nervonic acid (NA) as a candidate metabolite for replicative senescence regulation. In replicative senescent MSCs, NA reduced senescence-associated -galactosidase positive cells, the expression of senescence-related genes, as well as increased stemness and adipogenesis. Moreover, in non-senescent MSCs, NA treatment delayed senescence caused by sequential subculture and promoted proliferation. We confirmed, for the first time, that NA delayed and inhibited cellular senescence. Considering optimal concentration, duration, and timing of drug treatment, NA is a novel potential metabolite that can be used in the development of technologies that regulate cellular senescence.
细胞衰老会导致细胞周期停滞,并促使细胞增殖永久停止。由于间充质干细胞(MSC)的衰老会降低其增殖能力和多能性,并增加免疫原性,因此衰老的MSC不适合用于细胞治疗。所以,抑制MSC的细胞衰老具有重要意义。最近有报道称,代谢产物可以控制衰老相关疾病。因此,我们旨在鉴定出能够调节MSC复制性衰老的新型代谢产物。利用粪便代谢产物文库,我们鉴定出神经酸(NA)是一种调节复制性衰老的候选代谢产物。在复制性衰老的MSC中,NA减少了衰老相关β半乳糖苷酶阳性细胞的数量、衰老相关基因的表达,同时增加了干性和脂肪生成能力。此外,在非衰老的MSC中,NA处理延缓了连续传代培养导致的衰老,并促进了细胞增殖。我们首次证实,NA能够延缓和抑制细胞衰老。考虑到药物治疗的最佳浓度、持续时间和时间点,NA是一种新型的潜在代谢产物,可用于开发调节细胞衰老的技术。