Very small embryonic-like stem cells have the potential to win the three-front war on tissue damage, cancer, and aging

被引:19
作者
Bhartiya, Deepa [1 ]
Jha, Nitu [1 ]
Tripathi, Anish [1 ]
Tripathi, Ashish [1 ]
机构
[1] Epigeneres Biotech Pvt Ltd, Mumbai, India
来源
FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY | 2023年 / 10卷
关键词
stem cells; regeneration; cancer; iPS cells; VSELs; BONE-MARROW VSELS; REGENERATIVE MEDICINE; MUSE CELLS; GERM; MURINE; DIFFERENTIATION; PLURIPOTENCY; MECHANISMS; POPULATION; QUIESCENCE;
D O I
10.3389/fcell.2022.1061022
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The concept of dedifferentiation and reprogramming of mature somatic cells holds much promise for the three-front "war " against tissue damage, cancer, and aging. It was hoped that reprogramming human somatic cells into the induced pluripotent state, along with the use of embryonic stem cells, would transform regenerative medicine. However, despite global efforts, clinical applications remain a distant dream, due to associated factors such as genomic instability, tumorigenicity, immunogenicity, and heterogeneity. Meanwhile, the expression of embryonic (pluripotent) markers in multiple cancers has baffled the scientific community, and it has been suggested that somatic cells dedifferentiate and "reprogram " into the pluripotent state in vivo to initiate cancer. It has also been suggested that aging can be reversed by partial reprogramming in vivo. However, better methods are needed; using vectors or Yamanaka factors in vivo, for example, is dangerous, and many potential anti-aging therapies carry the same risks as those using induced pluripotent cells, as described above. The present perspective examines the potential of endogenous, pluripotent very small embryonic-like stem cells (VSELs). These cells are naturally present in multiple tissues; they routinely replace diseased tissue and ensure regeneration to maintain life-long homeostasis, and they have the ability to differentiate into adult counterparts. Recent evidence suggests that cancers initiate due to the selective expansion of epigenetically altered VSELs and their blocked differentiation. Furthermore, VSEL numbers have been directly linked to lifespan in studies of long- and short-lived transgenic mice, and VSEL dysfunction has been found in the ovaries of aged mice. To conclude, a greater interest in VSELs, with their potential to address all three fronts of this war, could be the "light at the end of the tunnel. "
引用
收藏
页数:9
相关论文
共 84 条
[21]   Human CD34+ very small embryonic-like stem cells can give rise to endothelial colony-forming cells with a multistep differentiation strategy using UM171 and nicotinamide acid [J].
Domingues, Alison ;
Rossi, Elisa ;
Bujko, Kamila ;
Detriche, Gregoire ;
Richez, Ulysse ;
Blandinieres, Adeline ;
Kucia, Magdalena ;
Ratajczak, Janina ;
Smadja, David M. ;
Ratajczak, Mariusz Z. .
LEUKEMIA, 2022, 36 (05) :1440-1443
[22]   Rejuvenation by controlled reprogramming is the latest gambit in anti-aging [J].
Eisenstein, Michael .
NATURE BIOTECHNOLOGY, 2022, 40 (02) :144-146
[23]   Mesenchymal Stem Cells as a Bio Organ for Treatment of Female Infertility [J].
Esfandyari, Sahar ;
Chugh, Rishi Man ;
Park, Hang-soo ;
Hobeika, Elie ;
Ulin, Mara ;
Al-Hendy, Ayman .
CELLS, 2020, 9 (10) :1-19
[24]   Mesenchymal stem cells derived from human iPS cells via mesoderm and neuroepithelium have different features and therapeutic potentials [J].
Eto, Shinya ;
Goto, Mizuki ;
Soga, Minami ;
Kaneko, Yumi ;
Uehara, Yusuke ;
Mizuta, Hiroshi ;
Era, Takumi .
PLOS ONE, 2018, 13 (07)
[25]   Dynamics of Bone Marrow VSELs and HSCs in Response to Treatment with Gonadotropin and Steroid Hormones, during Pregnancy and Evidence to Support Their Asymmetric/Symmetric Cell Divisions [J].
Ganguly, Ranita ;
Metkari, Sidhanath ;
Bhartiya, Deepa .
STEM CELL REVIEWS AND REPORTS, 2018, 14 (01) :110-124
[26]   HEMATOPOIETIC RECONSTITUTION IN A PATIENT WITH FANCONIS ANEMIA BY MEANS OF UMBILICAL-CORD BLOOD FROM AN HLA-IDENTICAL SIBLING [J].
GLUCKMAN, E ;
BROXMEYER, HE ;
AUERBACH, AD ;
FRIEDMAN, HS ;
DOUGLAS, GW ;
DEVERGIE, A ;
ESPEROU, H ;
THIERRY, D ;
SOCIE, G ;
LEHN, P ;
COOPER, S ;
ENGLISH, D ;
KURTZBERG, J ;
BARD, J ;
BOYSE, EA .
NEW ENGLAND JOURNAL OF MEDICINE, 1989, 321 (17) :1174-1178
[27]   Mesenchymal Stem Cell-Derived Exosomes: Applications in Regenerative Medicine [J].
Hade, Mangesh D. ;
Suire, Caitlin N. ;
Suo, Zucai .
CELLS, 2021, 10 (08)
[28]   Commentary: Isolated stem cells - Patentable as cultural artifacts? [J].
Hansson, Mats G. ;
Helgesson, Gert ;
Wessman, Richard ;
Jaenisch, Rudolf .
STEM CELLS, 2007, 25 (06) :1507-1510
[29]  
Harvard Stem Cell Institute, 2022, WHAT STEM CELL BAS T
[30]   Human and Murine Very Small Embryonic-Like Cells Represent Multipotent Tissue Progenitors, In Vitro and In Vivo [J].
Havens, Aaron M. ;
Sun, Hongli ;
Shiozawa, Yusuke ;
Jung, Younghun ;
Wang, Jingcheng ;
Mishra, Anjali ;
Jiang, Yajuan ;
O'Neill, David W. ;
Krebsbach, Paul H. ;
Rodgerson, Denis O. ;
Taichman, Russell S. .
STEM CELLS AND DEVELOPMENT, 2014, 23 (07) :689-701