Survival/Adaptation of Bone Marrow-Derived Mesenchymal Stem Cells After Long-Term Starvation Through Selective Processes. 2019

Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
Regenerative Medicine Institute (REMEDI), School of Medicine, National University of Ireland Galway (NUIG), Galway, Ireland.

After in vivo transplantation, mesenchymal stem cells (MSC) face an ischemic microenvironment, characterized by nutrient deprivation and reduced oxygen tension, which reduces their viability and thus their therapeutic potential. Therefore, MSC response to models of in vitro ischemia is of relevance for improving their survival and therapeutic efficacy. The aim of this study was to understand the survival/adaptive response mechanism that MSC use to respond to extreme culture conditions. Specifically, the effect of a long-term starvation on human bone marrow (hBM)-derived MSC cultured in a chemically defined medium (fetal bovine serum-free [SF] and human SF), either in hypoxic or normoxic conditions. We observed that hBM-MSC that were isolated and cultured in SF medium and subjected to a complete starvation for up to 75 days transiently changed their behavior and phenotype. However, at the end of that period, hBM-MSC retained their characteristics as determined by their morphology, DNA damage resistance, proliferation kinetic, and differentiation potential. This survival mode involved a quiescent state, confirmed by increased expression of cell cycle regulators p16, p27, and p57 and decreased expression of proliferating cell nuclear antigen (PCNA), Ki-67, mTOR, and Nanog. In addition, Jak/STAT (STAT6) antiapoptotic activity selected which cells conserved stemness and that supported metabolic, bioenergetic, and scavenging requirements. We also demonstrated that hBM-MSC exploited an autophagic process which induced lipid β-oxidation as an alternative energy source. Priming MSC by concomitant starvation and culture in hypoxic conditions to induce their quiescence would be of benefit to increase MSC survival when transplanted in vivo. Stem Cells 2019;37:813-827.

UI MeSH Term Description Entries
D010100 Oxygen An element with atomic symbol O, atomic number 8, and atomic weight [15.99903; 15.99977]. It is the most abundant element on earth and essential for respiration. Dioxygen,Oxygen-16,Oxygen 16
D001854 Bone Marrow Cells Cells contained in the bone marrow including fat cells (see ADIPOCYTES); STROMAL CELLS; MEGAKARYOCYTES; and the immediate precursors of most blood cells. Bone Marrow Cell,Cell, Bone Marrow,Cells, Bone Marrow,Marrow Cell, Bone,Marrow Cells, Bone
D002453 Cell Cycle The complex series of phenomena, occurring between the end of one CELL DIVISION and the end of the next, by which cellular material is duplicated and then divided between two daughter cells. The cell cycle includes INTERPHASE, which includes G0 PHASE; G1 PHASE; S PHASE; and G2 PHASE, and CELL DIVISION PHASE. Cell Division Cycle,Cell Cycles,Cell Division Cycles,Cycle, Cell,Cycle, Cell Division,Cycles, Cell,Cycles, Cell Division,Division Cycle, Cell,Division Cycles, Cell
D002454 Cell Differentiation Progressive restriction of the developmental potential and increasing specialization of function that leads to the formation of specialized cells, tissues, and organs. Differentiation, Cell,Cell Differentiations,Differentiations, Cell
D002470 Cell Survival The span of viability of a cell characterized by the capacity to perform certain functions such as metabolism, growth, reproduction, some form of responsiveness, and adaptability. Cell Viability,Cell Viabilities,Survival, Cell,Viabilities, Cell,Viability, Cell
D003470 Culture Media Any liquid or solid preparation made specifically for the growth, storage, or transport of microorganisms or other types of cells. The variety of media that exist allow for the culturing of specific microorganisms and cell types, such as differential media, selective media, test media, and defined media. Solid media consist of liquid media that have been solidified with an agent such as AGAR or GELATIN. Media, Culture
D005786 Gene Expression Regulation Any of the processes by which nuclear, cytoplasmic, or intercellular factors influence the differential control (induction or repression) of gene action at the level of transcription or translation. Gene Action Regulation,Regulation of Gene Expression,Expression Regulation, Gene,Regulation, Gene Action,Regulation, Gene Expression
D005947 Glucose A primary source of energy for living organisms. It is naturally occurring and is found in fruits and other parts of plants in its free state. It is used therapeutically in fluid and nutrient replacement. Dextrose,Anhydrous Dextrose,D-Glucose,Glucose Monohydrate,Glucose, (DL)-Isomer,Glucose, (alpha-D)-Isomer,Glucose, (beta-D)-Isomer,D Glucose,Dextrose, Anhydrous,Monohydrate, Glucose
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000071317 Nanog Homeobox Protein A homeodomain protein and transcription regulator that functions in BLASTOCYST INNER CELL MASS and EMBRYONIC STEM CELL proliferation and CELL SELF RENEWAL. It confers pluripotency on embryonic stem cells and prevents their differentiation towards extraembryonic ENDODERM and trophectoderm (TROPHOBLAST) CELL LINEAGES. Nanog Homeobox Transcription Factor,Nanog Protein,Homeobox Protein, Nanog

Related Publications

Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
December 2013, Zoological science,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
March 2007, Stem cells (Dayton, Ohio),
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
January 2017, Methods in molecular biology (Clifton, N.J.),
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
November 2005, Leukemia & lymphoma,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
April 2017, Stem cells translational medicine,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
June 2015, Mayo Clinic proceedings,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
December 2007, The Libyan journal of medicine,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
June 2003, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
July 2007, Journal of orthopaedic research : official publication of the Orthopaedic Research Society,
Federico Ferro, and Renza Spelat, and Georgina Shaw, and Niamh Duffy, and Md Nahidul Islam, and Paula M O'Shea, and Daniel O'Toole, and Linda Howard, and J Mary Murphy
January 2013, PloS one,
Copied contents to your clipboard!