1.Specific Protein Markers for Stem Cell Cross-Talk with Neighboring Cells in the Environment.
Kyung Soo PARK ; Seung Won SHIN ; Jeong Woo CHOI ; Soong Ho UM
International Journal of Stem Cells 2013;6(2):75-86
A stem cell interacts with the neighboring cells in its environment. To maintain a living organism's metabolism, either cell-cell or cell-environment interactions may be significant. Usually, these cells communicate with each other through biological signaling by interactive behaviors of primary proteins or complementary chemicals. The signaling intermediates offer the stem cell's functionality on its metabolism. With the rapid advent of omics technologies, various specific markers by which stem cells cooperate with their surroundings have been discovered and established. In this article, we review several stem cell markers used to communicate with either cancer or immune cells in the human body.
Human Body
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Metabolism
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Stem Cells*
2.Function and modulation of endothelial progenitor cells.
Chinese Journal of Cardiology 2007;35(11):1067-1069
3.Stem Cell Properties of Therapeutic Potential.
The Korean Journal of Gastroenterology 2011;58(3):125-132
Stem cell research is a innovative technology that focuses on using undifferentiated cells able to self-renew through the asymmetrical or symmetrical divisions. Three types of stem cells have been studied in laboratory including embryonic stem cell, adult stem cells and induced pluripotent stem cells. Embryonic stem cells are pluripotent stem cells derived from the inner cell mass and it can give rise to any fetal or adult cell type. Adult stem cells are multipotent, have the ability to differentiate into a limited number of specialized cell types, and have been obtained from the bone marrow, umbilical cord blood, placenta and adipose tissue. Stem cell therapy is the most promising therapy for several degenerative and devastating diseases including digestive tract disease such as liver failure, inflammatory bowel disease, Celiac sprue, and pancreatitis. Further understanding of biological properties of stem cells will lead to safe and successful stem cell therapies.
Adult Stem Cells/cytology/metabolism/transplantation
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Embryonic Stem Cells/cytology/metabolism/transplantation
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Humans
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Induced Pluripotent Stem Cells/cytology/metabolism/transplantation
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Stem Cells/*cytology/metabolism
4.Hematopoietic Stem Cell Transplantation in Inborn Error of Metabolism.
Korean Journal of Pediatric Hematology-Oncology 1998;5(2):240-244
No abstract available.
Hematopoietic Stem Cell Transplantation*
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Hematopoietic Stem Cells*
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Metabolism*
5.Advancement of studies on ALDH1 as a universal marker of stem cells.
Journal of Biomedical Engineering 2010;27(5):1183-1186
Aldehyde dehydrogenase 1 (ALDH1, ALDH1A1 or RALDH1), an enzyme responsible for the oxidation of intracellular aldehydes, was shown to have a function in the early differentiation of stem cells. Its activity shows promising potential as a universal marker for the identification and isolation of normal stem cells and cancer stem cells from multiple sources in a variety of tissue types. Herein, we review the available data reporting the utilization of ALDH1 activity as a means to identify and isolate normal stem cells and cancer stem cells (CSCs), and the potential diagnostic and therapeutic implications, with a special focus on the mammary gland and breast cancer. The research opportunity in this area of interest is emphasized.
Animals
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Biomarkers
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metabolism
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Biomarkers, Tumor
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metabolism
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Humans
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Isoenzymes
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metabolism
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Neoplastic Stem Cells
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metabolism
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Retinal Dehydrogenase
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metabolism
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Stem Cells
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metabolism
6.Regulation of Stem Cell Fate by ROS-mediated Alteration of Metabolism.
Jung Min RYU ; Hyun Jik LEE ; Young Hyun JUNG ; Ki Hoon LEE ; Dah Ihm KIM ; Jeong Yeon KIM ; So Hee KO ; Gee Euhn CHOI ; Ing Ing CHAI ; Eun Ju SONG ; Ji Young OH ; Sei Jung LEE ; Ho Jae HAN
International Journal of Stem Cells 2015;8(1):24-35
Stem cells have attracted much attention due to their distinct features that support infinite self-renewal and differentiation into the cellular derivatives of three lineages. Recent studies have suggested that many stem cells both embryonic and adult stem cells reside in a specialized niche defined by hypoxic condition. In this respect, distinguishing functional differences arising from the oxygen concentration is important in understanding the nature of stem cells and in controlling stem cell fate for therapeutic purposes. ROS act as cellular signaling molecules involved in the propagation of signaling and the translation of environmental cues into cellular responses to maintain cellular homeostasis, which is mediated by the coordination of various cellular processes, and to adapt cellular activity to available bioenergetic sources. Thus, in this review, we describe the physiological role of ROS in stem cell fate and its effect on the metabolic regulation of stem cells.
Adult Stem Cells
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Cues
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Energy Metabolism
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Glucose
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Homeostasis
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Metabolism*
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Oxygen
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Reactive Oxygen Species
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Stem Cells*
7.Extrapolating neurogenesis of mesenchymal stem/stromal cells on electroactive and electroconductive scaffolds to dental and oral-derived stem cells.
Boon Chin HENG ; Yunyang BAI ; Xiaochan LI ; Xuehui ZHANG ; Xuliang DENG
International Journal of Oral Science 2022;14(1):13-13
The high neurogenic potential of dental and oral-derived stem cells due to their embryonic neural crest origin, coupled with their ready accessibility and easy isolation from clinical waste, make these ideal cell sources for neuroregeneration therapy. Nevertheless, these cells also have high propensity to differentiate into the osteo-odontogenic lineage. One strategy to enhance neurogenesis of these cells may be to recapitulate the natural physiological electrical microenvironment of neural tissues via electroactive or electroconductive tissue engineering scaffolds. Nevertheless, to date, there had been hardly any such studies on these cells. Most relevant scientific information comes from neurogenesis of other mesenchymal stem/stromal cell lineages (particularly bone marrow and adipose tissue) cultured on electroactive and electroconductive scaffolds, which will therefore be the focus of this review. Although there are larger number of similar studies on neural cell lines (i.e. PC12), neural stem/progenitor cells, and pluripotent stem cells, the scientific data from such studies are much less relevant and less translatable to dental and oral-derived stem cells, which are of the mesenchymal lineage. Much extrapolation work is needed to validate that electroactive and electroconductive scaffolds can indeed promote neurogenesis of dental and oral-derived stem cells, which would thus facilitate clinical applications in neuroregeneration therapy.
Cell Differentiation
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Mesenchymal Stem Cells/metabolism*
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Neural Stem Cells/metabolism*
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Neurogenesis
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Tissue Scaffolds
8.Research progress of Lin28 function.
Journal of Central South University(Medical Sciences) 2014;39(9):964-968
As a highly conserved RNA binding protein, Lin28 is a specific post-transcriptional inhibitor of let-7 biogenesis and can inhibit the let-7 processing and synthesis. Lin28 is involved in the stem cell proliferation and promote the rapid growth of embryonic stem cells. Lin28 plays an important role in the formation of tumor stem cells. Overexpression of Lin28 promotes the tumor cell proliferation and is associated with advanced human cancers. Lin28 can promote tissue repair.
Cell Proliferation
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Embryonic Stem Cells
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metabolism
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Humans
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MicroRNAs
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metabolism
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Neoplasms
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metabolism
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Neoplastic Stem Cells
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metabolism
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RNA-Binding Proteins
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metabolism
9.Very small embryonic-like stem-cell optimization of isolation protocols: an update of molecular signatures and a review of current in vivo applications.
Dong Myung SHIN ; Malwina SUSZYNSKA ; Kasia MIERZEJEWSKA ; Janina RATAJCZAK ; Mariusz Z RATAJCZAK
Experimental & Molecular Medicine 2013;45(11):e56-
As the theory of stem cell plasticity was first proposed, we have explored an alternative hypothesis for this phenomenon: namely that adult bone marrow (BM) and umbilical cord blood (UCB) contain more developmentally primitive cells than hematopoietic stem cells (HSCs). In support of this notion, using multiparameter sorting we were able to isolate small Sca1+Lin-CD45- cells and CD133+Lin-CD45- cells from murine BM and human UCB, respectively, which were further enriched for the detection of various early developmental markers such as the SSEA antigen on the surface and the Oct4 and Nanog transcription factors in the nucleus. Similar populations of cells have been found in various organs by our team and others, including the heart, brain and gonads. Owing to their primitive cellular features, such as the high nuclear/cytoplasm ratio and the presence of euchromatin, they are called very small embryonic-like stem cells (VSELs). In the appropriate in vivo models, VSELs differentiate into long-term repopulating HSCs, mesenchymal stem cells (MSCs), lung epithelial cells, cardiomyocytes and gametes. In this review, we discuss the most recent data from our laboratory and other groups regarding the optimal isolation procedures and describe the updated molecular characteristics of VSELs.
Animals
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Cell Lineage
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Cell Separation/*methods
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Embryonic Stem Cells/*cytology/metabolism
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Hematopoietic Stem Cells/*cytology/metabolism
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Humans
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Mesenchymal Stromal Cells/*cytology/metabolism
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Pluripotent Stem Cells/cytology/metabolism
10.On plant stem cells and animal stem cells.
Yun YOU ; Chao JIANG ; Lu-Qi HUANG
China Journal of Chinese Materia Medica 2014;39(2):343-345
A comparison of plant and animal stem cells can highlight core aspects of stem-cell biology. In both kingdoms, stem cells are defined by their clonogenic properties and are maintained by intercellular signals. The signaling molecules are different in plants and animals stem cell niches, but the roles of argonaute and polycomb group proteins suggest that there are some molecular similarities.
Animals
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Plant Cells
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Signal Transduction
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Stem Cells
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cytology
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metabolism