TY - JOUR
T1 - The potential of enriched mesenchymal stem cells with neural crest cell phenotypes as a cell source for regenerative dentistry
AU - Niibe, Kunimichi
AU - Zhang, Maolin
AU - Nakazawa, Kosuke
AU - Morikawa, Satoru
AU - Nakagawa, Taneaki
AU - Matsuzaki, Yumi
AU - Egusa, Hiroshi
N1 - Publisher Copyright:
© 2016 The Author(s)
PY - 2017/5
Y1 - 2017/5
N2 - Effective regenerative treatments for periodontal tissue defects have recently been demonstrated using mesenchymal stromal/stem cells (MSCs). Furthermore, current bioengineering techniques have enabled de novo fabrication of tooth-perio dental units in mice. These cutting-edge technologies are expected to address unmet needs within regenerative dentistry. However, to achieve efficient and stable treatment outcomes, preparation of an appropriate stem cell source is essential. Many researchers are investigating the use of adult stem cells for regenerative dentistry; bone marrow-derived MSCs (BM-MSCs) are particularly promising and presently used clinically. However, current BM-MSC isolation techniques result in a heterogeneous, non-reproducible cell population because of a lack of identified distinct BM-MSC surface markers. Recently, specific subsets of cell surface markers for BM-MSCs have been reported in mice (PDGFRα+ and Sca-1+) and humans (LNGFR+, THY-1+ and VCAM-1+), facilitating the isolation of unique enriched BM-MSCs (so-called “purified MSCs”). Notably, the enriched BM-MSC population contains neural crest-derived cells, which can differentiate into cells of neural crest- and mesenchymal lineages. In this review, characteristics of the enriched BM-MSCs are outlined with a focus on their potential application within future regenerative dentistry.
AB - Effective regenerative treatments for periodontal tissue defects have recently been demonstrated using mesenchymal stromal/stem cells (MSCs). Furthermore, current bioengineering techniques have enabled de novo fabrication of tooth-perio dental units in mice. These cutting-edge technologies are expected to address unmet needs within regenerative dentistry. However, to achieve efficient and stable treatment outcomes, preparation of an appropriate stem cell source is essential. Many researchers are investigating the use of adult stem cells for regenerative dentistry; bone marrow-derived MSCs (BM-MSCs) are particularly promising and presently used clinically. However, current BM-MSC isolation techniques result in a heterogeneous, non-reproducible cell population because of a lack of identified distinct BM-MSC surface markers. Recently, specific subsets of cell surface markers for BM-MSCs have been reported in mice (PDGFRα+ and Sca-1+) and humans (LNGFR+, THY-1+ and VCAM-1+), facilitating the isolation of unique enriched BM-MSCs (so-called “purified MSCs”). Notably, the enriched BM-MSC population contains neural crest-derived cells, which can differentiate into cells of neural crest- and mesenchymal lineages. In this review, characteristics of the enriched BM-MSCs are outlined with a focus on their potential application within future regenerative dentistry.
KW - Bone marrow-derived mesenchymal stem cell
KW - Enriched/purified mesenchymal stem cell
KW - Flow cytometric isolation
KW - Neural crest cell
KW - Regenerative dentistry
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UR - http://www.scopus.com/inward/citedby.url?scp=85008197530&partnerID=8YFLogxK
U2 - 10.1016/j.jdsr.2016.09.001
DO - 10.1016/j.jdsr.2016.09.001
M3 - Review article
AN - SCOPUS:85008197530
SN - 1882-7616
VL - 53
SP - 25
EP - 33
JO - Japanese Dental Science Review
JF - Japanese Dental Science Review
IS - 2
ER -