TY - JOUR
T1 - Generation of transgene-free lung disease-specific human induced pluripotent stem cells using a single excisable lentiviral stem cell cassette
AU - Somers, Aba
AU - Jean, Jyh Chang
AU - Sommer, Cesar A.
AU - Omari, Amel
AU - Ford, Christopher C.
AU - Mills, Jason A.
AU - Ying, Lei
AU - Sommer, Andreia Gianotti
AU - Jean, Jenny M.
AU - Smith, Brenden W.
AU - Lafyatis, Robert
AU - Demierre, Marie France
AU - Weiss, Daniel J.
AU - French, Deborah L.
AU - Gadue, Paul
AU - Murphy, George J.
AU - Mostoslavsky, Gustavo
AU - Kotton, Darrell N.
PY - 2010/10
Y1 - 2010/10
N2 - The development of methods to achieve efficient reprogramming of human cells while avoiding the permanent presence of reprogramming transgenes represents a critical step toward the use of induced pluripotent stem cells (iPSC) for clinical purposes, such as disease modeling or reconstituting therapies. Although several methods exist for generating iPSC free of reprogramming transgenes from mouse cells or neonatal normal human tissues, a sufficiently efficient reprogramming system is still needed to achieve the widespread derivation of disease-specific iPSC from humans with inherited or degenerative diseases. Here, we report the use of a humanized version of a single lentiviral "stem cell cassette" vector to accomplish efficient reprogramming of normal or diseased skin fibroblasts obtained from humans of virtually any age. Simultaneous transfer of either three or four reprogramming factors into human target cells using this single vector allows derivation of human iPSC containing a single excisable viral integration that on removal generates human iPSC free of integrated transgenes. As a proof of principle, here we apply this strategy to generate >100 lung disease-specific iPSC lines from individuals with a variety of diseases affecting the epithelial, endothelial, or interstitial compartments of the lung, including cystic fibrosis, α-1 antitrypsin deficiency-related emphysema, scleroderma, and sickle-cell disease. Moreover, we demonstrate that human iPSC generated with this approach have the ability to robustly differentiate into definitive endoderm in vitro, the developmental precursor tissue of lung epithelia.
AB - The development of methods to achieve efficient reprogramming of human cells while avoiding the permanent presence of reprogramming transgenes represents a critical step toward the use of induced pluripotent stem cells (iPSC) for clinical purposes, such as disease modeling or reconstituting therapies. Although several methods exist for generating iPSC free of reprogramming transgenes from mouse cells or neonatal normal human tissues, a sufficiently efficient reprogramming system is still needed to achieve the widespread derivation of disease-specific iPSC from humans with inherited or degenerative diseases. Here, we report the use of a humanized version of a single lentiviral "stem cell cassette" vector to accomplish efficient reprogramming of normal or diseased skin fibroblasts obtained from humans of virtually any age. Simultaneous transfer of either three or four reprogramming factors into human target cells using this single vector allows derivation of human iPSC containing a single excisable viral integration that on removal generates human iPSC free of integrated transgenes. As a proof of principle, here we apply this strategy to generate >100 lung disease-specific iPSC lines from individuals with a variety of diseases affecting the epithelial, endothelial, or interstitial compartments of the lung, including cystic fibrosis, α-1 antitrypsin deficiency-related emphysema, scleroderma, and sickle-cell disease. Moreover, we demonstrate that human iPSC generated with this approach have the ability to robustly differentiate into definitive endoderm in vitro, the developmental precursor tissue of lung epithelia.
KW - Alpha-1 antitrypsin deficiency
KW - Cystic fibrosis
KW - Emphysema
KW - Endoderm
KW - Human excisable single lentiviral vector
KW - Human induced pluripotent stem cells
KW - Lung disease-specific iPSC
KW - Reprogramming
KW - Scleroderma
KW - Sickle cell
KW - Stem cell cassette
UR - http://www.scopus.com/inward/record.url?scp=77958082207&partnerID=8YFLogxK
U2 - 10.1002/stem.495
DO - 10.1002/stem.495
M3 - Artículo
C2 - 20715179
AN - SCOPUS:77958082207
SN - 1066-5099
VL - 28
SP - 1728
EP - 1740
JO - Stem Cells
JF - Stem Cells
IS - 10
ER -