Center-Authored Papers
Filters: Author is Parker, Maura H [Clear All Filters]
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
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2008.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
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2010.
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2012.
Expanding donor muscle-derived cells for transplantation.. Current protocols in stem cell biology. Chapter 2:Unit2C.4. Abstract
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2013.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
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2010.
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
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2008.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
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2010.
Activation of Notch Signaling During ex vivo Expansion Maintains Donor Muscle Cell Engraftment.. Stem cells (Dayton, Ohio). Abstract
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2012.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
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2010.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010.
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
.
2008.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010.
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
.
2008.
.
2012.
Activation of Notch Signaling During ex vivo Expansion Maintains Donor Muscle Cell Engraftment.. Stem cells (Dayton, Ohio). Abstract
.
2012.
Expanding donor muscle-derived cells for transplantation.. Current protocols in stem cell biology. Chapter 2:Unit2C.4. Abstract
.
2013.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010.
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
.
2008.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010.
Anti-Inducible Costimulator Monoclonal Antibody Treatment of Canine Chronic Graft-versus-Host Disease.. Biology of blood and marrow transplantation : journal of the American Society for Blood and Marrow Transplantation. 24(1):50-54. Abstract
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2018.
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
.
2008.
Hematopoietic cell transplantation provides an immune-tolerant platform for myoblast transplantation in dystrophic dogs.. Molecular therapy : the journal of the American Society of Gene Therapy. 16(7):1340-6. Abstract
.
2008.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010.
Genome-wide MyoD binding in skeletal muscle cells: a potential for broad cellular reprogramming.. Developmental cell. 18(4):662-74. Abstract
.
2010. Doing Business with Arnold Library
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