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Paper Details

Functional analysis and transcriptomic profiling of iPSC-derived macrophages and their application in modeling Mendelian disease.
Circ Res
89
2015
-derived macrophages, ATP, ATP-binding cassette transporter AI, HMDM, IPSDM, IPSDMs, M0, M1, M2, Mendelian disease, Tangier disease, apolipoprotein A-I, autosomal recessive disorder, cholesterol, genetic disorders, genotype-specific human macrophages, high-density lipoprotein-3, human, human induced pluripotent stem cell-derived macrophages, human macrophages, human peripheral blood mononuclear cell-derived macrophage, iPSC, iPSC-derived macrophages, interferon-, interleukin-4, interleukin-4) polarized, macrophage, patients
Author NameAffiliation
Chenyi XueFrom the Cardiovascular Institute (H.Z., Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, Institute for Diabetes, Institute for Regenerative Medicine (Y.L., Perelman School of Medicine and School of Arts and Science (S.J.G., PENN Genome Frontiers Institute (S.J.G., Perelman School of Medicine (S.T.C.), Perelman School of Medicine (E.E.M.), University of Pennsylvania, The Children's Hospital of Philadelphia
Sager J GosaiFrom the Cardiovascular Institute (H.Z., Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, Institute for Diabetes, Institute for Regenerative Medicine (Y.L., Perelman School of Medicine and School of Arts and Science (S.J.G., PENN Genome Frontiers Institute (S.J.G., Perelman School of Medicine (S.T.C.), Perelman School of Medicine (E.E.M.), University of Pennsylvania, The Children's Hospital of Philadelphia
Mingyao LiFrom the Cardiovascular Institute (H.Z., Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, Institute for Diabetes, Institute for Regenerative Medicine (Y.L., Perelman School of Medicine and School of Arts and Science (S.J.G., PENN Genome Frontiers Institute (S.J.G., Perelman School of Medicine (S.T.C.), Perelman School of Medicine (E.E.M.), University of Pennsylvania, The Children's Hospital of Philadelphia
Daniel J RaderFrom the Cardiovascular Institute (H.Z., Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, Institute for Diabetes, Institute for Regenerative Medicine (Y.L., Perelman School of Medicine and School of Arts and Science (S.J.G., PENN Genome Frontiers Institute (S.J.G., Perelman School of Medicine (S.T.C.), Perelman School of Medicine (E.E.M.), University of Pennsylvania, The Children's Hospital of Philadelphia
Muredach P ReillyFrom the Cardiovascular Institute (H.Z., Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, Institute for Diabetes, Institute for Regenerative Medicine (Y.L., Perelman School of Medicine and School of Arts and Science (S.J.G., PENN Genome Frontiers Institute (S.J.G., Perelman School of Medicine (S.T.C.), Perelman School of Medicine (E.E.M.), University of Pennsylvania, The Children's Hospital of Philadelphia
Muredach P ReillyFrom the Cardiovascular Institute (H.Z., Perelman School of Medicine, Institute for Translational Medicine and Therapeutics, Institute for Diabetes, Institute for Regenerative Medicine (Y.L., Perelman School of Medicine and School of Arts and Science (S.J.G., PENN Genome Frontiers Institute (S.J.G., Perelman School of Medicine (S.T.C.), Perelman School of Medicine (E.E.M.), University of Pennsylvania, The Children's Hospital of Philadelphia
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