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Expression of Amyloidogenic Transthyretin Drives Hepatic Proteostasis Remodeling in an Induced Pluripotent Stem Cell Model of Systemic Amyloid Disease http://murphylaboratory.com/wp-content/uploads/2022/06/Expression-of-Amyloidogenic-Transthyretin.pdf
Genomic integrity of human induced pluripotent stem cells across nine studies in the NHLBI NextGen program http://murphylaboratory.com/wp-content/uploads/2022/06/Genomic-integrity-of-human-induced-pluripotent-stem-cells-.pdf
Sickle cell disease in the era of precision medicine: looking to the future http://murphylaboratory.com/wp-content/uploads/2022/06/Sickle-cell-disease-in-the-era-of-precision-medicine-looking-to-the-future-.pdf
Inhibition of LSD1 by small molecule inhibitors stimulates fetal hemoglobin synthesis http://murphylaboratory.com/wp-content/uploads/2022/06/Inhibition-of-LSD1-by-small-molecule-inhibitors-stimulates-fetal-hemoglobin-synthesis.pdf
Medical Applications of iPS Cells http://murphylaboratory.com/wp-content/uploads/2022/06/Screen-Shot-2022-06-21-at-1.54.41-PM.png
A β1-tubulin–based megakaryocyte maturation reporter system identifies novel drugs that promote platelet production http://murphylaboratory.com/wp-content/uploads/2022/06/A-β1-tubulin–based-megakaryocyte-maturation-reporter-system-identifies-novel-drugs-that-promote-platelet-production.pdf
Fine-Tuning Mybl2 Is Required for Proper Mesenchymal-to-Epithelial Transition during Somatic Reprogramming http://murphylaboratory.com/wp-content/uploads/2022/06/Fine-Tuning-Mybl2-Is-Required-.pdf
A library of ATTR amyloidosis patient-specific induced pluripotent stem cells for disease modelling and in vitro testing of novel therapeutics http://murphylaboratory.com/wp-content/uploads/2022/06/A-library-of-ATTR-amyloidosis-patient-specific-induced-pluripotent-stem-cells-for-disease.pdf
Induced pluripotent stem cell–based mapping of b-globin expression throughout human erythropoietic development http://murphylaboratory.com/wp-content/uploads/2022/06/Induced-pluripotent-stem-cell–based-mapping-of-b-globin-expression-throughout-human-erythropoietic-development.pdf