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Bulk cell density and Wnt/TGFbeta signalling regulate mesendodermal patterning of human pluripotent stem cellsFast and efficient multitransgenic modification of human pluripotent stem cells.Large-scale production of human pluripotent stem cell derived cardiomyocytes.Proteomic Analysis of Human Pluripotent Stem Cell Cardiomyogenesis Revealed Altered Expression of Metabolic Enzymes and PDLIM5 Isoforms.Sensitivity of human pluripotent stem cells to insulin precipitation induced by peristaltic pump-based medium circulation: considerations on process development.Controlling expansion and cardiomyogenic differentiation of human pluripotent stem cells in scalable suspension culture.EBIO Does Not Induce Cardiomyogenesis in Human Pluripotent Stem Cells but Modulates Cardiac Subtype Enrichment by Lineage-Selective Survival.Deoxycytidine-kinase knockdown as a novel myeloprotective strategy in the context of fludarabine, cytarabine or cladribine therapy.Cardiac differentiation of human pluripotent stem cells in scalable suspension culture.Stiff matrix induces switch to pure β-cardiac myosin heavy chain expression in human ESC-derived cardiomyocytes.Scalable Cardiac Differentiation of Pluripotent Stem Cells Using Specific Growth Factors and Small Molecules.A Microfluidic Bioreactor for Toxicity Testing of Stem Cell Derived 3D Cardiac Bodies.Expansion of functional personalized cells with specific transgene combinations.Distinct regulation of mitogen-activated protein kinase activities is coupled with enhanced cardiac differentiation of human embryonic stem cells.Differentiation of Human Pluripotent Stem Cells into Functional Endothelial Cells in Scalable Suspension Culture.A Cardiac Cell Outgrowth Assay for Evaluating Drug Compounds Using a Cardiac Spheroid-on-a-Chip Device.iPSC-Derived Macrophages Effectively Treat Pulmonary Alveolar Proteinosis in Csf2rb-Deficient MiceBioreactor-based mass production of human iPSC-derived macrophages enables immunotherapies against bacterial airway infectionsContinuous WNT Control Enables Advanced hPSC Cardiac Processing and Prognostic Surface Marker Identification in Chemically Defined Suspension CultureParacrine mechanisms in early differentiation of human pluripotent stem cells: Insights from a mathematical modelContinuous WNT Control Enables Advanced hPSC Cardiac Processing and Prognostic Surface Marker Identification in Chemically Defined Suspension CultureEvaluating the Effect of Drug Compounds on Cardiac Spheroids Using the Cardiac Cell Outgrowth AssayComparing human iPSC-cardiomyocytes versus HEK293T cells unveils disease-causing effects of Brugada mutation A735V of NaV1.5 sodium channels
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description
researcher
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wetenschapper
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հետազոտող
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name
Henning Kempf
@ast
Henning Kempf
@en
Henning Kempf
@es
Henning Kempf
@nl
Henning Kempf
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type
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Henning Kempf
@ast
Henning Kempf
@en
Henning Kempf
@es
Henning Kempf
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Henning Kempf
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prefLabel
Henning Kempf
@ast
Henning Kempf
@en
Henning Kempf
@es
Henning Kempf
@nl
Henning Kempf
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P106
P31
P496
0000-0003-2790-9137