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16 results on '"Lippmann ES"'

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1. Amyloid-β exposed astrocytes induce iron transport from endothelial cells at the blood-brain barrier by altering the ratio of apo- and holo-transferrin.

2. Reactive astrocytes transduce inflammation in a blood-brain barrier model through a TNF-STAT3 signaling axis and secretion of alpha 1-antichymotrypsin.

3. Nuclear receptor ligand screening in an iPSC-derived in vitro blood-brain barrier model identifies new contributors to leptin transport.

4. Influence of basal media composition on barrier fidelity within human pluripotent stem cell-derived blood-brain barrier models.

5. Commentary on human pluripotent stem cell-based blood-brain barrier models.

6. Advances in blood-brain barrier modeling in microphysiological systems highlight critical differences in opioid transport due to cortisol exposure.

7. Endothelial cells are critical regulators of iron transport in a model of the human blood-brain barrier.

8. A Simplified, Fully Defined Differentiation Scheme for Producing Blood-Brain Barrier Endothelial Cells from Human iPSCs.

9. iPSC-Derived Brain Endothelium Exhibits Stable, Long-Term Barrier Function in Perfused Hydrogel Scaffolds.

10. Pharmaceutical iron formulations do not cross a model of the human blood-brain barrier.

11. Activation of RARα, RARγ, or RXRα Increases Barrier Tightness in Human Induced Pluripotent Stem Cell-Derived Brain Endothelial Cells.

12. Accelerated differentiation of human induced pluripotent stem cells to blood-brain barrier endothelial cells.

13. A retinoic acid-enhanced, multicellular human blood-brain barrier model derived from stem cell sources.

14. Derivation of blood-brain barrier endothelial cells from human pluripotent stem cells.

15. Blood-brain barrier modeling with co-cultured neural progenitor cell-derived astrocytes and neurons.

16. Identification and expression profiling of blood-brain barrier membrane proteins.

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