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1. Identification of CCZ1 as an essential lysosomal trafficking regulator in Marburg and Ebola virus infections

2. Enzymatically dissociated muscle fibers display rapid dedifferentiation and impaired mitochondrial calcium control

3. A 3D Cell Culture Model Identifies Wnt/β‐Catenin Mediated Inhibition of p53 as a Critical Step during Human Hepatocyte Regeneration

4. Calcium Signaling in Liver Injury and Regeneration

11. Supplementary Figure 7 from Cancer-Associated Fibroblasts Expressing CXCL14 Rely upon NOS1-Derived Nitric Oxide Signaling for Their Tumor-Supporting Properties

16. Magnesium enhances cardiomyocyte proliferation and suppresses cardiac fibrosis induced by chronic ACTH exposure in rats

17. Disruption of the microphysiological niche alters matrix deposition and causes loss of mitochondrial Ca2+ control in skeletal muscle fibers

18. Prediction of Drug-Induced Hepatotoxicity Using Long-Term Stable Primary Hepatic 3D Spheroid Cultures in Chemically Defined Conditions

20. Endogenous and xenobiotic metabolic stability of primary human hepatocytes in long‐term 3D spheroid cultures revealed by a combination of targeted and untargeted metabolomics

22. Massive rearrangements of cellular MicroRNA signatures are key drivers of hepatocyte dedifferentiation

23. Ligand-independent activation of aryl hydrocarbon receptor signaling in PCB3-quinone treated HaCaT human keratinocytes

24. Aberrant CpG methylation of theTFAP2Agene constitutes a mechanism for loss ofTFAP2Aexpression in human metastatic melanoma

25. PCB 126 perturbs hypoxia-induced HIF-1α activity and glucose consumption in human HepG2 cells

26. Regulatory crosstalk and interference between the xenobiotic and hypoxia sensing pathways at the AhR-ARNT-HIF1α signaling node

27. Transcriptional, Functional, and Mechanistic Comparisons of Stem Cell-Derived Hepatocytes, HepaRG Cells, and Three-Dimensional Human Hepatocyte Spheroids as Predictive In Vitro Systems for Drug-Induced Liver Injury

28. Massive rearrangements of cellular MicroRNA signatures are key drivers of hepatocyte dedifferentiation

29. Aberrant Promoter CpG Methylation Is a Mechanism for Impaired PHD3 Expression in a Diverse Set of Malignant Cells

31. Toxicity assessment of zinc oxide nanoparticles using sub-acute and sub-chronic murine inhalation models

32. Aberrant promoter CpG methylation is a mechanism for impaired PHD3 expression in a diverse set of malignant cells.

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