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1. Liver-Specific siRNA-Mediated Stat3 or C3 Knockdown Improves the Outcome of Experimental Autoimmune Myocarditis

2. Regulation of Liver Metabolism by the Endosomal GTPase Rab5

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3. Liquid-crystal organization of liver tissue

4. In Vivo RNAi-Mediated eIF3m Knockdown Affects Ribosome Biogenesis and Transcription but Has Limited Impact on mRNA-Specific Translation

5. The roles of individual mammalian argonautes in RNA interference in vivo.

6. MICU2, a paralog of MICU1, resides within the mitochondrial uniporter complex to regulate calcium handling.

7. Translation elongation factor 2 depletion by siRNA in mouse liver leads to mTOR-independent translational upregulation of ribosomal protein genes

8. Identification of a long non-coding RNA regulator of liver carcinoma cell survival

9. Structure-guided chemical modification of guide RNA enables potent non-viral in vivo genome editing

10. RNAi-nanoparticulate manipulation of gene expression as a new functional genomics tool in the liver

11. Liquid-crystal organization of liver tissue

12. Partial DNA-guided Cas9 enables genome editing with reduced off-target activity

13. Identification of cell cycle-targeting microRNAs through genome-wide screens

14. Ionizable Amphiphilic Dendrimer-Based Nanomaterials with Alkyl-Chain-Substituted Amines for Tunable siRNA Delivery to the Liver Endothelium In Vivo

15. In vivo endothelial siRNA delivery using polymeric nanoparticles with low molecular weight

16. Lipopeptide nanoparticles for potent and selective siRNA delivery in rodents and nonhuman primates

17. MICU1 Controls Both the Threshold and Cooperative Activation of the Mitochondrial Ca2+ Uniporter

18. Cholangiocytes act as facultative liver stem cells during impaired hepatocyte regeneration

19. Treatment of erythropoietin deficiency in mice with systemically administered siRNA

20. Rab5 is necessary for the biogenesis of the endolysosomal system in vivo

21. Erratum: Corrigendum: Cholangiocytes act as facultative liver stem cells during impaired hepatocyte regeneration

22. Identification of a gain-of-function mutation of the prolactin receptor in women with benign breast tumors

23. Therapeutic genome editing by combined viral and non-viral delivery of CRISPR system components in vivo

24. Residue 146 regulates prolactin receptor folding, basal activity and ligand-responsiveness: Potential implications in breast tumorigenesis

25. Large-Scale Quantitative Proteomics Identifies the Ubiquitin Ligase Nedd4-1 as an Essential Regulator of Liver Regeneration

26. Cell-Cycle-Targeting MicroRNAs as Therapeutic Tools against Refractory Cancers

27. Control of hepatocyte proliferation and survival by Fgf receptors is essential for liver regeneration in mice

28. Loss of α-catenin elicits a cholestatic response and impairs liver regeneration

29. The roles of individual mammalian argonautes in RNA interference in vivo

30. Genome editing with Cas9 in adult mice corrects a disease mutation and phenotype

31. Nanoparticle-formulated siRNA targeting integrins inhibits hepatocellular carcinoma progression in mice

32. MICU2, a paralog of MICU1, resides within the mitochondrial uniporter complex to regulate calcium handling

33. MICU1-dependent Threshold and Cooperativity of Mitochondrial Ca2+ Uptake in the Liver

34. Systemic RNAi-mediated Gene Silencing in Nonhuman Primate and Rodent Myeloid Cells

35. Prolactin regulation of the prostate gland: a female player in a male game

36. Integrative genomics identifies MCU as an essential component of the mitochondrial calcium uniporter

37. Identification of gain-of-function variants of the human prolactin receptor

38. Local prolactin is a target to prevent expansion of basal/stem cells in prostate tumors

39. Identification of Gain-of-Function Variants of the Human Prolactin Receptor

40. Prolactin levels and the risk of future coronary artery disease in apparently healthy men and women

41. Characterization of two constitutively active prolactin receptor variants in a cohort of 95 women with multiple breast fibroadenomas

42. Knockdown and knockout of ß1-integrin in hepatocytes impairs liver regeneration through inhibition of growth factor signalling

43. Liver Specific Delivery of siRNA Targeting EGLN Prolyl Hydroxylases Activates Hepatic Erythropoietin Production and Stimulates Erythropoiesis