372 results on '"Roma, Guglielmo"'
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2. The Genetic Architecture of Carbon Tetrachloride-Induced Liver Fibrosis in Mice
3. Fast and highly sensitive full-length single-cell RNA sequencing using FLASH-seq
4. An orally available, brain penetrant, small molecule lowers huntingtin levels by enhancing pseudoexon inclusion
5. Transcriptional profiling of hepatocytes infected with the replicative form of the malaria parasite Plasmodium cynomolgi
6. Loss of Hepatic Lgr4 and Lgr5 Promotes Nonalcoholic Fatty Liver Disease
7. STING regulates peripheral nerve regeneration and colony stimulating factor 1 receptor (CSF1R) processing in microglia
8. CYP27A1-dependent anti-melanoma activity of limonoid natural products targets mitochondrial metabolism
9. BET bromodomain inhibitors regulate keratinocyte plasticity
10. Molecular characterization of chronic cutaneous wounds reveals subregion‐ and wound type‐specific differential gene expression
11. Single-cell and bulk transcriptomics of the liver reveals potential targets of NASH with fibrosis
12. PAX8 and MECOM are interaction partners driving ovarian cancer
13. CPSF3-dependent pre-mRNA processing as a druggable node in AML and Ewing’s sarcoma
14. Molecular characterization of chronic cutaneous wounds reveals subregion‐ and wound type‐specific differential gene expression.
15. mTORC1 signaling suppresses Wnt/β-catenin signaling through DVL-dependent regulation of Wnt receptor FZD level
16. Genome-wide CRISPR screen for PARKIN regulators reveals transcriptional repression as a determinant of mitophagy
17. Self-organization and symmetry breaking in intestinal organoid development
18. Screening of Intestinal Crypt Organoids: A Simple Readout for Complex Biology
19. A single-cell atlas of the airway epithelium reveals the CFTR-rich pulmonary ionocyte
20. Supplemental Figure 6: Analysis of spleens from APCMin mice. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
21. Supplemental Figure 3: High MS-444 concentrations impede intestinal epithelial re-epithelialization and induce HuR nucleocytoplasmic shuttling in an acute colitis model. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
22. Supplemental Figure 4: CRISPR/Cas9 HuR ko in RAW 264.7 macrophage cells. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
23. Supplemental Figure 2: Small intestinal crypt-villus length and HuR subcellular distribution in tumors. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
24. Supplemental Figure 1: Weight curves, DSS water consumption, colonoscopy and tumor localization in APCMin mice. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
25. Supplemental Figure 7: Chao1 and Shannon richness estimates and indicator OTUs for AOM/DSS mice. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
26. Supplemental Figure 5: Immune cell infiltration in intestinal tumors and cytokine expression in small intestinal organoids upon MS-444. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
27. Supplemental methods and references from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
28. Supplemental tables 1-3 from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
29. Supplemental Figure 8: Chao1 and Shannon richness estimates and indicator OTUs for AOM/DSS mice. from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
30. Data from HuR Small-Molecule Inhibitor Elicits Differential Effects in Adenomatosis Polyposis and Colorectal Carcinogenesis
31. Loss of Hepatic Leucine-Rich Repeat-Containing G-Protein Coupled Receptors 4 and 5 Promotes Nonalcoholic Fatty Liver Disease
32. CLK2 inhibition ameliorates autistic features associated with SHANK3 deficiency
33. IRF2 is a master regulator of human keratinocyte stem cell fate
34. PAX8 activates metabolic genes via enhancer elements in Renal Cell Carcinoma
35. CellSIUS provides sensitive and specific detection of rare cell populations from complex single-cell RNA-seq data
36. Author Correction: CPSF3-dependent pre-mRNA processing as a druggable node in AML and Ewing’s sarcoma
37. Transcriptional profiling of hepatocytes infected with the replicative form of the malaria parasite Plasmodium cynomolgi
38. Sustained Trem2 stabilization accelerates microglia heterogeneity and Aβ pathology in a mouse model of Alzheimer’s disease
39. The genome of melon (Cucumis melo L.)
40. Probabilistic machine learning ensures accurate ambient denoising in droplet-based single-cell omics
41. Genome-wide screening in human kidney organoids identifies developmental and disease-related aspects of nephrogenesis
42. Loss of hepatic Lgr4 and Lgr5 promotes nonalcoholic fatty liver disease
43. Persistence of Plasmodium cynomolgi hypnozoites in cynomolgus monkey iPS-derived hepatocytes
44. NEURODEVELOPMENT: CLK2 inhibition ameliorates autistic features associated with SHANK3 deficiency
45. ZNRF3 and RNF43 cooperate to safeguard metabolic liver zonation and hepatocyte proliferation
46. SuperFly: a comparative database for quantified spatio-temporal gene expression patterns in early dipteran embryos
47. MyMpn: a database for the systems biology model organism Mycoplasma pneumoniae
48. Systematic identification of novel cancer genes through analysis of deep shRNA perturbation screens
49. Systematic dissection of transcriptional regulatory networks by genome-scale and single-cell CRISPR screens
50. Abstract 2025: Characterization of cancer cell lines made senescent by exposure to ribociclib, doxorubicin, or TGFβ1, and identification of genes required for entry into senescence and senescent cell survival
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