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41 results on '"Sessa, Alessandro"'

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1. SETD5 haploinsufficiency affects mitochondrial compartment in neural cells.

2. First-hit SETBP1 mutations cause a myeloproliferative disorder with bone marrow fibrosis

3. Extracellular Vesicles from Human Induced Pluripotent Stem Cells Exhibit a Unique MicroRNA and CircRNA Signature.

4. ARX Regulates Cortical Intermediate Progenitor Cell Expansion and Upper Layer Neuron Formation Through Repression of Cdkn1c

8. Need of orthogonal approaches in neurological disease modeling in mouse.

11. Rapid Conversion of Fibroblasts into Functional Forebrain GABAergic Interneurons by Direct Genetic Reprogramming

18. CRISPR/Cas9-Induced Inactivation of the Autism-Risk Gene setd5 Leads to Social Impairments in Zebrafish.

19. First-Hit SETBP1 Mutations Cause a Myeloproliferative Disorder with Bone Marrow Fibrosis

24. Administration of aerosolized SARS-CoV-2 to K18-hACE2 mice uncouples respiratory infection from fatal neuroinvasion.

26. SULT4A1 Modulates Synaptic Development and Function by Promoting the Formation of PSD-95/NMDAR Complex.

28. H3K36 Methylation in Neural Development and Associated Diseases.

29. SETBP1 induces transcription of a network of development genes by acting as an epigenetic hub.

30. mSEL-1L deficiency affects vasculogenesis and neural stem cell lineage commitment.

31. Identification of SETBP1 As an Epigenetic Hub Protein That Induces the Transcription of a Network of Development-Related Genes

32. MyT1 Counteracts the Neural Progenitor Program to Promote Vertebrate Neurogenesis.

33. CDKL5 ensures excitatory synapse stability by reinforcing NGL-1-PSD95 interaction in the postsynaptic compartment and is impaired in patient iPSC-derived neurons.

34. Rare Does Not Mean Worthless: How Rare Diseases Have Shaped Neurodevelopment Research in the NGS Era.

37. Last But Not Least: Cortical Interneurons from Caudal Ganglionic Eminence.

38. A SOX2-engineered epigenetic silencer factor represses the glioblastoma genetic program and restrains tumor development.

39. Zrf1 is required to establish and maintain neural progenitor identity.

40. Balanced SET levels favor the correct enhancer repertoire during cell fate acquisition.

41. TBL1XR1 Ensures Balanced Neural Development Through NCOR Complex-Mediated Regulation of the MAPK Pathway.

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