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55 results on '"Calero-Nieto FJ"'

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1. Coagulation factor V is a T-cell inhibitor expressed by leukocytes in COVID-19

2. Single-cell multi-omics analysis of the immune response in COVID-19

3. Longitudinal analysis reveals that delayed bystander CD8+ T cell activation and early immune pathology distinguish severe COVID-19 from mild disease

4. Genome-scale definition of the transcriptional programme associated with compromised PU.1 activity in acute myeloid leukaemia

5. Bivalent promoter marks and a latent enhancer may prime the leukaemia oncogene LMO1 for ectopic expression in T-cell leukaemia

6. Myeloid progenitor cluster formation drives emergency and leukaemic myelopoiesis

7. Inflammation perturbs hematopoiesis by remodeling specific compartments of the bone marrow niche.

8. The PARP1 selective inhibitor saruparib (AZD5305) elicits potent and durable antitumor activity in patient-derived BRCA1/2-associated cancer models.

9. Autophagy counters inflammation-driven glycolytic impairment in aging hematopoietic stem cells.

10. The ATR inhibitor ceralasertib potentiates cancer checkpoint immunotherapy by regulating the tumor microenvironment.

11. Cis inhibition of NOTCH1 through JAGGED1 sustains embryonic hematopoietic stem cell fate.

12. Tracking early mammalian organogenesis - prediction and validation of differentiation trajectories at whole organism scale.

13. Single-cell multi-omics analysis of COVID-19 patients with pre-existing autoimmune diseases shows aberrant immune responses to infection.

14. Autophagy counters inflammation-driven glycolytic impairment in aging hematopoietic stem cells.

15. An atlas of rabbit development as a model for single-cell comparative genomics.

16. Proteomic analysis of circulating immune cells identifies cellular phenotypes associated with COVID-19 severity.

17. Mapping interindividual dynamics of innate immune response at single-cell resolution.

18. Stromal niche inflammation mediated by IL-1 signalling is a targetable driver of haematopoietic ageing.

19. Coagulation factor V is a T-cell inhibitor expressed by leukocytes in COVID-19.

20. Local and systemic responses to SARS-CoV-2 infection in children and adults.

21. Longitudinal analysis reveals that delayed bystander CD8+ T cell activation and early immune pathology distinguish severe COVID-19 from mild disease.

22. Single-cell multi-omics analysis of the immune response in COVID-19.

23. Single-cell transcriptome analysis of CAR T-cell products reveals subpopulations, stimulation, and exhaustion signatures.

24. Single-Cell Analysis of Hematopoietic Stem Cells.

25. CHD7 and Runx1 interaction provides a braking mechanism for hematopoietic differentiation.

26. Iterative Single-Cell Analyses Define the Transcriptome of the First Functional Hematopoietic Stem Cells.

27. Notch ligand Dll4 impairs cell recruitment to aortic clusters and limits blood stem cell generation.

28. Single-cell chromatin accessibility maps reveal regulatory programs driving early mouse organogenesis.

29. Dissecting the early steps of MLL induced leukaemogenic transformation using a mouse model of AML.

30. GATA2 Promotes Hematopoietic Development and Represses Cardiac Differentiation of Human Mesoderm.

31. Enhanced hemato-endothelial specification during human embryonic differentiation through developmental cooperation between AF4-MLL and MLL-AF4 fusions.

32. A single-cell molecular map of mouse gastrulation and early organogenesis.

33. Defining murine organogenesis at single-cell resolution reveals a role for the leukotriene pathway in regulating blood progenitor formation.

34. Assessing the reliability of spike-in normalization for analyses of single-cell RNA sequencing data.

35. Single-cell RNA-sequencing reveals a distinct population of proglucagon-expressing cells specific to the mouse upper small intestine.

36. Myeloid progenitor cluster formation drives emergency and leukaemic myelopoiesis.

37. Integrated genome-scale analysis of the transcriptional regulatory landscape in a blood stem/progenitor cell model.

38. An experimentally validated network of nine haematopoietic transcription factors reveals mechanisms of cell state stability.

39. Genome-scale definition of the transcriptional programme associated with compromised PU.1 activity in acute myeloid leukaemia.

40. The LMO2 -25 Region Harbours GATA2-Dependent Myeloid Enhancer and RUNX-Dependent T-Lymphoid Repressor Activity.

41. Functionally Distinct Subsets of Lineage-Biased Multipotent Progenitors Control Blood Production in Normal and Regenerative Conditions.

42. Combined Single-Cell Functional and Gene Expression Analysis Resolves Heterogeneity within Stem Cell Populations.

43. Key regulators control distinct transcriptional programmes in blood progenitor and mast cells.

44. BET protein inhibition shows efficacy against JAK2V617F-driven neoplasms.

45. Shared transcription factors contribute to distinct cell fates.

46. HOX-mediated LMO2 expression in embryonic mesoderm is recapitulated in acute leukaemias.

47. Bivalent promoter marks and a latent enhancer may prime the leukaemia oncogene LMO1 for ectopic expression in T-cell leukaemia.

48. Characterization of transcriptional networks in blood stem and progenitor cells using high-throughput single-cell gene expression analysis.

49. The human GFI136N variant induces epigenetic changes at the Hoxa9 locus and accelerates K-RAS driven myeloproliferative disorder in mice.

50. Integration of Elf-4 into stem/progenitor and erythroid regulatory networks through locus-wide chromatin studies coupled with in vivo functional validation.

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