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3. A DNA methylation atlas of normal human cell types

4. The DNA methylome of human vascular endothelium and its use in liquid biopsies

6. B cell-derived cfDNA after primary BNT162b2 mRNA vaccination anticipates memory B cells and SARS-CoV-2 neutralizing antibodies

7. Senescence of human pancreatic beta cells enhances functional maturation through chromatin reorganization and promotes interferon responsiveness

8. DNA methylation-based assessment of cell composition in human pancreas and islets

9. Disrupted RNA editing in beta cells mimics early-stage type 1 diabetes

10. Extensive elimination of acinar cells during normal postnatal pancreas growth

11. Postnatal Exocrine Pancreas Growth by Cellular Hypertrophy Correlates with a Shorter Lifespan in Mammals

13. DNA Methylation-Based Assessment of Cell Composition in Human Pancreas and Islets.

14. A method for cleaning of used disposable plastic parts from automated RNA extraction system.

17. -induced senescence of pancreatic beta cells enhances insulin secretion

19. A human DNA methylation atlas reveals principles of cell type-specific methylation and identifies thousands of cell type-specific regulatory elements

20. Remote immune processes revealed by immune-derived circulating cell-free DNA

21. Author response: Remote immune processes revealed by immune-derived circulating cell-free DNA

22. Early sample tagging and pooling enables simultaneous SARS-CoV-2 detection and variant sequencing

24. -[G.sub.1] transition and the restriction point in pancreatic β-cells in vivo

26. SARS-CoV-2 detection with ApharSeq v3

27. ApharSeq: An Extraction-free Early-Pooling Protocol for Massively Multiplexed SARS-CoV-2 Detection

28. Sars-CoV2 RNA purification with homemade SPRI beads for RT-qPCR test v1

29. Beta-cells are not uniform after all – novel insights into molecular heterogeneity of insulin-secreting cells

30. β-Cell DNA Damage Response Promotes Islet Inflammation in Type 1 Diabetes

31. Additional file 2: Figure S2. of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

33. Additional file 1: Figure S1. of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

35. CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

36. CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

37. The Genetic Program of Pancreatic β-Cell Replication In Vivo

38. p16Ink4a-induced senescence of pancreatic beta cells enhances insulin secretion

39. Phosphorylated Ribosomal Protein S6 Is Required for Akt-Driven Hyperplasia and Malignant Transformation, but Not for Hypertrophy, Aneuploidy and Hyperfunction of Pancreatic β-Cells

45. G0-G1 Transition and the Restriction Point in Pancreatic β-Cells In Vivo.

46. Additional file 5: Table S2. of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

47. Additional file 5: Table S2. of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

48. Additional file 6: of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

49. Additional file 4: of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

50. Additional file 4: of CEL-Seq2: sensitive highly-multiplexed single-cell RNA-Seq

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