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3. Identifying new biomarkers of aggressive Group 3 and SHH medulloblastoma using 3D hydrogel models, single cell RNA sequencing and 3D OrbiSIMS imaging

4. Comparative epigenetic analysis of tumour initiating cells and syngeneic EPSC-derived neural stem cells in glioblastoma

7. Additional file 2 of Identifying new biomarkers of aggressive Group 3 and SHH medulloblastoma using 3D hydrogel models, single cell RNA sequencing and 3D OrbiSIMS imaging

8. OptoRheo: Simultaneousin situmicro-mechanical sensing and imaging of live 3D biological systems

9. Leri’s pleonosteosis, a congenital rheumatic disease, results from microduplication at 8q22.1 encompassing GDF6 and SDC2 and provides insight into systemic sclerosis pathogenesis

16. Comparative quantification of the surfaceome of human multipotent mesenchymal progenitor cells

17. Exciting New Developments and Emerging Themes in Glycosaminoglycan Research.

19. Exciting New Developments and Emerging Themes in Glycosaminoglycan Research

21. The Good the Bad and the Ugly of Glycosaminoglycans in Tissue Engineering Applications.

23. Leri’s pleonosteosis, a congenital rheumatic disease, results from microduplication at 8q22.1 encompassingGDF6andSDC2and provides insight into systemic sclerosis pathogenesis

26. Neuropathology in Mouse Models of Mucopolysaccharidosis Type I, IIIA and IIIB

27. Excess Heparan Sulphate Inhibits CXCL12-Mediated Hematopoietic Cell Migration and Engraftment After Bone Marrow Transplant in Mice with Mucopolysaccharidosis Type I,

32. Controlling cell morphology on amino acid-modified cellulose

33. Essential Alterations of Heparan Sulfate During the Differentiation of Embryonic Stem Cells to Sox1-Enhanced Green Fluorescent Protein-Expressing Neural Progenitor Cells

38. New strategies for cartilage regeneration exploiting selected glycosaminoglycans to enhance cell fate determination.

39. Using embryonic stem cells to understand how glycosaminoglycans regulate differentiation.

40. Epithelial-mesenchymal status influences how cells deposit fibrillin microfibrils.

41. Specific Glycosaminoglycans Modulate Neural Specification of Mouse Embryonic Stem Cells.

42. Abrogation of E-Cadherin-Mediated Cell-Cell Contact in Mouse Embryonic Stem Cells Results in Reversible LIF-Independent Self-Renewal.

43. Glycoscience finally comes of age.

44. A New Model for the Domain Structure of Heparan Sulfate Based on the Novel Specificity of K5 Lyase.

45. The biochemical determinants of tissue regeneration.

46. Erratum: ESSENTIAL ALTERATIONS OF HEPARAN SULFATE DURING THE DIFFERENTIATION OF EMBRYONIC STEM CELLS TO SOX1-ENHANCED GREEN FLUORESCENT PROTEIN-EXPRESSING NEURAL PROGENITOR CELLS.

47. NDST2 (N-Deacetylase/N-Sulfotransferase-2) Enzyme Regulates Heparan Sulfate Chain Length.

48. Heparan Sulfate Inhibits Hematopoietic Stem and Progenitor Cell Migration and Engraftment in Mucopolysaccharidosis I.

49. Immobilization of Heparan Sulfate on Electrospun Meshes to Support Embryonic Stem Cell Culture and Differentiation.

50. Mucopolysaccharidosis Type I, Unique Structure of Accumulated Heparan Sulfate and Increased N-Sulfotransferase Activity in Mice Lacking α-L-iduronidase.

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