439 results on '"Sahlgren, Cecilia"'
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2. Germline-specific RNA helicase DDX4 forms cytoplasmic granules in cancer cells and promotes tumor growth
3. Environmental stiffness restores mechanical homeostasis in vimentin-depleted cells
4. Directing cellular responses in a nanocomposite 3D matrix for tissue regeneration with nanoparticle-mediated drug delivery
5. Mechanical regulation of the Notch signaling pathway
6. Computational analysis of the role of mechanosensitive Notch signaling in arterial adaptation to hypertension
7. Engineering tissue morphogenesis: taking it up a Notch
8. Optogenetic control of NOTCH1 signaling
9. GIT1 protects against breast cancer growth through negative regulation of Notch
10. Engineered patterns of Notch ligands Jag1 and Dll4 elicit differential spatial control of endothelial sprouting
11. Surface Modification of Mesoporous Silica Nanoparticles as a Means to Introduce Inherent Cancer‐Targeting Ability in a 3D Tumor Microenvironment.
12. Correction: Mechanosensitivity of Jagged–Notch signaling can induce a switch-type behavior in vascular homeostasis
13. Mechano-regulated cell–cell signaling in the context of cardiovascular tissue engineering
14. Phosphoproteomic analysis reveals the diversity of signaling behind ErbB inhibitor-induced phenotypes
15. Rational evaluation of human serum albumin coated mesoporous silica nanoparticles for xenogenic-free stem cell therapies
16. Three-dimensional single-cell imaging for the analysis of RNA and protein expression in intact tumour biopsies
17. An in vitro model of cancer invasion with heterogeneous ECM created with droplet microfluidics
18. Shape‐Morphing Photoresponsive Hydrogels Reveal Dynamic Topographical Conditioning of Fibroblasts
19. SFAlab: image-based quantification of mechano-active ventral actin stress fibers in adherent cells
20. Mechanosensitivity of Jagged–Notch signaling can induce a switch-type behavior in vascular homeostasis
21. Selective regulation of Notch ligands during angiogenesis is mediated by vimentin
22. Notch signaling promotes a HIF2α-driven hypoxic response in multiple tumor cell types
23. Mapping of the three-dimensional lymphatic microvasculature in bladder tumours using light-sheet microscopy
24. Sumoylation of Notch1 represses its target gene expression during cell stress
25. Environmental stiffness restores mechanical homeostasis in vimentin-depleted cells
26. Shape-Morphing Photoresponsive Hydrogels Reveal Dynamic Topographical Conditioning of Fibroblasts
27. Environmental stiffness restores mechanical homeostasis in vimentin-depleted cells
28. An in vitro model of cancer invasion with heterogeneous ECM created with droplet microfluidics
29. SFAlab: image-based quantification of mechano-active ventral actin stress fibers in adherent cells
30. A multiscale computational model of arterial growth and remodeling including Notch signaling
31. Modulating epigenetic modifications for cancer therapy (Review)
32. Vimentin regulates Notch signaling strength and arterial remodeling in response to hemodynamic stress
33. Modulating epigenetic modifications for cancer therapy (Review)
34. Organ‐on‐a‐chip technologies for biomedical research and drug development: A focus on the vasculature
35. Whole-tissue biopsy phenotyping of three-dimensional tumours reveals patterns of cancer heterogeneity
36. Spheroid three-dimensional culture enhances Notch signaling in cardiac progenitor cells
37. An N-glycan on the C2 domain of JAGGED1 is important for Notch activation
38. Preparation, characterization, and preliminary biocompatibility evaluation of particulate spin-coated mesoporous silica films
39. Tailored Approaches in Drug Development and Diagnostics: From Molecular Design to Biological Model Systems
40. Notch signaling regulates strain-mediated phenotypic switching of vascular smooth muscle cells
41. Reversible and bidirectional signaling of notch ligands
42. Mesoporous silica nanoparticles in medicine—Recent advances
43. Notch signaling regulates strain-mediated phenotypic switching of vascular smooth muscle cells
44. An N-glycan on the C2 domain of JAGGED1 is important for Notch activation
45. Modulating epigenetic modifications for cancer therapy (Review).
46. Hypo- and hyperactivated Notch signaling induce a glycolytic switch through distinct mechanisms
47. Additional file 2 of Optogenetic control of NOTCH1 signaling
48. Notch Signaling Mediates Hypoxia-Induced Tumor Cell Migration and Invasion
49. In Situ Coupled Electrochemical‐Goniometry as a Tool to Reveal Conformational Changes of Charged Peptides
50. Mechano-regulated cell–cell signaling in the context of cardiovascular tissue engineering
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