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1. CHRFAM7A diversifies human immune adaption through Ca2+ signalling and actin cytoskeleton reorganizationResearch in context

3. Survivin as a mediator of stiffness-induced cell cycle progression and proliferation of vascular smooth muscle cells

4. Survivin regulates intracellular stiffness and extracellular matrix production in vascular smooth muscle cells

5. Neuronal actin cytoskeleton gain of function in the human brainResearch in context

6. A machine learning pipeline revealing heterogeneous responses to drug perturbations on vascular smooth muscle cell spheroid morphology and formation

7. Phosphoinositide Signaling and Mechanotransduction in Cardiovascular Biology and Disease

8. Deconvolution of subcellular protrusion heterogeneity and the underlying actin regulator dynamics from live cell imaging

13. Survivin is a mechanosensitive cell cycle regulator in vascular smooth muscle cells

14. Key role for Rac in the early transcriptional response to extracellular matrix stiffness and stiffness-dependent repression of ATF3.

15. Survivin Regulates Intracellular Stiffness and Extracellular Matrix Production in Vascular Smooth Muscle Cells

16. Development of a decellularized meniscus matrix-based nanofibrous scaffold for meniscus tissue engineering

17. Rac rather than Rho drives the early transcriptional response to extracellular matrix stiffness and mediates repression of ATF3

18. Optogenomic Interfaces: Bridging Biological Networks With the Electronic Digital World

19. Mechanosensitive expression of lamellipodin promotes intracellular stiffness, cyclin expression and cell proliferation

20. Editorial: Mechanical coupling between extracellular and intracellular microenvironment.

21. Global Genome Conformational Programming during Neuronal Development is Associated with CTCF and Nuclear FGFR1—The Genome Archipelago Model

22. A machine learning pipeline revealing heterogeneous responses to drug perturbations on vascular smooth muscle cell spheroid morphology and formation

23. Mechanosensitive Expression of Lamellipodin Governs Cell Cycle Progression and Intracellular Stiffness

24. Emerging machine learning approaches to phenotyping cellular motility and morphodynamics

26. Modulating cell response on cellulose surfaces; tunable attachment and scaffold mechanics

27. Machine learning reveals heterogeneous responses to FAK, Rac, Rho, and Cdc42 inhibition on vascular smooth muscle cell spheroid formation and morphology

28. A Decellularized Meniscus Matrix Fibrous System for Meniscus Repair

30. Analysis of Light Propagation on Physiological Properties of Neurons for Nanoscale Optogenetics

31. Cardiovascular protection in females linked to estrogen-dependent inhibition of arterial stiffening and macrophage MMP12

33. Deconvolution of subcellular protrusion heterogeneity and the underlying actin regulator dynamics from live cell imaging

34. Light propagation analysis in nervous tissue for wireless optogenetic nanonetworks

35. N-Cadherin Induction by ECM Stiffness and FAK Overrides the Spreading Requirement for Proliferation of Vascular Smooth Muscle Cells

36. Brain Organoids: Expanding Our Understanding of Human Development and Disease

37. Predicting Ligand-Free Cell Attachment on Next-Generation Cellulose-Chitosan Hydrogels

38. Measuring the Stiffness of Ex Vivo Mouse Aortas Using Atomic Force Microscopy

39. Cardiovascular Protection by ApoE and ApoE-HDL Linked to Suppression of ECM Gene Expression and Arterial Stiffening

40. Loss of profilin-1 expression enhances breast cancer cell motility by Ena/VASP proteins

41. Matrix metalloproteinase-12 is an essential mediator of acute and chronic arterial stiffening

42. Apolipoprotein E3 Inhibits Rho to Regulate the Mechanosensitive Expression of Cox2

43. Science Signaling Podcast: 17 June 2014

44. A FAK-Cas-Rac-Lamellipodin Signaling Module Transduces Extracellular Matrix Stiffness into Mechanosensitive Cell Cycling

45. Molecular insights on context-specific role of profilin-1 in cell migration

46. Profilin1 regulates PI(3,4)P2 and lamellipodin accumulation at the leading edge thus influencing motility of MDA-MB-231 cells

47. m-calpain Activation Is Regulated by Its Membrane Localization and by Its Binding to Phosphatidylinositol 4,5-Bisphosphate*

48. Profilin-1 over-expression upregulates PTEN and suppresses AKT activation in breast cancer cells

49. Minute changes in composition of polymer substrates produce amplified differences in cell adhesion and motility via optimal ligand conditioning

50. Mechanosensitive expression of lamellipodin promotes intracellular stiffness, cyclin expression and cell proliferation.

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