All Stories

  1. Fluorescein-Based SynNotch Adaptors for Regulating Gene Expression Responses to Diverse Extracellular Cues
  2. Multicompartment duct platform to study epithelial–endothelial crosstalk associated with lung adenocarcinoma
  3. Rapid tissue perfusion using sacrificial percolation of anisotropic networks
  4. Structural maturation of myofilaments in engineered 3D cardiac microtissues characterized using small angle x-ray scattering
  5. Nonclinical evaluation of chronic cardiac contractility modulation on 3D human engineered cardiac tissues
  6. A Protein‐Adsorbent Hydrogel with Tunable Stiffness for Tissue Culture Demonstrates Matrix‐Dependent Stiffness Responses
  7. Notch1 cortical signaling regulates epithelial architecture and cell–cell adhesion
  8. New 3D Organ-on-Chip Platform Reveals Regulation of Lymphatic Cell-cell Junctions Drives Lymphedema
  9. Bmp9 regulates Notch signaling and the temporal dynamics of angiogenesis via Lunatic Fringe
  10. Dynamic Control of Contractile Force in Engineered Heart Tissue
  11. Fibroblast clearance of damaged tissue following laser ablation in engineered microtissues
  12. Mechanical response of cardiac microtissues to acute localized injury
  13. Engineering a living cardiac pump on a chip using high-precision fabrication
  14. Notch1 and Notch3 coordinate for pericyte-induced stabilization of vasculature
  15. Sarc-Graph: Automated segmentation, tracking, and analysis of sarcomeres in hiPSC-derived cardiomyocytes
  16. Force-FAK signaling coupling at individual focal adhesions coordinates mechanosensing and microtissue repair
  17. Controlled Cell Alignment Using Two‐Photon Direct Laser Writing‐Patterned Hydrogels in 2D and 3D
  18. Reconstituting the dynamics of endothelial cells and fibroblasts in wound closure
  19. A Microtissue Platform to Simultaneously Actuate and Detect Mechanical Forces via Non-Contact Magnetic Approach
  20. Distinct effects of different matrix proteoglycans on collagen fibrillogenesis and cell-mediated collagen reorganization
  21. Force-FAK Signaling Coupling at Individual Focal Adhesions Coordinates Mechanosensing and Microtissue Repair
  22. Genetic Studies of Hypertrophic Cardiomyopathy in Singaporeans Identify Variants in TNNI3 and TNNT2 That Are Common in Chinese Patients
  23. Recovery of Tractions Exerted by Single Cells in Three-Dimensional Nonlinear Matrices
  24. Uncovering mutation-specific morphogenic phenotypes and paracrine-mediated vessel dysfunction in a biomimetic vascularized mammary duct platform
  25. Transient Support from Fibroblasts is Sufficient to Drive Functional Vascularization in Engineered Tissues
  26. Controlled Apoptosis of Stromal Cells to Engineer Human Microlivers
  27. Author Correction: 3D-printed vascular networks direct therapeutic angiogenesis in ischaemia
  28. Voltage Imaging of Cardiac Cells and Tissue Using the Genetically Encoded Voltage Sensor Archon1
  29. Myosin Sequestration Regulates Sarcomere Function, Cardiomyocyte Energetics, and Metabolism, Informing the Pathogenesis of Hypertrophic Cardiomyopathy
  30. Correction to: Myosin Sequestration Regulates Sarcomere Function, Cardiomyocyte Energetics, and Metabolism, Informing the Pathogenesis of Hypertrophic Cardiomyopathy
  31. Mechanical regulation of glycolysis via cytoskeleton architecture
  32. From Simple to Architecturally Complex Hydrogel Scaffolds for Cell and Tissue Engineering Applications: Opportunities Presented by Two‐Photon Polymerization
  33. Sarco/endoplasmic reticulum Ca2+-ATPase is a more effective calcium remover than sodium-calcium exchanger in human embryonic stem cell-derived cardiomyocytes
  34. A Bile Duct‐on‐a‐Chip With Organ‐Level Functions
  35. A biomimetic pancreatic cancer on-chip reveals endothelial ablation via ALK7 signaling
  36. Modeling Monogenic Diabetes using Human ESCs Reveals Developmental and Metabolic Deficiencies Caused by Mutations in HNF1A
  37. Myosin IIA–mediated forces regulate multicellular integrity during vascular sprouting
  38. Modulation of chromatin remodeling proteins SMYD1 and SMARCD1 promotes contractile function of human pluripotent stem cell-derived ventricular cardiomyocyte in 3D-engineered cardiac tissues
  39. A BMP/activin A chimera is superior to native BMPs and induces bone repair in nonhuman primates when delivered in a composite matrix
  40. SarcTrack
  41. Microfabricated blood vessels for modeling the vascular transport barrier
  42. Studies of 3D directed cell migration enabled by direct laser writing of curved wave topography
  43. Effects of Geometry on the Mechanics and Alignment of Three-Dimensional Engineered Microtissues
  44. Extracellular matrix alignment dictates the organization of focal adhesions and directs uniaxial cell migration
  45. Epstein−Barr virus-encoded EBNA2 alters immune checkpoint PD-L1 expression by downregulating miR-34a in B-cell lymphomas
  46. Human Organ Chip Models Recapitulate Orthotopic Lung Cancer Growth, Therapeutic Responses, and Tumor Dormancy In Vitro
  47. Motile Dendritic Cells Sense and Respond to Substrate Geometry
  48. Proliferation-independent role of NF2 (merlin) in limiting biliary morphogenesis
  49. Vascular Tissue Engineering: Progress, Challenges, and Clinical Promise
  50. Amino Acid Restriction Triggers Angiogenesis via GCN2/ATF4 Regulation of VEGF and H2S Production
  51. Vascular Tissue Engineering: Progress, Challenges, and Clinical Promise
  52. Cell-geometry-dependent changes in plasma membrane order direct stem cell signalling and fate
  53. Force Generation via β-Cardiac Myosin, Titin, and α-Actinin Drives Cardiac Sarcomere Assembly from Cell-Matrix Adhesions
  54. Fabrication and Mechanical Properties Measurements of 3D Microtissues for the Study of Cell–Matrix Interactions
  55. Designer biomaterials for mechanobiology
  56. A non-canonical Notch complex regulates adherens junctions and vascular barrier function
  57. Forces as regulators of cell adhesions
  58. Human Organ Chip Models Recapitulate Orthotopic Lung Cancer Growth, Therapeutic Responses, and Tumor Dormancy In Vitro
  59. Hyperactive FOXO1 results in lack of tip stalk identity and deficient microvascular regeneration during kidney injury
  60. Making bone via nanoscale kicks
  61. Matrix degradability controls multicellularity of 3D cell migration
  62. Three-dimensional biomimetic vascular model reveals a RhoA, Rac1, and N -cadherin balance in mural cell–endothelial cell-regulated barrier function
  63. In situ expansion of engineered human liver tissue in a mouse model of chronic liver disease
  64. The Arp2/3 complex binding protein HS1 is required for efficient dendritic cell random migration and force generation
  65. Cdc42 regulates branching in angiogenic sprouting in vitro
  66. 3D-printed vascular networks direct therapeutic angiogenesis in ischaemia
  67. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis
  68. Multiscale model predicts increasing focal adhesion size with decreasing stiffness in fibrous matrices
  69. Laminar flow downregulates Notch activity to promote lymphatic sprouting
  70. Cell-Cell Contact Area Affects Notch Signaling and Notch-Dependent Patterning
  71. Inhibition of αvβ5 Integrin Attenuates Vascular Permeability and Protects against Renal Ischemia-Reperfusion Injury
  72. Integrative Analysis of PRKAG2 Cardiomyopathy iPS and Microtissue Models Identifies AMPK as a Regulator of Metabolism, Survival, and Fibrosis
  73. Differentiation alters stem cell nuclear architecture, mechanics, and mechano-sensitivity
  74. 3D Biomimetic Cultures: The Next Platform for Cell Biology
  75. Forces and mechanotransduction in 3D vascular biology
  76. Non-cell autonomous cues for enhanced functionality of human embryonic stem cell-derived cardiomyocytes via maturation of sarcolemmal and mitochondrial KATP channels
  77. Matrix viscoplasticity and its shielding by active mechanics in microtissue models: experiments and mathematical modeling
  78. Tumor vessel normalization after aerobic exercise enhances chemotherapeutic efficacy
  79. Full-Length Fibronectin Drives Fibroblast Accumulation at the Surface of Collagen Microtissues during Cell-Induced Tissue Morphogenesis
  80. Measuring cell-generated forces: a guide to the available tools
  81. Cellular forces and matrix assembly coordinate fibrous tissue repair
  82. The mechanical regulation of integrin–cadherin crosstalk organizes cells, signaling and forces
  83. Biomimetic on-a-chip platforms for studying cancer metastasis
  84. 3D culture models of tissues under tension
  85. Cell-mediated fibre recruitment drives extracellular matrix mechanosensing in engineered fibrillar microenvironments
  86. Titin mutations in iPS cells define sarcomere insufficiency as a cause of dilated cardiomyopathy
  87. Endothelial Thermotolerance Impairs Nanoparticle Transport in Tumors
  88. Protrusive and Contractile Forces of Spreading Human Neutrophils
  89. ATF4 licenses C/EBPβ activity in human mesenchymal stem cells primed for adipogenesis
  90. Proteomic Analysis of Human Pluripotent Stem Cell–Derived, Fetal, and Adult Ventricular Cardiomyocytes Reveals Pathways Crucial for Cardiac Metabolism and Maturation
  91. Patterning Vascular Networks In Vivo for Tissue Engineering Applications
  92. Degradable hydrogels derived from PEG‐diacrylamide for hepatic tissue engineering
  93. N-Cadherin Induction by ECM Stiffness and FAK Overrides the Spreading Requirement for Proliferation of Vascular Smooth Muscle Cells
  94. Cooperative contractility: The role of stress fibres in the regulation of cell-cell junctions
  95. Mechanically Stimulated Contraction of Engineered Cardiac Constructs Using a Microcantilever
  96. Phospholamban as a Crucial Determinant of the Inotropic Response of Human Pluripotent Stem Cell–Derived Ventricular Cardiomyocytes and Engineered 3-Dimensional Tissue Constructs
  97. Myosin II controls cellular branching morphogenesis and migration in three dimensions by minimizing cell-surface curvature
  98. A proteomic approach reveals integrin activation state-dependent control of microtubule cortical targeting
  99. Application of multiple levels of fluid shear stress to endothelial cells plated on polyacrylamide gels
  100. Hypoxia increases extracellular fibronectin abundance but not assembly during epithelial cell transdifferentiation
  101. Long-Range Force Transmission in Fibrous Matrices Enabled by Tension-Driven Alignment of Fibers
  102. Forms, forces, and stem cell fate
  103. A DNA-based molecular probe for optically reporting cellular traction forces
  104. Remodeling of Fibrous Extracellular Matrices by Contractile Cells: Predictions from Discrete Fiber Network Simulations
  105. Tissue-engineered, hydrogel-based endothelial progenitor cell therapy robustly revascularizes ischemic myocardium and preserves ventricular function
  106. Force-driven evolution of mesoscale structure in engineered 3D microtissues and the modulation of tissue stiffening
  107. Sticky mechanical memory
  108. Fluid shear stress threshold regulates angiogenic sprouting
  109. Force Measurement Tools to Explore Cadherin Mechanotransduction
  110. Magnetic approaches to study collective three-dimensional cell mechanics in long-term cultures (invited)
  111. Jostling for position in angiogenic sprouts: continuous rearrangement of cells explained by differential adhesion dynamics
  112. Mesenchymal stem cell mechanosensing in engineered fibrillar microenvironments
  113. Acute slowing of cardiac conduction in response to myofibroblast coupling to cardiomyocytes through N-cadherin
  114. The influence of matrix (an)isotropy on cardiomyocyte contraction in engineered cardiac microtissues
  115. Erratum: InVERT molding for scalable control of tissue microarchitecture
  116. Micropatterned Multicolor Dynamically Adhesive Substrates to Control Cell Adhesion and Multicellular Organization
  117. Computational and experimental investigation of local stress fiber orientation in uniaxially and biaxially constrained microtissues
  118. Label-free evaluation of angiogenic sprouting in microengineered devices using ultrahigh-resolution optical coherence microscopy
  119. An EMMPRIN/γ-catenin/Nm23 complex drives ATP production and actomyosin contractility at endothelial junctions
  120. “Stamp-off” to Micropattern Sparse, Multicomponent Features
  121. Microfabrication of a Platform to Measure and Manipulate the Mechanics of Engineered Microtissues
  122. Augmentation of integrin-mediated mechanotransduction by hyaluronic acid
  123. Necking and failure of constrained 3D microtissues induced by cellular tension
  124. HeLiVa platform: integrated heart-liver-vascular systems for drug testing in human health and disease
  125. Design and formulation of functional pluripotent stem cell-derived cardiac microtissues
  126. Substrates with Engineered Step Changes in Rigidity Induce Traction Force Polarity and Durotaxis
  127. How cells sense extracellular matrix stiffness: a material's perspective
  128. Contact inhibition of locomotion probabilities drive solitary versus collective cell migration
  129. Endothelial Cell Sensing of Flow Direction
  130. The emerin-binding transcription factor Lmo7 is regulated by association with p130Cas at focal adhesions
  131. Rac1 is deactivated at integrin activation sites through an IQGAP1-filamin-A-RacGAP1 pathway
  132. Fibrous hyaluronic acid hydrogels that direct MSC chondrogenesis through mechanical and adhesive cues
  133. Fluid Shear Stress on Endothelial Cells Modulates Mechanical Tension across VE-Cadherin and PECAM-1
  134. Mapping calcium phosphate activated gene networks as a strategy for targeted osteoinduction of human progenitors
  135. How vinculin regulates force transmission
  136. Cell adhesion and mechanical stimulation in the regulation of mesenchymal stem cell differentiation
  137. InVERT molding for scalable control of tissue microarchitecture
  138. Three-dimensional, automated magnetic biomanipulation with subcellular resolution
  139. Geometric control of vascular networks to enhance engineered tissue integration and function
  140. Biomimetic model to reconstitute angiogenic sprouting morphogenesis in vitro
  141. Degradation-mediated cellular traction directs stem cell fate in covalently crosslinked three-dimensional hydrogels
  142. Activation of beta 1 but not beta 3 integrin increases cell traction forces
  143. Decoupling Cell and Matrix Mechanics in Engineered Microtissues Using Magnetically Actuated Microcantilevers
  144. Deconstructing Dimensionality
  145. Microfluidics embedded within extracellular matrix to define vascular architectures and pattern diffusive gradients
  146. Delineating 3D Angiogenic Sprouting in OCT Images via Multiple Active Contours
  147. Measuring Cell–Cell Tugging Forces Using Bowtie-Patterned mPADs (Microarray Post Detectors)
  148. Development and characterization of a 3D multicell microtissue culture model of airway smooth muscle
  149. Multidimensional traction force microscopy reveals out-of-plane rotational moments about focal adhesions
  150. Bioengineering Methods for Analysis of Cells In Vitro
  151. Adhesion Regulates MAP Kinase/Ternary Complex Factor Exchange to Control a Proliferative Transcriptional Switch
  152. Structural Mechanics Based Model for the Force-Bearing Elements Within the Cytoskeleton of a Cell Adhered on a Bed of Posts
  153. Adhesive and mechanical regulation of mesenchymal stem cell differentiation in human bone marrow and periosteum-derived progenitor cells
  154. Rapid casting of patterned vascular networks for perfusable engineered three-dimensional tissues
  155. Manipulation of 3D Cluster Size and Geometry by Release from 2D Micropatterns
  156. A Microfabricated Platform to Measure and Manipulate the Mechanics of Engineered Cardiac Microtissues
  157. Engineered Fibrillar Extracellular Matrices for the Study of Directed Cell Migration
  158. Magnetic Microtissue Stretching System to Study the Mechanobiology of 3D Fibroblast Populated Collagen Matrix
  159. Stem Cell Fate Within 3D Hydrogels is Mediated by Network Structure-Dependent Traction Generation
  160. Forcing Stem Cells to Behave: A Biophysical Perspective of the Cellular Microenvironment
  161. A Microfabricated Platform to Measure and Manipulate the Mechanics of Engineered Cardiac Microtissues
  162. Bone Morphogenetic Protein-2-Induced Signaling and Osteogenesis Is Regulated by Cell Shape, RhoA/ROCK, and Cytoskeletal Tension
  163. miR‐125b Is an Adhesion‐Regulated microRNA that Protects Mesenchymal Stem Cells from Anoikis
  164. Matrix rigidity regulates a switch between TGF-β1–induced apoptosis and epithelial–mesenchymal transition
  165. Probing cellular traction forces with magnetic nanowires and microfabricated force sensor arrays
  166. Formation and optogenetic control of engineered 3D skeletal muscle bioactuators
  167. Heterotypic cell pair co-culturing on patterned microarrays
  168. Force-induced fibronectin assembly and matrix remodeling in a 3D microtissue model of tissue morphogenesis
  169. Deconstructing the third dimension – how 3D culture microenvironments alter cellular cues
  170. Measuring Traction Forces of Motile Dendritic Cells on Micropost Arrays
  171. Bioresponsive Mesoporous Silica Nanoparticles for Triggered Drug Release
  172. Repressor transcription factor 7-like 1 promotes adipogenic competency in precursor cells
  173. Decreased cell adhesion promotes angiogenesis in a Pyk2-dependent manner
  174. A Hitchhiker's Guide to Mechanobiology
  175. Cell Shape and Substrate Rigidity Both Regulate Cell Stiffness
  176. The Cdc42 Guanine Nucleotide Exchange Factor FGD1 Regulates Osteogenesis in Human Mesenchymal Stem Cells
  177. Addendum: Mechanical regulation of cell function with geometrically modulated elastomeric substrates
  178. Assaying stem cell mechanobiology on microfabricated elastomeric substrates with geometrically modulated rigidity
  179. Control of Surface Chemistry, Substrate Stiffness, and Cell Function in a Novel Terpolymer Methacrylate Library
  180. Subcellular spatial segregation of integrin subtypes by patterned multicomponent surfaces
  181. Measurement and analysis of traction force dynamics in response to vasoactive agonists
  182. Micron-Scale Spatially Patterned, Covalently Immobilized Vascular Endothelial Growth Factor on Hydrogels Accelerates Endothelial Tubulogenesis and Increases Cellular Angiogenic Responses
  183. Engineered materials and the cellular microenvironment: a strengthening interface between cell biology and bioengineering
  184. Measurement of mechanical tractions exerted by cells in three-dimensional matrices
  185. Micropatterned Dynamically Adhesive Substrates for Cell Migration
  186. Decoupling diffusional from dimensional control of signaling in 3D culture reveals a role for myosin in tubulogenesis
  187. Mechanical regulation of cell function with geometrically modulated elastomeric substrates
  188. Measuring mechanical tension across vinculin reveals regulation of focal adhesion dynamics
  189. Mechanical tugging force regulates the size of cell–cell junctions
  190. Bioactive hydrogels made from step-growth derived PEG–peptide macromers
  191. Stem Cell Shape Regulates a Chondrogenic Versus Myogenic Fate Through Rac1 and N-Cadherin
  192. Cytoskeleton-based forecasting of stem cell lineage fates
  193. Micro- and Nanoscale Force Techniques for Mechanotransduction
  194. Simulation of the contractile response of cells on an array of micro-posts
  195. Control of Stem Cell Fate by Physical Interactions with the Extracellular Matrix
  196. Microfabricated tissue gauges to measure and manipulate forces from 3D microtissues
  197. Cell polarity triggered by cell-cell adhesion via E-cadherin
  198. Cell Traction Forces Direct Fibronectin Matrix Assembly
  199. Mechanotransduction in development: a growing role for contractility
  200. Using Self-Assembled Monolayers to Pattern ECM Proteins and Cells on Substrates
  201. Tensegrity und Mechanoregulation: Vom Skelett zum Zytoskelett
  202. Mechanotransduction – a field pulling together?
  203. Immobilization of Growth Factors on Collagen Scaffolds Mediated by Polyanionic Collagen Mimetic Peptides and Its Effect on Endothelial Cell Morphogenesis
  204. Optimization of Yield in Magnetic Cell Separations Using Nickel Nanowires of Different Lengths
  205. Engineering amount of cell–cell contact demonstrates biphasic proliferative regulation through RhoA and the actin cytoskeleton
  206. Myofibrillar Architecture in Engineered Cardiac Myocytes
  207. Magnetic microposts for mechanical stimulation of biological cells: Fabrication, characterization, and analysis
  208. Patterning Cell and Tissue Function
  209. Spatial patterning of gene expression using surface-immobilized recombinant adenovirus
  210. Rac-dependent cyclin D1 gene expression regulated by cadherin- and integrin-mediated adhesion
  211. Remote control of living cells
  212. Cellular and multicellular form and function☆
  213. Versatile, Fully Automated, Microfluidic Cell Culture System
  214. Geometric Considerations of Micro‐ to Nanoscale Elastomeric Post Arrays to Study Cellular Traction Forces
  215. Activation of ROCK by RhoA is regulated by cell adhesion, shape, and cytoskeletal tension
  216. Magnetic microposts as an approach to apply forces to living cells
  217. Cadherins, RhoA, and Rac1 Are Differentially Required for Stretch-Mediated Proliferation in Endothelial Versus Smooth Muscle Cells
  218. Bait and Switch: Synthetic GEFs Divert an Input Signal to Diverse Cellular Responses
  219. Separate but Not Equal: Differential Mechanical Roles for Myosin Isoforms
  220. Microcontact printing: A tool to pattern
  221. Special issue on Cell and Tissue Engineering in Microsystems
  222. Microfabricated Silicone Elastomeric Post Arrays for Measuring Traction Forces of Adherent Cells
  223. Manipulation of Cell-Cell Adhesion Using Bowtie-Shaped Microwells
  224. An inhibitory role for FAK in regulating proliferation: a link between limited adhesion and RhoA-ROCK signaling
  225. Nanotechnology for Cell–Substrate Interactions
  226. Engineering biomaterials to control cell function
  227. Nanopattern-induced changes in morphology and motility of smooth muscle cells
  228. Emergent patterns of growth controlled by multicellular form and mechanics
  229. T cell-to-T cell clustering enhances NF-κB activity by a PI3K signal mediated by Cbl-b and Rho
  230. Facile Modification of Collagen Directed by Collagen Mimetic Peptides
  231. Microengineering the Environment of Mammalian Cells in Culture
  232. Finite-Element Analysis of the Adhesion-Cytoskeleton-Nucleus Mechanotransduction Pathway During Endothelial Cell Rounding: Axisymmetric Model
  233. Assembly of multicellular constructs and microarrays of cells using magnetic nanowires
  234. Characterization of the Nuclear Deformation Caused by Changes in Endothelial Cell Shape
  235. Strategies for Engineering the Adhesive Microenvironment
  236. Mechanotransduction at Cell-Matrix and Cell-Cell Contacts
  237. Micropatterned Environments in Cell Biology
  238. Dielectrophoretic registration of living cells to a microelectrode array
  239. Vascular Endothelial-Cadherin Regulates Cytoskeletal Tension, Cell Spreading, and Focal Adhesions by Stimulating RhoA
  240. Cell Shape, Cytoskeletal Tension, and RhoA Regulate Stem Cell Lineage Commitment
  241. Selective Noncovalent Adsorption of Protein to Bifunctional Metallic Nanowire Surfaces
  242. VE-cadherin simultaneously stimulates and inhibits cell proliferation by altering cytoskeletal structure and tension
  243. Cell shape provides global control of focal adhesion assembly
  244. Biological applications of multifunctional magnetic nanowires (invited)
  245. The Biomolecular Interface
  246. Cells lying on a bed of microneedles: An approach to isolate mechanical force
  247. Degradation of Micropatterned Surfaces by Cell-Dependent and -Independent Processes
  248. Engineering cellular microenvironments to improve cell-based drug testing
  249. Cell‐cell signaling by direct contact increases cell proliferation via a PI3K‐dependent signal
  250. Fabrication of aligned microstructures with a single elastomeric stamp
  251. Patterning the cellular microenvironment
  252. Microcontact Printing of Proteins on Mixed Self-Assembled Monolayers
  253. Selective Deposition of Proteins and Cells in Arrays of Microwells
  254. Patterning Mammalian Cells Using Elastomeric Membranes
  255. Geometric control of switching between growth, apoptosis, and differentiation during angiogenesis using micropatterned substrates
  256. Squaring up to the cell-shape debate
  257. Tensegrity and mechanoregulation: from skeleton to cytoskeleton
  258. Control of Cyclin D1, p27Kip1, and Cell Cycle Progression in Human Capillary Endothelial Cells by Cell Shape and Cytoskeletal Tension
  259. Using Mixed Self-Assembled Monolayers Presenting RGD and (EG)3OH Groups To Characterize Long-Term Attachment of Bovine Capillary Endothelial Cells to Surfaces
  260. Micropatterned Surfaces for Control of Cell Shape, Position, and Function
  261. Cellular control lies in the balance of forces
  262. Geometric Control of Cell Life and Death
  263. Demonstration of mechanical connections between integrins, cytoskeletal filaments, and nucleoplasm that stabilize nuclear structure
  264. Controlling cell attachment on contoured surfaces with self-assembled monolayers of alkanethiolates on gold.
  265. Pore strain behaviour of collagen-glycosaminoglycan analogues of extracellular matrix
  266. Molecular cloning and expression of the cDNA for alpha 3 subunit of human alpha 3 beta 1 (VLA-3), an integrin receptor for fibronectin, laminin, and collagen.
  267. Abstract
  268. Using lab-on-a-chip Technologies to Understand Cellular Mechanotransduction