Mesenchymal stem cell and chondrocyte fates in a multishear microdevice are regulated by Yes-associated protein.
暂无分享,去创建一个
Kang Tian | Jianhua Qin | J. Qin | Weiguo Zhang | Weiliang Zhong | Kang Tian | Xifu Zheng | Linan Li | Shouyu Wang | Weiliang Zhong | Xifu Zheng | Linan Li | Weiguo Zhang | Shouyu Wang
[1] Milan Mrksich,et al. Geometric cues for directing the differentiation of mesenchymal stem cells , 2010, Proceedings of the National Academy of Sciences.
[2] Stefano Piccolo,et al. Transduction of mechanical and cytoskeletal cues by YAP and TAZ , 2012, Nature Reviews Molecular Cell Biology.
[3] Joungmok Kim,et al. The role of YAP transcription coactivator in regulating stem cell self-renewal and differentiation. , 2010, Genes & development.
[4] Bin Zhao,et al. The Hippo pathway in organ size control, tissue regeneration and stem cell self-renewal , 2011, Nature Cell Biology.
[5] Li Li,et al. Inactivation of YAP oncoprotein by the Hippo pathway is involved in cell contact inhibition and tissue growth control. , 2007, Genes & development.
[6] D. Schurman,et al. Regulation of nitric oxide and bcl‐2 expression by shear stress in human osteoarthritic chondrocytes in vitro , 2003, Journal of cellular biochemistry.
[7] Yi Zhang,et al. A protocol for isolation and culture of mesenchymal stem cells from mouse compact bone , 2010, Nature Protocols.
[8] Jianping Fu,et al. Forcing stem cells to behave: a biophysical perspective of the cellular microenvironment. , 2012, Annual review of biophysics.
[9] Shuichi Takayama,et al. Regulating microenvironmental stimuli for stem cells and cancer cells using microsystems. , 2010, Integrative biology : quantitative biosciences from nano to macro.
[10] Sirio Dupont. Role of YAP/TAZ in mechanotransduction , 2011 .
[11] G. Halder,et al. Hippo signaling: growth control and beyond , 2011, Development.
[12] Jinfu Wang,et al. Mechanisms for osteogenic differentiation of human mesenchymal stem cells induced by fluid shear stress , 2010, Biomechanics and modeling in mechanobiology.
[13] Christopher R Jacobs,et al. Mechanically induced osteogenic differentiation – the role of RhoA, ROCKII and cytoskeletal dynamics , 2009, Journal of Cell Science.
[14] B. Wang,et al. The TEAD/TEF family of transcription factor Scalloped mediates Hippo signaling in organ size control. , 2008, Developmental cell.
[15] Melody A Swartz,et al. A driving force for change: interstitial flow as a morphoregulator. , 2007, Trends in cell biology.
[16] R. Nerem,et al. Fluid-induced shear stress stimulates chondrocyte proliferation partially mediated via TGF-beta1. , 2002, Tissue engineering.
[17] Takashi Ushida,et al. The effect of substrate microtopography on focal adhesion maturation and actin organization via the RhoA/ROCK pathway. , 2011, Biomaterials.
[18] R. Müller,et al. Effect of matrix elasticity on the maintenance of the chondrogenic phenotype. , 2010, Tissue engineering. Part A.
[19] Jindan Yu,et al. Cell detachment activates the Hippo pathway via cytoskeleton reorganization to induce anoikis. , 2012, Genes & development.
[20] Thomas Benjamin,et al. TAZ, a Transcriptional Modulator of Mesenchymal Stem Cell Differentiation , 2005, Science.
[21] T. Okano,et al. Hippo pathway regulation by cell morphology and stress fibers , 2011, Development.
[22] T. Huh,et al. Maintenance of Differentiated Phenotype of Articular Chondrocytes by Protein Kinase C and Extracellular Signal-regulated Protein Kinase* , 2002, The Journal of Biological Chemistry.
[23] Henrik Bruus,et al. Acoustofluidics 1: Governing equations in microfluidics. , 2011, Lab on a chip.
[24] K. Lau,et al. Fluid flow shear stress stimulates human osteoblast proliferation and differentiation through multiple interacting and competing signal transduction pathways. , 2003, Bone.
[25] D. Beebe,et al. Physics and applications of microfluidics in biology. , 2002, Annual review of biomedical engineering.
[26] Christopher S. Chen,et al. Cell shape, cytoskeletal tension, and RhoA regulate stem cell lineage commitment. , 2004, Developmental cell.
[27] M. Sheetz,et al. Local force and geometry sensing regulate cell functions , 2006, Nature Reviews Molecular Cell Biology.
[28] Joachim Kohn,et al. Cytoskeleton-based forecasting of stem cell lineage fates , 2009, Proceedings of the National Academy of Sciences.
[29] Jan Lammerding,et al. Mechanotransduction gone awry , 2009, Nature Reviews Molecular Cell Biology.
[30] F. Guilak,et al. Control of stem cell fate by physical interactions with the extracellular matrix. , 2009, Cell stem cell.
[31] T. Alliston,et al. ECM stiffness primes the TGFβ pathway to promote chondrocyte differentiation , 2012, Molecular biology of the cell.
[32] N. Kawazoe,et al. The balance of osteogenic and adipogenic differentiation in human mesenchymal stem cells by matrices that mimic stepwise tissue development. , 2012, Biomaterials.
[33] G. Whitesides,et al. Fabrication of microfluidic systems in poly(dimethylsiloxane) , 2000, Electrophoresis.
[34] X. Varelas,et al. Stem cell regulation by the Hippo pathway. , 2013, Biochimica et biophysica acta.
[35] Ebrahim Ghafar-Zadeh,et al. Engineered approaches to the stem cell microenvironment for cardiac tissue regeneration. , 2011, Lab on a chip.
[36] Francis Berenbaum,et al. Primary culture and phenotyping of murine chondrocytes , 2008, Nature Protocols.
[37] Kangsun Lee,et al. Design of pressure-driven microfluidic networks using electric circuit analogy. , 2012, Lab on a chip.
[38] H. Donahue,et al. MAP kinase and calcium signaling mediate fluid flow-induced human mesenchymal stem cell proliferation. , 2006, American journal of physiology. Cell physiology.
[39] Donald E Ingber,et al. Cytoskeletal control of growth and cell fate switching. , 2009, Current opinion in cell biology.
[40] M. Swartz,et al. Interstitial flow and its effects in soft tissues. , 2007, Annual review of biomedical engineering.
[41] E. Nishida,et al. A molecular mechanism that links Hippo signalling to the inhibition of Wnt/β‐catenin signalling , 2012, The EMBO journal.
[42] Yu Sun,et al. (Micro)managing the mechanical microenvironment. , 2011, Integrative biology : quantitative biosciences from nano to macro.
[43] Robert C. Thompson,et al. Negative regulation of Yap during neuronal differentiation. , 2012, Developmental biology.
[44] N. Lee,et al. Prolonged Application of High Fluid Shear to Chondrocytes Recapitulates Gene Expression Profiles Associated with Osteoarthritis , 2010, PloS one.
[45] N. Lee,et al. Divergent responses of chondrocytes and endothelial cells to shear stress: cross-talk among COX-2, the phase 2 response, and apoptosis. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[46] Paolo P. Provenzano,et al. Mechanical signaling through the cytoskeleton regulates cell proliferation by coordinated focal adhesion and Rho GTPase signaling , 2011, Journal of Cell Science.