The liquid overlay technique is the key to formation of co-culture spheroids consisting of primary osteoblasts, fibroblasts and endothelial cells.
暂无分享,去创建一个
Tim Pohlemann | G. Wennemuth | T. Pohlemann | Wolfgang Metzger | Daniela Sossong | Annick Bächle | Norbert Pütz | Gunther Wennemuth | Martin Oberringer | W. Metzger | D. Sossong | N. Pütz | M. Oberringer | A. Bächle
[1] L. Kunz-Schughart,et al. Multicellular tumor spheroids: an underestimated tool is catching up again. , 2010, Journal of biotechnology.
[2] Brigitte Vollmar,et al. Inosculation: connecting the life-sustaining pipelines. , 2009, Tissue engineering. Part B, Reviews.
[3] C. Kirkpatrick,et al. [In vitro trials with single and co-cultures of osteoblasts and endothelial cells : evaluation of new biomaterials for bone reconstruction and regeneration]. , 2009, Der Orthopade.
[4] C. Brochhausen,et al. Bewertung von neuartigen Biomaterialien zum Zweck der Knochenrekonstruktion und -regeneration , 2009, Der Orthopäde.
[5] A. Hess,et al. Paracrine effect of transplanted rib chondrocyte spheroids supports formation of secondary cartilage repair tissue , 2009, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[6] B. Schmidt-Rohlfing,et al. [Tissue engineering of bone tissue. Principles and clinical applications]. , 2009, Der Unfallchirurg.
[7] H. Pape,et al. Tissue Engineering von Knochengewebe , 2009, Der Unfallchirurg.
[8] Juergen Friedrich,et al. Spheroid-based drug screen: considerations and practical approach , 2009, Nature Protocols.
[9] Holger Weber,et al. Spheroid-based engineering of a human vasculature in mice , 2008, Nature Methods.
[10] T. Pohlemann,et al. In vitro wounding: effects of hypoxia and transforming growth factor β1 on proliferation, migration and myofibroblastic differentiation in an endothelial cell-fibroblast co-culture model , 2008, Journal of Molecular Histology.
[11] Clemens A van Blitterswijk,et al. Co‐culture in cartilage tissue engineering , 2007, Journal of tissue engineering and regenerative medicine.
[12] W. Aird. Phenotypic Heterogeneity of the Endothelium: II. Representative Vascular Beds , 2007, Circulation research.
[13] William C. Aird,et al. Phenotypic Heterogeneity of the Endothelium: I. Structure, Function, and Mechanisms , 2007, Circulation research.
[14] Juergen Friedrich,et al. Experimental anti-tumor therapy in 3-D: Spheroids – old hat or new challenge? , 2007, International journal of radiation biology.
[15] Nicholas E. Timmins,et al. Generation of multicellular tumor spheroids by the hanging-drop method. , 2007, Methods in molecular medicine.
[16] Y. Verma,et al. Imaging growth dynamics of tumour spheroids using optical coherence tomography , 2007, Biotechnology Letters.
[17] A. Ivascu,et al. Rapid Generation of Single-Tumor Spheroids for High-Throughput Cell Function and Toxicity Analysis , 2006, Journal of biomolecular screening.
[18] Ivan Martin,et al. Angiogenesis in tissue engineering: breathing life into constructed tissue substitutes. , 2006, Tissue engineering.
[19] Denys N Wheatley,et al. Potential of fibroblasts to regulate the formation of three-dimensional vessel-like structures from endothelial cells in vitro. , 2006, American journal of physiology. Cell physiology.
[20] Andreas Stahl,et al. Endothelial progenitor cell sprouting in spheroid cultures is resistant to inhibition by osteoblasts: A model for bone replacement grafts , 2005, FEBS letters.
[21] Ivan Martin,et al. Three‐dimensional culture of melanoma cells profoundly affects gene expression profile: A high density oligonucleotide array study , 2005, Journal of cellular physiology.
[22] Hagen Schmal,et al. Development and Characterization of a Spheroidal Coculture Model of Endothelial Cells and Fibroblasts for Improving Angiogenesis in Tissue Engineering , 2005, Cells Tissues Organs.
[23] Lucie Germain,et al. Inosculation of Tissue‐Engineered Capillaries with the Host's Vasculature in a Reconstructed Skin Transplanted on Mice , 2005, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[24] G. Müller-Berghaus,et al. Die Bedeutung des Endothels der Gefäßwand für die Aufrechterhaltung der Hämostase , 1985, Klinische Wochenschrift.
[25] U Kneser,et al. Modulation of in vitro angiogenesis in a three-dimensional spheroidal coculture model for bone tissue engineering. , 2004, Tissue engineering.
[26] Lars Nielsen,et al. Hanging-drop multicellular spheroids as a model of tumour angiogenesis , 2004, Angiogenesis.
[27] Martin Fussenegger,et al. Microscale tissue engineering using gravity-enforced cell assembly. , 2004, Trends in biotechnology.
[28] Denys N. Wheatley,et al. An in vitro model of angiogenesis: Basic features , 2004, Angiogenesis.
[29] C. Lewis,et al. Comparison of three in vitro human ‘angiogenesis’ assays with capillaries formed in vivo , 2004, Angiogenesis.
[30] Martin Fussenegger,et al. Method for generation of homogeneous multicellular tumor spheroids applicable to a wide variety of cell types. , 2003, Biotechnology and bioengineering.
[31] H. Augustin,et al. Blood vessel maturation in a 3‐dimensional spheroidal coculture model: direct contact with smooth muscle cells regulates endothelial cell quiescence and abrogates VEGF responsiveness , 2001, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[32] P. Carmeliet. Mechanisms of angiogenesis and arteriogenesis , 2000, Nature Medicine.
[33] H. Augustin,et al. Tensional forces in fibrillar extracellular matrices control directional capillary sprouting. , 1999, Journal of cell science.
[34] Maria Teresa Santini,et al. Three-Dimensional Spheroid Model in Tumor Biology , 1999, Pathobiology.
[35] Thomas Korff,et al. Integration of Endothelial Cells in Multicellular Spheroids Prevents Apoptosis and Induces Differentiation , 1998, The Journal of cell biology.
[36] M. Menger,et al. Cell surface and nuclear changes during TNF-α-induced apoptosis in WEHI 164 murine fibrosarcoma cells , 1998, Virchows Archiv.
[37] W. Risau,et al. Mechanisms of angiogenesis , 1997, Nature.
[38] J. Folkman,et al. Blood Vessel Formation: What Is Its Molecular Basis? , 1996, Cell.
[39] R. Nicosia,et al. Paracrine interactions between fibroblasts and endothelial cells in a serum-free coculture model. Modulation of angiogenesis and collagen gel contraction. , 1994, Laboratory investigation; a journal of technical methods and pathology.
[40] D. Hülser,et al. Beta-galactosidase activity in transfected Ltk- cells is differentially regulated in monolayer and in spheroid cultures. , 1993, Experimental cell research.
[41] R. Sutherland. Cell and environment interactions in tumor microregions: the multicell spheroid model. , 1988, Science.
[42] U. Delvos,et al. [Significance of the endothelium of the vascular wall for maintaining hemostasis]. , 1985, Klinische Wochenschrift.
[43] J. Yuhas,et al. A simplified method for production and growth of multicellular tumor spheroids. , 1977, Cancer research.