A. Cevik Tufan
Pamukkale University
33 Papers
314 Citations
A. Cevik Tufan is an academic researcher from Pamukkale University. The author has contributed to research in topics: Mesenchymal stem cell & Chondrogenesis. The author has an hindex of 15, co-authored 26 publications. Previous affiliations of A. Cevik Tufan include Yıldırım Beyazıt University & Thomas Jefferson University.
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Papers
Shell-less culture of the chick embryo as a model system in the study of developmental neurobiology
A. Cevik Tufan,Ilgaz Akdogan,Esat Adiguzel +2 more
- 01 Jan 2004
TL;DR: The shell-less culture system of the chick embryo is demonstrated as a potential experimental model in the field of developmental neurobiology and has the potential to enhance knowledge on molecular and developmental neuro biology at both basic and clinical science level.
Wnt regulation of limb mesenchymal chondrogenesis is accompanied by altered N-cadherin-related functions
A. Cevik Tufan,Rocky S. Tuan +1 more
TL;DR: The effects of RCAS retroviral‐mediated misexpression of Wnt‐5a and Wnt-7a, two Wnt genes expressed during normal limb development, on chondrogenesis in high‐density micromass cultures of chick limb bud mesenchymal cells are analyzed to suggest functional diversity within the Wnt family.
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A Concise Review on the Use of Mesenchymal Stem Cells in Cell Sheet-Based Tissue Engineering with Special Emphasis on Bone Tissue Regeneration
TL;DR: This review will discuss the use of mesenchymal stem cells (MSCs) in cell sheet-based tissue engineering and the importance of osteogenic induction of these MSC sheets in orthopaedic applications will be demonstrated.
AP-1 transcription factor complex is a target of signals from both WNT-7a and N-cadherin-dependent cell-cell adhesion complex during the regulation of limb mesenchymal chondrogenesis
TL;DR: The results suggest that at least a part of the chondro-inhibitory effect of Wnt-7a misexpression may involve AP-1 transcription factor stimulation.
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Long-term in vitro analysis of limb cartilage development: involvement of Wnt signaling.
TL;DR: The findings implicate functional role(s) for Wnt signaling throughout embryonic cartilage development, and show the utility of the long‐term in vitro limb mesenchyme culture system for such studies.
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