Xingchen Liu
Yangzhou University
10 Papers
5 Citations
Xingchen Liu is an academic researcher from Yangzhou University. The author has contributed to research in topics: Decellularization & Chemistry. The author has an hindex of 3, co-authored 5 publications.
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Papers
Comparisons of Rabbit Bone Marrow Mesenchymal Stem Cell Isolation and Culture Methods In Vitro
Weidong Zhang,Fangbiao Zhang,Hongcan Shi,Rong-bang Tan,Shi Han,Gang Ye,Shu Pan,Fei Sun,Xingchen Liu +8 more
TL;DR: Untreated whole BM adherent cultures are best for rabbit BMSC isolation and the 4th generation of cells has the strongest proliferation capacity.
Genipin cross-linked decellularized tracheal tubular matrix for tracheal tissue engineering applications.
Fei Sun,Yuan Jiang,Yanfei Xu,Hongcan Shi,Si-Quan Zhang,Xingchen Liu,Shu Pan,Gang Ye,Weidong Zhang,Fangbiao Zhang,Chong-Hao Zhong +10 more
TL;DR: Treatment with genipin improves the mechanical properties of decellularized airway matrices without altering the pro-angiogenic properties or eliciting an in vivo inflammatory response.
Structural integrity, immunogenicity and biomechanical evaluation of rabbit decelluarized tracheal matrix
Fei Sun,Shu Pan,Hongcan Shi,Fangbiao Zhang,Weidong Zhang,Gang Ye,Xingchen Liu,Si-Quan Zhang,Chong-Hao Zhong,Xiao-Long Yuan +9 more
TL;DR: It is suggested that seven cycles of the DEM generates a bioengineered rabbit tracheal matrix that is structurally and mechanically similar to native trachea, and biomechanical tests showed that decellularization did not significantly influence the mechanical properties.
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Optimizing the bio-degradability and biocompatibility of a biogenic collagen membrane through cross-linking and zinc-doped hydroxyapatite.
You Wu,Shoucheng Chen,Pu Luo,Shudan Deng,Zhengjie Shan,Jinghan Fang,Xingchen Liu,Runheng Liu,Shiyu Wu,Xiayi Wu,Zetao Chen,Kelvin W.K. Yeung,Quan Liu,Zhuofan Chen +13 more
TL;DR: In this paper , a biogenic collagen membrane was crosslinked with glutaraldehyde-alendronate to prolong its degradation time, and the physiochemical and biological properties were enhanced by the incorporation of zinc-doped nanohydroxyapatite (nZnHA), with the native structure of collagen preserved.
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Tailoring the multiscale mechanics of tunable decellularized extracellular matrix (dECM) for wound healing through immunomodulation
Pu Luo,Ruoxuan Huang,You Wu,Xingchen Liu,Zhengjie Shan,Lei Gong,Shudan Deng,Haiwen Liu,Jinghan Fang,Shiyu Wu,Xiayi Wu,Quan Li,Zetao Chen,K. W. Yeung,Wei Qiao,Shoucheng Chen,Zhuofan Chen +16 more
TL;DR: In this article , a mechanically tunable decellularized extracellular matrix (dECM) prepared by optimizing the freeze-thaw cycles was introduced to provide new insights into the development of advanced biomaterials for wound healing.
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