Full Name
Chan Kwan-Ho,Casey
Variants
CHAN, KWAN-HO
Chan, C.K.C.
Chan, C.
Chan, C.K.H.
Chan, K.C.
Chan, C.K.
 
Main Affiliation
 
 

Refined By:
Author:  Chan, C.K.
Type:  Article
Author:  Liao, S.

Results 1-20 of 22 (Search time: 0.01 seconds).

Issue DateTitleAuthor(s)
1Feb-2012Biomimetic surface modification of titanium surfaces for early cell capture by advanced electrospinningRavichandran, R.; Ng, C.C.H. ; Liao, S.; Pliszka, D. ; Raghunath, M. ; Ramakrishna, S. ; Chan, C.K. 
21-Aug-2008Degradation of electrospun nanofiber scaffold by short wave length ultraviolet radiation treatment and its potential applications in tissue engineeringYixiang, D. ; Yong, T. ; Liao, S. ; Chan, C.K. ; Ramakrishna, S. 
3Jul-2009Differentiation of bone marrow-derived mesenchymal stem cells into multi-layered epidermis-like cells in 3D organotypic cocultureMa, K.; Laco, F.; Ramakrishna, S. ; Liao, S. ; Chan, C.K. 
41-Jan-2010Distinctive degradation behaviors of electrospun polyglycolide, poly(dl-Lactide-co-Glycolide), and poly(l-Lactide-co-E-Caprolactone) nanofibers cultured with/without porcine smooth muscle cellsDong, Y. ; Yong, T.; Liao, S. ; Chan, C.K. ; Stevens, M.M.; Ramakrishna, S. 
52009Early adhesive behavior of bone-marrow-derived mesenchymal stem cells on collagen electrospun fibersChan, C.K. ; Liao, S. ; Lareu, R.R.; Raghunath, M. ; Li, B.; Ramakrishna, S. ; Larrick, J.W.
6Jan-2011Effects of mechanical stimulation in osteogenic differentiation of bone marrow-derived mesenchymal stem cells on aligned nanofibrous scaffoldsNgiam, M.; Liao, S.; Ong Jun Jie, T.; Xiaodi Sui; Yixiang Dong; Ramakrishna, S. ; Chan, C.K. 
71-May-2011Effects of nanofiber/stem cell composite on wound healing in acute full-thickness skin woundsMa, K.; Liao, S. ; He, L. ; Lu, J.; Ramakrishna, S. ; Chan, C.K. 
8May-2008Electrospun nanofiber scaffolds for rapid and rich capture of bone marrow-derived hematopoietic stem cellsMa, K.; Chan, C.K. ; Liao, S. ; Hwang, W.Y.K.; Feng, Q.; Ramakrishna, S. 
92012Electrospun poly(L-lactic acid) nanofibres loaded with dexamethasone to induce osteogenic differentiation of human mesenchymal stem cellsNguyen, L.T.H.; Liao, S.; Chan, C.K. ; Ramakrishna, S. 
10Oct-2012Enhanced osteogenic differentiation with 3D electrospun nanofibrous scaffoldsNguyen, L.T.H.; Liao, S.; Chan, C.K. ; Ramakrishna, S. 
11Jan-2011Fabrication and characterization of hierarchically organized nanoparticle-reinforced nanofibrous composite scaffoldsTeo, W.E.; Liao, S.; Chan, C. ; Ramakrishna, S. 
121-Mar-2009Fabrication of mineralized polymeric nanofibrous composites for bone graft materialsNgiam, M.; Liao, S. ; Patil, A.J.; Cheng, Z. ; Yang, F.; Gubler, M.J.; Ramakrishna, S. ; Chan, C.K. 
132009Fabrication of nano-hydroxyapatite/collagen/osteonectin composites for bone graft applicationsLiao, S. ; Ngiam, M.; Chan, C.K. ; Ramakrishna, S. 
14Mar-2010In vitro and in vivo behaviors of the three-layered nanocarbonated hydroxyapatite/collagen/PLGA compositeLiao, S. ; Wei, W.; Yokoyama, A.; Yuhue, Z.; Watari, F.; Ramakrishna, S. ; Chan, C.K. 
156-Sep-2008Long-term viability of coronary artery smooth muscle cells on poly(L-lactide-co-ε-caprolactone) nanofibrous scaffold indicates its potential for blood vessel tissue engineeringDong, Y. ; Yong, T. ; Liao, S. ; Chan, C.K. ; Ramakrishna, S. 
16Jul-2007Morphological effects of variant carbonates in biomimetic hydroxyapatiteLiao, S. ; Watari, F.; Xu, G.; Ngiam, M.; Ramakrishna, S. ; Chan, C.K. 
17Jul-2008Processing nanoengineered scaffolds through electrospinning and mineralization suitable for biomimetic bone tissue engineeringLiao, S. ; Murugan, R.; Chan, C.K. ; Ramakrishna, S. 
18Sep-2007Self-assembly of nano-hydroxyapatite on multi-walled carbon nanotubesLiao, S. ; Xu, G.; Wang, W.; Watari, F.; Cui, F.; Ramakrishna, S. ; Chan, C.K. 
19Aug-2010Synergistic effects of electrospun PLLA fiber dimension and pattern on neonatal mouse cerebellum C17.2 stem cellsHe, L. ; Liao, S. ; Quan, D.; Ma, K.; Chan, C. ; Ramakrishna, S. ; Lu, J.
202009The fabrication of nano-hydroxyapatite on PLGA and PLGA/collagen nanofibrous composite scaffolds and their effects in osteoblastic behavior for bone tissue engineeringNgiam, M.; Liao, S. ; Cheng, Z. ; Chan, C.K. ; Ramakrishna, S. ; Patil, A.J.