1. A strategy for the construction of controlled, three-dimensional, multilayered, tissue-like structures, Gong, P.Y., Zheng, W.F., Huang, Z., Zhang, W.*, Xiao, D.*, Jiang X.Y.*, Adv Funct Mater, 23(1), 42-46 (2013).
2. A microfluidic flow-stretch chip for investigating blood vessel biomechanics, Zheng, W.F., Jiang, B., Wang, D., Zhang, W., Wang Z., Jiang, X.Y.*, Lab Chip, 12(18), 3441-3450 (2012).
3. A strategy for depositing different types of cells in three dimensions to mimic tubular structures in tissues. Yuan, B., Jin, Y., Sun, Y., Wang, D., Sun, J.S., Wang, Z., Zhang, W.*, Jiang, X.Y.*, Adv Mater, 24(7), 890-896 (2012).
4. Electrospun fiber template for replica molding of micro-topographical neural growth guidance. Liu, Y.Y., Sun, Y., Yan, H., Liu, X.Y., Zhang, W.*, Wang, Z., Jiang, X.Y.*, Small, 8(5), 676-681 (2012).
5. The molecular mechanism of action of bactericidal gold nanoparticles on Escherichia coli. Cui, Y., Zhao, Y.Y., Tian, Y., Zhang, W.*, Lü, X.Y.*, Jiang, X.Y.*, Biomaterials, 33(7), 2327-2333 (2012).
6. A microchip-based model wound with multiple types of cells. Xie, Y.Y., Zhang, W.*, Wang, L.M., Sun, K., Sun, Y., Jiang, X.Y.*, Lab Chip, 11(17), 2819-2822 (2011).
7. A general approach for patterning multiple types of cells using holey PDMS membranes and microfluidic channels, Yuan B., Li Y., Wang D., Xie Y.Y., Liu Y., Cui L., Tu F.Q., Li H., Ji H., Zhang W.*, Jiang X.Y.*, Adv Funct Mater, 20(21), 3715-3720 (2010).
8. A simple design in PDMS-based microfluidic channels that rids bubbles in long-term on-chip culture of mammalian cells, Zheng, W.F., Wang, Z., Zhang, W.*, Jiang, X.Y.*, Lab Chip, 10(21), 2906-2910 (2010).