1.
A biodegradable hydrogel system containing curcumin encapsulated in micelles for cutaneous wound healing
by Gong, Changyang
Biomaterials, September 2013, Vol.34(27), pp.6377-6387

2.
Immune-protected xenogeneic bioartificial livers with liver-specific microarchitecture and hydrogel-encapsulated cells
by No, Da Yoon
Biomaterials, October 2014, Vol.35(32), pp.8983-8991

3.
Hyaluronic acid-serum hydrogels rapidly restore metabolism of encapsulated stem cells and promote engraftment
by Chan, Angel T
Biomaterials, December 2015, Vol.73, pp.1-11

4.
The effect of desulfation of chondroitin sulfate on interactions with positively charged growth factors and upregulation of cartilaginous markers in encapsulated MSCs
by Lim, Jeremy J
Biomaterials, July 2013, Vol.34(21), pp.5007-5018

5.
Neural stem cells encapsulated in a functionalized self-assembling peptide hydrogel for brain tissue engineering
by Cheng, Tzu-Yun
Biomaterials, March 2013, Vol.34(8), pp.2005-2016

6.
Enhanced immunostimulatory effects of DNA-encapsulated peptide hydrogels
by Medina, Scott H
Biomaterials, June 2015, Vol.53, pp.545-553

7.
Magnetization transfer contrast MRI for non-invasive assessment of innate and adaptive immune responses against alginate-encapsulated cells
by Chan, Kannie W.Y
Biomaterials, September 2014, Vol.35(27), pp.7811-7818

8.
Efficient differentiation of stem cells encapsulated in a cytocompatible phospholipid polymer hydrogel with tunable physical properties
by Oda, Haruka
Biomaterials, July 2015, Vol.56, pp.86-91

9.

10.
Temperature responsive chemical crosslinkable UV pretreated hydrogel for application to injectable tissue regeneration system via differentiations of encapsulated hMSCs
by Kim, Young-Min
Biomaterials, January 2017, Vol.112, pp.248-256

11.
Poly(lactic-co-glycolic) acid microspheres encapsulated in Pluronic F-127 prolong hirudin delivery and improve functional recovery from a demyelination lesion
by Sellers, Drew L
Biomaterials, October 2014, Vol.35(31), pp.8895-8902

12.
Cartilage repair using hyaluronan hydrogel-encapsulated human embryonic stem cell-derived chondrogenic cells
by Toh, Wei Seong
Biomaterials, 2010, Vol.31(27), pp.6968-6980

13.
A paradigm for peptide vaccine delivery using viral epitopes encapsulated in degradable polymer hydrogel capsules
by Chong, Siow-Feng
Biomaterials, 2009, Vol.30(28), pp.5178-5186

14.
The effects of cell–matrix interactions on encapsulated β-cell function within hydrogels functionalized with matrix-derived adhesive peptides
by Weber, Laney M
Biomaterials, 2007, Vol.28(19), pp.3004-3011

15.
Effect of construct properties on encapsulated chondrocyte expression of insulin-like growth factor-1
by Yoon, Diana M
Biomaterials, 2007, Vol.28(2), pp.299-306

16.
The influence of hydrogel modulus on the proliferation and differentiation of encapsulated neural stem cells
by Banerjee, Akhilesh
Biomaterials, September 2009, Vol.30(27), pp.4695-4699

17.
2014

18.
Physical properties of alginate hydrogels and their effects on in vitro follicle development
by West, Erin R
Biomaterials, 2007, Vol.28(30), pp.4439-4448

19.
Immunomodulation by mesenchymal stem cells combats the foreign body response to cell-laden synthetic hydrogels
by Swartzlander, Mark D
Biomaterials, February 2015, Vol.41, pp.79-88

20.
Chondrogenesis of mesenchymal stem cells and dedifferentiated chondrocytes by transfection with SOX Trio genes
by Yang, Han Na
Biomaterials, October 2011, Vol.32(30), pp.7695-7704
