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Core-shell structured nanoassemblies based on β-cyclodextrin containing block copolymer and poly(β-benzyl L-aspartate) via host-guest complexationJIANXIANG ZHANG; MA, Peter X.Polymer (Guildford). 2011, Vol 52, Num 21, pp 4928-4937, issn 0032-3861, 10 p.Article

Mimicking the nanostructure of bone matrix to regenerate boneKANE, Robert; MA, Peter X.Materials today (Kidlington). 2013, Vol 16, Num 11, pp 418-423, issn 1369-7021, 6 p.Article

Microtubular architecture of biodegradable polymer scaffoldsMA, Peter X; RUIYUN ZHANG.Journal of biomedical materials research. 2001, Vol 56, Num 4, pp 469-477, issn 0021-9304Article

Biomimetic polymer/apatite composite scaffolds for mineralized tissue engineeringRUIYUN ZHANG; MA, Peter X.Macromolecular bioscience (Print). 2004, Vol 4, Num 2, pp 100-111, issn 1616-5187, 12 p.Article

Functionalized Synthetic Biodegradable Polymer Scaffolds for Tissue EngineeringXIAOHUA LIU; HOLZWARTH, Jeremy M; MA, Peter X et al.Macromolecular bioscience (Print). 2012, Vol 12, Num 7, pp 911-919, issn 1616-5187, 9 p.Article

Hydrophobic pharmaceuticals mediated self-assembly of β-cyclodextrin containing hydrophilic copolymers: Novel chemical responsive nano-vehicles for drug deliveryJIANXIANG ZHANG; ELLSWORTH, Kristin; MA, Peter X et al.Journal of controlled release. 2010, Vol 145, Num 2, pp 116-123, issn 0168-3659, 8 p.Article

Synthesis of β-Cyclodextrin Containing Copolymer via Click Chemistry and Its Self-Assembly in the Presence of Guest CompoundsJIANXIANG ZHANG; ELLSWORTH, Kristin; MA, Peter X et al.Macromolecular rapid communications. 2012, Vol 33, Num 8, pp 664-671, issn 1022-1336, 8 p.Article

Nano-Fibrous Tissue Engineering Scaffolds Capable of Growth Factor DeliveryJIANG HU; MA, Peter X.Pharmaceutical research. 2011, Vol 28, Num 6, pp 1273-1281, issn 0724-8741, 9 p.Article

Ionically crosslinked alginate hydrogels as scaffolds for tissue engineering : Part 1. Structure, gelation rate and mechanical propertiesKUO, Catherine K; MA, Peter X.Biomaterials. 2001, Vol 22, Num 6, pp 511-521, issn 0142-9612Article

Surface-grafting of phosphates onto a polymer for potential biomimetic functionalization of biomaterialsYOUNG GUN KO; MA, Peter X.Journal of colloid and interface science. 2009, Vol 330, Num 1, pp 77-83, issn 0021-9797, 7 p.Article

Biomimetic materials for tissue engineeringMA, Peter X.Advanced drug delivery reviews. 2008, Vol 60, Num 2, pp 184-198, issn 0169-409X, 15 p.Article

Non-cytotoxic conductive carboxymethyl-chitosan/aniline pentamer hydrogelsLIN ZHANG; YAN LI; LONGCHAO LI et al.Reactive & functional polymers. 2014, Vol 82, pp 81-88, issn 1381-5148, 8 p.Article

Nano-fibrous scaffold for controlled delivery of recombinant human PDGF-BBGUOBAO WEI; QIMING JIN; GIANNOBILE, William V et al.Journal of controlled release. 2006, Vol 112, Num 1, pp 103-110, issn 0168-3659, 8 p.Article

Engineering new bone tissue in vitro on highly porous poly(α-hydroxyl acids)/hydroxyapatite composite scaffoldsMA, Peter X; RUIYUN ZHANG; GUOZHI XIAO et al.Journal of biomedical materials research. 2001, Vol 54, Num 2, pp 284-293, issn 0021-9304Article

Cytocompatible injectable carboxymethyl chitosan/N-isopropylacrylamide hydrogels for localized drug deliveryLIN ZHANG; LING WANG; BAOLIN GUO et al.Carbohydrate polymers. 2014, Vol 103, pp 110-118, issn 0144-8617, 9 p.Article

Novel antibacterial nanofibrous PLLA scaffoldsKAI FENG; HONGLI SUN; BRADLEY, Mark A et al.Journal of controlled release. 2010, Vol 146, Num 3, pp 363-369, issn 0168-3659, 7 p.Article

Primary Rat Hepatocyte Culture on 3D Nanofibrous Polymer Scaffolds for Toxicology and Pharmaceutical ResearchBIERWOLF, Jeanette; LUTGEHETMANN, Marc; KAI FENG et al.Biotechnology and bioengineering. 2011, Vol 108, Num 1, pp 141-150, issn 0006-3592, 10 p.Article

Synthesis and erosion properties of PEG-containing polyanhydridesSIJIAN HOU; MCCAULEY, Laurie K; MA, Peter X et al.Macromolecular bioscience (Print). 2007, Vol 7, Num 5, pp 620-628, issn 1616-5187, 9 p.Article

Nano-fibrous scaffolding architecture selectively enhances protein adsorption contributing to cell attachmentKYUNG MI WOO; CHEN, Victor J; MA, Peter X et al.Journal of biomedical materials research. 2003, Vol 67A, Num 2, pp 531-537, issn 0021-9304, 7 p.Article

Local delivery of basic fibroblast growth factor increases both angiogenesis and engraftment of hepatocytes in tissue-engineered polymer devicesLEE, Hanmin; CUSICK, Robert A; BROWNE, Fiona et al.Transplantation. 2002, Vol 73, Num 10, pp 1589-1593, issn 0041-1337Article

Nanofiber-based delivery of bioactive agents and stem cells to bone sitesZHANPENG ZHANG; JIANG HU; MA, Peter X et al.Advanced drug delivery reviews. 2012, Vol 64, Num 12, pp 1129-1141, issn 0169-409X, 13 p.Article

Development of Channeled Nanofibrous Scaffolds for Oriented Tissue EngineeringCHENGHUI SUN; XIAOBING JIN; HOLZWARTH, Jeremy M et al.Macromolecular bioscience (Print). 2012, Vol 12, Num 6, pp 761-769, issn 1616-5187, 9 p.Article

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