New Poly[(R)‐3‐hydroxybutyrate‐co‐4‐hydroxybutyrate] (P3HB4HB)‐Based Thermogels
暂无分享,去创建一个
Xian Jun Loh | Zibiao Li | Yun-Long Wu | X. Loh | S. S. Liow | Zibiao Li | Yunlong Wu | Sing Shy Liow | Chien Yi Wee
[1] Xian Jun Loh,et al. New biodegradable thermogelling copolymers having very low gelation concentrations. , 2007, Biomacromolecules.
[2] X. Loh,et al. Synthesis of a new poly([R]-3-hydroxybutyrate) RAFT agent , 2016 .
[3] X. Loh,et al. Recent Advances of Using Hybrid Nanocarriers in Remotely Controlled Therapeutic Delivery. , 2016, Small.
[4] L. Boesel,et al. The effect of molecular weight on the material properties of biosynthesized poly(4-hydroxybutyrate). , 2014, International journal of biological macromolecules.
[5] Xian Jun Loh,et al. PHB‐Based Gels as Delivery Agents of Chemotherapeutics for the Effective Shrinkage of Tumors , 2016, Advanced healthcare materials.
[6] D. Katti,et al. Fabrication and characterization of Pluronic modified poly(hydroxybutyrate) fibers for potential wound dressing applications. , 2016, Materials science & engineering. C, Materials for biological applications.
[7] G. Wei,et al. Sustained intravitreal delivery of dexamethasone using an injectable and biodegradable thermogel. , 2015, Acta biomaterialia.
[8] X. Loh,et al. New Linear and Star-Shaped Thermogelling Poly([R]-3-hydroxybutyrate) Copolymers. , 2016, Chemistry.
[9] G. Bowlin,et al. Bioengineered silk scaffolds in 3D tissue modeling with focus on mammary tissues. , 2016, Materials science & engineering. C, Materials for biological applications.
[10] Jun Li,et al. Hydrolytic degradation and protein release studies of thermogelling polyurethane copolymers consisting of poly[(R)-3-hydroxybutyrate], poly(ethylene glycol), and poly(propylene glycol). , 2007, Biomaterials.
[11] S. Rimpelová,et al. Antibacterial properties of modified biodegradable PHB non-woven fabric. , 2016, Materials science & engineering. C, Materials for biological applications.
[12] Lin Yu,et al. Effects of Molecular Weight and Its Distribution of PEG Block on Micellization and Thermogellability of PLGA–PEG–PLGA Copolymer Aqueous Solutions , 2015 .
[13] Lin Yu,et al. Tumor regression achieved by encapsulating a moderately soluble drug into a polymeric thermogel , 2014, Scientific Reports.
[14] F. Du,et al. Chemical Synthesis of Functional Poly(4-hydroxybutyrate) with Controlled Degradation via Intramolecular Cyclization , 2013 .
[15] Guowei Wang,et al. An injectable hydrogel formed by in situ cross-linking of glycol chitosan and multi-benzaldehyde functionalized PEG analogues for cartilage tissue engineering. , 2015, Journal of materials chemistry. B.
[16] F. Moztarzadeh,et al. In vitro study of a new biodegradable nanocomposite based on poly propylene fumarate as bone glue. , 2016, Materials science & engineering. C, Materials for biological applications.
[17] Chao Chen,et al. Hollow and porous hydroxyapatite microspheres prepared with an O/W emulsion by spray freezing method. , 2016, Materials science & engineering. C, Materials for biological applications.
[18] X. Loh,et al. Water soluble polyhydroxyalkanoates: future materials for therapeutic applications. , 2015, Chemical Society reviews.
[19] Yunqi Liu,et al. In vitro hemocompatibility evaluation of poly (4-hydroxybutyrate) scaffold. , 2014, International journal of clinical and experimental medicine.
[20] F. Masood,et al. Polymeric nanoparticles for targeted drug delivery system for cancer therapy. , 2016, Materials science & engineering. C, Materials for biological applications.
[21] Yen Wei,et al. Facile synthesis of AIE-active amphiphilic polymers: Self-assembly and biological imaging applications. , 2016, Materials science & engineering. C, Materials for biological applications.
[22] A. Seifalian,et al. Advances in peripheral nervous system regenerative therapeutic strategies: A biomaterials approach. , 2016, Materials science & engineering. C, Materials for biological applications.
[23] Lei Tao,et al. Polymeric AIE-based nanoprobes for biomedical applications: recent advances and perspectives. , 2015, Nanoscale.
[24] Jun Li,et al. The in vitro hydrolysis of poly(ester urethane)s consisting of poly[(R)-3-hydroxybutyrate] and poly(ethylene glycol). , 2006, Biomaterials.
[25] Lin Yu,et al. An injectable thermogel with high radiopacity. , 2015, Chemical communications.
[26] N. Manolova,et al. Poly(3-hydroxybutyrate)/caffeic acid electrospun fibrous materials coated with polyelectrolyte complex and their antibacterial activity and in vitro antitumor effect against HeLa cells. , 2016, Materials science & engineering. C, Materials for biological applications.
[27] Cai Zhijiang,et al. Poly(hydroxybutyrate)/cellulose acetate blend nanofiber scaffolds: Preparation, characterization and cytocompatibility. , 2016, Materials science & engineering. C, Materials for biological applications.
[28] J. Żurawski,et al. In vitro biocompatibility of titanium after plasma surface alloying with boron. , 2016, Materials science & engineering. C, Materials for biological applications.
[29] Xian Jun Loh,et al. Polyhydroxyalkanoates: opening doors for a sustainable future , 2016 .
[30] Xiaoyong Zhang,et al. A magnetic self-healing hydrogel. , 2012, Chemical communications.
[31] Lin Yu,et al. Selenium-containing thermogel for controlled drug delivery by coordination competition , 2015 .
[32] B. Jeong,et al. Differentiation of tonsil-tissue-derived mesenchymal stem cells controlled by surface-functionalized microspheres in PEG-polypeptide thermogels. , 2014, Biomacromolecules.
[33] M. Öner,et al. Fabrication of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) biocomposites with reinforcement by hydroxyapatite using extrusion processing. , 2016, Materials science & engineering. C, Materials for biological applications.
[34] I. Shabani,et al. Polymer/metal nanocomposites for biomedical applications. , 2016, Materials science & engineering. C, Materials for biological applications.
[35] Lin-Ping Wu,et al. Biosynthesis and characterization of polyhydroxyalkanoate block copolymer P3HB-b-P4HB. , 2011, Biomacromolecules.
[36] B. Jeong,et al. Polypeptide thermogels as a three dimensional culture scaffold for hepatogenic differentiation of human tonsil-derived mesenchymal stem cells. , 2014, ACS Applied Materials and Interfaces.
[37] Lin Yu,et al. Controlled release of liraglutide using thermogelling polymers in treatment of diabetes , 2016, Scientific Reports.
[38] Yaling Zhang,et al. Facilely prepared inexpensive and biocompatible self-healing hydrogel: a new injectable cell therapy carrier , 2012 .
[39] W. Xu,et al. Linear-dendritic block copolymer for drug and gene delivery. , 2016, Materials science & engineering. C, Materials for biological applications.
[40] Lin Yu,et al. Thermogelling polymer-platinum(IV) conjugates for long-term delivery of cisplatin. , 2015, Biomacromolecules.
[41] Jun Li,et al. Synthesis of Novel Biodegradable Thermoresponsive Triblock Copolymers Based on Poly[(R)-3-hydroxybutyrate] and Poly(N-isopropylacrylamide) and Their Formation of Thermoresponsive Micelles , 2009 .
[42] Jun Li,et al. Novel poly(N-isopropylacrylamide)-poly[(R)-3-hydroxybutyrate]-poly(N-isopropylacrylamide) triblock copolymer surface as a culture substrate for human mesenchymal stem cells , 2009 .
[43] Jun Li,et al. Poly(ester urethane)s consisting of poly[(R)-3-hydroxybutyrate] and poly(ethylene glycol) as candidate biomaterials: characterization and mechanical property study. , 2005, Biomacromolecules.
[44] Jun Li,et al. Biodegradable thermogelling poly[(R)-3-hydroxybutyrate]-based block copolymers: micellization, gelation, and cytotoxicity and cell culture studies. , 2009, The journal of physical chemistry. B.
[45] B. Jeong,et al. Phosphorylcholine-Based Zwitterionic Biocompatible Thermogel. , 2015, Biomacromolecules.
[46] B. Jeong,et al. Nanocomposite versus Mesocomposite for Osteogenic Differentiation of Tonsil‐Derived Mesenchymal Stem Cells , 2016, Advanced healthcare materials.
[47] K. Nguyen,et al. Thermally processed polymeric microparticles for year-long delivery of dexamethasone. , 2016, Materials science & engineering. C, Materials for biological applications.
[48] Sydney Peng,et al. A cell-compatible PEO-PPO-PEO (Pluronic®)-based hydrogel stabilized through secondary structures. , 2016, Materials science & engineering. C, Materials for biological applications.
[49] Ting Wu,et al. F-127-PEI co-delivering docetaxel and TFPI-2 plasmid for nasopharyngeal cancer therapy. , 2016, Materials science & engineering. C, Materials for biological applications.
[50] Jun Li,et al. Surface coating with a thermoresponsive copolymer for the culture and non-enzymatic recovery of mouse embryonic stem cells. , 2009, Macromolecular bioscience.