Molecular self-assembly of a homopolymer: an alternative to fabricate drug-delivery platforms for cancer therapy.
暂无分享,去创建一个
Wei Huang | Xinyuan Zhu | Ping Huang | Yongfeng Zhou | Deyue Yan | Yongfeng Zhou | D. Yan | P. Huang | Wei Huang | Xinyuan Zhu | Jinyao Liu | Jinyao Liu | Yan Pang | Yan Pang
[1] M. Ornatska,et al. Nanofibers from functionalized dendritic molecules. , 2004, Angewandte Chemie.
[2] H. Ringsdorf,et al. Photoreaktionen von N‐(1‐Pyridinio)amidaten in Monoschichten und Liposomen , 1985 .
[3] H. Ringsdorf,et al. Molekulare Architektur und Funktion von polymeren orientierten Systemen – Modelle für das Studium von Organisation, Oberflächenerkennung und Dynamik bei Biomembranen , 1988 .
[4] Atsushi Harada,et al. Design of environment-sensitive supramolecular assemblies for intracellular drug delivery: polymeric micelles that are responsive to intracellular pH change. , 2003, Angewandte Chemie.
[5] S. Stupp,et al. Supramolecular Materials: Self-Organized Nanostructures , 1997, Science.
[6] Mingzu Zhang,et al. Poly(dimethylamino)ethyl methacrylate for use as a surfactant in the miniemulsion polymerization of styrene. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[7] T. Okano,et al. Micelles based on AB block copolymers of poly(ethylene oxide) and poly(.beta.-benzyl L-aspartate) , 1993 .
[8] Yongfeng Zhou,et al. Self‐Assembly of Hyperbranched Polymers and Its Biomedical Applications , 2010, Advanced materials.
[9] S. Jenekhe,et al. Self-assembled aggregates of rod-coil block copolymers and their solubilization and encapsulation of fullerenes , 1998, Science.
[10] Mitchell A. Winnik,et al. Cylindrical Block Copolymer Micelles and Co-Micelles of Controlled Length and Architecture , 2007, Science.
[11] J. Lehn,et al. Molecular recognition directed self‐assembly of supramolecular liquid crystalline polymers from complementary chiral components , 1990 .
[12] V. Rotello,et al. Glutathione-mediated delivery and release using monolayer protected nanoparticle carriers. , 2006, Journal of the American Chemical Society.
[13] Takashi Kato. Self-Assembly of Phase-Segregated Liquid Crystal Structures , 2002, Science.
[14] Yongfeng Zhou,et al. Supramolecular Self-Assembly of Macroscopic Tubes , 2004, Science.
[15] S. Hahn,et al. Glutathione depletion by L-buthionine sulfoximine antagonizes taxol cytotoxicity. , 1993, Cancer research.
[16] E. W. Meijer,et al. Polystyrene-Dendrimer Amphiphilic Block Copolymers with a Generation-Dependent Aggregation , 1995, Science.
[17] J. Rodríguez-Hernández,et al. Toward 'smart' nano-objects by self-assembly of block copolymers in solution , 2005 .
[18] Y. Nagasaki,et al. Endosomal release and intracellular delivery of anticancer drugs using pH-sensitive PEGylated nanogels , 2007 .
[19] Vladimir V. Tsukruk,et al. The architectures and surface behavior of highly branched molecules , 2008 .
[20] Lifeng Zhang,et al. Formation of crew‐cut aggregates of various morphologies from amphiphilic block copolymers in solution , 1998 .
[21] M. Ornatska,et al. Supramolecular Multiscale Fibers through One‐Dimensional Assembly of Dendritic Molecules , 2004 .
[22] Lifeng Zhang,et al. Multiple Morphologies of "Crew-Cut" Aggregates of Polystyrene-b-poly(acrylic acid) Block Copolymers , 1995, Science.
[23] Sheng Zhong,et al. Block Copolymer Assembly via Kinetic Control , 2007, Science.
[24] Frank S Bates,et al. On the Origins of Morphological Complexity in Block Copolymer Surfactants , 2003, Science.
[25] Dennis E. Discher,et al. Polymer vesicles : Materials science: Soft surfaces , 2002 .
[26] D. Hammer,et al. Polymersomes: tough vesicles made from diblock copolymers. , 1999, Science.
[27] E. W. Meijer,et al. Reversible polymers formed from self-complementary monomers using quadruple hydrogen bonding. , 1997, Science.
[28] Yongfeng Zhou,et al. Synthesis of Hyperbranched Polyphosphates by Self-Condensing Ring-Opening Polymerization of HEEP without Catalyst , 2009 .
[29] George M. Whitesides,et al. Beyond molecules: Self-assembly of mesoscopic and macroscopic components , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[30] E. W. Meijer,et al. Amphiphilic dendrimers as building blocks in supramolecular assemblies , 1998 .
[31] Marcelo Calderón,et al. Dendritic Polyglycerols for Biomedical Applications , 2010, Advanced materials.
[32] Daoyong Chen,et al. Strategies for constructing polymeric micelles and hollow spheres in solution via specific intermolecular interactions. , 2005, Accounts of chemical research.
[33] Yongfeng Zhou,et al. Supramolecular self-assembly of amphiphilic hyperbranched polymers at all scales and dimensions: progress, characteristics and perspectives. , 2009, Chemical communications.
[34] H. Ringsdorf,et al. Photoreactions of N‐(1‐Pyridinio)amidates in Monolayers and Liposomes , 1985 .
[35] Yongfeng Zhou,et al. Controlled Topological Structure of Copolyphosphates by Adjusting Pendant Groups of Cyclic Phosphate Monomers , 2010 .
[36] H. Ringsdorf,et al. Molecular Architecture and Function of Polymeric Oriented Systems: Models for the Study of Organization, Surface Recognition, and Dynamics of Biomembranes , 1988 .
[37] F. Bates,et al. Giant wormlike rubber micelles , 1999, Science.
[38] Kui Yu,et al. Ion-Induced Morphological Changes in “Crew-Cut” Aggregates of Amphiphilic Block Copolymers , 1996, Science.
[39] Sung Eun Kim,et al. Disulfide-cross-linked PEG-poly(amino acid)s copolymer micelles for glutathione-mediated intracellular drug delivery. , 2008, Chemical communications.
[40] M. Ornatska,et al. Assembling of amphiphilic highly branched molecules in supramolecular nanofibers. , 2004, Journal of the American Chemical Society.
[41] E. W. Meijer,et al. Helical self-assembled polymers from cooperative stacking of hydrogen-bonded pairs , 2000, Nature.