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近年来,原位形成的水凝胶体系已有诸多报道,通过溶剂交换、紫外线照射、离子浓度、pH值和温度的改变可原位诱导凝胶化转变.温敏性凝胶体系通常具有微妙的疏水-亲水两亲性平衡,在不需要有机溶剂、偶联剂和其它外界刺激的条件下,仅通过改变环境温度即可触发凝胶化相转变.生物可降解的温敏性水凝胶具有广阔的应用前景,既能作为药物缓释与输送的载体,也可用作组织再生的支架等生物医学材料.文中根据凝胶基体共聚物拓扑结构的不同,详细综述了近年生物可降解温敏性物理交联水凝胶的研究进展,及其化学物理结构与凝胶化行为、凝胶特性之间的内在联系.

参考文献

[1] MIN HEE PARK;MIN KYUNG JOO;BO GYU CHOI .Biodegradable Thermogels[J].Accounts of Chemical Research,2012(3):424-433.
[2] Zibiao Li;Zhongxing Zhang;Kerb Li Liu .Biodegradable Hyperbranched Amphiphilic Polyurethane Multiblock Copolymers Consisting of Poly(propylene glycol), Poly(ethylene glycol), and Polycaprolactone as in Situ Thermogels[J].Biomacromolecules,2012(12):3977-3989.
[3] Daniel G. Abebe;Tomoko Fujiwara .Controlled Thermoresponsive Hydrogels by Stereocomplexed PLA-PEG-PLA Prepared via Hybrid Micelles of Pre-Mixed Copolymers with Different PEG Lengths[J].Biomacromolecules,2012(6):1828-1836.
[4] Lin Yu;Zheng Zhang;Huan Zhang .Mixing a Sol and a Precipitate of Block Copolymers with Different Block Ratios Leads to an Injectable Hydrogel[J].Biomacromolecules,2009(6):1547-1553.
[5] Hyo Jung Moon;Du Young Ko;Min Hee Park .Temperature-responsive compounds as in situ gelling biomedical materials[J].Chemical Society Reviews,2012(14):4860-4883.
[6] Nguyen, M.K.;Lee, D.S. .Injectable biodegradable hydrogels[J].Macromolecular bioscience,2010(6):563-579.
[7] Jeong,B.;Kim,S.W.;Bae,Y.H. .Thermosensitive sol-gel reversible hydrogels[J].Advanced drug delivery reviews,2012(Suppl.):154-162.
[8] Overstreet, D.J.;Dutta, D.;Stabenfeldt, S.E.;Vernon, B.L. .Injectable hydrogels[J].Journal of Polymer Science, Part B. Polymer Physics,2012(13):881-903.
[9] Zhu J .Bioactive modification of poly(ethylene glycol) hydrogels for tissue engineering.[J].Biomaterials,2010(17):4639-4656.
[10] Lu CF;Guo SR;Zhang YQ;Yin M .Synthesis and aggregation behavior of four types of different shaped PCL-PEG block copolymers[J].Polymer international,2006(6):694-700.
[11] Kim MS;Seo KS;Khang G;Cho SH;Lee HB .Preparation of methoxy poly(ethylene glycol)/polyester diblock copolymers and examination of the gel-to-sol transition[J].Journal of Polymer Science, Part A. Polymer Chemistry,2004(22):5784-5793.
[12] Li F;Li SM;El Ghzaoui A;Nouailhas H;Zhuo RX .Synthesis and gelation properties of PEG-PLA-PEG triblock copolymers obtained by coupling monohydroxylated PEG-PLA with adipoyl chloride[J].Langmuir: The ACS Journal of Surfaces and Colloids,2007(5):2778-2783.
[13] Moon Jeong Park;Kookheon Char .Gelation of PEO-PLGA-PEO Triblock Copolymers Induced by Macroscopic Phase Separation[J].Langmuir: The ACS Journal of Surfaces and Colloids,2004(6):2456-2465.
[14] Lin Yu;Jiandong Ding .Injectable hydrogels as unique biomedical materials[J].Chemical Society Reviews,2008(8):1473-1481.
[15] Gong C;Shi S;Dong P;Kan B;Gou M;Wang X;Li X;Luo F;Zhao X;Wei Y;Qian Z .Synthesis and characterization of PEG-PCL-PEG thermosensitive hydrogel.[J].International Journal of Pharmaceutics,2009(1/2):89-99.
[16] Yang ZG;Ding JD .A thermosensitive and biodegradable physical gel with chemically crosslinked nanogels as the building block[J].Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation,2008(9):751-756.
[17] Lin Yu;Huan Zhang;Jiandong Ding .A Subtle End-Group Effect on Macroscopic Physical Gelation of Triblock Copolymer Aqueous Solutions[J].Angewandte Chemie,2006(14):2232-2235.
[18] Pengju Pan;Yoshio Inoue .Polymorphism and isomorphism in biodegradable polyesters[J].Progress in Polymer Science,2009(7):605-640.
[19] Jisun Lee;You Han Bae;Youn Soo Sohn;Byeongmoon Jeong .Thermogelling Aqueous Solutions of Alternating Multiblock Copolymers of Poly(L-lactic acid) and Poly(ethylene glycol)[J].Biomacromolecules,2006(6):1729-1734.
[20] Joo MK;Sohn YS;Jeong B .Stereoisomeric effect on reverse thermal gelation of poly(ethylene glycol)/poly(lactide) multiblock copolymer[J].Macromolecules,2007(14):5111-5115.
[21] Jeong B.;Birnbaum JC.;Won YY.;Gutowska A.;Kibbey MR. .Thermogelling biodegradable polymers with hydrophilic backbones: PEG-g-PLGA[J].Macromolecules,2000(22):8317-8322.
[22] Byeongmoon Jeong;Li-Qiong Wang;Anna Gutowska .Biodegradable thermoreversible gelling PLGA-g-PEG copolymers[J].Chemical communications,2001(16):1516-1517.
[23] Cho, J.-K.;Lee, S.M.;Kim, C.W.;Song, S.-C. .Synthesis and characterization of biodegradable thermosensitive neutral and acidic poly(organophosphazene) gels bearing carboxylic acid group[J].Journal of Polymer Research,2011(4):701-713.
[24] Choi YR.;Kim SW.;Bae YH. .Star-shaped poly(ether-ester) block copolymers: Synthesis, characterization, and their physical properties[J].Macromolecules,1998(25):8766-8774.
[25] Calucci, L.;Forte, C.;Buwalda, S.J.;Dijkstra, P.J.;Feijen, J. .Self-aggregation of gel forming PEG-PLA star block copolymers in water[J].Langmuir: The ACS Journal of Surfaces and Colloids,2010(15):12890-12896.
[26] Hiemstra C;Zhong ZY;Dijkstra P;Jan FJ .Stereocomplex mediated gelation of PEG-(PLA)(2) and PEG-(PLA)(8) block copolymers[J].Macromolecular symposia,2005(0):119-131.
[27] Nagahama K;Fujiura K;Enami S;Ouchi T;Ohya Y .Irreversible temperature-responsive formation of high-strength hydrogel from an enantiomeric mixture of starburst triblock copolymers consisting of 8-arm PEG and PLLA or PDLA[J].Journal of Polymer Science, Part A. Polymer Chemistry,2008(18):6317-6332.
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