首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Poly(D,L-lactic acid-co-glycolic acid)-b-poly(ethylene glycol)-b-poly (D,L-lactic acid-co-glycolic acid) triblock copolymer and thermoreversible phase transition in water
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Poly(D,L-lactic acid-co-glycolic acid)-b-poly(ethylene glycol)-b-poly (D,L-lactic acid-co-glycolic acid) triblock copolymer and thermoreversible phase transition in water

机译:聚(D,L-乳酸-乙醇酸共聚物)-b-聚(乙二醇)-b-聚(D,L-乳酸-乙醇酸共聚物)三嵌段共聚物和水中的热可逆相变

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摘要

Novel thermoreversible gelation behavior of aqueous solutions of ABA-type triblock copolymers composed of the central polyethylene oxide (PEG) block and two poly(D,L-lactic acid-co-glycolic acid) side blocks was found. Phase transition characteristics, such as critical gel concentration (CGC) and lower and upper critical gel temperature (CGT), are closely related to the molecular structure of the triblock copolymers. The CGC and the lower CGT both increases with increasing PEG/PLGA molecular weight ratio. Increasing the GA content in PLGA block induces a somewhat higher CGC. The copolymer forms micelles with a PLGA loop core and a PEG shell in water. Also grouped micelles are identified seemingly due to the bridging of two micelles sharing two PLGA Nocks of a block copolymer chain. As the temperature increases the association of micelles increases, which results in gelation. The ABA-type copolymers exhibit a relatively low CGC (<10 percent) and low solgel transition temperatures compared to BAB-type copolymers. As the temperature increases further gel-sol transition is observed, which would result from the shrinkage of micelles with temperature increase. The hydrodynamic size of the micelles is monitored by dynamic laser scattering, and a possible gelation mechanism was suggested.
机译:发现了由中央聚环氧乙烷(PEG)嵌段和两个聚(D,L-乳酸-乙醇酸共聚物)侧链组成的ABA型三嵌段共聚物水溶液的新型热可逆凝胶行为。相变特性,例如临界凝胶浓度(CGC)和较低和最高临界凝胶温度(CGT),与三嵌段共聚物的分子结构密切相关。 CGC和较低的CGT都随着PEG / PLGA分子量比的增加而增加。 PLGA嵌段中GA含量的增加会引起CGC的升高。该共聚物在水中形成具有PLGA环核和PEG壳的胶束。似乎还可以识别出分组的胶束,这是由于两个嵌段共享,它们共享嵌段共聚物链的两个PLGA Nocks。随着温度升高,胶束的缔合增加,这导致胶凝。与BAB型共聚物相比,ABA型共聚物表现出相对较低的CGC(<10%)和较低的溶胶凝胶转变温度。随着温度升高,观察到进一步的凝胶-溶胶转变,这是由于温度升高导致胶束收缩所致。通过动态激光散射监测胶束的流体力学尺寸,并提出了可能的胶凝机理。

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