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通过内化的聚(N-异丙基丙烯酰胺)的可逆温度依赖性溶胶-凝胶转变来控制巨型单层囊泡的内部结构。

Controlling the internal structure of giant unilamellar vesicles by means of reversible temperature dependent sol-gel transition of internalized poly(N-isopropyl acrylamide).

作者信息

Jesorka Aldo, Markström Martin, Orwar Owe

机构信息

Department of Chemistry and Bioscience, Chalmers University of Technology, SE-41296 Göteborg, Sweden.

出版信息

Langmuir. 2005 Feb 15;21(4):1230-7. doi: 10.1021/la047822k.

Abstract

In this work, we present preparation and basic applications of lipid-bilayer-enclosed picoliter volumes (microcontainers) of solutions of poly(N-isopropylacrylamide) (PNIPAAm). Giant unilamellar vesicles (GUVs) were prepared from phospholipids using a standard swelling procedure and subsequently surface immobilized. Clear, slightly viscous solutions of PNIPAAm of varying concentration in aqueous buffer were directly pressure-microinjected into the GUVs, using a submicrometer-sized, pointed capillary. The GUV was subjected to changing temperature over a 21-40 degrees C range. The typical phase transition of the polymeric material upon heating and cooling across the lower critical solution temperature was followed using optical microscopy and shown to be reversible over multiple sequential heating/cooling cycles without compromising the integrity of the GUV membrane. Fluorescent, carboxylic acid modified 200 nm latex beads, co-injected with the PNIPAAm solution, were temperature-reversibly immobilized during the phase transition, practically freezing the Brownian motion of the entrapped particles in the volume. Furthermore, a co-injected water soluble fluorescent polysaccharide-dye conjugate was shown not to migrate from the aqueous phase into the hydrophobic polymer part upon heating, whereas the fluorescent beads were completely but reversibly immobilized in the hydrophobic domains of dense polymer agglomerates. The system reported here provides a feasible method for the reversible stabilization and solidification of GUV interior volumes, e.g., as a micrometer-sized model system for controlled drug release.

摘要

在本研究中,我们展示了聚(N-异丙基丙烯酰胺)(PNIPAAm)溶液的脂质双层包裹皮升体积(微容器)的制备及其基本应用。使用标准溶胀程序由磷脂制备巨型单层囊泡(GUVs),随后将其固定在表面。使用亚微米尺寸的尖头毛细管将不同浓度的PNIPAAm在水性缓冲液中的澄清、略带粘性的溶液直接压力微注射到GUVs中。使GUV在21至40摄氏度范围内改变温度。使用光学显微镜跟踪聚合物材料在加热和冷却过程中跨越较低临界溶液温度时的典型相变,并表明在多个连续的加热/冷却循环中是可逆的,而不会损害GUV膜的完整性。与PNIPAAm溶液共注射的荧光、羧酸修饰的200 nm乳胶珠在相变过程中被温度可逆地固定,实际上冻结了包裹在该体积中的颗粒的布朗运动。此外,共注射的水溶性荧光多糖-染料共轭物在加热时不会从水相迁移到疏水聚合物部分,而荧光珠则完全但可逆地固定在致密聚合物团聚体的疏水区域中。本文报道的系统为GUV内部体积的可逆稳定化和固化提供了一种可行的方法,例如,作为用于控制药物释放的微米级模型系统。

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