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The encapsulation of an amphiphile into polystyrene microspheres of narrow size distribution

机译:将两亲物包封在窄尺寸分布的聚苯乙烯微球中

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Encapsulation of compounds into nano- or microsized organic particles of narrow size distribution is of increasing importance in fields of advanced imaging and diagnostic techniques and drug delivery systems. The main technology currently used for encapsulation of molecules within uniform template particles while retaining their size distribution is based on particle swelling methodology, involving penetration of emulsion droplets into the particles. The swelling method, however, is efficient for encapsulation only of hydrophobic compounds within hydrophobic template particles. In order to be encapsulated, the molecules must favor the hydrophobic phase of an organic/aqueous biphasic system, which is not easily achieved for molecules of amphiphilic character. The following work overcomes this difficulty by presenting a new method for encapsulation of amphiphilic molecules within uniform hydrophobic particles. We use hydrogen bonding of acid and base, combined with a pseudo salting out effect, for the entrapment of the amphiphile in the organic phase of a biphasic system. Following the entrapment in the organic phase, we demonstrated, using fluorescein and (antibiotic) tetracycline as model molecules, that the swelling method usually used only for hydrophobes can be expanded and applied to amphiphilic molecules.
机译:在先进的成像和诊断技术以及药物输送系统领域,将化合物封装到尺寸分布狭窄的纳米或微米级有机颗粒中的重要性日益增加。当前用于将分子包封在均匀模板颗粒内同时保持其大小分布的主要技术是基于颗粒溶胀方法,该方法涉及将乳液液滴渗透到颗粒中。然而,溶胀方法仅对于将疏水性化合物包封在疏水性模板颗粒内是有效的。为了被包封,分子必须有利于有机/水两相系统的疏水相,这对于两亲性分子来说不容易实现。以下工作通过提出一种将两亲性分子包封在均匀疏水性颗粒内的新方法,克服了这一困难。我们使用酸和碱的氢键结合伪拟盐析作用,将两亲物截留在双相系统的有机相中。陷入有机相后,我们使用荧光素和(抗生素)四环素作为模型分子证明,通常仅用于疏水物的溶胀方法可以扩展并应用于两亲性分子。

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