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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >SILICONE-PROTEIN INTERACTION AT THE INTERFACE BETWEEN A FUNCTIONAL SILICONE AND A PROTEIN/STARCH MICROPARTICLE
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SILICONE-PROTEIN INTERACTION AT THE INTERFACE BETWEEN A FUNCTIONAL SILICONE AND A PROTEIN/STARCH MICROPARTICLE

机译:功能性硅酮与蛋白质/淀粉微颗粒之间的界面上硅酮-蛋白质相互作用

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摘要

Silicone-coated starch/protein (human serum albumin, HSA) microparticles were prepared by precipitation of a starch/HSA/DMSO/water (water-in-oil) emulsion into acetone containing a silicone polymer. Two silicones (poly(dimethyl- siloxane)) were examined: unfunctionalized (trimethylsilyl-terminated, PDMS) or functionalized at the termini with Si(OEt)(3) groups (PDMS-TES 7). Microparticles were not formed in the absence of protein. Instead, the phase containing starch separated after agglomeration. Thus, stabilization/hydrophobization of the starch surface by silicone alone was not possible. However, there is a strong affinity between the silicone and the protein particularly in the case of the PDMS-TES and, simultaneously, an affinity between the PDMS-TES and the starch that leads to a stabilization of the starch surface. This could most clearly be seen from immunological data that showed that antibodies were elicited by protein in the microparticles coated with PDMS-TES following oral administration. [References: 75]
机译:通过将淀粉/ HSA / DMSO /水(油包水)乳液沉淀到含有硅酮聚合物的丙酮中来制备硅酮涂覆的淀粉/蛋白质(人血清白蛋白,HSA)微粒。检查了两种有机硅(聚(二甲基硅氧烷)):未官能化(三甲基硅烷基封端的PDMS)或在末端具有Si(OEt)(3)基团的官能化(PDMS-TES 7)。在没有蛋白质的情况下不会形成微粒。相反,含淀粉的相在附聚后分离。因此,不可能仅通过硅氧烷来使淀粉表面稳定/疏水化。但是,特别是在PDMS-TES的情况下,有机硅与蛋白质之间具有很强的亲和力,同时,PDMS-TES与淀粉之间也具有亲和力,这导致淀粉表面稳定。从免疫学数据可以最清楚地看到这一点,免疫学数据表明口服给药后,PDMS-TES包被的微粒中的蛋白质会诱发抗体。 [参考:75]

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