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首页> 外文期刊>Biomacromolecules >Controlling the Aggregation of Conjugates of Streptavidin with Smart Block Copolymers Prepared via the RAFT Copolymerization Technique
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Controlling the Aggregation of Conjugates of Streptavidin with Smart Block Copolymers Prepared via the RAFT Copolymerization Technique

机译:通过RAFT共聚技术制备的智能嵌段共聚物控制链霉亲和素结合物的聚集

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Block copolymers containing stimuli-responsive segments provide important new opportunities for controlling the activity and aggregation properties of protein-polymer conjugates. We have prepared a RAFT block copolymer of a biotin-terminated poly(N-isopropylacrylamide) (PNIPAAm)-b-poly(acrylic acid) (PAA). The number-average molecular weight (M_n) of the (PNIPAAm)-b-(PAA) copolymer was determined to be 17.4 kDa (M_w/M_n=1.09). The PNIPAAm block had an M_n of 9.5 kDa and the poly(acrylic acid) (PAA) block had an M_n of 7.9 kDa. We conjugated this block copolymer to streptavidin (SA) via the terminal biotin on the PNIPAAm block. We found that the usual aggregation and phase separation of PNIPAAm-SA conjugates that follow the thermally induced collapse and dehydration of PNIPAAm (the lower critical solution temperature (LCST) of PNIPAAm is 32 deg C in water) is prevented through the shielding action of the PAA block. In addition, we show that the cloud point and aggregation properties (as measured by loss in light transmission) of the [(PNIPAAm)-b-(PAA)]-SA conjugate also depended on pH. At pH 7.0 and at temperatures above the LCST, the block copolymer alone was found to form particles of ca. 60 nm in diameter, while the bioconjugate exhibited very little aggregation. At pH 5.5 and 20 deg C, the copolymer alone was found to form large aggregates (ca. 218 nm), presumably driven by hydrogen bonding between the -COOH groups of PAA with other -COOH groups and also with the -CONH- groups of PNIPAAm. In comparison, the conjugate formed much smaller particles (ca. 27 nm) at these conditions. At pH 4.0, however, large particles were formed from the conjugate both above and below the LCST (ca. 700 and 540 nm, respectively). These results demonstrate that the aggregation properties of the block copolymer-SA conjugate are very different from those of the free block copolymer, and that the outer-oriented hydrophilic block of PAA shields the intermolecular aggregation of the block copolymer-SA bioconjugate at pH values where the -COOH groups of PAA are significantly ionized.
机译:含有刺激反应性链段的嵌段共聚物为控制蛋白质-聚合物结合物的活性和聚集性质提供了重要的新机会。我们已经制备了生物素封端的聚(N-异丙基丙烯酰胺)(PNIPAAm)-b-聚(丙烯酸)(PAA)的RAFT嵌段共聚物。 (PNIPAAm)-b-(PAA)共聚物的数均分子量(M_n)被确定为17.4 kDa(M_w / M_n = 1.09)。 PNIPAAm嵌段的M_n为9.5 kDa,聚丙烯酸(PAA)嵌段的M_n为7.9 kDa。我们通过PNIPAAm嵌段上的末端生物素将这种嵌段共聚物与链霉亲和素(SA)共轭。我们发现,PNIPAAm-SA共轭物的常规聚集和相分离是通过PNIPAAm的热分解和脱水作用(PNIPAAm的较低临界溶液温度(LCST)在水中为32摄氏度)来防止的,这是由于其屏蔽作用所致。 PAA块。另外,我们显示[(PNIPAAm)-b-(PAA)]-SA共轭物的浊点和聚集性质(通过光传输损失测量)也取决于pH。在pH 7.0和高于LCST的温度下,发现仅嵌段共聚物会形成约10的颗粒。直径为60 nm,而生物结合物几乎没有聚集。在pH 5.5和20摄氏度下,发现单独的共聚物会形成大的聚集体(约218 nm),大概是由PAA的-COOH基团与其他-COOH基团以及与-A的-CONH-基团之间的氢键驱动的。 PNIPAAm。相比之下,在这些条件下,结合物形成了更小的颗粒(约27 nm)。然而,在pH 4.0时,在LCST上方和下方(分别约为700和540 nm),共轭物都会形成大颗粒。这些结果表明,嵌段共聚物-SA共轭物的聚集性质与游离嵌段共聚物的凝集性质非常不同,并且PAA的外向亲水性嵌段在pH值下屏蔽了嵌段共聚物-SA生物共轭物的分子间聚集。 PAA的-COOH基团被显着电离。

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