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Synthesis of ABC-triblock peptide-polymer conjugates for the positioning of peptide segments within block copolymer aggregates

机译:ABC-三嵌段肽-聚合物共轭物的合成,用于在嵌段共聚物聚集体中定位肽段

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The synthesis of amphiphilic ABC-triblock peptide-polymer conjugates comprising a central oligopeptide segment and terminal hydrophilic poly(ethylene oxide) (PEO) as well as hydrophobic poly(butyl acrylate) (PBA) blocks is described. In aqueous solution, the amphiphilic segments of these functional conjugates direct the self-assembly into block copolymer micelles, while the functional oligopeptide is positioned at the hydrophilic and hydrophobic interface. For that the conjugate PEO-Arg(10) was synthesized using solid-phase supported peptide synthesis techniques (SPPS). The supported precursor conjugate was functionalized at the amino-terminus of the peptide segment with a chain-transfer moiety for RAFT polymerization. Subsequently, the AB macro-CTA was liberated from the support and used to polymerize BA homogenously in solution. The RAFT radical polymerization process allowed controlling the molecular weight of the PBA-block, leading to amphiphilic ABC-conjugates with low polydispersities. The triblock peptide-polymer conjugate assembles in water into micellar aggregates, as was shown by light scattering and AFM. The molecular architecture of the ABC-triblock conjugate controls the positioning of the functional but expensive oligopeptide-segment within the aggregates, while the inexpensive synthetic polymer blocks are determining the aggregation behavior. Considering the design of the conjugate, the central Arg(10) segment can be expected to be positioned at the interface between the hydrophobic and the hydrophilic polymer blocks, resulting in the formation of a functional domain with precisely controllable functionalities.
机译:描述了包含中心寡肽链段和末端亲水性聚环氧乙烷(PEO)以及疏水性聚丙烯酸丁酯(PBA)嵌段的两亲性ABC-三嵌段肽-聚合物共轭物的合成。在水溶液中,这些功能性缀合物的两亲链段将自组装引导成嵌段共聚物胶束,而功能性寡肽位于亲水和疏水界面。为此,使用固相支持肽合成技术(SPPS)合成了缀合物PEO-Arg(10)。负载的前体偶联物在肽段的氨基末端带有用于RAFT聚合的链转移部分官能化。随后,将AB宏观CTA从载体中释放出来,并用于在溶液中均匀聚合BA。 RAFT自由基聚合过程可以控制PBA嵌段的分子量,从而导致低分散性的两亲性ABC共轭物。如光散射和AFM所示,三嵌段肽-聚合物共轭物在水中组装成胶束聚集体。 ABC-三嵌段共轭物的分子结构控制聚集物中功能性但昂贵的寡肽片段的定位,而廉价的合成聚合物嵌段决定聚集行为。考虑到缀合物的设计,可以预期中心的Arg(10)段位于疏水和亲水聚合物嵌段之间的界面处,从而形成具有可精确控制的功能的功能域。

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