Poly(l-proline)-Stabilized Polypeptide Nanostructures via Ring-Opening Polymerization-Induced Self-Assembly (ROPISA).

IF 5.1 Q1 POLYMER SCIENCE ACS Macro Letters Pub Date : 2024-08-20 Epub Date: 2024-07-29 DOI:10.1021/acsmacrolett.4c00400
Ernesto Tinajero-Díaz, Nicola Judge, Bo Li, Thomas Leigh, Robert D Murphy, Paul D Topham, Matthew J Derry, Andreas Heise
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Abstract

Poly(proline) II helical motifs located at the protein-water interface stabilize the three-dimensional structures of natural proteins. Reported here is the first example of synthetic biomimetic poly(proline)-stabilized polypeptide nanostructures obtained by a straightforward ring-opening polymerization-induced self-assembly (ROPISA) process through consecutive N-carboxyanhydride (NCA) polymerization. It was found that the use of multifunctional 8-arm initiators is critical for the formation of nanoparticles. Worm-like micelles as well as spherical morphologies were obtained as confirmed by dynamic light scattering (DLS), transmission electron microscopy (TEM), and small angle X-ray scattering (SAXS). The loading of the nanostructures with dyes is demonstrated. This fast and open-vessel procedure gives access to amino acids-based nanomaterials with potential for applications in nanomedicine.

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通过开环聚合诱导自组装 (ROPISA) 稳定聚(l-脯氨酸)多肽纳米结构。
位于蛋白质-水界面的聚(脯氨酸)II螺旋基团可稳定天然蛋白质的三维结构。本文首次报道了通过连续的 N-羧基酸酐(NCA)聚合,以直接开环聚合诱导自组装(ROPISA)工艺合成仿生物聚脯氨酸稳定多肽纳米结构的实例。研究发现,使用多功能 8 臂引发剂对纳米颗粒的形成至关重要。经动态光散射(DLS)、透射电子显微镜(TEM)和小角 X 射线散射(SAXS)确认,获得了蠕虫状胶束和球形形态。此外,还展示了纳米结构与染料的负载。这种快速、开孔的方法可以获得氨基酸基纳米材料,具有在纳米医学中应用的潜力。
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来源期刊
CiteScore
10.40
自引率
3.40%
发文量
209
审稿时长
1 months
期刊介绍: ACS Macro Letters publishes research in all areas of contemporary soft matter science in which macromolecules play a key role, including nanotechnology, self-assembly, supramolecular chemistry, biomaterials, energy generation and storage, and renewable/sustainable materials. Submissions to ACS Macro Letters should justify clearly the rapid disclosure of the key elements of the study. The scope of the journal includes high-impact research of broad interest in all areas of polymer science and engineering, including cross-disciplinary research that interfaces with polymer science. With the launch of ACS Macro Letters, all Communications that were formerly published in Macromolecules and Biomacromolecules will be published as Letters in ACS Macro Letters.
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