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Development of Morphologically Discrete PEG–PDLLANanotubes for Precision Nanomedicine

机译:形态上离散的PEG-PDLLA的开发精密纳米医学用纳米管

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摘要

Precise control over the morphological features of nanoparticles is an important requisite for their application in nanomedical research. Parameters such as size and shape have been identified as critical features for effective nanotherapeutic technologies due to their role in circulation, distribution, and internalization in vivo. Tubular PEG–PDLLA polymersomes (nanotubes) exhibit an interesting morphology with potential for immunotherapeutics, as the elongated shape can affect cell–particle interactions. Developing methodologies that permit control over the precise form of such nanotubes is important for their biomedical implementation due to the stringent physicochemical constraints for efficacious performance. Through careful control over the engineering process, we demonstrate the generation of well-defined nanotubes based on polymersomes as small as 250 and 100 nm, which can be successfully shape transformed. The quality of the resulting nanostructures was established by physical characterization using AF4-MALS and cryo-TEM. Moreover, we show the successful loading ofsuch nanotubes with model payloads (proteins and drugs). These findingsprovide a promising platform for implementation in biomedical applicationsin which discrete structure and functionality are essential features.
机译:精确控制纳米颗粒的形态特征是其在纳米医学研究中应用的重要条件。由于其在体内循环,分布和内在化中的作用,诸如大小和形状等参数已被确定为有效纳米治疗技术的关键特征。管状的PEG-PDLLA聚合物囊泡(纳米管)表现出有趣的形态,具有免疫治疗的潜力,因为其细长的形状会影响细胞-颗粒的相互作用。由于有效性能的严格物理化学限制,开发允许控制此类纳米管精确形式的方法对于其生物医学实施至关重要。通过对工程过程的仔细控制,我们证明了基于250 nm和100 nm小分子的聚合物囊泡的定义明确的纳米管的生成,可以成功地进行形状转换。通过使用AF4-MALS和cryo-TEM进行物理表征来确定所得纳米结构的质量。此外,我们展示了成功加载具有模型有效载荷(蛋白质和药物)的纳米管。这些发现为在生物医学应用中实施提供有希望的平台其中离散的结构和功能是必不可少的功能。

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