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聚合巨型单层囊泡支持原始细胞中天然细胞核的寿命。

Polymeric Giant Unilamellar Vesicles Support Longevity of Native Nuclei in Protocells.

作者信息

Heuberger Lukas, Balestri Arianna, Tarvirdipour Shabnam, Kapinos Larisa E, Lim Roderick Y H, Lörtscher Emanuel, Schoenenberger Cora-Ann, Palivan Cornelia G

机构信息

Department of Chemistry University of Basel Mattenstrasse 22 4058 Basel Switzerland.

Biozentrum and Swiss Nanoscience Institute University of Basel Spitalstrasse 41 4056 Basel Switzerland.

出版信息

Small Sci. 2025 Mar 18;5(6):2400622. doi: 10.1002/smsc.202400622. eCollection 2025 Jun.

Abstract

Protocells offer a versatile material for dissecting cellular processes and developing simplified biomimetic systems by combining biological components with synthetic ones. However, a gap exists between the integrity and complex functionality of native organelles such as nuclei, and bottom-up strategies reducing cellular functions within a synthetic environment. Here, this gap is bridged by incorporating native nuclei into polymeric giant unilamellar vesicles (pGUVs) using double-emulsion microfluidics. It is shown that the nuclei retain their morphology and nuclear envelope integrity, facilitating the import of co-encapsulated peptide-based multicompartment micelles (MCMs) via nuclear localization signals (NLS). Importantly, it is demonstrated that the nuclear import machinery remains functional inside the protocells, and by enriching the GUV interior with nuclear import-promoting factors, the delivery efficiency of NLS-MCMs significantly increases. The findings reveal that nucleated protocells preserve nuclear function and integrity for extended periods, providing a new platform for studying nuclear processes in a simplified, yet biologically relevant, environment. This approach opens avenues for creating advanced biohybrid materials, offering opportunities to investigate organelle behavior and their interactions with cellular components in greater detail. The findings establish a foundation for high-throughput applications in synthetic biology and contribute valuable insights into sustaining complex cellular functions in engineered systems.

摘要

原细胞通过将生物成分与合成成分相结合,为剖析细胞过程和开发简化的仿生系统提供了一种多功能材料。然而,天然细胞器(如细胞核)的完整性和复杂功能与在合成环境中降低细胞功能的自下而上策略之间存在差距。在此,利用双乳液微流控技术将天然细胞核整合到聚合物巨型单层囊泡(pGUVs)中,弥合了这一差距。结果表明,细胞核保持其形态和核膜完整性,通过核定位信号(NLS)促进共包裹的基于肽的多隔室胶束(MCMs)的导入。重要的是,证明了核输入机制在原细胞内部仍保持功能,并且通过用促进核输入的因子富集GUV内部,NLS-MCMs的递送效率显著提高。研究结果表明,有核原细胞能长时间保持核功能和完整性,为在简化但具有生物学相关性的环境中研究核过程提供了一个新平台。这种方法为创建先进的生物杂交材料开辟了道路,提供了更详细研究细胞器行为及其与细胞成分相互作用的机会。这些发现为合成生物学中的高通量应用奠定了基础,并为在工程系统中维持复杂细胞功能提供了有价值的见解。

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