Multicompartment Polymer Vesicles with Artificial Organelles for Signal-Triggered Cascade Reactions Including Cytoskeleton Formation

被引:69
作者
Belluati, Andrea [1 ]
Thamboo, Sagana [1 ]
Najer, Adrian [1 ,3 ]
Maffeis, Viviana [1 ]
von Planta, Claudio [2 ]
Craciun, Ioana [1 ]
Palivan, Cornelia G. [1 ]
Meier, Wolfgang [1 ]
机构
[1] Univ Basel, Dept Chem, Mattenstr 24a,BPR 1096, CH-4058 Basel, Switzerland
[2] Univ Basel, Dept Chem, Klingelbergstr 80, CH-4056 Basel, Switzerland
[3] Imperial Coll London, Dept Mat, South Kensington Campus,Prince Consort Rd, London SW7 2AZ, England
基金
瑞士国家科学基金会;
关键词
artificial organelles; biomimetic actin cytoskeleton; signalling pathways mimics; stimuli-responsive multicompartment systems; synthetic giant vesicles; polymersomes; ACTIN CYTOSKELETON; MEMBRANES; COMPARTMENTALIZATION; LIPOSOMES; DYNAMICS;
D O I
10.1002/adfm.202002949
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Organelles, i.e., internal subcompartments of cells, are fundamental to spatially separate cellular processes, while controlled intercompartment communication is essential for signal transduction. Furthermore, dynamic remodeling of the cytoskeleton provides the mechanical basis for cell shape transformations and mobility. In a quest to develop cell-like smart synthetic materials, exhibiting functional flexibility, a self-assembled vesicular multicompartment system, comprised of a polymeric membrane (giant unilamellar vesicle, GUV) enveloping polymeric artificial organelles (vesicles, nanoparticles), is herein presented. Such multicompartment assemblies respond to an external stimulus that is transduced through a precise sequence. Stimuli-triggered communication between two types of internal artificial organelles induces and localizes an enzymatic reaction and allows ion-channel mediated release from storage vacuoles. Moreover, cytoskeleton formation in the GUVs' lumen can be triggered by addition of ionophores and ions. An additional level of control is achieved by signal-triggered ionophore translocation from organelles to the outer membrane, triggering cytoskeleton formation. This system is further used to study the diffusion of various cytoskeletal drugs across the synthetic outer membrane, demonstrating potential applicability, e.g., anticancer drug screening. Such multicompartment assemblies represent a robust system harboring many different functionalities and are a considerable leap in the application of cell logics to reactive and smart synthetic materials.
引用
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页数:11
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