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工程平面模型细胞膜的进展:当前技术、应用及未来展望

Advancements in Engineering Planar Model Cell Membranes: Current Techniques, Applications, and Future Perspectives.

作者信息

Coronado Sara, Herrera Johan, Pino María Graciela, Martín Santiago, Ballesteros-Rueda Luz, Cea Pilar

机构信息

Departamento de Química Física, Facultad de Ciencias, Universidad de Zaragoza, Pedro Cerbuna 12, 50009 Zaragoza, Spain.

Centro de Investigaciones en Catálisis (CICAT), Escuela de Ingeniería Química, Universidad Industrial de Santander, Parque Tecnológico de Guatiguará, Km 2 vía El Refugio, Piedecuesta, Santander 681911, Colombia.

出版信息

Nanomaterials (Basel). 2024 Sep 13;14(18):1489. doi: 10.3390/nano14181489.

Abstract

Cell membranes are crucial elements in living organisms, serving as protective barriers and providing structural support for cells. They regulate numerous exchange and communication processes between cells and their environment, including interactions with other cells, tissues, ions, xenobiotics, and drugs. However, the complexity and heterogeneity of cell membranes-comprising two asymmetric layers with varying compositions across different cell types and states (e.g., healthy vs. diseased)-along with the challenges of manipulating real cell membranes represent significant obstacles for in vivo studies. To address these challenges, researchers have developed various methodologies to create model cell membranes or membrane fragments, including mono- or bilayers organized in planar systems. These models facilitate fundamental studies on membrane component interactions as well as the interactions of membrane components with external agents, such as drugs, nanoparticles (NPs), or biomarkers. The applications of model cell membranes have extended beyond basic research, encompassing areas such as biosensing and nanoparticle camouflage to evade immune detection. In this review, we highlight advancements in the engineering of planar model cell membranes, focusing on the nanoarchitectonic tools used for their fabrication. We also discuss approaches for incorporating challenging materials, such as proteins and enzymes, into these models. Finally, we present our view on future perspectives in the field of planar model cell membranes.

摘要

细胞膜是生物体中的关键组成部分,作为保护屏障为细胞提供结构支持。它们调节细胞与其环境之间的众多交换和通讯过程,包括与其他细胞、组织、离子、异生物素和药物的相互作用。然而,细胞膜的复杂性和异质性——由两个不对称层组成,在不同细胞类型和状态(例如健康与患病)下具有不同的组成——以及操纵真实细胞膜的挑战,对体内研究来说是重大障碍。为应对这些挑战,研究人员开发了各种方法来创建模型细胞膜或膜片段,包括在平面系统中组织的单层或双层膜。这些模型有助于对膜成分相互作用以及膜成分与外部试剂(如药物、纳米颗粒(NP)或生物标志物)的相互作用进行基础研究。模型细胞膜的应用已超越基础研究,涵盖生物传感和纳米颗粒伪装以逃避免疫检测等领域。在本综述中,我们重点介绍平面模型细胞膜工程的进展,着重于用于其制造的纳米结构工具。我们还讨论了将蛋白质和酶等具有挑战性的材料纳入这些模型的方法。最后,我们阐述了对平面模型细胞膜领域未来前景的看法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c342/11434481/e257ccbac668/nanomaterials-14-01489-g006.jpg

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