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用脂质体包封琼脂糖溶胶体系构建仿生细胞结构和物理形态。

Towards a biomimetic cellular structure and physical morphology with liposome-encapsulated agarose sol systems.

机构信息

College of Chemistry and Chemical Engineering, Qiqihar University, Qiqihar 161006, China; Heilongjiang Industrial Hemp Processing Technology Innovation Center, Qiqihar University, Qiqihar 161006, China.

College of Chemistry and Chemical Engineering, Qiqihar University, Qiqihar 161006, China.

出版信息

Int J Biol Macromol. 2024 Apr;264(Pt 1):130418. doi: 10.1016/j.ijbiomac.2024.130418. Epub 2024 Feb 25.

DOI:10.1016/j.ijbiomac.2024.130418
PMID:38412936
Abstract

The cytoplasm, serving as the primary hub of cellular metabolism, stands as a pivotal cornerstone for the harmonious progression of life. The ideal artificial cell should not only have a biomembrane structure system similar to that of a cell and the function of carrying genetic information, but also should have an intracellular environment. In this pursuit, we employed a method involving the incorporation of glycerol into agarose, resulting in the formation of agarose-glycerol mixed sol (AGs). This dynamic sol exhibited fluidic properties at ambient temperature, closely mimicking the viscosity of authentic cytoplasm. Harnessing the electroformation technique, AGs was encapsulated within liposomes, enabling the efficient creation of artificial cells that closely resembled native cellular dimensions through meticulous parameter adjustments of the alternating current (AC) field. Subsequently, artificial cells harboring AGs were subjected to diverse electrolyte and non-electrolyte solutions, enabling a comprehensive exploration of their deformation phenomena, encompassing both inward and outward budding. This study represents a significant stride forward in addressing one of the most fundamental challenges in the construction of artificial cytoplasm. It is our fervent aspiration that this work shall offer invaluable insights and guidance for future endeavors in the realm of artificial cell construction.

摘要

细胞质作为细胞代谢的主要中心,是生命和谐发展的关键基石。理想的人工细胞不仅应具有类似于细胞的生物膜结构系统和携带遗传信息的功能,还应具有细胞内环境。在这方面的追求中,我们采用了一种将甘油掺入琼脂糖中的方法,形成琼脂糖-甘油混合溶胶(AGs)。这种动态溶胶在环境温度下表现出流变性,非常类似于真实细胞质的粘度。我们利用电成形技术将 AGs 包封在脂质体中,通过对交流电(AC)场的参数进行精细调整,高效地创建了人工细胞,这些人工细胞非常接近天然细胞的尺寸。随后,我们将含有 AGs 的人工细胞置于不同的电解质和非电解质溶液中,全面研究了它们的变形现象,包括向内和向外出芽。这项研究在解决人工细胞质构建中最基本的挑战之一方面迈出了重要的一步。我们热切希望这项工作将为人工细胞构建领域的未来研究提供宝贵的见解和指导。

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Towards a biomimetic cellular structure and physical morphology with liposome-encapsulated agarose sol systems.用脂质体包封琼脂糖溶胶体系构建仿生细胞结构和物理形态。
Int J Biol Macromol. 2024 Apr;264(Pt 1):130418. doi: 10.1016/j.ijbiomac.2024.130418. Epub 2024 Feb 25.
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Liposomes encapsulating artificial cytosol as drug delivery system.脂质体包封人工细胞质作为药物传递系统。
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Giant unilamellar vesicles formed by hybrid films of agarose and lipids display altered mechanical properties.由琼脂糖和脂质的混合膜形成的巨型单层囊泡表现出改变的机械性能。
Biophys J. 2014 Oct 7;107(7):1609-19. doi: 10.1016/j.bpj.2014.08.009.
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Films of agarose enable rapid formation of giant liposomes in solutions of physiologic ionic strength.琼脂糖膜能使生理离子强度溶液中快速形成巨大脂质体。
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Liposomal internal viscosity affects the fate of membrane deformation induced by hypertonic treatment.脂质体内粘度会影响由高渗处理引起的膜变形的命运。
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In situ observation of sol-gel transition of agarose aqueous solution by fluorescence measurement.通过荧光测量对琼脂糖水溶液的溶胶-凝胶转变进行原位观察。
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Suppression of Phagocytic Activity Leads to the Efficient Surface Modification of Macrophages with Liposomes for Developing a Biomimetic Drug Delivery System.吞噬活性的抑制导致了用脂质体对巨噬细胞进行高效的表面修饰,用于开发仿生药物传递系统。
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"Flip-flop" orientation of agarose gel fibers in pulsed alternating electric fields.脉冲交变电场中琼脂糖凝胶纤维的“翻转”取向
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Enzymatic liquefaction of agarose above the sol-gel transition temperature using a thermostable endo-type β-agarase, Aga16B.使用热稳定的内切型β-琼脂糖酶Aga16B在溶胶-凝胶转变温度以上对琼脂糖进行酶促液化。
Appl Microbiol Biotechnol. 2017 Feb;101(3):1111-1120. doi: 10.1007/s00253-016-7831-y. Epub 2016 Sep 24.

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