4.4 Review

3D Artificial Cell Membranes as Versatile Platforms for Biological Applications

期刊

BIOCHIP JOURNAL
卷 16, 期 3, 页码 215-226

出版社

KOREAN BIOCHIP SOCIETY-KBCS
DOI: 10.1007/s13206-022-00066-z

关键词

Artificial cell membrane; 3D structures; Lipids; Membrane proteins; Biosensors

资金

  1. Korean Medical Device Development Fund - Korean government (Ministry of Science and ICT) [9991006807, KMDF_PR_20200901_0134_2021_01]
  2. Korean Medical Device Development Fund - Korean government (Ministry of Trade, Industry and Energy) [9991006807, KMDF_PR_20200901_0134_2021_01]
  3. Korean Medical Device Development Fund - Korean government (Ministry of Health and Welfare) [9991006807, KMDF_PR_20200901_0134_2021_01]
  4. Korean Medical Device Development Fund - Korean government (Ministry of Food and Drug Safety) [9991006807, KMDF_PR_20200901_0134_2021_01]
  5. National Research Foundation of Korea (NRF) - Korea government (MIST) [NRF-2020R1A2C2100363]
  6. KIST Institutional Program [2E31502]

向作者/读者索取更多资源

Artificial cell membranes, emulating biological membranes, have been widely used for studying cell physiology and biological applications. This review focuses on the development of three-dimensional free-standing lipid membranes and discusses the current key issues and challenges.
Artificial cell membranes, emulating biological membranes, have been used to elucidate the physiological functions of cells and realize biological applications. Advanced methodologies, along with considerations of biological/functional aspects, have enabled the development of various forms/types of artificial cell membranes commonly based on a lipid bilayer. Previous review articles have extensively explored 2-dimensional membranes but lack consideration on 3-dimensional membranes, which exhibit many advantages for biological platforms, such as large surface area, high stability, and ease of observation. Indeed, 3-dimensional membranes can accommodate a higher population of membrane proteins and show a more sensitive response to analytes than planar membranes. This review highlights the developments of artificial cell membranes in terms of structures and fabrication strategies, with a focus on 3-dimensional free-standing lipid membranes, and concludes with remarks on current key issues and challenges to evolve artificial cell membranes to another level.

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