Dynamic three-dimensional cell-culture systems for enhanced in vitro applications

被引:4
|
作者
Aishwarya, Pargaonkar [1 ]
Agrawal, Gatika [1 ]
Sally, Jennifer [1 ]
Ravi, Maddaly [1 ]
机构
[1] Sri Ramachandra Inst Higher Educ & Res, Fac Biomed Sci Technol & Res, Dept Human Genet, Chennai 600116, Tamil Nadu, India
来源
CURRENT SCIENCE | 2022年 / 122卷 / 02期
关键词
In vitro applications; scaffold-based and scaffold-free systems; static and dynamic culture systems; three-dimensional cell culture; MICROFLUIDIC PLATFORM; 3D; MODELS; CHIP; SPHEROIDS; DELIVERY; GROWTH; CANCER; TOOL;
D O I
10.18520/cs/v122/i2/149-160
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The advent of dynamic three-dimensional cell cultures has transformed the field of biological research as they bridge the gap between in vitro and in vivo systems. 3D cell-culture techniques can be categorized into two types: static and dynamic culture systems. Traditional cell-culture models are considered to be 'static' in nature, as the cells are grown on matrices or scaffolds with little focus given to the complexity of the growth conditions that exist in the in vivo tissue microenvironments (presence of continuous blood supply for the development of tumour vasculature). Thus, static 3D cultures do not accurately mimic in vivo cellular architecture and function. The development of a 'dynamic' culture environment has offered 3D culture models with the potential to improve the 'naturalness' of the cells being cultured and thereby have more in vivo relevance for translational research. This makes them relatively more superior than single cell-type static 3D cell cultures. Dynamic systems include magnetic- and acoustic-based assembly devices, micropocket cultures, dielectrophoretic and microfluidic platforms. Microfluidic devices might be the most versatile of these culture platforms, considering their engineering diversity, their potential to improve molecular crosstalk among culture elements and their prospective range of applications.
引用
收藏
页码:149 / 160
页数:12
相关论文
共 50 条
  • [1] Applications and Utility of Three-Dimensional In Vitro Cell Culture for Therapeutics
    Ajjarapu, Suchitra Maheswari
    Tiwari, Apoorv
    Kumar, Sundip
    [J]. FUTURE PHARMACOLOGY, 2023, 3 (01): : 213 - 228
  • [2] Three-dimensional cell culture systems
    Cordes, N.
    [J]. RADIOTHERAPY AND ONCOLOGY, 2017, 123 : S101 - S102
  • [3] Microscale three-dimensional polymeric platforms for in vitro cell culture systems
    Snyder, JD
    Desai, TA
    [J]. JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2001, 12 (08) : 921 - 932
  • [4] Recent Advances in Three-Dimensional Stem Cell Culture Systems and Applications
    Wu, Xiaowen
    Su, Junxiang
    Wei, Jizhen
    Jiang, Nan
    Ge, Xuejun
    [J]. STEM CELLS INTERNATIONAL, 2021, 2021
  • [5] Three-dimensional cell culture systems as an in vitro platform for cancer and stem cell modeling
    Chaicharoenaudomrung, Nipha
    Kunhorm, Phongsakorn
    Noisa, Parinya
    [J]. WORLD JOURNAL OF STEM CELLS, 2019, 11 (12): : 1065 - 1083
  • [6] In vitro three-dimensional culture systems of salivary glands
    Tanaka, Junichi
    Mishima, Kenji
    [J]. PATHOLOGY INTERNATIONAL, 2020, 70 (08) : 493 - 501
  • [7] Alginate Microencapsulation for Three-Dimensional In Vitro Cell Culture
    Kang, Sung-Min
    Lee, Ji-Hoon
    Huh, Yun Suk
    Takayama, Shuichi
    [J]. ACS BIOMATERIALS SCIENCE & ENGINEERING, 2021, 7 (07): : 2864 - 2879
  • [8] Alginate Microencapsulation for Three-Dimensional in Vitro Cell Culture
    Kang, Sung-Min
    Lee, Ji-Hoon
    Huh, Yun Suk
    Takayama, Shuichi
    [J]. ACS Biomaterials Science and Engineering, 2021, 7 (07): : 2864 - 2879
  • [10] Three-Dimensional Cell Culture Systems and Their Applications in Drug Discovery and Cell-Based Biosensors
    Edmondson, Rasheena
    Broglie, Jessica Jenkins
    Adcock, Audrey F.
    Yang, Liju
    [J]. ASSAY AND DRUG DEVELOPMENT TECHNOLOGIES, 2014, 12 (04) : 207 - 218