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微流体技术在低温保存领域的研究进展 被引量:1

Research Progress of Application of Microfluidics Techniques in Cryopreservation
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摘要 微流体技术可能是解决低温保存过程中所遇到问题的一种有效方法。本文详细综述了微流体技术在细胞膜渗透性、保护剂添加与去除、生物材料玻璃化保存三方面的研究进展,总结了在低温保存领域应用微流体技术仍可能存在的问题,并指出了未来的研究方向。 Microfluidics technology may be an effective method to solve some problems in cryopreservation. This re- view presents the research progress of microfluidics technology in the field of cell membrane transport properties, cryoprotectant addition and washout and the vitrification for cryopreservation of biological materials. Existing problems of microfluidics technology in the application of cryopreservation are summarized and future research directions are indicated as well.
出处 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2015年第3期702-706,共5页 Journal of Biomedical Engineering
基金 国家自然科学基金资助项目(51376132) 上海市自然科学基金资助项目(13ZR1429200)
关键词 低温保存 微流体 低温保护剂 cryopreservation microfluidics cryoprotectant
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  • 1ATABAY E P, ATABAY E C, CRUZ L C. Cryotop and sol- id surface vitrification cryodevices are suitable for the cryopr- eservation of in vitro-matured water buffalo(bubalus bubalis L. )oocytes [J]. Philippine Journal of Veterinary Medicine, 2013, 50(1): 24-33.
  • 2ALMANSOORI K A, PRASAD V, FORBES J F, et al. Cryoprotective agent toxicity interactions in human articular chondrocytes [J]. Cryobiology, 2012, 64(3) : 185-191.
  • 3INOUE M, OKONOGI A, TERAO K, et al. Cell culture on MEMS materials in microenvironment limited by a physical condition [J]. Micro Nano Lett, 2012, 7(8) : 725-728.
  • 4HUANG S B, WU M H, WANG S S, et al. Microfluidic cell culture chip with multiplexed medium delivery and efficient cell/scaffold loading mechanisms for high-throughput perfu- sion 3-dimensional cell culture-based assays [J].Biomed Mi- crodevices, 2011, 13(3): 415-430.
  • 5INAMDAR N K, BORENSTEIN J T. Mierofluidic cell cul- ture models for tissue engineering [J]. Curt Opin Biotechnol, 2011, 22(5): 681-689.
  • 6REN Y, CHOW L M, LEUNG W W. Cell culture using cen- trifugal microfluidic platform with demonstration on Pichia pastoris [J].Biomed Microdevices, 2013, 15(2): 321-337.
  • 7CAO Z, CHEN F, BAO N, et al. Droplet sorting based on the number of encapsulated particles using a solenoid valve [J].Lab Chip, 2013, 13(1): 171-178.
  • 8QIN W, SCHMIDT L, YANG X, et al. Laser guidance- based cell detection in a microfluidic biochip[J]. J Biomed Opt, 2013, 18(6): 060502.
  • 9MU X, ZHENG W, SUN J, et al. Microfluidics for manipu- latingcells[J]. Small, 2013, 9(1); 9-21.
  • 10VICKERS D L, HINCAPIE M, HANCOCK W S, et al. Lectin-mediated microfiuidic capture and release of leukemic lymphocytes from whole blood [J]. Biomed Microdevices, 2011, 13(3): 565-571.

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