|
|
Microfluidics and its applications in quantitative biology |
|
Microfluidics and its applications in quantitative biology |
Yuhai Tu1,2( ) |
1. IBM T. J. Watson Research Center, Yorktown Heights, NY 10598, USA; 2. Center for Quantitative Biology, Peking University, Beijing 100871, China |
|
|
出版日期: 2013-09-05
|
Corresponding Author(s):
Tu Yuhai,Email:yuhai@us.ibm.com
|
1 |
Whitesides, G. M. (2006) The origins and the future of microfluidics. Nature , 442, 368-373 pmid:16871203.
|
2 |
Lambert, G., Liao, D. and Austin, R. H. (2010) Collective escape of chemotactic swimmers through microscopic ratchets. Phys. Rev. Lett. , 104, 168102 pmid:20482083.
|
3 |
Loutherback, K., Chou, K. S., Newman, J., Puchalla, J., Austin, R. H., Sturm, J. C. (2010) Improved performance of deterministic lateral displacement arrays with triangular posts. Microfluidics and Nanofluidics , 9, 1143-1149 .
|
4 |
Zhang, Q. and Austin, R. H. (2012) Applications of microfluidics in stem cell biology. Bionanoscience , 2, 277-286 pmid:23336098.
|
5 |
Zhu, X., Si, G., Deng, N., Ouyang, Q., Wu, T., He, Z., Jiang, L., Luo, C. and Tu, Y. (2012) Frequency-dependent Escherichia coli chemotaxis behavior. Phys. Rev. Lett. , 108, 128101 pmid:22540625.
|
6 |
Tian, Y., Luo, C., Lu, Y., Tang, C. and Ouyang, Q. (2012) Cell cycle synchronization by nutrient modulation. Integr. Biol. (Camb.) , 4, 328-334 pmid:22262285.
|
7 |
Floris, A., Staal, S., Lenk, S., Staijen, E., Kohlheyer, D., Eijkel, J. and van den Berg, A. (2010) A prefilled, ready-to-use electrophoresis based lab-on-a-chip device for monitoring lithium in blood. Lab Chip , 10, 1799-1806 pmid:20532263.
|
8 |
van der Meer, A. D. and van den Berg, A. (2012) Organs-on-chips: breaking the in vitro impasse. Integr. Biol. (Camb.) , 4, 461-470 pmid:22388577.
|
9 |
Yuan, B., Jin, Y., Sun, Y., Wang, D., Sun, J. S., Wang, Z., Zhang, W., Jiang, X. Y. (2012) Artificial vessels: A strategy for depositing different types of cells in three dimensions to mimic tubular structures in tissues. Adv. Mater. , 24, 853
|
10 |
Gong, P. Y., Zheng, W. F., Huang, Z., Zhang, W., Xiao, D., Jiang, X. Y. (2013) A strategy for the construction of controlled, three dimensional, multilayered, tissue-like structures. Adv. Funct. Mater. , 23, 42-46
|
11 |
Luo, C. X., Liu, L., Ni, X. F., Wang, L., Nomura, S. M., Ouyang, Q., Chen, Y. (2011) Differentiating stem cells on patterned substrates for neural network formation. Microelectron. Eng. , 88, 1707-1710
|
12 |
Li, J. J., Zhou, X. T., Shi, J., Zhang, F., Li, X., Jiang, L. M., Chen, Y. (2013) Upside and downside views of adherent cells on patterned substrates: Three-dimensional image reconstruction. Microelectron. Eng. , 110, 365-368
|
13 |
Zhang, Q., Liu, T. and Qin, J. (2012) A microfluidic-based device for study of transendothelial invasion of tumor aggregates in realtime. Lab Chip , 12, 2837-2842 pmid:22648473.
|
14 |
Ma, J., Hui, Y. S., Zhang, M., Yu, Y., Wen, W. and Qin, J. (2013) Facile synthesis of biomimetic honeycomb material with biological functionality. Small , 9, 497-503 pmid:23047525.
|
15 |
Kalinin, Y. V., Jiang, L., Tu, Y. and Wu, M. (2009) Logarithmic sensing in Escherichia coli bacterial chemotaxis. Biophys. J. , 96, 2439-2448 pmid:19289068.
|
16 |
Kim, B. J., Hannanta-anan, P., Chau, M., Kim, Y. S., Swartz, M. A. and Wu, M. (2013) Cooperative roles of SDF-1α and EGF gradients on tumor cell migration revealed by a robust 3D microfluidic model. PLoS ONE , 8, e68422 pmid:23869217.
|
17 |
Kim, B. J. and Wu, M. (2012) Microfluidics for mammalian cell chemotaxis. Ann Biomed Eng , 40, 1316-1327 pmid:22189490.
|
18 |
Breslauer, D. N., Lee, P. J. and Lee, L. P. (2006) Microfluidics-based systems biology. Mol Biosyst , 2, 97-112 pmid:16880927.
|
19 |
Gutierrez, M. P. and Lee, L. P. (2013) Engineering. Multiscale design and integration of sustainable building functions. Science , 341, 247-248 pmid:23869011.
|
20 |
Zhang, Y., Luo, C., Zou, K., Xie, Z., Brandman, O., Ouyang, Q. and Li, H. (2012) Single cell analysis of yeast replicative aging using a new generation of microfluidic device. PLoS ONE , 7, e48275 pmid:23144860.
|
21 |
Xie, Z., Zhang, Y., Zou, K., Brandman, O., Luo, C., Ouyang, Q. and Li, H. (2012) Molecular phenotyping of aging in single yeast cells using a novel microfluidic device. Aging Cell , 11, 599-606 pmid:22498653.
|
22 |
Bi, S., Yu, D., Si, G., Luo, C., Li, T., Ouyang, Q., Jakovljevic, V., Sourjik, V., Tu, Y. and Lai, L. (2013) Discovery of novel chemoeffectors and rational design of Escherichia coli chemoreceptor specificity. Proc. Natl. Acad. Sci. U.S.A. , 110, 16814-16819 pmid:24082101.
|
23 |
Mohammadi, A., Byrne Rodgers, J., Kotera, I. and Ryu, W. S. (2013) Behavioral response of Caenorhabditis elegans to localized thermal stimuli. BMC Neurosci , 14, 66 pmid:23822173.
|
24 |
Ghosh, R., Mohammadi, A., Kruglyak, L. and Ryu, W. S. (2012) Multiparameter behavioral profiling reveals distinct thermal response regimes in Caenorhabditis elegans. BMC Biol. , 10, 85 pmid:23114012.
|
25 |
Nandagopal, S., Wu, D. and Lin, F. (2011) Combinatorial guidance by CCR7 ligands for T lymphocytes migration in co-existing chemokine fields. PLoS ONE , 6, e18183 pmid:21464944.
|
26 |
Jiang, L., Ouyang, Q. and Tu, Y. (2010) Quantitative modeling of Escherichia coli chemotactic motion in environments varying in space and time. PLoS Comput. Biol. , 6, e1000735 pmid:20386737.
|
27 |
Si, G., Wu, T., Ouyang, Q. and Tu, Y. (2012) Pathway-based mean-field model for Escherichiacoli chemotaxis. Phys. Rev. Lett. , 109, 048101 pmid:23006109.
|
28 |
Rotem, A., Abate, A. R., Utada, A. S., Van Steijn, V. and Weitz, D. A. (2012) Drop formation in non-planar microfluidic devices. Lab Chip , 12, 4263-4268 pmid:22864475.
|
29 |
Mazutis, L., Gilbert, J., Ung, W. L., Weitz, D. A., Griffiths, A. D. and Heyman, J. A. (2013) Single-cell analysis and sorting using droplet-based microfluidics. Nat. Protoc. , 8, 870-891 pmid:23558786.
|
30 |
Du, W., Li, L., Nichols, K. P. and Ismagilov, R. F. (2009) SlipChip. Lab Chip , 9, 2286-2292 pmid:19636458.
|
31 |
Wei, P., Wong, W. W., Park, J. S., Corcoran, E. E., Peisajovich, S. G., Onuffer, J. J., Weiss, A. and Lim, W. A. (2012) Bacterial virulence proteins as tools to rewire kinase pathways in yeast and immune cells. Nature , 488, 384-388 pmid:22820255.
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|