Topographical and physicochemical modification of material surface to enable patterning of living cells

被引:145
作者
Jung, DR [1 ]
Kapur, R [1 ]
Adams, T [1 ]
Giuliano, KA [1 ]
Mrksich, M [1 ]
Craighead, HG [1 ]
Taylor, DL [1 ]
机构
[1] Cellom Inc, Pittsburgh, PA 15238 USA
关键词
cell patterning; contact guidance; drug discovery; high-content screening; surface modification; cell-based sensors;
D O I
10.1080/20013891081700
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Precise control of the architecture of multiple cells in culture and in vivo via precise engineering of the material surface properties is described as cell patterning. Substrate patterning by control of the surface physicochemical and topographic features enables selective localization and phenotypic and genotypic control of living cells. In culture, control over spatial and temporal dynamics of cells and heterotypic interactions draws inspiration from in vivo embryogenesis and haptotaxis. Patterned arrays of single or multiple cell types in culture serve as model systems for exploration of cell-cell and cell-matrix interactions. More recently, the patterned arrays and assemblies of tissues have found practical applications in the fields of Biosensors and cell-based assays for Drug Discovery. Although the field of cell patterning has its origins early in this century, an improved understanding of cell-substrate interactions and the use of microfabrication techniques borrowed from the microelectronics industry have enabled significant recent progress. This review presents the important early discoveries and emphasizes results of recent state-of-the-art cell patterning methods. The review concludes by illustrating the growing impact of cell patterning in the areas of bioelectronic devices and cell-based assays for drug discovery.
引用
收藏
页码:111 / 154
页数:44
相关论文
共 272 条
  • [1] PIEZOELECTRIC QUIDANCE CHANNELS ENHANCE REGENERATION IN THE MOUSE SCIATIC-NERVE AFTER AXOTOMY
    AEBISCHER, P
    VALENTINI, RF
    DARIO, P
    DOMENICI, C
    GALLETTI, PM
    [J]. BRAIN RESEARCH, 1987, 436 (01) : 165 - 168
  • [2] [Anonymous], 1972, ELECTRODES MEASUREME
  • [3] ARKLES BC, 1980, SILYATED SURFACES, P363
  • [4] ARQUINT P, 1994, CLIN CHEM, V40, P1805
  • [5] BANKS D, 1998, ENG SCI ED J JUN, P135
  • [6] ACCELERATION OF FRACTURE REPAIR BY ELECTROMAGNETIC-FIELDS - SURGICALLY NONINVASIVE METHOD
    BASSETT, CAL
    PAWLUK, RJ
    PILLA, AA
    [J]. ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1974, 238 (OCT11) : 242 - 262
  • [7] Reach plans in eye-centered coordinates
    Batista, AP
    Buneo, CA
    Snyder, LH
    Andersen, RA
    [J]. SCIENCE, 1999, 285 (5425) : 257 - 260
  • [8] Bellairs R., 1982, CELL BEHAV
  • [9] BERNFIELD MR, 1973, AM ZOOL, V13, P1067
  • [10] HOW DOES THE EXTRACELLULAR-MATRIX DIRECT GENE-EXPRESSION
    BISSELL, MJ
    HALL, HG
    PARRY, G
    [J]. JOURNAL OF THEORETICAL BIOLOGY, 1982, 99 (01) : 31 - 68