Literature DB >> 11465857

Fast intracellular motion in the living cell by video rate reflection confocal laser scanning microscopy.

P Vesely1, A Boyde.   

Abstract

Fast intracellular motion (FIM) was first revealed by back scattered light (BSL) imaging in video rate confocal scanning laser microscopy (VRCSLM), beyond the limits of spatial and temporal resolution obtainable with conventional optical microscopy. BSL imaging enabled visualisation of intra and extracellular motion with resolution in space down to 0.2 microm and in time to 1/25th of a second. Mapping the cell space at 0.2 microm x 0.2 microm (XY = in instantaneous best focal plane) x 0.5 microm (Z = height/depth, optic axis direction) volume steps revealed a communication layer above the known contact layer and an integrated dynamic spatial network (IDSN) towards the cell centre. FIM was originally observed as localised quasichaotic dancing (dithering) or reflecting patches/spots in the cell centre, faster in the darker nuclear space. Later, a second type of FIM was recognised which differed by the presence of a varied proportion of centrifugal and centripetal directional movements and/or jumping of patches/spots in the cell centre and outside the nuclear space. The first type is characteristic for cells in slightly adverse conditions while the second type has so far only been found in eutrophic cells. Temporal speeding up and coarsening of FIM, followed by slowing and eventually cessation at cell death, was found on exposure to strong stressors. It was concluded that the state of FIM provides instantaneous information about individual cell reactions to actual treatment and about cell survival. A putative switch between the first and second type FIM could be considered as an indicator of timing of cellular processes. The significance of FIM for the biology of the cell is seen in the rapid assessment of the condition of an individual live cell investigated by combination of various methods. Requirements for further development of this approach are outlined.

Mesh:

Year:  2001        PMID: 11465857      PMCID: PMC1468254          DOI: 10.1046/j.1469-7580.2001.19860641.x

Source DB:  PubMed          Journal:  J Anat        ISSN: 0021-8782            Impact factor:   2.610


  11 in total

Review 1.  Cytoarchitecture and physical properties of cytoplasm: volume, viscosity, diffusion, intracellular surface area.

Authors:  K Luby-Phelps
Journal:  Int Rev Cytol       Date:  2000

2.  Nanovid microscopy.

Authors:  H Geerts; M de Brabander; R Nuydens
Journal:  Nature       Date:  1991-06-27       Impact factor: 49.962

3.  Movements and other distinguishing features of small vesicles identified by darkfield microscopy in living macrophages.

Authors:  M R Young; P D'Arcy Hart
Journal:  Exp Cell Res       Date:  1986-05       Impact factor: 3.905

4.  Simple modification of a commercial scanning laser microscope to incorporate dark-field imaging.

Authors:  P Török; Z Laczik; J N Skepper
Journal:  J Microsc       Date:  1996-03       Impact factor: 1.758

5.  Novel method for stereo imaging in light microscopy at high magnifications.

Authors:  G Greenberg; A Boyde
Journal:  Neuroimage       Date:  1993-09       Impact factor: 6.556

6.  Video rate confocal laser scanning reflection microscopy in the investigation of normal and neoplastic living cell dynamics.

Authors:  P Vesely; A Boyde
Journal:  Scanning Microsc Suppl       Date:  1996

7.  Tumour cell surface specialization in the uptake of nutrients evidenced by cinemicrography as a phenotypic condition for density independent growth.

Authors:  P Veselý
Journal:  Folia Biol (Praha)       Date:  1972       Impact factor: 0.906

8.  A new light microscopic method for the synchronous bidirectional illumination and viewing of living cells in different contrast modes, and/or at different focal levels or magnifications.

Authors:  M Malý; P Veselý
Journal:  J Microsc       Date:  1979-12       Impact factor: 1.758

9.  Video-rate confocal reflection microscopy of neoplastic cells: rate of intracellular movement and peripheral motility characteristic of neoplastic cell line (RSK4) with high degree of growth independence in vitro.

Authors:  P Vesely; S J Jones; A Boyde
Journal:  Scanning       Date:  1993 Jan-Feb       Impact factor: 1.932

10.  Quantitative analysis of the movements of cytoplasmic granules in polarized fibroblasts.

Authors:  I S Grigoriev; A A Chernobelskaya; I A Vorobjev
Journal:  Membr Cell Biol       Date:  1997
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