Zum Sekretionsmechanismus der Katecholamine: Eine Untersuchung des Nebennierenmarks mit der Gefrierätztechnik / The Mechanism of Catecholamine Secretion: A Study of the Adrenal Medulla with the Freeze-etching Technique

Author(s):  
H. Winkler ◽  
H. Plattner ◽  
H. Hörtnagl ◽  
W. Pfaller
Author(s):  
G. G. Cocks ◽  
C. E. Cluthe

The freeze etching technique is potentially useful for examining dilute solutions or suspensions of macromolecular materials. Quick freezing of aqueous solutions in Freon or propane at or near liquid nitrogen temperature produces relatively large ice crystals and these crystals may damage the structures to be examined. Cryoprotective agents may reduce damage to the specimem, hut their use often results in the formation of a different set of specimem artifacts.In a study of the structure of polyethylene oxide gels glycerol and sucrose were used as cryoprotective agents. The experiments reported here show some of the structures which can appear when these cryoprotective agents are used.Figure 1 shows a fractured surface of a frozen 25% aqueous solution of sucrose. The branches of dendritic ice crystals surrounded hy ice-sucrose eutectic can be seen. When this fractured surface is etched the ice in the dendrites sublimes giving the type of structure shown in Figure 2. The ice-sucrose eutectic etches much more slowly. It is the smooth continuous structural constituent surrounding the branches of the dendrites.


The freeze-etching technique must be improved if structures at the molecular size level are to be seen. The limitations of the technique are discussed here together with the progress made in alleviating them. The vitrification of living specimens is limited by the fact that very high freezing rates are needed. The critical freezing rate can be lowered on the one hand by the introduction of antifreeze agents, on the other hand by the application of high hydrostatic pressure. The fracture process may cause structural distortions in the fracture face of the frozen specimen. The ‘double-replica’ method allows one to evaluate such artefacts and provides an insight into the way that membranes split. During etching there exists the danger of contaminating the fracture faces with condensable gases. Because of specimen temperatures below —110 °C, special care has to be taken in eliminating water vapour from the high vacuum. An improvement in coating freeze-etched specimens has resulted from the application of electron guns for evaporation of the highest melting-point metals. If heat transfer from gun to specimen is reduced to a minimum, Pt, Ir, Ta, W and C can be used for shadow casting. Best results are obtained with Pt-C and Ta-W . With the help of decoration effects Pt-C shadow castings give the most information about the fine structural details of the specimen.


1971 ◽  
Vol 9 (3) ◽  
pp. 581-601
Author(s):  
D. G. ROBINSON ◽  
R. D. PRESTON

Naked swarmers of both Cladophora rupestris and Chaetomorpha melagonium have been examined by the freeze-etching technique. The swarmers of Cladophora, collected just after settling, reveal several layers of granules external to the plasmalemma and internal to the so-called ‘fibrous-layer’. Chaetomorpha swarmers collected just before settling show extrusion of vesicles through the plasmalemma. The structures associated with the membranes are discussed in relation to known features of these swarmers already observed by sectioning. The role of granules in the synthesis of cell wall microfibrils is strengthened though the spatial arrangement of the granules seen in this investigation does not completely fulfil the ‘ordered granule’ hypothesis. Description of, and comments on, features related to cell wall synthesis, particularly the Golgi and vacuolar systems, are given.


2016 ◽  
Vol 20 (6) ◽  
pp. 629
Author(s):  
Seung-Yeol Na ◽  
Ki-Hwan Kim ◽  
Mi-Sung Choi ◽  
Kang-Su Ha ◽  
Dong-Yoon Lim

1991 ◽  
Vol 444 (1) ◽  
pp. 349-362 ◽  
Author(s):  
T D Wakade ◽  
M A Blank ◽  
R K Malhotra ◽  
R Pourcho ◽  
A R Wakade

1989 ◽  
Vol 49 ◽  
pp. 185
Author(s):  
Eiichi Tachikawa ◽  
Saburo Takahashi ◽  
Chou Shimizu ◽  
Norihiro Ohstubo ◽  
Mituharu Mikami ◽  
...  

1976 ◽  
Vol 9 (1) ◽  
pp. 39a-45
Author(s):  
S. SENO ◽  
N. OTSUKA ◽  
NAGAYASU OTSUKA ◽  
SHIGETO KANDA ◽  
JUNZO SASAKI

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