The exocytotic event in chromaffin cells revealed by patch amperometry
暂无分享,去创建一个
G. Alvarez de Toledo | H. Horstmann | W. Almers | G. Dernick | M. Lindau | G. A. D. Toledo | W. Almers | H. Horstmann | A. Albillos | G. Dernick | M. Lindau | A. Albillos | Gregor Dernick
[1] E. Neher,et al. Protein Kinase C Enhances Exocytosis from Chromaffin Cells by Increasing the Size of the Readily Releasable Pool of Secretory Granules , 1996, Neuron.
[2] J. A. Jankowski,et al. Temporal characteristics of quantal secretion of catecholamines from adrenal medullary cells. , 1993, The Journal of biological chemistry.
[3] Robert H. Chow,et al. Delay in vesicle fusion revealed by electrochemical monitoring of single secretory events in adrenal chromaffin cells , 1992, Nature.
[4] W. Almers,et al. Currents through the fusion pore that forms during exocytosis of a secretory vesicle , 1987, Nature.
[5] W. Almers,et al. Final steps in exocytosis observed in a cell with giant secretory granules. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[6] R. Chow,et al. Rapid fluctuations in transmitter release from single vesicles in bovine adrenal chromaffin cells. , 1996, Biophysical journal.
[7] Robert H. Chow,et al. Electrochemical Detection of Secretion from Single Cells , 1995 .
[8] D. Scherman,et al. Inactivation of the catecholamine transporter during the preparation of chromaffin granule membrane ‘ghosts’ , 1987, FEBS letters.
[9] W. Almers,et al. Transmitter release from synapses: Does a preassembled fusion pore initiate exocytosis? , 1990, Neuron.
[10] E. Neher. Secretion without full fusion , 1993, Nature.
[11] D. Bruns,et al. Real-time measurement of transmitter release from single synaptic vesicles , 1995, Nature.
[12] M. Lindau,et al. The exocytotic fusion pore of small granules has a conductance similar to an ion channel , 1995, The Journal of cell biology.
[13] J. Phillips. Dynamic aspects of chromaffin granule structure , 1982, Neuroscience.
[14] J. A. Jankowski,et al. Temporally resolved catecholamine spikes correspond to single vesicle release from individual chromaffin cells. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[15] R. Wightman,et al. Time course of release of catecholamines from individual vesicles during exocytosis at adrenal medullary cells. , 1995, Biophysical journal.
[16] B. Sakmann,et al. Single-Channel Recording , 1995, Springer US.
[17] E Neher,et al. Discrete changes of cell membrane capacitance observed under conditions of enhanced secretion in bovine adrenal chromaffin cells. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[18] J. Zimmerberg,et al. Simultaneous electrical and optical measurements show that membrane fusion precedes secretory granule swelling during exocytosis of beige mouse mast cells. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[19] G. Bach. Kugelgrößenverteilung und Verteilung der Schnittkreise; ihre wechselseitigen Beziehungen und Verfahren zur Bestimmung der einen aus der anderen , 1967 .
[20] Robert S Zucker,et al. Mechanisms Determining the Time Course of Secretion in Neuroendocrine Cells , 1996, Neuron.
[21] W. Almers,et al. Properties of the fusion pore that forms during exocytosis of a mast cell secretory vesicle , 1990, Neuron.
[22] Julio M. Fernandez,et al. Pre- and Postfusion Regulation of Transmitter Release , 1997, Neuron.
[23] J. M. Fernández,et al. Release of secretory products during transient vesicle fusion , 1993, Nature.
[24] H. Horstmann,et al. Docked granules, the exocytic burst, and the need for ATP hydrolysis in endocrine cells , 1995, Neuron.
[25] A. Grinnell,et al. Integrins and modulation of transmitter release from motor nerve terminals by stretch. , 1995, Science.
[26] D. Scherman,et al. Time required for transmitter accumulation inside monoaminergic storage vesicles differs in peripheral and in central systems , 1988, Neuroscience.
[27] A. Grinnell,et al. Kinetics, Ca2+ Dependence, and Biophysical Properties of Integrin-Mediated Mechanical Modulation of Transmitter Release from Frog Motor Nerve Terminals , 1997, The Journal of Neuroscience.
[28] R. Wightman,et al. Fast-scan voltammetry of biogenic amines. , 1988, Analytical chemistry.