EXPERIMENTAL MODELING AND THE DISCUSSION ON THE SYNCYTIAL CONNECTIONS IN THE NERVOUS SYSTEM

O S Sotnikov , N M Paramonova , A A Laktionova , I A Solov'eva , O S Sotnikov , N M Paramonova , A A Loktionova , I A Solovyova

Morphology ›› 2010, Vol. 138 ›› Issue (6) : 15 -20.

PDF
Morphology ›› 2010, Vol. 138 ›› Issue (6) : 15 -20. DOI: 10.17816/morph.399376
Articles
other

EXPERIMENTAL MODELING AND THE DISCUSSION ON THE SYNCYTIAL CONNECTIONS IN THE NERVOUS SYSTEM

Author information +
History +
PDF

Abstract

To solve the problem of the possibility of syncytial connection in the nervous system, this paper for the first time presents the evidence of experimental syncytial fusion of neurons. Neurons, isolated from the ganglia of the mollusc Lymnaea stagnalis and freed from the surrounding glia by pronase treatment, were drawn together by centrifugation and were kept in the culture medium for two days in the aggregated state. The neurons preserved the ability to generate normal processes. At the borders of adjacent cells, contacting mutual protrusions (feet) were formed that were separated from each other by vacuole-like enlargements of the intercellular clefts. Using the electron microscope, it was shown that at the borders of contacting feet the external cell membranes were destroyed. Only residual fragments of the destroyed membranes were detected. The cytoplasm of one adjacent cell was continuous with the cytoplasm of the other. Thus, the experiments confirm once more the correctness of the cell theory concerning the common main properties of all the cells and expand the concepts of the neuronal theory by the statement that in the nervous system, along with chemical synapses and electrical membrane contacts, the syncytial interneuronal connections are also possible.

Keywords

neurons / culture / syncytial connections

Cite this article

Download citation ▾
O S Sotnikov, N M Paramonova, A A Laktionova, I A Solov'eva, O S Sotnikov, N M Paramonova, A A Loktionova, I A Solovyova. EXPERIMENTAL MODELING AND THE DISCUSSION ON THE SYNCYTIAL CONNECTIONS IN THE NERVOUS SYSTEM. Morphology, 2010, 138(6): 15-20 DOI:10.17816/morph.399376

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Гасс Г.В. и Черномордик Л.В. Обратимые крупномасштабные деформации клеточных мембран при электрической обработке клеток: электроиндуцируемое образование блебов. Биол. мембр., 1989, т. 6, № 3, с. 318-330.

[2]

Костенко М.А., Сотников О.С., Чистякова И.А. и Сергеева С.С. Методические и методологические подходы к исследованию нейронов мозга взрослого животного (Lymnaea stagnalis) в культуре ткани. Морфология, 1998, т. 114, вып. 4, с. 102-106.

[3]

Самосудова Н.В., Шунганская В.Е. и Ларин Ю.С. Межклеточные взаимодействия, предшествующие слиянию мышечных клеток. Цитология, 1985, т. 27, № 12, с. 1404-1407.

[4]

Сотников О.С. Образование нейроно-глиальных контактов в автономном ганглии при пессимуме Введенского. Нейронауки: теоретичнi та клiнiчнi аспекти. 2005, т. 1, № 1, с. 47-52.

[5]

Сотников О.С., Парамонова Н.М., Лактионова А.А. и Соловьева И.А. Цитоплазматическая связь - одна из трех форм межнейронной связи. Успехи физиол. наук, 2010, т. 41, № 1, с. 45-57.

[6]

Чернышев В.И., Смехова Т.Р., Тараковский Ю.С. и Боровягин В.Л. Структурные изменения мембран эритроцитов человека при взаимодействии с положительно заряженными липосомами. Биол. мембр., 1989, т. 6, № 5, с. 516-528.

[7]

Bennett M.V.L., Spira M. and Pappas G.D. Effects of fixatives for electron microscopy on properties of electrotonic junctions between embryonic cells. J. Cell Biol., 1972, v. 55, p. 17а.

[8]

Bullock T.H., Bennett M.V.L., Johnston D. et al. Neuroscience. The neuron doctrine, redux. Science, 2005, v. 310, № 5749, p. 791-793.

[9]

De Robertis E. and Bennett H.S. Some features of the submicroscopic morphology of synapses in frog and earthworm. J. Biophys. Biochem. Cytol., 1955, v. 1, p. 47-58.

[10]

Evans E. and Rawicz W. Entropy - driven tension and bending elasticity in condensed - fluid membranes. Phys. Rev. Letters, 2003, v. 64, p. 2094-2097.

[11]

Guillery R.W. Roating the neuron doctrine to the cell theory. Should contemporary knowledge change our view of the neuron doctrine? Brain Res. Rev., 2007, v 5, № 2, p. 411-421.

[12]

Kalderon N., Epstein M. L. and Gilula N.B. Cell-to-cell communication and myogenesis. J. Cell Biol., 1977, v. 75, p. 788-806.

[13]

Kruger L. and Otis T.S. Whither withered Golgi? A retrospective evaluation of reticularist and synaptic constructs. Brain Res. Bull., 2007, v. 72, № 4-6, p. 201-207.

[14]

Peters A. Golgi, Cajal and the fine structure of the nervous system. Brain Res. Rev., 2007, v. 55, № 2, p. 256-263.

[15]

Rash J.E. and Fambrough D. Ultrastructural and electrophysiological correlates of cell coupling and cytoplasmic fusion during myogenesis in vitro. Dev. Biol., 1973, v. 30, p. 166-186.

[16]

Robinson J.M., Roos D.S., Davidson R.L. and Karnovsky M.J. Membrane alterations and other morphological features associated with polyethylene glycol induced cell fusion. J. Cell Sci., 1979, v. 40, p. 63-75.

RIGHTS & PERMISSIONS

Eco-Vector

AI Summary AI Mindmap
PDF

131

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/