NAD causes dissociation of neural networks into subpopulations of neurons by inhibiting the network synchronous hyperactivity evoked by ammonium ions


Дәйексөз келтіру

Толық мәтін

Ашық рұқсат Ашық рұқсат
Рұқсат жабық Рұқсат берілді
Рұқсат жабық Тек жазылушылар үшін

Аннотация

The mechanisms of hyperexcitability of neuronal networks by ammonium ions and inhibition of this activity by coenzyme NAD were investigated on mixed neuro-glial cultures of rat hippocampus. Ammonium ions cause activation of silent or spontaneously active neuronal networks inducing a bursting electrical activity of neurons and high-frequency synchronous calcium oscillations. In control conditions NAD completely inhibits spontaneous activity of the neuronal network. NAD added after NH4Cl disrupts synchronous oscillation in neurons and splits the network into five populations of neurons. In 4% of cells NAD decreased the amplitude of Ca2+ oscillations, preserving initial mode of oscillations. In 32% of cells, a transient suppression of the neuronal oscillations was observed: inhibition was followed by restoration of the synchronous periodic activity. In 10% of cells, NAD produced a gradual decrease of Ca2+ oscillations down to a complete termination of the initial periodic activity induced by ammonium. Fast and total inhibition of Ca2+ oscillations by NAD was observed in two small groups of neurons. First group (A) participated in the initial spontaneous network activity (5% of cells) with a period of 66–100 s. Second group (B), on the contrary, did not participate in the spontaneous activity. This group of neurons began to pulse with a high frequency (with a period of 6–8 s) synchronously with other neurons in the network after the addition of NH4Cl. Based on the comparison of calcium responses of different cell groups to the depolarization caused by KCl and NH4Cl and to the application of domoic acid, as well as on the results obtained in experiments with fluorescent antibodies against GAD 65/67, parvalbumin, calretinin, and calbindin, we propose that neurons of populations (A) and (B) may belong to GABAergic neurons containing calbindin and parvalbumin, respectively. Further analysis of specificity of the NAD effect on these neuronal groups may allow identification of the main targets of the ammonium toxic action in the brain. Thus, we have shown that NAD selectively inhibits neuronal activity and high-frequency synchronous Ca2+ oscillations in GABAergic neurons containing calcium-binding proteins. The inhibition is accompanied by desynchronization of oscillations and dissociation of neuronal network into several populations.

Авторлар туралы

V. Zinchenko

Institute of Cell Biophysics

Хат алмасуға жауапты Автор.
Email: vpz@mail.ru
Ресей, ul. Institutskaya 3, Pushchino, Moscow oblast, 142290

E. Turovsky

Institute of Cell Biophysics

Email: vpz@mail.ru
Ресей, ul. Institutskaya 3, Pushchino, Moscow oblast, 142290

M. Turovskaya

Institute of Cell Biophysics

Email: vpz@mail.ru
Ресей, ul. Institutskaya 3, Pushchino, Moscow oblast, 142290

A. Berezhnov

Institute of Cell Biophysics

Email: vpz@mail.ru
Ресей, ul. Institutskaya 3, Pushchino, Moscow oblast, 142290

A. Sergeev

Institute of Cell Biophysics

Email: vpz@mail.ru
Ресей, ul. Institutskaya 3, Pushchino, Moscow oblast, 142290

V. Dynnik

Institute of Cell Biophysics; Institute of Theoretical and Experimental Biophysics

Email: vpz@mail.ru
Ресей, ul. Institutskaya 3, Pushchino, Moscow oblast, 142290; ul. Institutskaya 3, Pushchino, Moscow oblast, 142290


© Pleiades Publishing, Ltd., 2016

Осы сайт cookie-файлдарды пайдаланады

Біздің сайтты пайдалануды жалғастыра отырып, сіз сайттың дұрыс жұмыс істеуін қамтамасыз ететін cookie файлдарын өңдеуге келісім бересіз.< / br>< / br>cookie файлдары туралы< / a>