Apoptosis and proliferation in the inferior colliculus during postnatal development and epileptogenesis in audiogenic Krushinsky-Molodkina rats

被引:9
作者
Chernigovskaya, Elena, V [1 ]
Dorofeeva, Nadezhda A. [1 ]
Nasluzova, Elizaveta, V [1 ]
Kulikov, Alexey A. [1 ]
Ovsyannikova, Victoria V. [1 ]
Glazova, Margarita, V [1 ]
机构
[1] Russian Acad Sci, Sechenov Inst Evolutionary Physiol & Biochem, 44 Thorez Pr, St Petersburg 194223, Russia
关键词
Audiogenic seizures; Inferior colliculus; Neuronal proliferation; Apoptosis; Postnatal ontogenesis; Krushinsky-Molodkina rats; PILOCARPINE-INDUCED SEIZURES; GENETICALLY EPILEPSY-PRONE; TEMPORAL-LOBE EPILEPSY; NEURAL STEM-CELL; HIPPOCAMPAL-NEURONS; BRAIN; DEATH; NEUROGENESIS; PROTECTS; STRAIN;
D O I
10.1016/j.yebeh.2018.09.023
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
It is known that audiogenic seizure (AGS) expression is based on the activation of the midbrain structures such as the inferior colliculus (IC). It was demonstrated that excessive sound exposure during the postnatal developments of the IC in rats led to AGS susceptibility in adulthood, which correlated with underdevelopment of the IC. In adult rodents, noise overstimulation induced apoptosis in the IC. The purpose of this study was to investigate postnatal development of the IC in rats genetically prone to AGS and to check if audiogenic kindling would activate apoptosis and/or proliferation in the IC. In our study, we used inbred audiogenic Krushinsky-Molodkina (KM) rats, which are characterized by age-dependent seizure expression. Analysis of postnatal development showed the increased number of proliferating cells in the IC central nucleus of KM rats on the 14th postnatal day (P14) in comparison with those of Wistar rats. Moreover, we also observed increased apoptosis level and decreased general cell population in the IC central nucleus. These data pointed towards a delayed development of the IC in KM rats. Analysis of the IC central nucleus of KM rat after audiogenic kindling for a week, with one AGS per day, demonstrated dramatically increased cell death, which was accompanied with a reduction of general cell population. Audiogenic kindling also decreased proliferation in the IC central nucleus. However, a week after the last AGS, the number of proliferating cells was increased, which supposes a certain compensatory mechanism to prevent cell loss. (C) 2018 Elsevier Inc. All rights reserved.
引用
收藏
页码:227 / 234
页数:8
相关论文
共 36 条
[21]  
Paxinos G, 1998, RAT BRAIN IN STEREOTAXIC COORDINATES, FOURTH ED., pix
[22]   DEVELOPMENT OF FREQUENCY-SELECTIVE DOMAINS IN INFERIOR COLLICULUS OF NORMAL AND NEONATALLY NOISE-EXPOSED RATS [J].
PIERSON, M ;
SNYDERKELLER, A .
BRAIN RESEARCH, 1994, 636 (01) :55-67
[23]   THE SENSITIVE PERIOD AND OPTIMUM DOSAGE FOR INDUCTION OF AUDIOGENIC-SEIZURE SUSCEPTIBILITY BY KANAMYCIN IN THE WISTAR RAT [J].
PIERSON, MG ;
SWANN, JW .
HEARING RESEARCH, 1988, 32 (01) :1-10
[24]   The Krushinsky-Molodkina rat strain: The study of audiogenic epilepsy for 65 years [J].
Poletaeva, I. I. ;
Surina, N. M. ;
Kostina, Z. A. ;
Perepelkina, O. V. ;
Fedotova, I. B. .
EPILEPSY & BEHAVIOR, 2017, 71 :130-141
[25]   Epilepsy after early-life seizures can be independent of hippocampal injury [J].
Raol, YSH ;
Budreck, EC ;
Brooks-Kayal, AR .
ANNALS OF NEUROLOGY, 2003, 53 (04) :503-511
[26]   ANATOMICAL AND BEHAVIORAL-ANALYSES OF THE INHERITANCE OF AUDIOGENIC-SEIZURES IN THE PROGENY OF GENETICALLY EPILEPSY-PRONE AND SPRAGUE-DAWLEY RATS [J].
RIBAK, CE ;
ROBERTS, RC ;
BYUN, MY ;
KIM, HL .
EPILEPSY RESEARCH, 1988, 2 (06) :345-355
[27]   An abnormal GABAergic system in the inferior colliculus provides a basis for audiogenic seizures in genetically epilepsy-prone rats [J].
Ribak, Charles E. .
EPILEPSY & BEHAVIOR, 2017, 71 :160-164
[28]   Brain micro-ecologies: neural stem cell niches in the adult mammalian brain [J].
Riquelme, Patricio A. ;
Drapeau, Elodie ;
Doetsch, Fiona .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2008, 363 (1489) :123-137
[29]   Neural Stem Cell of the Hippocampus: Development, Physiology Regulation, and Dysfunction in Disease [J].
Rolando, Chiara ;
Taylor, Verdon .
STEM CELLS IN DEVELOPMENT AND DISEASE, 2014, 107 :183-206
[30]   Neurogenesis and neuronal regeneration in status epilepticus [J].
Rotheneichner, Peter ;
Marschallinger, Julia ;
Couillard-Despres, Sebastien ;
Aigner, Ludwig .
EPILEPSIA, 2013, 54 :40-42