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在小鼠内耳出生前后发育过程中进行的TUNEL染色是否表明存在细胞凋亡?

Does TUNEL staining during peri- and post-natal development of the mouse inner ear indicate apoptosis?

作者信息

Orita Y, Nishizaki K, Sasaki J, Kanda S, Kimura N, Nomiya S, Yuen K, Masuda Y

机构信息

Department of Otorhinolaryngology, Okayama University Medical School, Japan.

出版信息

Acta Otolaryngol Suppl. 1999;540:22-6. doi: 10.1080/00016489950181143.

Abstract

Terminal deoxyribonucleotidyl transferase (TDT)-mediated dUTP-digoxigenin nick end labelling (TUNEL) is being used more frequently to investigate programmed cell death (PCD). We have applied this method in order to examine how PCD is involved in the development of the mouse inner ear. In a series of studies, we identified a population of TUNEL-positive cells in the perinatal mouse ear that could not be regarded as apoptosis based upon morphological features of the nuclei. Theoretically, TUNEL detects DNA fragmentation, which can also occur in necrosis. Other authors regard TUNEL-positive cells in the sensory epithelia of the rat equilibrium organs between gestational day (GD) 19 and 7 days after birth (DAB) as apoptosis. We determined whether or not cells in the inner ear of perinatal and post-natal mice were TUNEL-positive due to apoptosis. We stained the inner ears of BALB/c mice aged GD17.5-4 weeks by the TUNEL method and analysed morphology by light microscopy and transmission electron microscopy (TEM). TUNEL-positive cells were distinct in the saccule from DAB3, and in the cochlea from DAB8. The number of TUNEL-positive cells in the hair cells of the saccule and in the cochlea increased with age, and seemed to reach a plateau just before 2 weeks of age. However, morphological analyses did not reveal findings characteristic of apoptosis. We conclude that these TUNEL-positive cells were labelled not because of apoptosis, but due to necrosis or post-mortem autolysis. We surmise that TUNEL staining can identify vulnerable cells of the inner ear that consume high levels of oxygen and easily undergo autolysis.

摘要

末端脱氧核苷酸转移酶(TDT)介导的dUTP-地高辛配基缺口末端标记法(TUNEL)正越来越频繁地用于研究程序性细胞死亡(PCD)。我们应用此方法来研究PCD如何参与小鼠内耳的发育。在一系列研究中,我们在围产期小鼠耳中鉴定出一群TUNEL阳性细胞,基于细胞核的形态特征,这些细胞不能被视为凋亡细胞。从理论上讲,TUNEL检测DNA片段化,这也可能发生在坏死过程中。其他作者将妊娠第19天(GD)至出生后7天(DAB)大鼠平衡器官感觉上皮中的TUNEL阳性细胞视为凋亡细胞。我们确定围产期和产后小鼠内耳中的细胞是否因凋亡而呈TUNEL阳性。我们用TUNEL法对GD17.5至4周龄的BALB/c小鼠内耳进行染色,并通过光学显微镜和透射电子显微镜(TEM)分析形态。TUNEL阳性细胞在DAB3时在内耳球囊中明显可见,在DAB8时在耳蜗中明显可见。内耳球囊和耳蜗毛细胞中TUNEL阳性细胞的数量随年龄增加,在2周龄前似乎达到稳定水平。然而,形态学分析未揭示凋亡的特征性表现。我们得出结论,这些TUNEL阳性细胞被标记并非因为凋亡,而是由于坏死或死后自溶。我们推测TUNEL染色可以识别内耳中消耗大量氧气且容易发生自溶的易损细胞。

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