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Apoptosis during the development of pelvic floor muscle in anorectal malformation rats.

机译:肛门直肠畸形大鼠盆底肌肉发育过程中的凋亡。

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PURPOSE: Fecal incontinence and constipation still remain as major postoperative complications after procedures for anorectal malformations (ARM). The striated muscle complex (SMC) is one of the most important factors that influence defecation. Previous studies have demonstrated different degrees of the muscle complex dysplasia dependent on the complexity of ARM. To explore the mechanisms of maldevelopment of SMC in ARM, apoptosis was investigated during pelvic floor muscle development in rat embryos with ARM. METHODS: Anorectal malformations in rat embryos were induced by treating pregnant rats with ethylenethiourea on the 10th embryonic day (E10). Normal and ARM rat embryos from E16 to E21 were serial-sectioned transversely or sagittally, and SMCs were dissected and snap frozen. TdT mediated dUTP Nick Ending Labeling (TUNEL) staining and DNA ladder analysis were performed to identify apoptosis and expression of Bax/Bcl-2 were confirmed with immunohistochemical staining and Reverse Transcription-Polymerase Chain Reaction (RT-PCR) analysis. RESULTS: Hypoplastic and disordered SMC sling shifted cephalad, ventrally, and converged inferior to the rectourethral fistula and infiltrated connective tissue in ARM embryos. In the normal group, TUNEL-positive cells became evident on E17; sporadic positive staining was mainly localized in 2 areas as follows: the junction area between SMC and bulbocarvernosus muscle and posterior to the rectum where bilateral SMC converged. In the ARM group, massive positive staining of nuclei was observed from E16 to E21 and was mainly distributed in the dorsal part of the SMC. Electrophoresis of DNA samples yielded a "ladder" pattern of migration both in normal and the ARM group from E17 to E21, the ladders were stronger in the ARM group. In both groups, the expression of Bax/Bcl-2 was detectable on E17, the immunoreactivity increased on E19 and E21. Compared with the normal group, the expression of Bax was increased, whereas Bcl-2 was declined in the ARM group. Significant upregulation of Bax messenger RNA (mRNA) levels and downregulation of Bcl-2 mRNA levels were observed in ARM embryos. CONCLUSIONS: In the current study, abnormal apoptosis and disturbed expression of Bax/Bcl-2 were identified during SMC development in ARM embryos. It is suggested that precocious, excessive, and dislocated apoptosis might be a fundamental pathogenesis for the maldeveloped SMC in ARM rats. The temporospatial expressions of Bax/Bcl-2 indicate they may have an important role in the regulation of apoptosis of SMC.
机译:目的:大便失禁和便秘仍然是肛门直肠畸形(ARM)手术后的主要术后并发症。横纹肌复合物(SMC)是影响排便的最重要因素之一。先前的研究表明,取决于ARM的复杂性,不同程度的肌肉复杂性发育不良。为了探讨ARM中SMC发育不良的机制,研究了ARM胚胎大鼠盆底肌肉发育过程中的细胞凋亡。方法:在第10天(E10),用亚乙基硫脲处理妊娠大鼠,诱发大鼠胚胎的肛门直肠畸形。将E16至E21的正常和ARM大鼠胚胎横切或矢状切开,并切开SMC并速冻。进行TdT介导的dUTP缺口末端标记(TUNEL)染色和DNA阶梯分析以鉴定凋亡,并通过免疫组织化学染色和逆转录聚合酶链反应(RT-PCR)分析确认Bax / Bcl-2的表达。结果:发育不良和功能紊乱的SMC悬吊带向头,腹侧移位,并汇聚至ARM胚胎中的后脑瘘和结缔组织浸润下。在正常组中,TUNEL阳性细胞在E17上变得明显。散发性阳性染色主要分布在以下两个区域:SMC与球茎假丝肌之间的连接区域以及双侧SMC会聚的直肠后方。在ARM组中,从E16到E21观察到大量的核阳性染色,并且主要分布在SMC的背部。 DNA样品的电泳在正常和ARM组中从E17到E21均产生了“阶梯”迁移模式,而ARM组中的阶梯更强。两组均在E17上检测到Bax / Bcl-2的表达,在E19和E21上的免疫反应性增加。与正常组相比,ARM组的Bax表达增加,而Bcl-2的表达下降。在ARM胚胎中观察到Bax信使RNA(mRNA)水平的显着上调和Bcl-2 mRNA水平的下调。结论:在本研究中,在ARM胚胎的SMC发育过程中发现异常凋亡和Bax / Bcl-2表达异常。提示早熟,过度和脱位的细胞凋亡可能是ARM大鼠SMC发育不良的基本发病机制。 Bax / Bcl-2的颞pat表达可能在调节SMC凋亡中起重要作用。

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