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首页> 外文期刊>Journal of Morphology >SEQUENTIAL CHANGES OF PROGRAMMED CELL DEATH IN DEVELOPING FETAL MOUSE LIMBS AND ITS POSSIBLE ROLES IN LIMB MORPHOGENESIS
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SEQUENTIAL CHANGES OF PROGRAMMED CELL DEATH IN DEVELOPING FETAL MOUSE LIMBS AND ITS POSSIBLE ROLES IN LIMB MORPHOGENESIS

机译:发育中的胎鼠肢体的程序性细胞死亡的序贯变化及其在肢体形成中的可能作用

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摘要

Apoptotic cell death in the developing limb of mouse fetuses was examined sequentially on days 11-15 of gestation by means of Nile blue (NB) sulfate staining with special reference to its relation to limb morphogenesis. With some exceptions, programmed cell death (PCD) in the hand and foot was observed in the mesenchyme but not in the surface ectoderm. We found that during digital formation PCD begins at the proximal portion of the interdigital mesenchyme and subsequently expands distally. Therefore, the initial PCD that occurs in the interdigital zones may determine the proximal ends of digital separation and also contribute to the demarcation between the palm (sole) and digits (toes). During digital separation, the areas of PCD in the interdigital zones were found to become larger and expand distally on day 13, which may be necessary for the separation of digits and for determining the interdigital area to disappear. PCD in presumptive phalangeal joints was also found to proceed from proximal to more distal joints. The PCD in presumptive joints may be required for the separation of phalanges and metacarpal (metatarsal) bones and for the formation of joint cavities. In addition, intense PCD was observed in the radial (tibial) and ulnar (fibular) margins of the hand and foot plates for 4-5 days. Such PCD at marginal areas seems to prevent the formation of supernumerary digits (preaxial and postaxial polydactyly) and other digital malformations. Therefore, the timing when PCD commences and ends, the sites where PCD occurs, and the intensity, duration, and proximo-distal progress of PCD appear to be genetically determined, and the elimination of unnecessary cells by PCD may be essential for normal limb morphogenesis. The present findings also suggest that the normal progress of PCD in the hand and foot plates of rodent fetuses may prevent the formation of some limb malformations such as webbing fusion of digits, polydactyly, or cleft hand/foot. (C) 1996 Wiley-Liss, Inc. [References: 33]
机译:在妊娠的第11-15天,通过硫酸尼罗蓝(NB)染色对小鼠胎儿发育中的肢体中的凋亡细胞死亡进行了顺序检查,特别是它与肢体形态发生的关系。除某些例外,在间充质中观察到手足的程序性细胞死亡(PCD),但在外胚层中未观察到。我们发现在数字形成过程中,PCD从叉指间充质的近端开始,然后向远侧扩展。因此,出现在叉指区中的初始PCD可能确定叉指分离的近端,并且还有助于在手掌(脚掌)和手指(脚趾)之间划界。在数字分离期间,在第13天,发现叉指区中的PCD区域变大并向远侧扩展,这对于分离手指和确定叉指区消失可能是必需的。还发现推定的指骨关节中的PCD从近端关节延伸到更多远端关节。推定关节中的PCD可能需要用于分离指骨和掌骨(掌骨),以及形成关节腔。此外,在手和脚板的the骨(胫骨)和尺骨(腓骨)边缘观察到了强烈的PCD 4-5天。边缘区域的这种PCD似乎可以防止形成多余的数字(前轴和后轴多指)和其他数字畸形。因此,PCD的开始和结束时间,PCD发生的部位以及PCD的强度,持续时间和近距进展似乎是由遗传决定的,并且PCD消除不必要的细胞对于正常肢体形态发生可能是必不可少的。 。目前的发现还表明,在啮齿动物胎儿的手和足板中PCD的正常进展可能会阻止某些肢体畸形的形成,例如手指的织带融合,多指畸形或手脚裂。 (C)1996 Wiley-Liss,Inc. [参考:33]

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