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哺乳动物胎儿胰腺中肽类激素的个体发生发育

Ontogenic development of peptide hormones in the mammalian fetal pancreas.

作者信息

Reddy S, Elliott R B

机构信息

Department of Paediatrics, School of Medicine, Auckland, New Zealand.

出版信息

Experientia. 1988 Jan 15;44(1):1-9. doi: 10.1007/BF01960221.

Abstract

The ontogeny of insulin, glucagon, PP and somatostatin in the mammalian fetal pancreas has been examined in recent years largely by immunocytochemistry and in some instances by radioimmunoassay. Complete ontogenic data are available only for the rat, human, pig and sheep. Figure 3 compares the time of appearance of the endocrine cell-types within the fetal pancreas when the periods of gestation of the four species are converted to a uniform scale. The striking ontogenic difference in the rat probably reflects the immaturity of the rodent fetus at birth compared with the human, pig and sheep. In the fetal pancreas, differences in cell number of glucagon and PP cells in the dorsal and ventral lobes become apparent from an early gestational period. Factors responsible for the functional and structural maturation of the fetal pancreatic endocrine cells and the processes involved in pancreatic organogenesis are poorly understood. Studies in these areas would have clinical implications since it may be possible in the future to employ agents for selective replication of fetal beta-cells for transplantation in patients with Type I diabetes, bearing in mind that such cells must have the capacity to respond to normal stimuli and repressors when transplanted. The presence of the other islet cell-types may be obligatory for these appropriate responses. This would require a more complete knowledge of those factors which produce the normal selectivity of the four hormonal cell-types.

摘要

近年来,主要通过免疫细胞化学方法,并在某些情况下通过放射免疫测定法,对哺乳动物胎儿胰腺中胰岛素、胰高血糖素、胰多肽(PP)和生长抑素的个体发生进行了研究。目前仅获得了大鼠、人类、猪和绵羊的完整个体发生数据。图3比较了将这四个物种的妊娠期换算为统一尺度时,胎儿胰腺内分泌细胞类型出现的时间。大鼠个体发生的显著差异可能反映出与人类、猪和绵羊相比,啮齿动物胎儿出生时的不成熟。在胎儿胰腺中,从妊娠早期开始,背叶和腹叶中胰高血糖素和PP细胞数量的差异就变得明显。目前对负责胎儿胰腺内分泌细胞功能和结构成熟的因素以及胰腺器官发生过程的了解还很少。这些领域的研究具有临床意义,因为考虑到未来可能会使用药物来选择性复制胎儿β细胞,用于I型糖尿病患者的移植,而这些细胞在移植时必须有能力对正常刺激和抑制因子作出反应。其他胰岛细胞类型的存在可能是这些适当反应所必需的。这将需要更全面地了解那些产生四种激素细胞类型正常选择性的因素。

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