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人类气管支气管分泌物:粘蛋白糖蛋白和溶菌酶分泌系统的发育

Human tracheobronchial secretions: development of mucous glycoprotein and lysozyme-secreting systems.

作者信息

Boat T F, Kleinerman J I, Fanaroff A A, Stern R C

出版信息

Pediatr Res. 1977 Sep;11(9 Pt 1):977-80. doi: 10.1203/00006450-197709000-00009.

Abstract

Baseline rates for secretion of mucous glycoprotein were similar similar (680--830 microgram/g tissue/24 hour) for cultured tracheal epithelium from newborns of 26--32 weeks' gestation, full term newborns, and older children. Addition of methacholine to culture medium augmented secretory rates of glycoprotein from all tissue sources 3--5 fold. The overall composition of secreted mucous glycoproteins changed little with increasing age. A trend toward less sulfation and toward increased sialic acid and fucose content was noted in secreted glycoproteins from explants of older subjects. Histochemical observations of stored glycoprotein in tracheal tissue, which was subsequently used for organ culture experiments, confirmed that a modest, but consistent sulfate to sialic acid shift occurs during early life. In contrast, baseline secretory rates for lysozyme from tracheal epithelium of preterm infants were one-half as large as rates from epithelium of full term babies and were refractory to cholinergic stimulation. Stimulation of lysozyme secretion by a cholinergic agonist was achieved in all cases by 40 weeks' gestation. We conclude that basal glycoprotein secretion and the mechanism for glycoprotein response to cholinergic stimulation have developed by the earliest age of viability, but that lysozyme secretion is deficient and is unresponsive to cholinergic stimulation in tracheal tissue from preterm newborns.

摘要

对于妊娠26 - 32周的新生儿、足月新生儿和大龄儿童的培养气管上皮,黏液糖蛋白的基础分泌率相似(680 - 830微克/克组织/24小时)。向培养基中添加乙酰甲胆碱可使所有组织来源的糖蛋白分泌率提高3 - 5倍。随着年龄增长,分泌的黏液糖蛋白的总体组成变化不大。在年长受试者外植体分泌的糖蛋白中,观察到硫酸化减少、唾液酸和岩藻糖含量增加的趋势。对随后用于器官培养实验的气管组织中储存的糖蛋白进行组织化学观察证实,在生命早期会发生适度但持续的硫酸盐向唾液酸的转变。相比之下,早产儿气管上皮溶菌酶的基础分泌率仅为足月儿上皮分泌率的一半,且对胆碱能刺激无反应。到妊娠40周时,在所有情况下胆碱能激动剂均可刺激溶菌酶分泌。我们得出结论,基础糖蛋白分泌以及糖蛋白对胆碱能刺激的反应机制在最早可存活年龄时就已发育,但早产儿气管组织中的溶菌酶分泌不足且对胆碱能刺激无反应。

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