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阻塞性涎腺炎:大鼠模型

Obstructive sialadenitis: a rat model.

作者信息

Cummins M, Dardick I, Brown D, Burford-Mason A

机构信息

Conacher Head and Neck Cancer Research Unit, Toronto Hospital, Ontario.

出版信息

J Otolaryngol. 1994 Feb;23(1):50-6.

PMID:8170021
Abstract

Obstructive adenitis of major salivary glands is a common entity. Although the pathologic features are well recognized, the various cell types involved in the atrophy and subsequent regeneration of the obstructed salivary gland have been controversial. For this reason, an animal model of obstructive sialadenitis that induced atrophy in the rat parotid gland was developed. A clamp was devised that would occlude the main excretory duct of the gland inducing atrophy, but that, following removal, left the duct patent and allowed regeneration to occur. Both atrophy and regeneration were studied, and the results presented. The number and location of cycling acinar, intercalated, striated, and excretory duct cells were identified, using an antibody to proliferating cell nuclear antigen (PCNA). All cell types were induced to cycle during both the atrophy and regeneration phase, but the degree of cycling was more pronounced during regeneration. Three days after release of the duct obstruction, cycling acinar cells had increased 40-fold, while striated and intercalated ducts increased 6.5- and 5.0-fold, respectively. More importantly, peak cycling of acinar cells preceded, but paralleled, the increase in acinar cell composition of the gland. This model of obstructive sialadenitis indicates that all cell types are responsible for regeneration in the obstructed rat parotid gland.

摘要

大唾液腺阻塞性腺炎是一种常见病症。尽管其病理特征已广为人知,但关于阻塞性唾液腺萎缩及后续再生过程中涉及的各种细胞类型一直存在争议。因此,构建了一种能在大鼠腮腺诱导萎缩的阻塞性涎腺炎动物模型。设计了一种夹子,可阻塞腺体的主要排泄导管以诱导萎缩,但移除夹子后导管仍保持通畅并允许再生发生。对萎缩和再生过程均进行了研究并展示结果。使用增殖细胞核抗原(PCNA)抗体确定了增殖的腺泡、闰管、纹状管和排泄管细胞的数量及位置。在萎缩和再生阶段,所有细胞类型均被诱导进入细胞周期,但再生阶段的细胞周期程度更为明显。解除导管阻塞三天后,增殖的腺泡细胞增加了40倍,而纹状管和闰管分别增加了6.5倍和5.0倍。更重要的是,腺泡细胞的细胞周期峰值先于但平行于腺体中腺泡细胞组成的增加。这种阻塞性涎腺炎模型表明,所有细胞类型均参与了阻塞性大鼠腮腺的再生。

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