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正常及限钠发育过程中的味蕾细胞动态变化。

Taste bud cell dynamics during normal and sodium-restricted development.

作者信息

Hendricks Susan J, Brunjes Peter C, Hill David L

机构信息

Virginia Merrill Bloedel Hearing Research Center and Department of Otolaryngology, University of Washington, Seattle, Washington 98195-7923, USA.

出版信息

J Comp Neurol. 2004 Apr 26;472(2):173-82. doi: 10.1002/cne.20064.

Abstract

Taste bud volume increases over the postnatal period to match the number of neurons providing innervation. To clarify age-related changes in fungiform taste bud volume, the current study investigated developmental changes in taste bud cell number, proliferation rate, and life span. Taste bud growth can largely be accounted for by addition of cytokeratin-19-positive taste bud cells. Examination of taste bud cell kinetics with 3H-thymidine autoradiography revealed that cell life span and turnover periods were not altered during normal development but that cells were produced more rapidly in young rats, a prominent modification that could lead to increased taste bud size. By comparison, dietary sodium restriction instituted during pre- and postnatal development results in small taste buds at adulthood as a result of fewer cytokeratin-19-positive cells. The dietary manipulation also had profound influences on taste bud growth kinetics, including an increased latency for cells to enter the taste bud and longer life span and turnover periods. These studies provide fundamental, new information about taste bud development under normal conditions and after environmental manipulations that impact nerve/target matching.

摘要

味蕾体积在出生后会增加,以匹配提供神经支配的神经元数量。为了阐明菌状味蕾体积与年龄相关的变化,本研究调查了味蕾细胞数量、增殖率和寿命的发育变化。味蕾生长在很大程度上可归因于细胞角蛋白-19阳性味蕾细胞的增加。用3H-胸腺嘧啶放射自显影术检查味蕾细胞动力学发现,在正常发育过程中细胞寿命和更新周期没有改变,但幼鼠细胞产生更快,这一显著变化可能导致味蕾尺寸增大。相比之下,在出生前和出生后发育期间进行饮食钠限制会导致成年时味蕾变小,原因是细胞角蛋白-19阳性细胞减少。饮食干预对味蕾生长动力学也有深远影响,包括细胞进入味蕾的延迟增加、寿命和更新周期延长。这些研究提供了关于正常条件下以及影响神经/靶标匹配的环境干预后味蕾发育的基础新信息。

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