神经营养双敲除小鼠的语言缺陷。

Journal of Neurocytology Pub Date : 2004-12-01 Epub Date: 2005-10-11 DOI:10.1007/s11068-005-3330-2
Irina V Nosrat, Karin Agerman, Andrea Marinescu, Patrik Ernfors, Christopher A Nosrat
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引用次数: 27

摘要

脑源性神经营养因子(BDNF)和神经营养因子3 (NT-3)是神经营养因子家族的成员,在发育中的和成年的舌乳头中表达。BDNF缺失的小鼠表现出与神经支配和味觉系统发育相关的特异性损伤,而NT-3缺失的小鼠则表现出舌体感觉神经支配的缺陷。为了进一步评估这些神经营养因子在外周味觉系统中的功能特异性,我们制造了双BDNF/NT-3基因敲除小鼠,并将其表型与BDNF(-/-)和野生型小鼠进行了比较。与单一BDNF(-/-)和野生型小鼠相比,BDNF(-/-) xNT-3(-/-)小鼠的味觉乳头形态严重扭曲。整个舌头和所有的味觉乳头都有缺陷。与BDNF(-/-)和野生型小鼠相比,真菌状乳头明显缺失,乳头尺寸更小。双敲除组的环瓣乳头较小,不含任何上皮内神经纤维。BDNF(-/-) xNT-3(-/-)小鼠在体感觉和味觉神经支配中表现出累加性损失,这表明BDNF和NT-3在舌头神经支配中发挥了特定的作用。然而,与单一BDNF敲除小鼠相比,BDNF(-/-) xNT-3(-/-)小鼠中真菌状乳头和味蕾的额外损失表明,BDNF依赖性味觉和nt -3依赖性体感觉神经在味蕾和味觉乳头神经支配和发育中的协同功能作用。
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Lingual deficits in neurotrophin double knockout mice.

Brain-derived neurotrophic factor (BDNF) and Neurotrophin 3 (NT-3) are members of the neurotrophin family and are expressed in the developing and adult tongue papillae. BDNF null-mutated mice exhibit specific impairments related to innervation and development of the gustatory system while NT-3 null mice have deficits in their lingual somatosensory innervation. To further evaluate the functional specificity of these neurotrophins in the peripheral gustatory system, we generated double BDNF/NT-3 knockout mice and compared the phenotype to BDNF(-/-) and wild-type mice. Taste papillae morphology was severely distorted in BDNF(-/-) xNT-3(-/-) mice compared to single BDNF(-/-) and wild-type mice. The deficits were found throughout the tongue and all gustatory papillae. There was a significant loss of fungiform papillae and the papillae were smaller in size compared to BDNF(-/-) and wild-type mice. Circumvallate papillae in the double knockouts were smaller and did not contain any intraepithelial nerve fibers. BDNF(-/-) xNT-3(-/-) mice exhibited additive losses in both somatosensory and gustatory innervation indicating that BDNF and NT-3 exert specific roles in the innervation of the tongue. However, the additional loss of fungiform papillae and taste buds in BDNF(-/-) xNT-3(-/-) mice compared to single BDNF knockout mice indicate a synergistic functional role for both BDNF-dependent gustatory and NT-3-dependent somatosensory innervations in taste bud and taste papillae innervation and development.

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