Sarcopenia of the longitudinal tongue muscles in rats

IF 1.9 4区 医学 Q3 PHYSIOLOGY
Gary C. Sieck, Genesis A. Hernandez-Vizcarrondo, Alyssa D. Brown, Matthew J. Fogarty
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引用次数: 1

Abstract

The tongue is a muscular hydrostat, with lingual movements occurring during breathing, chewing, swallowing, vocalization, vomiting, coughing and grooming/sexual activities. In the elderly, reduced lingual dysfunction and weakness contribute to increased risks of obstructive sleep apnea and aspiration pneumonia. In Fischer 344 (F344) rats, a validated model of aging, hypoglossal motor neuron death is apparent, although there is no information regarding tongue strength. The intrinsic tongue muscles, the superior and inferior longitudinal, transversalis and verticalis exist in an interdigitated state. Recently, we established a method to measure the specific force of individual intrinsic tongue muscle, accounting for the tissue bulk that is not in the direction of uniaxial force. In the longitudinal muscles of 6- (n = 10), 18- (n = 9) and 24-month-old (n = 12) female and male F344 rats, we assessed specific force, fatigability, fiber type dependent cross-sectional area (CSA) and overall CSA. Muscle force and fatigue was assessed ex vivo using platinum plate simulation electrodes. Tongue muscles were frozen in melting isopentane, and transverse sections cut at 10 µm. Muscle fiber type was classified based on immunoreactivity to myosin heavy chain (MyHC) isoform antibodies. In H&E stained muscle, CSA and uniaxial muscle contributions to total tongue bulk was assessed. We observed a robust ∼30% loss of longitudinal specific force, with reductions in overall longitudinal muscle fiber CSA and specific atrophy of type IIx/IIb fibers. It will be important to investigate the mechanistic underpinnings of hypoglossal motor neuron death and tongue muscle weakness to eventually provide therapies for age-associated lingual dysfunctions.

大鼠舌纵肌的肌肉萎缩。
舌头是一种肌肉性的静水,在呼吸、咀嚼、吞咽、发声、呕吐、咳嗽和梳洗/性活动过程中会出现舌头运动。在老年人中,语言功能障碍和虚弱的减少会增加阻塞性睡眠呼吸暂停和吸入性肺炎的风险。在Fischer 344(F344)大鼠中,一个经过验证的衰老、舌下运动神经元死亡模型是明显的,尽管没有关于舌头力量的信息。舌固有肌、上下纵肌、横肌和垂直肌以叉指状存在。最近,我们建立了一种测量单个固有舌肌比力的方法,考虑了不在单轴力方向上的组织体积。在6(n=10)、18(n=9)和24个月大(n=12)雌性和雄性F344大鼠的纵肌中,我们评估了比力、疲劳性、纤维类型依赖性横截面积(CSA)和总CSA。使用铂板模拟电极对肌肉力量和疲劳进行体外评估。将舌头肌肉冷冻在融化的异戊烷中,并在10µm处切割横截面。根据肌球蛋白重链(MyHC)同种型抗体的免疫反应性对肌纤维类型进行分类。在H&E染色的肌肉中,评估CSA和单轴肌肉对总舌头体积的贡献。我们观察到纵向比力损失约30%,整体纵向肌纤维CSA减少,IIx/IIb型纤维特异性萎缩。重要的是研究舌下运动神经元死亡和舌肌无力的机制基础,以最终为年龄相关的舌功能障碍提供治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.80
自引率
8.70%
发文量
104
审稿时长
54 days
期刊介绍: Respiratory Physiology & Neurobiology (RESPNB) publishes original articles and invited reviews concerning physiology and pathophysiology of respiration in its broadest sense. Although a special focus is on topics in neurobiology, high quality papers in respiratory molecular and cellular biology are also welcome, as are high-quality papers in traditional areas, such as: -Mechanics of breathing- Gas exchange and acid-base balance- Respiration at rest and exercise- Respiration in unusual conditions, like high or low pressure or changes of temperature, low ambient oxygen- Embryonic and adult respiration- Comparative respiratory physiology. Papers on clinical aspects, original methods, as well as theoretical papers are also considered as long as they foster the understanding of respiratory physiology and pathophysiology.
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