α7β1 integrin

  • 文章类型: Journal Article
    肌肉-肌腱接头(MTJ)是一种高度特异性的组织界面,肌肉筋膜与肌腱的细胞外基质相交。MTJ用作促进力从收缩肌纤维传递到骨骼系统的特定结构。启用运动。考虑到MTJ在身体活动期间连续暴露于恒定的机械力,容易受伤。MTJ的破裂通常伴随着肌腱和肌肉组织的损伤。在这次审查中,我们试图提供MTJ的精确定义,详细描述它微妙的结构,并介绍了与MTJ组织工程相关的治疗方法。我们希望我们对MTJ的详细说明和对代表性研究成果的总结将有助于研究人员对MTJ有更深入的了解,并为未来的研究带来新的见解和突破。
    The muscle-tendon junction (MTJ) is a highly specific tissue interface where the muscle\'s fascia intersects with the extracellular matrix of the tendon. The MTJ functions as the particular structure facilitating the transmission of force from contractive muscle fibers to the skeletal system, enabling movement. Considering that the MTJ is continuously exposed to constant mechanical forces during physical activity, it is susceptible to injuries. Ruptures at the MTJ often accompany damage to both tendon and muscle tissues. In this review, we attempt to provide a precise definition of the MTJ, describe its subtle structure in detail, and introduce therapeutic approaches related to MTJ tissue engineering. We hope that our detailed illustration of the MTJ and summary of the representative research achievements will help researchers gain a deeper understanding of the MTJ and inspire fresh insights and breakthroughs for future research.
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  • 文章类型: Journal Article
    背景:按摩广泛用于运动引起的骨骼肌损伤(EIMD)。事实证明,按摩可以通过多种方式改善受损骨骼肌的形态和功能。然而,按摩是否可以保护骨骼肌免受长期重负荷运动中的伤害尚未确定。
    方法:在本研究中,通过偏心跑4周建立大鼠过度使用损伤模型,以恒定压力和频率按压和按摩为干预方法,探讨按摩是否可以通过上调整合素和基底膜层粘连蛋白来保护骨骼肌免受损伤。
    结果:结果表明,与模型组相比,按摩组骨骼肌超微结构较为完整、清晰,最大等渗和强直收缩力显著增加(P<0.01)。此外,在按摩组,β1整合素表达显著增加,p-FAK蛋白表达降低,β1整合素与基底膜层粘连蛋白2的共定位显著增加(P<0.01)。
    结论:我们的研究表明,在长期的重负荷运动中,按摩可以增强整合素β1和层粘连蛋白2介导的细胞粘附功能,保护骨骼肌免受损伤,防止过度使用损伤的发生。
    BACKGROUND: Massage is widely used in exercise-induced skeletal muscle damage (EIMD). It has been proven that massage can improve the morphology and function of damaged skeletal muscle in multiple ways. However, whether massage can protect skeletal muscles from injury during long-term heavy-duty exercise has not yet been determined.
    METHODS: In this study, a rat model of overuse injury was established by eccentric running for 4 weeks, and pressing at constant pressure and frequency and massage were used as intervention methods to explore whether massage could protect skeletal muscle from injury through upregulating integrin and the basement membrane laminin.
    RESULTS: The results showed that compared with the model group, the ultrastructure of skeletal muscle in the massage group was relatively complete and clear, and the maximum isotonic and tetanic contraction forces were significantly increased (P < 0.01). In addition, in the massage group, β1 integrin expression was significantly increased, p-FAK protein expression was decreased, and the co-localization of β1 integrin and the basement membrane laminin 2 was significantly increased (P < 0.01).
    CONCLUSIONS: Our study shows that during long-term heavy-duty exercise, massage can enhance the cell adhesion function mediated by integrin β1 and laminin 2 to protect skeletal muscle from injury and prevent the occurrence of overuse injury.
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