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首页> 外文期刊>Antioxidants and redox signalling >Endothelial Cell Responses to Biomechanical Forces in Lymphatic Vessels
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Endothelial Cell Responses to Biomechanical Forces in Lymphatic Vessels

机译:内皮细胞对淋巴管中生物力学力的反应

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Significance: Lymphatic vessels are important components of the cardiovascular and immune systems. They contribute both to the maintenance of normal homeostasis and to many pathological conditions, such as cancer and inflammation. The lymphatic vasculature is subjected to a variety of biomechanical forces, including fluid shear stress and vessel circumferential stretch. Recent Advances: This review will discuss recent advances in our understanding of biomechanical forces in lymphatic vessels and their role in mammalian lymphatic vascular development and function. Critical Issues: We will highlight the importance of fluid shear stress generated by lymph flow in organizing the lymphatic vascular network. We will also describe how mutations in mechanosensitive genes lead to lymphatic vascular dysfunction. Future Directions: Better understanding of how biomechanical and biochemical stimuli are perceived and interpreted by lymphatic endothelial cells is important for targeting regulation of lymphatic function in health and disease. Important remaining critical issues and future directions in the field will be discussed in this review.
机译:意义:淋巴管是心血管和免疫系统的重要组成部分。它们促进了对正常稳态和许多病理条件的维持,例如癌症和炎症。淋巴脉管系统经受各种生物力学力,包括液体剪切应力和容器周向伸展。最近的进展:本综述将讨论我们对淋巴管血管生物力学力量的理解及其在哺乳动物淋巴管血管发育和功能中的作用。关键问题:我们将突出淋巴流量在组织淋巴管网中产生的流体剪切应力的重要性。我们还将描述机械敏感性的突变如何导致淋巴管血管功能障碍。未来的方向:更好地理解淋巴内皮细胞如何感知和解释生物力学和生化刺激,对于靶向淋巴作用的调节是重要的。本文将在本次审查中讨论该领域的重要剩余关键问题和未来方向。

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