School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, Georgia.
George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, Georgia.
Sci Rep. 2019 Apr 9;9(1):5840. doi: 10.1038/s41598-019-42142-9.
Lymphedema, a disfiguring condition characterized by an asymmetrical swelling of the limbs, is suspected to be caused by dysfunctions in the lymphatic system. A possible source of lymphatic dysfunction is the reduced mechanosensitivity of lymphangions, the spontaneously contracting units of the lymphatic system. In this study, the entrainment of lymphangions to an oscillatory wall shear stress (OWSS) is characterized in rat thoracic ducts in relation to their shear sensitivity. The critical shear stress above which the thoracic ducts show a substantial inhibition of contraction was found to be significantly negatively correlated to the diameter of the lymphangion. The entrainment of the lymphangion to an applied OWSS was found to be significantly dependent on the difference between the applied frequency and the intrinsic frequency of contraction of the lymphangion. The strength of the entrainment was also positively correlated to the applied shear stress when the applied shear was less than the critical shear stress of the vessel. The ejection fraction and fractional pump flow were also affected by the difference between the frequency of the applied OWSS and the vessel's intrinsic contraction frequency. The results suggest an adaptation of the lymphangion contractility to the existing oscillatory shear stress as a function of its intrinsic contractility and shear sensitivity. These adaptations might be crucial to ensure synchronized contraction of lymphangions through mechanosensitive means and might help explain the lymphatic dysfunctions that result from impaired mechanosensitivity.
淋巴水肿是一种肢体不对称肿胀的畸形病症,据推测是由淋巴系统功能障碍引起的。淋巴系统功能障碍的一个可能原因是淋巴囊的机械敏感性降低,淋巴囊是淋巴系统中自发收缩的单位。在这项研究中,与淋巴囊的剪切敏感性有关,我们对大鼠胸导管中的淋巴囊对振荡壁切应力(OWSS)的顺应性进行了描述。发现胸导管显示出明显的收缩抑制的临界剪切应力与淋巴囊的直径呈显著负相关。发现淋巴囊对施加的 OWSS 的顺应性显著依赖于施加的频率与淋巴囊收缩的固有频率之间的差异。当施加的剪切小于血管的临界剪切时,顺应性的强度也与施加的剪切应力呈正相关。射血分数和部分泵流量也受到施加的 OWSS 频率与血管固有收缩频率之间差异的影响。结果表明,淋巴囊的收缩性通过其固有收缩性和剪切敏感性对现有振荡剪切应力进行了适应性调整。这些适应可能对通过机械敏感的方式确保淋巴囊的同步收缩至关重要,并可能有助于解释由于机械敏感性降低而导致的淋巴功能障碍。