Department of Medicine and Surgery, University of Insubria, Varese, Italy.
Am J Physiol Heart Circ Physiol. 2020 Aug 1;319(2):H507-H518. doi: 10.1152/ajpheart.00175.2020. Epub 2020 Jul 24.
The lymphatic system drains and propels lymph by extrinsic and intrinsic mechanisms. Intrinsic propulsion depends upon spontaneous rhythmic contractions of lymphatic muscles in the vessel walls and is critically affected by changes in the surrounding tissue like osmolarity and temperature. Lymphatics of the diaphragm display a steep change in contraction frequency in response to changes in temperature, and this, in turn, affects lymph flow. In the present work, we demonstrated in an ex vivo diaphragmatic tissue rat model that diaphragmatic lymphatics express transient receptor potential channels of the vanilloid 4 subfamily (TRPV4) and that their blockade by both the nonselective antagonist Ruthenium Red and the selective antagonist HC-067047 abolished the response of lymphatics to temperature changes. Moreover, the selective activation of TRPV4 channels by means of GSK1016790A mirrored the behavior of vessels exposed to increasing temperatures, pointing out the critical role played by these channels in sensing the temperature of the lymphatic vessels' environment and thus inducing a change in contraction frequency and lymph flow. The present work addresses the putative receptor system that enables diaphragmatic lymphatics to change intrinsic contraction frequency and thus lymph flow according to the changes in temperature of the surrounding environment, showing that this role can be sustained by TRPV4 channels alone.
淋巴系统通过外在和内在机制来引流和推动淋巴。内在推动依赖于淋巴管壁中淋巴肌肉的自发有节奏收缩,并且会受到周围组织变化的严重影响,如渗透压和温度。横膈膜的淋巴管对温度变化的收缩频率会发生急剧变化,而这反过来又会影响淋巴液的流动。在本工作中,我们在离体的膈组织大鼠模型中证明,膈淋巴管表达香草素 4 亚家族的瞬时受体电位通道(TRPV4),并且它们的阻断剂 Ruthenium Red 和选择性拮抗剂 HC-067047 消除了淋巴管对温度变化的反应。此外,通过 GSK1016790A 选择性激活 TRPV4 通道模拟了暴露于升高温度的血管的行为,这表明这些通道在感应淋巴管环境温度方面起着关键作用,从而引起收缩频率和淋巴液流动的变化。本工作探讨了假设的受体系统,该系统使横膈膜淋巴管能够根据周围环境温度的变化改变内在收缩频率,从而改变淋巴液流动,表明这种作用仅由 TRPV4 通道维持。