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38-负激酶1是实验性和临床创伤性失血性休克中急性肾损伤的介导因子。

Thirty-Eight-Negative Kinase 1 Is a Mediator of Acute Kidney Injury in Experimental and Clinical Traumatic Hemorrhagic Shock.

作者信息

Halbgebauer Rebecca, Karasu Ebru, Braun Christian K, Palmer Annette, Braumüller Sonja, Schultze Anke, Schäfer Fabian, Bückle Sarah, Eigner Alica, Wachter Ulrich, Radermacher Peter, Resuello Ranillo R G, Tuplano Joel V, Nilsson Ekdahl Kristina, Nilsson Bo, Armacki Milena, Kleger Alexander, Seufferlein Thomas, Kalbitz Miriam, Gebhard Florian, Lambris John D, van Griensven Martijn, Huber-Lang Markus

机构信息

Institute of Clinical and Experimental Trauma Immunology, University Hospital Ulm, Ulm, Germany.

Department of Pediatrics and Adolescent Medicine, University Hospital Ulm, Ulm, Germany.

出版信息

Front Immunol. 2020 Aug 26;11:2081. doi: 10.3389/fimmu.2020.02081. eCollection 2020.

Abstract

Trauma represents a major socioeconomic burden worldwide. After a severe injury, hemorrhagic shock (HS) as a frequent concomitant aspect is a central driver of systemic inflammation and organ damage. The kidney is often strongly affected by traumatic-HS, and acute kidney injury (AKI) poses the patient at great risk for adverse outcome. Recently, thirty-eight-negative kinase 1 (TNK1) was proposed to play a detrimental role in organ damage after trauma/HS. Therefore, we aimed to assess the role of TNK1 in HS-induced kidney injury in a murine and a analysis of a non-human primate model of HS comparable to the clinical situation. Mice and non-human primates underwent resuscitated HS at 30 mmHg for 60 min. 5 h after the induction of shock, animals were assessed for systemic inflammation and TNK1 expression in the kidney. , murine distal convoluted tubule cells were stimulated with inflammatory mediators to gain mechanistic insights into the role of TNK1 in kidney dysfunction. In a translational approach, we investigated blood drawn from either healthy volunteers or severely injured patients at different time points after trauma (from arrival at the emergency room and at fixed time intervals until 10 days post injury; identifier: NCT02682550, https://clinicaltrials.gov/ct2/show/NCT02682550). A pronounced inflammatory response, as seen by increased IL-6 plasma levels as well as early signs of AKI, were observed in mice, non-human primates, and humans after trauma/HS. TNK1 was found in the plasma early after trauma-HS in trauma patients. Renal TNK1 expression was significantly increased in mice and non-human primates after HS, and these effects with concomitant induction of apoptosis were blocked by therapeutic inhibition of complement C3 activation in non-human primates. Mechanistically, data suggested that IL-6 rather than C3 cleavage products induced upregulation of TNK1 and impaired barrier function in renal epithelial cells. In conclusion, these data indicate that C3 inhibition may inhibit an excessive inflammatory response and mediator release, thereby indirectly neutralizing TNK1 as a potent driver of organ damage. In future studies, we will address the therapeutic potential of direct TNK1 inhibition in the context of severe tissue trauma with different degrees of additional HS.

摘要

创伤是全球主要的社会经济负担。严重受伤后,出血性休克(HS)作为常见的伴随情况,是全身炎症和器官损伤的主要驱动因素。肾脏常受到创伤性HS的严重影响,急性肾损伤(AKI)使患者面临不良结局的巨大风险。最近,有人提出38-负激酶1(TNK1)在创伤/HS后的器官损伤中起有害作用。因此,我们旨在评估TNK1在HS诱导的肾损伤中的作用,采用了小鼠模型和一种与临床情况相当的非人类灵长类HS模型进行分析。小鼠和非人类灵长类动物在30 mmHg下进行复苏性HS 60分钟。休克诱导后5小时,评估动物的全身炎症和肾脏中TNK1的表达。此外,用炎症介质刺激小鼠远曲小管细胞,以深入了解TNK1在肾功能障碍中的作用机制。通过转化研究方法,我们调查了创伤后不同时间点从健康志愿者或重伤患者采集的血液(从抵达急诊室开始,按固定时间间隔直至受伤后10天;标识符:NCT02682550,https://clinicaltrials.gov/ct2/show/NCT02682550)。在创伤/HS后的小鼠、非人类灵长类动物和人类中,观察到明显的炎症反应,表现为IL-6血浆水平升高以及AKI的早期迹象。在创伤患者创伤性HS后早期血浆中发现了TNK1。HS后小鼠和非人类灵长类动物的肾脏TNK1表达显著增加,在非人类灵长类动物中,这些作用以及伴随的细胞凋亡诱导被补体C3激活的治疗性抑制所阻断。从机制上讲,数据表明IL-6而非C3裂解产物诱导了TNK1的上调并损害了肾上皮细胞的屏障功能。总之,这些数据表明C3抑制可能抑制过度的炎症反应和介质释放,从而间接中和作为器官损伤有力驱动因素的TNK1。在未来的研究中,我们将探讨在不同程度的附加HS的严重组织创伤背景下直接抑制TNK1的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eddc/7479097/85396f077045/fimmu-11-02081-g001.jpg

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