Targeting Procalcitonin Protects Vascular Barrier Integrity

降钙素原 医学 败血症 内科学 微循环 生物标志物 心脏外科 病理 生物化学 化学
作者
Laura Brabenec,Melanie Müller,Katharina E. M. Hellenthal,Ole Sönken Karsten,Heorhii Pryvalov,Mandy Otto,Anna Holthenrich,Anna Lívia Linard Matos,Raphael Weiß,Sebastian Kintrup,Michael Heßler,Angelo Dell’Aquila,Katharina Thomas,Johannes Naß,Andreas Margraf,Astrid F. Nottebaum,Jan Rossaint,Alexander Zarbock,Dietmar Vestweber,Volker Gerke
出处
期刊:American Journal of Respiratory and Critical Care Medicine [American Thoracic Society]
卷期号:206 (4): 488-500 被引量:33
标识
DOI:10.1164/rccm.202201-0054oc
摘要

Abstract Rationale Capillary leakage frequently occurs during sepsis and after major surgery and is associated with microvascular dysfunction and adverse outcome. Procalcitonin is a well-established biomarker in inflammation without known impact on vascular integrity. Objectives We determined how procalcitonin induces endothelial hyperpermeability and how targeting procalcitonin protects vascular barrier integrity. Methods In a prospective observational clinical study, procalcitonin levels were assessed in 50 patients who underwent cardiac surgery and correlated to postoperative fluid and vasopressor requirements along with sublingual microvascular functionality. Effects of the procalcitonin signaling pathway on endothelial barrier and adherens junctional integrity were characterized in vitro and verified in mice. Inhibition of procalcitonin activation by dipeptidyl-peptidase 4 (DPP4) was evaluated in murine polymicrobial sepsis and clinically verified in cardiac surgery patients chronically taking the DPP4 inhibitor sitagliptin. Measurements and Main Results Elevated postoperative procalcitonin levels identified patients with 2-fold increased fluid requirements (P < 0.01), 1.8-fold higher vasopressor demand (P < 0.05), and compromised microcirculation (reduction to 63.5 ± 2.8% of perfused vessels, P < 0.05). Procalcitonin induced 1.4-fold endothelial and 2.3-fold pulmonary capillary permeability (both Ps < 0.001) by destabilizing VE-cadherin. Procalcitonin effects were dependent on activation by DPP4, and targeting the procalcitonin receptor or DPP4 during sepsis-induced hyperprocalcitonemia reduced capillary leakage by 54 ± 10.1% and 60.4 ± 6.9% (both Ps < 0.01), respectively. Sitagliptin before cardiac surgery was associated with augmented microcirculation (74.1 ± 1.7% vs. 68.6 ± 1.9% perfused vessels in non–sitagliptin-medicated patients, P < 0.05) and with 2.3-fold decreased fluid (P < 0.05) and 1.8-fold reduced vasopressor demand postoperatively (P < 0.05). Conclusions Targeting procalcitonin’s action on the endothelium is a feasible means to preserve vascular integrity during systemic inflammation associated with hyperprocalcitonemia.
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