Skip to main content
Top
Published in: Critical Care 6/2007

Open Access 01-12-2007 | Research

Platelet-derived exosomes from septic shock patients induce myocardial dysfunction

Authors: Luciano Cesar Pontes Azevedo, Mariano Janiszewski, Vera Pontieri, Marcelo de Almeida Pedro, Estevão Bassi, Paulo José Ferreira Tucci, Francisco Rafael Martins Laurindo

Published in: Critical Care | Issue 6/2007

Login to get access

Abstract

Introduction

Mechanisms underlying inotropic failure in septic shock are incompletely understood. We previously identified the presence of exosomes in the plasma of septic shock patients. These exosomes are released mainly by platelets, produce superoxide, and induce apoptosis in vascular cells by a redox-dependent pathway. We hypothesized that circulating platelet-derived exosomes could contribute to inotropic dysfunction of sepsis.

Methods

We collected blood samples from 55 patients with septic shock and 12 healthy volunteers for exosome separation. Exosomes from septic patients and healthy individuals were investigated concerning their myocardial depressant effect in isolated heart and papillary muscle preparations.

Results

Exosomes from the plasma of septic patients significantly decreased positive and negative derivatives of left ventricular pressure in isolated rabbit hearts or developed tension and its first positive derivative in papillary muscles. Exosomes from healthy individuals decreased these variables non-significantly. In hearts from rabbits previously exposed to endotoxin, septic exosomes decreased positive and negative derivatives of ventricular pressure. This negative inotropic effect was fully reversible upon withdrawal of exosomes. Nitric oxide (NO) production from exosomes derived from septic shock patients was demonstrated by fluorescence. Also, there was an increase in myocardial nitrate content after exposure to septic exosomes.

Conclusion

Circulating platelet-derived exosomes from septic patients induced myocardial dysfunction in isolated heart and papillary muscle preparations, a phenomenon enhanced by previous in vivo exposure to lipopolysaccharide. The generation of NO by septic exosomes and the increased myocardial nitrate content after incubation with exosomes from septic patients suggest an NO-dependent mechanism that may contribute to myocardial dysfunction of sepsis.
Appendix
Available only for authorised users
Literature
1.
go back to reference Vincent JL: Cardiovascular alterations in septic shock. J Antim Chemot 1998, (Suppl A):9-15. 10.1093/jac/41.suppl_1.9 Vincent JL: Cardiovascular alterations in septic shock. J Antim Chemot 1998, (Suppl A):9-15. 10.1093/jac/41.suppl_1.9
2.
go back to reference Parratt JR: Nitric oxide in sepsis and endotoxaemia. J Antim Chemot 1998, (Suppl A):31-39. 10.1093/jac/41.suppl_1.31 Parratt JR: Nitric oxide in sepsis and endotoxaemia. J Antim Chemot 1998, (Suppl A):31-39. 10.1093/jac/41.suppl_1.31
3.
go back to reference Krishnagopalan S, Kumar A, Parrillo JE, Kumar A: Myocardial dysfunction in the patient with sepsis. Curr Opin Crit Care 2002, 8: 376-388. 10.1097/00075198-200210000-00003CrossRefPubMed Krishnagopalan S, Kumar A, Parrillo JE, Kumar A: Myocardial dysfunction in the patient with sepsis. Curr Opin Crit Care 2002, 8: 376-388. 10.1097/00075198-200210000-00003CrossRefPubMed
4.
go back to reference Parker MM, Shelhamer JH, Bacharach SL, Green MV, Natanson C, Frederick TM, Damske BA, Parrillo JE: Profound but reversible myocardial depression in patients with septic shock. Ann Intern Med 1984, 100: 483-490.CrossRefPubMed Parker MM, Shelhamer JH, Bacharach SL, Green MV, Natanson C, Frederick TM, Damske BA, Parrillo JE: Profound but reversible myocardial depression in patients with septic shock. Ann Intern Med 1984, 100: 483-490.CrossRefPubMed
5.
go back to reference Meldrum DR: Tumor necrosis factor in the heart. Am J Physiol 1998, 274: R577-R595.PubMed Meldrum DR: Tumor necrosis factor in the heart. Am J Physiol 1998, 274: R577-R595.PubMed
6.
go back to reference Ferdinandy P, Panas D, Schulz R: Peroxynitrite contributes to spontaneous loss of cardiac efficiency in isolated working rat hearts. Am J Physiol 1999, 276: H1861-1867.PubMed Ferdinandy P, Panas D, Schulz R: Peroxynitrite contributes to spontaneous loss of cardiac efficiency in isolated working rat hearts. Am J Physiol 1999, 276: H1861-1867.PubMed
7.
go back to reference Ferdinandy P, Danial H, Ambrus I, Rothery RA, Schulz R: Peroxynitrite is a major contributor to cytokine-induced myocardial contractile failure. Circ Res 2000, 87: 241-247.CrossRefPubMed Ferdinandy P, Danial H, Ambrus I, Rothery RA, Schulz R: Peroxynitrite is a major contributor to cytokine-induced myocardial contractile failure. Circ Res 2000, 87: 241-247.CrossRefPubMed
8.
go back to reference Khadour F, Panas D, Ferdinandy P, Schulze C, Csont T, Lalu MM, Wildhirt SM, Schulz R: Enhanced NO and superoxide generation in dysfunctional hearts from endotoxemic rats. Am J Physiol 2002, 283: H1108-1115. Khadour F, Panas D, Ferdinandy P, Schulze C, Csont T, Lalu MM, Wildhirt SM, Schulz R: Enhanced NO and superoxide generation in dysfunctional hearts from endotoxemic rats. Am J Physiol 2002, 283: H1108-1115.
9.
go back to reference Janiszewski M, Carmo AO, Pedro MA, Silva E, Knobel E, Laurindo FR: Platelet-derived exosomes of septic individuals possess proapoptotic NAD(P)H oxidase activity: a novel vascular redox pathway. Crit Care Med 2004, 32: 818-825. 10.1097/01.CCM.0000114829.17746.19CrossRefPubMed Janiszewski M, Carmo AO, Pedro MA, Silva E, Knobel E, Laurindo FR: Platelet-derived exosomes of septic individuals possess proapoptotic NAD(P)H oxidase activity: a novel vascular redox pathway. Crit Care Med 2004, 32: 818-825. 10.1097/01.CCM.0000114829.17746.19CrossRefPubMed
10.
go back to reference Boulanger CM, Scoazec A, Ebrahimian T, Henry P, Mathieu E, Tedghi A, Mallat Z: Circulating microparticles from patients with myocardial infarction cause endothelial dysfunction. Circulation 2001, 104: 2649-2652. 10.1161/hc4701.100516CrossRefPubMed Boulanger CM, Scoazec A, Ebrahimian T, Henry P, Mathieu E, Tedghi A, Mallat Z: Circulating microparticles from patients with myocardial infarction cause endothelial dysfunction. Circulation 2001, 104: 2649-2652. 10.1161/hc4701.100516CrossRefPubMed
11.
go back to reference Nieuwland R, Berckmans RJ, McGregor S, Boing AN, Romijn FP, Westendorp RG, Hack CE, Sturk A: Cellular origin and procoagulant properties of microparticles in meningococcal sepsis. Blood 2000, 95: 930-935.PubMed Nieuwland R, Berckmans RJ, McGregor S, Boing AN, Romijn FP, Westendorp RG, Hack CE, Sturk A: Cellular origin and procoagulant properties of microparticles in meningococcal sepsis. Blood 2000, 95: 930-935.PubMed
12.
go back to reference Heijnen HF, Schiel AE, Fijnheer R, Geuze HJ, Sixma JJ: Activated platelets release two types of membrane vesicles: microvesicles by surface shedding and exosomes derived from exocytosis of multivesicular bodies and alfa-granules. Blood 1999, 94: 3791-3799.PubMed Heijnen HF, Schiel AE, Fijnheer R, Geuze HJ, Sixma JJ: Activated platelets release two types of membrane vesicles: microvesicles by surface shedding and exosomes derived from exocytosis of multivesicular bodies and alfa-granules. Blood 1999, 94: 3791-3799.PubMed
13.
go back to reference Denzer K, Kleijmeer MJ, Heijnen HF, Stoorvogel W, Geuze HJ: Exosome: from internal vesicle of the multivesicular body to intercellular signaling device. J Cell Science 2000, 113: 3365-3374.PubMed Denzer K, Kleijmeer MJ, Heijnen HF, Stoorvogel W, Geuze HJ: Exosome: from internal vesicle of the multivesicular body to intercellular signaling device. J Cell Science 2000, 113: 3365-3374.PubMed
14.
go back to reference Azevedo LC, Janiszewski M, Soriano FG, Laurindo FR: Redox mechanisms of vascular cell dysfunction in sepsis. Endocr Metab Immune Disord Drug Targets 2006, 6: 159-164.CrossRefPubMed Azevedo LC, Janiszewski M, Soriano FG, Laurindo FR: Redox mechanisms of vascular cell dysfunction in sepsis. Endocr Metab Immune Disord Drug Targets 2006, 6: 159-164.CrossRefPubMed
15.
go back to reference Bone RC, Balk RA, Cerra FB, Dellinger RP, Fein AM, Knaus WA, Schein RM, Sibbald WJ: Definition for sepsis and organ failure and guidelines for the use of innovative therapies in sepsis. Chest 1992, 101: 1644-1655. 10.1378/chest.101.6.1644CrossRefPubMed Bone RC, Balk RA, Cerra FB, Dellinger RP, Fein AM, Knaus WA, Schein RM, Sibbald WJ: Definition for sepsis and organ failure and guidelines for the use of innovative therapies in sepsis. Chest 1992, 101: 1644-1655. 10.1378/chest.101.6.1644CrossRefPubMed
16.
go back to reference Gambim MH, Carmo AO, Marti L, Verissimo-Filho S, Lopes LR, Janiszewski M: Platelet-derived exosomes induce endothelial cell apoptosis through peroxynitrite generation: experimental evidence for a novel mechanism of septic vascular dysfunction. Crit Care 2007, 11: R107. 10.1186/cc6133PubMedCentralCrossRefPubMed Gambim MH, Carmo AO, Marti L, Verissimo-Filho S, Lopes LR, Janiszewski M: Platelet-derived exosomes induce endothelial cell apoptosis through peroxynitrite generation: experimental evidence for a novel mechanism of septic vascular dysfunction. Crit Care 2007, 11: R107. 10.1186/cc6133PubMedCentralCrossRefPubMed
17.
go back to reference Tatsumi T, Keira N, Akashi K, Kobara M, Matoba S, Shiraishi J, Yamanaka S, Mano A, Takeda M, Nishikawa S, et al.: Nitric oxide-cGMP pathway is involved in endotoxin-induced contractile dysfunction in rat hearts. J Appl Physiol 2004, 96: 853-860. 10.1152/japplphysiol.00086.2003CrossRefPubMed Tatsumi T, Keira N, Akashi K, Kobara M, Matoba S, Shiraishi J, Yamanaka S, Mano A, Takeda M, Nishikawa S, et al.: Nitric oxide-cGMP pathway is involved in endotoxin-induced contractile dysfunction in rat hearts. J Appl Physiol 2004, 96: 853-860. 10.1152/japplphysiol.00086.2003CrossRefPubMed
18.
go back to reference Clayton A, Turkes A, Dewitt S, Steadman R, Mason MD, Hallett MB: Adhesion and signaling by B cell-derived exosomes: the role of integrins. FASEB J 2004, 18: 977-979.PubMed Clayton A, Turkes A, Dewitt S, Steadman R, Mason MD, Hallett MB: Adhesion and signaling by B cell-derived exosomes: the role of integrins. FASEB J 2004, 18: 977-979.PubMed
19.
go back to reference Finkel MS, Oddis CV, Jacob TD: Negative inotropic effects of cytokines on the heart mediated by nitric oxide. Science 1992, 257: 387-389. 10.1126/science.1631560CrossRefPubMed Finkel MS, Oddis CV, Jacob TD: Negative inotropic effects of cytokines on the heart mediated by nitric oxide. Science 1992, 257: 387-389. 10.1126/science.1631560CrossRefPubMed
20.
go back to reference Kumar A, Brar R, Wang P, Dee L, Skorupa G, Khadour F, Schulz R, Parrillo JE: Role of nitric oxide and cGMP in human septic serum-induced depression of cardiac myocyte contractility. Am J Physiol 1999, 276: R265-R276.PubMed Kumar A, Brar R, Wang P, Dee L, Skorupa G, Khadour F, Schulz R, Parrillo JE: Role of nitric oxide and cGMP in human septic serum-induced depression of cardiac myocyte contractility. Am J Physiol 1999, 276: R265-R276.PubMed
21.
go back to reference Kumar A, Haery C, Parillo JE: Myocardial dysfunction in septic shock: part I. Clinical manifestations of cardiovascular dysfunction. J Cardiothorac Vasc Anesth 2001, 15: 364-376. 10.1053/jcan.2001.22317CrossRefPubMed Kumar A, Haery C, Parillo JE: Myocardial dysfunction in septic shock: part I. Clinical manifestations of cardiovascular dysfunction. J Cardiothorac Vasc Anesth 2001, 15: 364-376. 10.1053/jcan.2001.22317CrossRefPubMed
22.
go back to reference Ullrich R, Scherrer-Crosbie M, Bloch KD, Ichinose F, Nakajima H, Picard MH, Zapol WM, Quezado ZM: Congenital deficiency of nitric oxide synthase 2 protects against endotoxin-induce myocardial dysfunction in mice. Circulation 2000, 102: 1440-1446.CrossRefPubMed Ullrich R, Scherrer-Crosbie M, Bloch KD, Ichinose F, Nakajima H, Picard MH, Zapol WM, Quezado ZM: Congenital deficiency of nitric oxide synthase 2 protects against endotoxin-induce myocardial dysfunction in mice. Circulation 2000, 102: 1440-1446.CrossRefPubMed
23.
go back to reference Paulus W, Bronzwaer JGF: Myocardial contractile effects of nitric oxide. Heart Fail Rev 2002, 7: 371-383. 10.1023/A:1020754232359CrossRefPubMed Paulus W, Bronzwaer JGF: Myocardial contractile effects of nitric oxide. Heart Fail Rev 2002, 7: 371-383. 10.1023/A:1020754232359CrossRefPubMed
24.
go back to reference Soderberg A, Barral AM, Soderstrom M, Sander B, Rosen A: Redox-signaling transmitted in trans to neighboring cells by melanoma-derived TNF-containing exosomes. Free Radic Biol Med 2007, 43: 90-99. 10.1016/j.freeradbiomed.2007.03.026CrossRefPubMed Soderberg A, Barral AM, Soderstrom M, Sander B, Rosen A: Redox-signaling transmitted in trans to neighboring cells by melanoma-derived TNF-containing exosomes. Free Radic Biol Med 2007, 43: 90-99. 10.1016/j.freeradbiomed.2007.03.026CrossRefPubMed
Metadata
Title
Platelet-derived exosomes from septic shock patients induce myocardial dysfunction
Authors
Luciano Cesar Pontes Azevedo
Mariano Janiszewski
Vera Pontieri
Marcelo de Almeida Pedro
Estevão Bassi
Paulo José Ferreira Tucci
Francisco Rafael Martins Laurindo
Publication date
01-12-2007
Publisher
BioMed Central
Published in
Critical Care / Issue 6/2007
Electronic ISSN: 1364-8535
DOI
https://doi.org/10.1186/cc6176

Other articles of this Issue 6/2007

Critical Care 6/2007 Go to the issue