Skip to main content
Erschienen in: Inflammation 1/2017

28.10.2016 | ORIGINAL ARTICLE

Heme-Exposed Pooled Therapeutic IgG Improves Endotoxemia Survival

verfasst von: Iglika Djoumerska-Alexieva, Lubka T. Roumenina, Tsvetanka Stefanova, Tchavdar Vassilev, Jordan D. Dimitrov

Erschienen in: Inflammation | Ausgabe 1/2017

Einloggen, um Zugang zu erhalten

Abstract

Antibody repertoires of healthy humans and animals contain a fraction of antibodies able to acquire additional polyspecificity following exposure to several biologically relevant redox molecules (free heme, reactive oxygen species, ferrous ions, HOCl, etc.). The physiological role of these “hidden” polyspecific antibodies is poorly understood. Similar to inherently polyspecific antibodies, those with induced polyspecificicty may also have immunoregulatory properties. We have previously shown that a pooled human IgG preparation, modified by the exposure to ferrous ions, acquires the ability to significantly improve survival of animals with polymicrobial sepsis or aseptic systemic inflammation induced by bacterial lipopolysaccharide or zymosan administration. In the present study, we have analyzed the effects of administration of heme-exposed pooled human IgG in the same models of sepsis and aseptic systemic inflammation. The administration of a single dose of heme-exposed pooled IgG has resulted in a significant increase in the survival of mice with endotoxinemia, but not in those with polymicrobial sepsis and zymosan-induced severe generalized inflammation. Finally, we have provided evidence that the anti-inflammatory effect of heme-exposed IgG can be explained by scavenging of pro-inflammatory mediators.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
2.
Zurück zum Zitat Dimitrov, J.D., C. Planchais, L.T. Roumenina, T.L. Vassilev, S.V. Kaveri, and S. Lacroix-Desmazes. 2013. Antibody polyreactivity in health and disease: statu variabilis. Journal of Immunology 191(3): 993–9.CrossRef Dimitrov, J.D., C. Planchais, L.T. Roumenina, T.L. Vassilev, S.V. Kaveri, and S. Lacroix-Desmazes. 2013. Antibody polyreactivity in health and disease: statu variabilis. Journal of Immunology 191(3): 993–9.CrossRef
3.
Zurück zum Zitat Zhou, Z.H., A.G. Tzioufas, and A.L. Notkins. 2007. Properties and function of polyreactive antibodies and polyreactive antigen-binding B cells. Journal of Autoimmunity 29(4): 219–228.CrossRefPubMedPubMedCentral Zhou, Z.H., A.G. Tzioufas, and A.L. Notkins. 2007. Properties and function of polyreactive antibodies and polyreactive antigen-binding B cells. Journal of Autoimmunity 29(4): 219–228.CrossRefPubMedPubMedCentral
4.
Zurück zum Zitat Zhou, Z.H., Y. Zhang, Y.F. Hu, L.M. Wahl, J.O. Cisar, and A.L. Notkins. 2007. The broad antibacterial activity of the natural antibody repertoire is due to polyreactive antibodies. Cell Host & Microbe 1(1): 51–61.CrossRef Zhou, Z.H., Y. Zhang, Y.F. Hu, L.M. Wahl, J.O. Cisar, and A.L. Notkins. 2007. The broad antibacterial activity of the natural antibody repertoire is due to polyreactive antibodies. Cell Host & Microbe 1(1): 51–61.CrossRef
5.
Zurück zum Zitat Dimitrov, J.D., N.D. Ivanovska, S. Lacroix-Desmazes, V.R. Doltchinkova, S.V. Kaveri, and T.L. Vassilev. 2006. Ferrous ions and reactive oxygen species increase antigen-binding and anti-inflammatory activities of immunoglobulin G. Journal of Biological Chemistry 281(1): 439–446.CrossRefPubMed Dimitrov, J.D., N.D. Ivanovska, S. Lacroix-Desmazes, V.R. Doltchinkova, S.V. Kaveri, and T.L. Vassilev. 2006. Ferrous ions and reactive oxygen species increase antigen-binding and anti-inflammatory activities of immunoglobulin G. Journal of Biological Chemistry 281(1): 439–446.CrossRefPubMed
6.
Zurück zum Zitat Dimitrov, J.D., C. Planchais, J. Kang, A. Pashov, T.L. Vassilev, S.V. Kaveri, and S. Lacroix-Desmazes. 2010. Heterogeneous antigen recognition behavior of induced polyspecific antibodies. Biochemical and Biophysical Research Communications 398(2): 266–271.CrossRefPubMed Dimitrov, J.D., C. Planchais, J. Kang, A. Pashov, T.L. Vassilev, S.V. Kaveri, and S. Lacroix-Desmazes. 2010. Heterogeneous antigen recognition behavior of induced polyspecific antibodies. Biochemical and Biophysical Research Communications 398(2): 266–271.CrossRefPubMed
7.
Zurück zum Zitat Dimitrov, J.D., L.T. Roumenina, V.R. Doltchinkova, N.M. Mihaylova, S. Lacroix-Desmazes, S.V. Kaveri, and T.L. Vassilev. 2007. Antibodies use heme as a cofactor to extend their pathogen elimination activity and to acquire new effector functions. Journal of Biological Chemistry 282(37): 26696–26706.CrossRefPubMed Dimitrov, J.D., L.T. Roumenina, V.R. Doltchinkova, N.M. Mihaylova, S. Lacroix-Desmazes, S.V. Kaveri, and T.L. Vassilev. 2007. Antibodies use heme as a cofactor to extend their pathogen elimination activity and to acquire new effector functions. Journal of Biological Chemistry 282(37): 26696–26706.CrossRefPubMed
8.
Zurück zum Zitat Dimitrov, J.D., T.L. Vassilev, S. Andre, S.V. Kaveri, and S. Lacroix-Desmazes. 2008. Functional variability of antibodies upon oxidative processes. Autoimmunity Reviews 7(7): 574–578.CrossRefPubMed Dimitrov, J.D., T.L. Vassilev, S. Andre, S.V. Kaveri, and S. Lacroix-Desmazes. 2008. Functional variability of antibodies upon oxidative processes. Autoimmunity Reviews 7(7): 574–578.CrossRefPubMed
9.
Zurück zum Zitat McIntyre, J.A., D.R. Wagenknecht, and W.P. Faulk. 2005. Autoantibodies unmasked by redox reactions. Journal of Autoimmunity 24(4): 311–317.CrossRefPubMed McIntyre, J.A., D.R. Wagenknecht, and W.P. Faulk. 2005. Autoantibodies unmasked by redox reactions. Journal of Autoimmunity 24(4): 311–317.CrossRefPubMed
10.
Zurück zum Zitat Mihaylova, N.M., J.D. Dimitrov, I.K. Djoumerska-Alexieva, and T.L. Vassilev. 2008. Inflammation-induced enhancement of IgG immunoreactivity. Inflammation Research 57(1): 1–3.CrossRefPubMed Mihaylova, N.M., J.D. Dimitrov, I.K. Djoumerska-Alexieva, and T.L. Vassilev. 2008. Inflammation-induced enhancement of IgG immunoreactivity. Inflammation Research 57(1): 1–3.CrossRefPubMed
11.
Zurück zum Zitat Kazatchkine, M.D., and S.V. Kaveri. 2001. Immunomodulation of autoimmune and inflammatory diseases with intravenous immune globulin. New England Journal of Medicine 345(10): 747–755.CrossRefPubMed Kazatchkine, M.D., and S.V. Kaveri. 2001. Immunomodulation of autoimmune and inflammatory diseases with intravenous immune globulin. New England Journal of Medicine 345(10): 747–755.CrossRefPubMed
12.
Zurück zum Zitat Djoumerska-Alexieva, I., L. Roumenina, A. Pashov, J. Dimitrov, M. Hadzhieva, S. Lindig, et al. 2015. Intravenous immunoglobulin with enhanced polyspecificity improves survival in experimental sepsis and aseptic systemic inflammatory response syndromes. Molecular Medicine 21: 1002–1010.CrossRef Djoumerska-Alexieva, I., L. Roumenina, A. Pashov, J. Dimitrov, M. Hadzhieva, S. Lindig, et al. 2015. Intravenous immunoglobulin with enhanced polyspecificity improves survival in experimental sepsis and aseptic systemic inflammatory response syndromes. Molecular Medicine 21: 1002–1010.CrossRef
13.
Zurück zum Zitat Pavlovic, S., N. Zdravkovic, J.D. Dimitrov, A. Djukic, N. Arsenijevic, T.L. Vassilev, and M.L. Lukic. 2011. Intravenous immunoglobulins exposed to heme (heme IVIG) are more efficient than IVIG in attenuating autoimmune diabetes. Clinical Immunology 138(2): 162–171.CrossRefPubMed Pavlovic, S., N. Zdravkovic, J.D. Dimitrov, A. Djukic, N. Arsenijevic, T.L. Vassilev, and M.L. Lukic. 2011. Intravenous immunoglobulins exposed to heme (heme IVIG) are more efficient than IVIG in attenuating autoimmune diabetes. Clinical Immunology 138(2): 162–171.CrossRefPubMed
14.
Zurück zum Zitat Xiao, W., M.N. Mindrinos, J. Seok, J. Cuschieri, A.G. Cuenca, H. Gao, et al. 2011. A genomic storm in critically injured humans. Journal of Experimental Medicine 208(13): 2581–2590.CrossRefPubMedPubMedCentral Xiao, W., M.N. Mindrinos, J. Seok, J. Cuschieri, A.G. Cuenca, H. Gao, et al. 2011. A genomic storm in critically injured humans. Journal of Experimental Medicine 208(13): 2581–2590.CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Roumenina, L.T., J. Rayes, S. Lacroix-Desmazes, and J.D. Dimitrov. 2016. Heme: modulator of plasma systems in hemolytic diseases. Trends in Molecular Medicine 22(3): 200–213.CrossRefPubMed Roumenina, L.T., J. Rayes, S. Lacroix-Desmazes, and J.D. Dimitrov. 2016. Heme: modulator of plasma systems in hemolytic diseases. Trends in Molecular Medicine 22(3): 200–213.CrossRefPubMed
16.
Zurück zum Zitat Lecerf, M., T. Scheel, A.D. Pashov, A. Jarossay, D. Ohayon, C. Planchais, et al. 2015. Prevalence and gene characteristics of antibodies with cofactor-induced HIV-1 specificity. Journal of Biological Chemistry 290(8): 5203–5213.CrossRefPubMedPubMedCentral Lecerf, M., T. Scheel, A.D. Pashov, A. Jarossay, D. Ohayon, C. Planchais, et al. 2015. Prevalence and gene characteristics of antibodies with cofactor-induced HIV-1 specificity. Journal of Biological Chemistry 290(8): 5203–5213.CrossRefPubMedPubMedCentral
17.
Zurück zum Zitat Larsen, R., R. Gozzelino, V. Jeney, L. Tokaji, F.A. Bozza, A.M. Japiassu, et al. 2010. A central role for free heme in the pathogenesis of severe sepsis. Science Translational Medicine 2(51): 51ra71.CrossRefPubMed Larsen, R., R. Gozzelino, V. Jeney, L. Tokaji, F.A. Bozza, A.M. Japiassu, et al. 2010. A central role for free heme in the pathogenesis of severe sepsis. Science Translational Medicine 2(51): 51ra71.CrossRefPubMed
18.
Zurück zum Zitat Brocklehurst, P., B. Farrell, A. King, E. Juszczak, B. Darlow, K. Haque, A. Salt, B. Stenson, and W. Tarnow-Mordi. 2011. Treatment of neonatal sepsis with intravenous immune globulin. New England Journal of Medicine 365(13): 1201–1211.CrossRefPubMed Brocklehurst, P., B. Farrell, A. King, E. Juszczak, B. Darlow, K. Haque, A. Salt, B. Stenson, and W. Tarnow-Mordi. 2011. Treatment of neonatal sepsis with intravenous immune globulin. New England Journal of Medicine 365(13): 1201–1211.CrossRefPubMed
19.
Zurück zum Zitat Dimitrov, J.D., C. Planchais, T. Scheel, D. Ohayon, S. Mesnage, C. Berek, S.V. Kaveri, and S. Lacroix-Desmazes. 2014. A cryptic polyreactive antibody recognizes distinct clades of HIV-1 glycoprotein 120 by an identical binding mechanism. Journal of Biological Chemistry 289(25): 17767–17779.CrossRefPubMedPubMedCentral Dimitrov, J.D., C. Planchais, T. Scheel, D. Ohayon, S. Mesnage, C. Berek, S.V. Kaveri, and S. Lacroix-Desmazes. 2014. A cryptic polyreactive antibody recognizes distinct clades of HIV-1 glycoprotein 120 by an identical binding mechanism. Journal of Biological Chemistry 289(25): 17767–17779.CrossRefPubMedPubMedCentral
20.
Zurück zum Zitat Wang, H., O. Bloom, M. Zhang, J.M. Vishnubhakat, M. Ombrellino, J. Che, et al. 1999. HMG-1 as a late mediator of endotoxin lethality in mice. Science 285(5425): 248–251.CrossRefPubMed Wang, H., O. Bloom, M. Zhang, J.M. Vishnubhakat, M. Ombrellino, J. Che, et al. 1999. HMG-1 as a late mediator of endotoxin lethality in mice. Science 285(5425): 248–251.CrossRefPubMed
21.
Zurück zum Zitat Xu, J., X. Zhang, R. Pelayo, M. Monestier, C.T. Ammollo, F. Semeraro, et al. 2009. Extracellular histones are major mediators of death in sepsis. Nature Medicine 15(11): 1318–1321.CrossRefPubMedPubMedCentral Xu, J., X. Zhang, R. Pelayo, M. Monestier, C.T. Ammollo, F. Semeraro, et al. 2009. Extracellular histones are major mediators of death in sepsis. Nature Medicine 15(11): 1318–1321.CrossRefPubMedPubMedCentral
22.
Zurück zum Zitat Qiang, X., W.L. Yang, R. Wu, M. Zhou, A. Jacob, W. Dong, et al. 2013. Cold-inducible RNA-binding protein (CIRP) triggers inflammatory responses in hemorrhagic shock and sepsis. Nature Medicine 19(11): 1489–1495.CrossRefPubMedPubMedCentral Qiang, X., W.L. Yang, R. Wu, M. Zhou, A. Jacob, W. Dong, et al. 2013. Cold-inducible RNA-binding protein (CIRP) triggers inflammatory responses in hemorrhagic shock and sepsis. Nature Medicine 19(11): 1489–1495.CrossRefPubMedPubMedCentral
23.
Zurück zum Zitat Czermak, B.J., V. Sarma, C.L. Pierson, R.L. Warner, M. Huber-Lang, N.M. Bless, H. Schmal, H.P. Friedl, and P.A. Ward. 1999. Protective effects of C5a blockade in sepsis. Nature Medicine 5(7): 788–792.CrossRefPubMed Czermak, B.J., V. Sarma, C.L. Pierson, R.L. Warner, M. Huber-Lang, N.M. Bless, H. Schmal, H.P. Friedl, and P.A. Ward. 1999. Protective effects of C5a blockade in sepsis. Nature Medicine 5(7): 788–792.CrossRefPubMed
24.
Zurück zum Zitat Riedemann, N.C., R.F. Guo, and P.A. Ward. 2003. Novel strategies for the treatment of sepsis. Nature Medicine 9(5): 517–524.CrossRefPubMed Riedemann, N.C., R.F. Guo, and P.A. Ward. 2003. Novel strategies for the treatment of sepsis. Nature Medicine 9(5): 517–524.CrossRefPubMed
25.
Zurück zum Zitat Rittirsch, D., M.A. Flierl, B.A. Nadeau, D.E. Day, M. Huber-Lang, C.R. Mackay, et al. 2008. Functional roles for C5a receptors in sepsis. Nature Medicine 14(5): 551–557.CrossRefPubMedPubMedCentral Rittirsch, D., M.A. Flierl, B.A. Nadeau, D.E. Day, M. Huber-Lang, C.R. Mackay, et al. 2008. Functional roles for C5a receptors in sepsis. Nature Medicine 14(5): 551–557.CrossRefPubMedPubMedCentral
26.
Zurück zum Zitat Volman, T.J., T. Hendriks, and R.J. Goris. 2005. Zymosan-induced generalized inflammation: experimental studies into mechanisms leading to multiple organ dysfunction syndrome. Shock 23(4): 291–297.CrossRefPubMed Volman, T.J., T. Hendriks, and R.J. Goris. 2005. Zymosan-induced generalized inflammation: experimental studies into mechanisms leading to multiple organ dysfunction syndrome. Shock 23(4): 291–297.CrossRefPubMed
27.
Zurück zum Zitat Hubbard, W.J., M. Choudhry, M.G. Schwacha, J.D. Kerby, L.W. Rue 3rd, K.I. Bland, and I.H. Chaudry. 2005. Cecal ligation and puncture. Shock 24(Suppl 1): 52–57.CrossRefPubMed Hubbard, W.J., M. Choudhry, M.G. Schwacha, J.D. Kerby, L.W. Rue 3rd, K.I. Bland, and I.H. Chaudry. 2005. Cecal ligation and puncture. Shock 24(Suppl 1): 52–57.CrossRefPubMed
Metadaten
Titel
Heme-Exposed Pooled Therapeutic IgG Improves Endotoxemia Survival
verfasst von
Iglika Djoumerska-Alexieva
Lubka T. Roumenina
Tsvetanka Stefanova
Tchavdar Vassilev
Jordan D. Dimitrov
Publikationsdatum
28.10.2016
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 1/2017
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-016-0460-x

Weitere Artikel der Ausgabe 1/2017

Inflammation 1/2017 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.