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A role of proteomic analysis of exhaled breath condensate in diagnosis of chronic obstructive pulmonary disease and pneumonia

https://doi.org/10.18093/0869-0189-2012-0-5-5-9

Abstract

A role of proteomic analysis of exhaled breath condensate in diagnosis of chronic obstructive pulmonary disease and pneumonia.

About the Authors

E. Kh. Anaev
ФГУ "НИИ пульмонологии" ФМБА России
Russian Federation


M. E. Kushaeva
ФГУ "НИИ пульмонологии" ФМБА России
Russian Federation


V. S. Kurova
ФГБУ науки "Институт биохимической физики им. Н.М.Эммануэля РАН"
Russian Federation


A. M. Ryabokon
ФГБУ науки "Институт биохимической физики им. Н.М.Эммануэля РАН"
Russian Federation


T. N. Anokhina
ФГУ "НИИ пульмонологии" ФМБА России
Russian Federation


E. N. Nikolaev
ФГБУ науки "Институт биохимической физики им. Н.М.Эммануэля РАН"
Russian Federation


S. D. Varfolomeev
ФГБУ науки "Институт биохимической физики им. Н.М.Эммануэля РАН"
Russian Federation


A. G. Chuchalin
ФГУ "НИИ пульмонологии" ФМБА России
Russian Federation


References

1. Fischer B.M., Pavlisko E., Voynow J.A. Pathogenic triad in COPD: oxidative stress, proteaseantiprotease imbalance, and inflammation. Int. J. Chron. Obstruct. Pulm. Dis. 2011; 6: 413–421.

2. MacNee W. Accelerated lung aging: a novel pathogenic mechanism of chronic obstructive pulmonary disease (COPD). Biochem. Soc. Trans. 2009; 37 (Pt 4): 819–823.

3. Borrill Z.L., Roy K., Singh D. Exhaled breath condensate biomarkers in COPD. Eur. Respir. J. 2008; 32 (2): 472–486.

4. Анаев Э.Х., Чучалин А.Г. Конденсат выдыхаемого воздуха в диагностике и оценке эффективности лечения болезней органов дыхания. Пульмонология 2006; 4: 12–20.

5. Taylor D.R. Using biomarkers in the assessment of airways disease. J. Allergy Clin. Immunol. 2011; 128 (5): 927–934.

6. Wadsworth S., Sin D., Dorscheid D. Clinical update on the use of biomarkers of airway inflammation in the manage ment of asthma. J. Asthma Allergy 2011; 4: 77–86.

7. Bloemen K., Hooyberghs J., Desager K. et al. Noninvasive biomarker sampling and analysis of the exhaled breath pro teome. Proteomics Clin. Appl. 2009; 3 (4): 498–504.

8. Lin J.L., Bonnichsen M.H., Nogeh E.U. et al. Proteomics in detection and monitoring of asthma and smokingrelated lung diseases. Exp. Rev. Proteomics 2010; 7 (3): 361–372.

9. Conrad D.H., Goyette J., Thomas P.S. Proteomics as a method for early detection of cancer: a review of proteomics, exhaled breath condensate, and lung cancer screening. J. Gen. Intern. Med. 2008; 23 (Suppl. 1): 78–84.

10. Global Initiative for Chronic Obstructive Lung Disease (GOLD). WHO: Updated 2010.

11. Чучалина А.Г. (ред.). Пульмонология. Национальное руководство (+CD ROM). М.: ГЕОТАРМедиа; 2009.

12. Kurova V.S., Anaev E.C., Kononikhin A.S. et al. Proteomics of exhaled breath: methodological nuances and pitfalls. Clin. Chem. Lab. Med. 2009; 47 (6): 706–712.

13. www.matrixscience.com

14. Griese M., Noss J., von Bredow C. Protein pattern of exhaled breath condensate and saliva. Proteomics 2002; 2 (6): 690–696.

15. Курова В.С., Кононихин А.С., Попов И.А. и др. Экзоген ные белки в конденсате выдыхаемого человеком возду ха. Биоорг. химия 2011; 37 (1): 55–60.

16. Hoffmann H., Tabaksblat L., Enghild J., Dahl R. Human skin keratins are the major proteins in exhaled breath con densate. Eur. Respir. J. 2008; 31: 380–384.

17. Gianazza E., Allegra L., Bucchioni E. et al. Increased keratin content detected by proteomic analysis of exhaled breath condensate from healthy persons who smoke. Am. J. Med. 2004; 117 (1): 51–54.

18. Kopitar–Jerala N. The role of cystatins in cells of the immune system. FEBS Lett. 2006; 580: 6295–6301.

19. Matsuoka T., Hirata M., Tanaka H. et al. Prostaglandin D2 as a mediator of allergic asthma. Science 2000; 287: 2013–2017.

20. Ichikawa T., Matsunaga K., Minakata Y. et al. Possible impact of salivary influence on cytokine analysis in exhaled breath condensate. Anal. Chem. Insights 2007; 2: 85–92.

21. Urade Y., Hayaishi O. Prostaglandin D synthase: Structure and function. Vitam. and Horm. 2000; 58: 89–120.

22. Akerströom B., Lögdberg L., Berggard T. et al. Micro globulin: a yellowbrown lipocalin. Biochim. Biophys. Acta 2000; 1482: 172–184.

23. Mizon C., Piva F., Queyrel V. et al. Urinary bikunin deter mination provides insight into proteinase / proteinase inhibitor imbalance in patients with inflammatory diseases. Clin. Chem. Lab. Med. 2002; 40: 579–586.

24. D`Acquisto F., Perretti M., Flower R.J. AnnexinA1: a pivotal regulator of the innate and adaptive immune systems. Br. J. Pharmacol. 2008; 155 (2): 152–169.

25. Parente L., Solito E. Annexin 1: more than an antiphos pholipase protein. Inflamm. Res. 2004; 53 (4): 125–132.

26. Markova N.G., Marekov L.N., Chipev C.C. et al. Profilaggrin is a major epidermal calciumbinding protein. Mol. Cell. Biol. 1993; 13 (1): 613–625.

27. Ченцов Ю.С. Введение в клеточную биологию. М.: ИКЦ "Академкнига"; 2005.


Review

For citations:


Anaev E.Kh., Kushaeva M.E., Kurova V.S., Ryabokon A.M., Anokhina T.N., Nikolaev E.N., Varfolomeev S.D., Chuchalin A.G. A role of proteomic analysis of exhaled breath condensate in diagnosis of chronic obstructive pulmonary disease and pneumonia. PULMONOLOGIYA. 2012;(5):5-9. (In Russ.) https://doi.org/10.18093/0869-0189-2012-0-5-5-9

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ISSN 0869-0189 (Print)
ISSN 2541-9617 (Online)