PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Spektrometria mas w badaniach skażeń mikrobiologicznych środowiska. Część 2, Kwasy 3-hydroksytłuszczowe jako biomarkery lipopolisacharydów (endotoksyn) ścian komórkowych bakterii gramujemnych

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Investigetion (detection) of environment microbial contamination by mass spectrometry. Part 2, 3-hydroxy fatty acids as a lipopolysaccharides (endotoxin) biomarkers of the gram-negative bacterial cell walls
Języki publikacji
PL
Abstrakty
EN
Microorganisms synthesize several monomeric chemical structures that are not found elsewhere in nature, e.g. muramic acid (an amino sugar) and D-amino acids (D-alanine and D-glutamic acid) are ubiquitous in bacterial peptidoglycan (PG). Characteristic sugars (e.g. heptoses) and 3-hydroxylated fatty acids are found in the endotoxin (lipopolysaccharide, LPS) of gram-negative bacteria [1]. The best way to protect against environment contamination is microbial control. Methods in current use for monitoring microorganisms mainly include culture and direct microscopy. However, several factors, including samples collection, growth conditions, incubation temperature and interaction between different organisms all affected the culture results. Additionally, culture based methods can detect only viable organisms and they are also time consuming, sometimes taking days or weeks. However, since both living and dead microorganisms express irritating and toxic structures, they should all be taken into consideration. Muramic acid has been suggested for use as a chemical marker in gas chromatography-mass spectrometry (GC-MS) determination of bacterial peptidoglycan [2]. While 3-hydroxylated fatty acids are the best proposition for use as a chemical markers in gas chromatography-mass spectrometry determination of bacterial lipopolysaccharide (endotoxin) of gram-negative bacteria in both clinical and environmental samples [38]. Two derivatives have been applied, including the trimethylsilyl (TMS) and pentafluorobenzoyl (PFBO) derivatives [80]. Both derivatives (TMS and PFBO) have been proven suitable for use with GC-ion-trap tandem MS [3]. The aim of our proposition is trial of application of gas chromatography-mass spectrometry (GC-MS) method as an alternative or complement to culturing, microscopy and other assays for detection, characterization and monitoring of microbial contamination of environment (e.g. water, air, air-conditioning systems), contamination of biochemical and food production chain processes, packaging for foodstuffs etc. by analysis of bacterial 3-hydroxylated fatty acids as a biochemical markers. A method is described for the quantitation of methyl esters of 3-hydroxyacids, markers of bacterial lipopolysaccharide (endotoxin), as trimethylsilyl or pentafluorobenzoyl derivatives using GC/MS method. The described methods are quick and simple, can be applied for monitoring microbial contamination directly, without prior culturing, in complex environmental samples. This method can be also applied for testing processes of cleaning and disinfections on packaging materials or on both packaging materials/foodstuffs in order to decrease their microbial load and thus to ensure better shelf-life. [1] Z. Mielniczuk, K. Bal, Spektrometria mas w badaniach skażeń mikrobiologicznych środowiska. Część I. Kwas muraminowy jako biomarker ścian komórkowych bakterii, Wiad. Chem., 2012, 66, 445. [2] K. Bal, L. Larsson, E. Mielniczuk, Z. Mielniczuk, Structure of muramic acid TMS derivative mass spectrum’s base ion (m/z=185) used for quantification of bacterial peptidoglycan, J. Microbiol. Meth., 2002, 48, 267. [3] A. Saraf, L. Larsson, Identification of microorganisms by mass spectrometry, Advances in Mass Spectrometry, 1998, 14, 449. [38] Z. Mielniczuk, E. Mielniczuk, L. Larsson, Gas chromatography-mass spectrometry methods for analysis of 2- and 3-hydroxylated fatty acids: Application for endotoxin measurement, J. Microbiol. Meth., 1993, 17, 91. [80] Z. Mielniczuk, S. Alugupalli, E. Mielniczuk, L. Larsson, Gas chromatography-mass spectrometry of lipopolysaccharide 3-hydroxy fatty acids: comparison of pentafluorobenzoyl and trimethylsilyl methyl ester derivatives, J. Chromatogr., 1992, 623, 115.
Rocznik
Strony
95--117
Opis fizyczny
Bibliogr. 88 poz., tab., wykr.
Twórcy
autor
  • COBRO - Instytut Badawczy Opakowań ul. Konstancińska 11, 02-942 Warszawa
  • COBRO - Instytut Badawczy Opakowań ul. Konstancińska 11, 02-942 Warszawa
Bibliografia
  • [1] Z. Mielniczuk, K. Bal, Wiad. Chem., 2012, 66, 445.
  • [2] K. Bal, L. Larsson, E. Mielniczuk, Z. Mielniczuk, J. Microbiol. Meth., 2002, 48, 267.
  • [3] A. Saraf, L. Larsson, Adv. Mass Spectr., 1998, 14, 449.
  • [4] S.M. Hammmond, P.A. Lambert, A.N. Rycroft, The bacterial cell surface, Croom Helm, Becknham, U.K. 1984.
  • [5] E.Th. Rietschel, U. Brade, U. Schade, U. Seydel, S. Zahringer, S. Kusumoto, H. Brade, Bacterial endotoxins: properties and structure of biologically active domains [w:] Surface structures of microorganisms and their interactions with the mammalian host, (E. Schrinner, M.H. Richmond, G. Seibert, U. Schwarz), VHC Publishers, Weinheim, 1997.
  • [6] A. Fox, S.L. Morgan, L. Larsson, G. Odham, Analytical microbiology methods. Chromatography and mass spectrometry, Plenum Press, New York 1990.
  • [7] P.J. Hitchcock, L. Leive, P.H. Makela, E.Th. Rietschel, W. Strittmatter, D.C. Morrison, J. Bacteriol., 1986, 166, 699.
  • [8] I.C. Hancock, I.R. Poxton, Separation and purification of surface components [w:] Bacterial cell surface techniques, John Wiley and Sons, Chichester, 1988, 67.
  • [9] Z. Sidorczyk, U. Zahringer, E.Th. Rietschel, Eur. J. Biochem., 1983, 137, 15.
  • [10] H. Mayer, U.R. Bhat, H. Masoud, J. Radziejewska-Lebrecht, C. Widemann, J.H. Krauss, Pure and Appl. Chem., 1989, 61, 1271.
  • [11] E.Th. Rietschel, H.W. Wollenwebe, H. Brade U. Zahringer, B. Lindner, U. Seydel, O. Bradaczek, H. Barnickel, H. Labischinski, P.W. Giesbrecht, Handbook of Endotoxin, Vol. 1, Chemistry of Endotoxin (E.Th. Rietschel, Red.), Elsevier, Amsterdam, 1984, str. 187.
  • [12] A. Fox, J. Gilbart, S.L. Morgan, Analytical microbiology: a perspective w Analytical microbiology methods. Chromatography and mass spectrometry, (A. Fox, S.L. Morgan, L. Larsson, G. Odham, Red.), Plenum Press, New York 1990, str. 1.
  • [13] S.G. Wilkinson, Gram-negative bacteria [w:] Microbial lipids, Vol. 1, (C. Ratledge, S.G. Wilkinson Red.), Academic Press 1988, Jovanovich H.B., Publishers.
  • [14] H. Nikaido, T. Nakae, The outer membrane of Gram-negative bacteria str.163-250 [w:] Advances in microbial physiology, (A.H. Rose, J.G. Morris, Red.), Vol. 20, Academic Press, London 1979.
  • [15] M. Vaara, H. Nikaido, Molecular organization of bacterial outer membrane, [w:] Handbook of endotoxin, (E.Th. Rietschel, Red.), vol. 1, Chemistry of endotoxin, Elsevier, Amsterdam 1984, str. 1.
  • [16] O. Westphal, O. Luederitz, Ch. Galanos, H. Mayer, E.Th. Rietschel, The story of bacterial endotoxin, [w:] Advances in Immunolpharmacology 3 (L. Chedid, J.W. Hadden, F. Spreafico, P. Dukor, D. Willoughby, Red.), Pergamon Press, Oxford 1986, 13.
  • [17] A.C. McCartney, A.C. Wardlaw, Endotoxic activities of lipopolysaccharides [w:] Immunolgy of bacterial cell envelope, (D.E.S. Stewart-Tull, M. Davis, Reds.), John Wiley and Sons Ltd., Chichester, 1985, 203.
  • [18] C.A. Dinarello, J.G. Cannon, S.M. Wolff, H.A. Bernheim, B. Beutler, A. Cerami, I.S. Figari, M.A. Palladino Jr., J.V. O’Connor, J. Exp. Med., 1986, 163, 1433.
  • [19] G.D. Matrich, R.L. Danner, M. Ceska, A.F. Suffredini, J. Exp. Med., 1991, 173, 1021.
  • [20] H. Takada, S. Kotani, Crit. Rev. Microbiol., 1989, 16, 477.
  • [21] Ch. Galanos, O. Luederitz, E.Th. Rietschel, O. Westphal, H. Brade, L. Brade, M. Freudengerg, U. Schade, M. Imoto, H. Yoshimura, S. Kusumoto, T. Shiba, Eur. J. Biochem., 1985, 148, 1.
  • [22] P. Malmberg, Am. J. Indust. Med., 1990, 17, 7.
  • [23] R. Rylander, Am. J. Indust. Med., 1990, 17, 39.
  • [24] R. Rylander, Am. J. Indust. Med., 1987, 12, 687.
  • [25] R.M. Castellan, S.A. Olenchock, K.B. Kinslay, J.L. Hankinson, N. Engl. J. Med., 1987, 317, 605.
  • [26] D.C. Morrison, J.L. Ryan, Ann. Rev. Med., 1987, 38, 417.
  • [27] Z. Markiewicz, Struktura i funkcje osłon bakteryjnych, Wydaw. Naukowe PWN, Warszawa, 1993, str. 45.
  • [28] J. Aleksandrowicz, Z. Kudelski, Roczn. PZH, 1997, 48, 275.
  • [29] J.F. Cooper, J. Levin, H.N. Wagner Jr., J. Lab. Clin. Med., 1971, 78, 138.
  • [30] P. Friberger, M. Knos, L. Mellstam, A quantitative endotoxin assay utilizing LAL and a chromogenic substrate, [w:] Endotoxins and their detection with the Limulus amebocyte lysate test (S.W. Watson, J. Levin, T.J. Novitsky, Red.), Prog. Clin. Biol. Res., vol. 93, Alan R. Liss, New York, 1982, str. 195.
  • [31] G.H. Zhang, L. Beak, C.J. Koch, J. Clin. Microbiol., 1988, 26, 1464.
  • [32] T.L. Dwelle, L.M. Dunkle, L. Blair, J. Clin. Microbiol., 1987, 25, 856.
  • [33] K. Ikemura, K. Ikegami, T. Shimazu, T. Yoshioka, T. Sugimoto, J. Clin. Microbiol., 1989, 27, 1965.
  • [34] S. Iwanaga, T. Morita, T. Harada, Harada T, S. Nakamura, M. Niwa, K. Takada, T. Kimura, S. Sakakibara, Haemostasis, 1978, 7, 183.
  • [35] R.I. Harris, P.C.W. Stone, J. Stuart, J. Clin. Pathol., 1983, 36, 1145.
  • [36] A. Sonesson, L. Larsson, A. Schutz, L. Hagmar, T. Hallberg, Appl. Environ. Microbiol., 1990, 56, 1271.
  • [37] S.J. Reynolds, D.K. Milton, D. Heederik, P.S. Thorne, K.J. Donham, E.A. Croteau, K.M. Kelly, J. Douwes, D. Lewis, M. Whitmer, I. Connaughton, S. Koch, P. Malmberg, B.-M. Larsson, J. Deddens, A. Saraf, L. Larsson, J. Environ. Monit., 2005, 7, 1371.
  • [38] Z. Mielniczuk, E. Mielniczuk, L. Larsson, J. Microbiol. Meth., 1993, 17, 91.
  • [39] A. Saraf, L. Larsson, J. Mass Spect., 1996, 31, 389.
  • [40] B. Christensson, J. Gilbart, A. Fox, S.L. Morgan, Arthritis Rheum., 1989, 32, 1268.
  • [41] M. Walters, D. Milton, L. Larsson, T. Ford, Appl. Environ. Microbiol., 1994, 60, 996.
  • [42] Z. Mielniczuk, E. Mielniczuk, L. Larsson, Determination of bacterial endotoxin and peptidoglycan by GC/MS after a selective extraction procedure, Third, International Symposium Analytical Chemistry in Environmental Microbiology, March 12–16 ,1995, Knoxville, Tennessee, USA.
  • [43] K. Abel, H. deSchmertzing, J.I. Peterson, J. Bacteriol., 1963, 85, 1039.
  • [44] D.B. Drucker, Analysis of structural components of microorganisms by gas chromatography, [w:] Microbiological application of gas chromatography, Cambridge University Press, Cambridge 1981.
  • [45] P. Whittaker, F.S. Fry, S.K. Curtis, S.F. Al-Khaldi, M.M. Mossoba, M. Pete Yurawecz, V.C. Dunkel, J. Agric. Food Chem., 2005, 53, 3735.
  • [46] N.M. Morris, E.A. Catalano, R.J. Berni, Am. Ind. Hyg. Assoc. J., 1988, 49, 81.
  • [47] A. Sonesson, L. Larsson, A. Fox, G. Westerdahl, G. Odham, J. Chromatogr. Biomed. Applic., 1988, 431, 1.
  • [48] A. Sonesson, L. Larsson, A. Schutz, L. Hagmar, T. Hallberg, Appl. Environ. Microbiol., 1990, 56, 1271.
  • [49] Y1 Li, S. Wu, L. Wang, Y. Li, F. Shi, X. Wang, J. Sci. Food Agric., 2010, 90, 1380.
  • [50] H.-W. Wollenbenweber, E.Th. Rietschel, J. Microbiol. Meth., 1990, 11, 195.
  • [51] S.K. Maitra, R. Nachum, F.C. Pearson, Appl. Environ. Microbiol., 1986, 52, 510.
  • [52] W. Gradowska, L. Larsson, J. Microbiol. Meth., 1994, 20, 55.
  • [53] I. Mattsby-Baltzer, Z. Mielniczuk, L. Larsson, K. Lindgren, S. Goodwin, Infect. Immun., 1992, 60, 4383.
  • [54] S.G. Wilkinson, Gram-negative bacteria [w:] Microbial lipids, Vol. 1, (C. Ratledge, S.G. Wilkinson, Red.), Academic Press, London 1988, str. 299.
  • [55] C.O. Thoen, A.G. Karlson, R.D. Ellefson, Appl. Environ. Microbiol., 1972, 24, 1009.
  • [56] E. Jantzen, K. Bryn, Whole cell and lipopolysaccharide fatty acids and sugars of gram-negative bacteria, [w:] Chemical methods in bacterial systematics, (M. Goodfellow, D.E. Minnikin, Red.), The Society for Applied Bacteriology Technical Series No. 20, Academic Press, London 1985.
  • [57] S.L. Morgan, A. Fox, J. Gilbert, J. Microbiol. Meth., 1989, 9, 57.
  • [58] A. Fox, J. Gilbart, S.L. Morgan, Analytical microbiology: a perspective, [w:] Analytical microbiology methods. Chromatography and mass spectrometry, (A. Fox, S.L. Morgan, L. Larsson, G. Odham Red.), Plenum Press, New York 1990, str. 1.
  • [59] S. Alugupalli, F. Porataels, L. Larsson, J. Bacter., 1994, 176, 2962.
  • [60] E. Jantzen, K. Bryn, Analysis of cellular constituents from Gram-negative bacteria [w:] Chemical methods in prokaryotic systematics, (M. Goodfellow, A.G. O’Donnell, Reds.), John Wiley &Sons, Chichester, 1994, 21.
  • [61] G. Kawai, Biochim. Biophys. Acta, 1989, 1001, 185.
  • [62] H. Spreitzer, G. Spiteller, Monatsh. Chem., 1989, 120, 1139.
  • [63] B. Szponar, E. Norin, T. Midtvedt, L. Larsson, J. Microbiol. Methods, 2002, 50, 283.
  • [64] C. Hines, M. Waters, L. Larsson, M. Petersen, A. Saraf, D. Milton, Indoor Air, 2003, 13, 166.
  • [65] L. Larsson, J. Environ. Monit., 2008, 10, 301.
  • [66] A. Nilsson, E. Kihlstrom, V. Lagesson, B. Wessen, B. Szponar, L. Larsson, C. Tagesson, Indoor Air, 2004, 14, 74.
  • [67] J. Park, B. Szponar, L. Larsson, D.R. Gold, D.K. Milton, Appl. Environ. Microbiol., 2004, 70, 262.
  • [68] D. Pomorska, L. Larsson, C. Skorska, J. Sitkowska, J. Dutkiewicz, Ann. Agric. Environ. Med., 2007, 14, 291.
  • [69] A.A. Peterson, A.A, E.J. McGroarty, J. Bacteriol., 1985, 162, 738.
  • [70] M. Rivera, L.E. Bryan, R.E. Hancock, E.J. McGroarty, J. Bacteriol., 1980, 170, 512.
  • [71] Z. Mielniczuk, Oznaczanie niektórych chemicznych markerów ścian komórkowych bakterii metodą chromatografii gazowej i spektrometrii mas, Praca habilitacyjna, Warszawa, 1966.
  • [72] R. Rylander, Am. J. Indust. Med., 1987, 12, 687.
  • [73] R.M. Castellan, S.A. Olenchock, J.L. Hankinson, P.H. Millner, J.B. Cocke, C.K. Bragg, H.H. Perkins Jr., R.R. Jacobs, Ann. Int. Med., 1984, 101, 157.
  • [74] S.A. Olenchock, J.J. May, D.S. Pratt, P.R. Morey, Occupational exposures to airborne endotoxins in agriculture [w:] Detection of bacterial endotoxins with the Limulus Ameboctyte Lysate Test, (S.W. Watson, J. Levin, T.J. Novitsky, Reds.) 1987, 475.
  • [75] L. Larsson, APMIS, 1994, 102, 161.
  • [76] A. Kukis, Handbook of lipid research, Vol. 1. Fatty acids and glycerydes, (D.J. Hanahan Red.), Plenum Press, New York 1982, str. 1.
  • [77] C. Galanos, O. Luderitz, E.Th. Rietschel, O. Westphal, Galanos, Newer aspects of the chemistry and biology of bacterial lipopolysaccharides, with special reference to their lipid A component, [w:] Biochemistry of lipids II. International review of biochemistry, vol. 14, (T.W. Goodwin Red.), University Park Press, Baltimore 1977, str. 239.
  • [78] Microbial lipids, (C. Ratledge, S.G Wilkinson (Red.)), Vol. 1, Academic Press, London 1988.
  • [79] H.-W. Wollenweber, E.Th. Rietschel, J. Microb. Meth., 1990, 11, 195.
  • [80] Z. Mielniczuk, S. Alugupalli, E. Mielniczuk, L. Larsson, J. Chromatogr., 1992, 623, 115.
  • [81] Z. Mielniczuk, E. Mielniczuk, L. Larsson, J. Microbiol. Meth., 1993, 17, 91.
  • [82] S.K. Maitra, R. Nachum, F.C. Pearson, Appl. Environ. Microbiol., 1986, 52, 510.
  • [83] A. Sonesson, L. Larsson, G. Westerdahl, G. Odham, J. Chromatogr., 1987, 417, 11.
  • [84] H. Oyaizu, K. Komagata, J. Gen. Appl. Microbiol., 1981, 27, 57.
  • [85] S. Alugupalli, F. Porataels, L. Larsson, J. Bacter., 1994, 176, 2962.
  • [86] S.G. Wilkinson, Gram-negative bacteria [w:] Microbial lipids, Vol. 1, (C. Ratledge, S.G. Wilkinson, Red.), Academic Press, 1988, Jovanovich H.B., Publishers.
  • [87] A. Sonesson, L. Larsson, A. Schutz, L. Hagmar, T. Hallberg, Appl. Environ. Microbiol., 1990, 56, 1271.
  • [88] I. Mattsby-Baltzer, Z. Mielniczuk, L. Larsson, K. Lindgren, S. Goodwin, Infect. Immun., 1992, 60, 4383.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-32e9c3ae-ef59-4d5f-ac77-377982cb5a01
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.