Have a personal or library account? Click to login
Methodological approach to the study of dynamics of specific concentration of cell wall antigens per cell of Bacillus species and examples of its application Cover

Methodological approach to the study of dynamics of specific concentration of cell wall antigens per cell of Bacillus species and examples of its application

Open Access
|Jan 2017

References

  1. 1. Hong HA, Ducle H, Cutting SM. The use of bacterial spore formers as probiotics. FEMS Microbiol Rev 2005; 29(4): 813-35.10.1016/j.femsre.2004.12.00116102604
  2. 2. Fritze D. Taxonomy of the genus Bacillus and related genera: the aerobic endospore-forming bacteria. Phytopathology 2004; 94(11): 1245-48.10.1094/PHYTO.2004.94.11.124518944461
  3. 3. Latorre JD, Hernandez-Velasco X, Kuttappan VA, Wolfenden RE, Vicente JL, Wolfenden AD, Bielke LR, Prado-Rebolledo OF, Morales E, Hargis BM, Tellez G. Selection of Bacillus spp. for cellulase and xylanase production as direct-fed microbials to reduce digesta viscosity and Clostridium perfringens proliferation using an in vitro digestive model in different poultry diets. Front Vet Sci 2015; 2: art. 25.10.3389/fvets.2015.00025467218626664954
  4. 4. Li J, Xu Y, Jin L, Li X. Effects of a probiotic mixture (Bacillus subtilis YB-1 and Bacillus cereus YB-2) on disease resistance and nonspecific immunity of sea cucumber, Apostichopus japonicus (Selenka). Aquaculture Research 2015; 46(12): 3008-19.10.1111/are.12453
  5. 5. Lodemann U, Lorenz BM, Weyrauch KD, Martens H. Effects of Bacillus cereus var. toyoi as probiotic feed supplement on intestinal transport and barrier function in piglets. Arch Anim Nutr 2008; 62(2): 87-106.10.1080/1745039080191206818459534
  6. 6. Williams LD, Burdock GA, Jimenez G, Castillo M. Literature review on the safety of Toyocerin, a non-toxigenic and non-pathogenic Bacillus cereus var. toyoi preparation. Regul Toxicol Pharmacol 2009; 55(2): 236-46.10.1016/j.yrtph.2009.07.00919631708
  7. 7. Ceuppens S, Uyttendaele M, Drieskens K, Heyndrickx M, Rajkovic A, Boon N, Van de Wiele T. Survival and germination of Bacillus cereus spores without outgrowth or enterotoxin production during in vitro simulation of gastrointestinal transit. Appl Environ Microbiol 2012; 78(21): 7698 -705.10.1128/AEM.02142-12348573822923409
  8. 8. Senesi S, Ghelardi E. Production, secretion and biological activity of Bacillus cereus enterotoxins. Toxins 2010; 2(7): 1690-1703.10.3390/toxins2071690315326422069656
  9. 9. Ramarao N, Sanchis V. The pore-forming haemolysins of Bacillus cereus: a review. Toxins 2013; 5(6): 1119-39.10.3390/toxins5061119371777323748204
  10. 10. Westers L, Westers H, Quax WJ. Bacillus subtilis as cell factory for pharmaceutical proteins: a biotechnological approach to optimize the host organism. Biochimica et Biophysica Acta 2004; 1694(1-3): 299- 310.10.1016/j.bbamcr.2004.02.01115546673
  11. 11. Gudina EJ, Fernandes EC, Rodrigues AI, Teixeira JA, Rodrigues LR. Biosurfactant production by Bacillus subtilis using corn steep liquor as culture medium. Front Microbiol 2015; 6: art. 59.10.3389/fmicb.2015.00059
  12. 12. Borah D, Yadav RNS. Optimization of BH medium for efficient biodegradation of diesel, crude oil and used engine oil by a newly isolated Bacillus cereus strain DRDU1 from an automobile engine. Biotechnology 2014; 13(4): 181-5.10.3923/biotech.2014.181.185
  13. 13. Yao RL, Qiu LN, Zhang WW, Cai H. Isolation and characteristics of heterotrophic nitrification-aerobic denitrification bacterium, Bacillus cereus X7 at high salinity. Advanced Materials Research 2013; 864-867: 111-4.10.4028/www.scientific.net/AMR.864-867.111
  14. 14. Singh B, Kaur J, Singh K. Bioremediation of malathion in soil by mixed Bacillus culture. Adv Biosci Biotechnol 2013; 4: 674-8.10.4236/abb.2013.45088
  15. 15. Sowmya HV, Ramalingappa B, Krishnappa M, Thippeswamy B. Biodegradation of polyethylene by Bacillus cereus. Advances in Polymer Science and Technology: An International Journal 2014; 4(2): 28-32.
  16. 16. Romeiro RS, Filho RL, Macagnan D, Garcia FAO, Silva HSA. Evidence that the biocontrol agent Bacillus cereus synthesizes protein that can elicit increased resistance of tomato leaves to Corynespora cassiicola. Tropical Plant Pathology 2010; 35(1): 011-5.
  17. 17. Perchat S, Buisson C, Chaufaux J, Sanchis V, Lereclus D, Gohar M. Bacillus cereus produces several nonproteinaceous insecticidal exotoxins. J Invertebr Pathol 2005; 90: 131-3.10.1016/j.jip.2005.08.002
  18. 18. Niu D, Wang X, Wang Y, Song X, Wang J, Guo J, Zhao H. Bacillus cereus AR156 activates PAMP-triggered immunity and induces a systemic acquired resistance through a NPR1-and SA-dependent signaling pathway. Biochem Biophys Res Commun 2016; 469(1): 120-5.10.1016/j.bbrc.2015.11.081
  19. 19. Kiseleva E P, Mikhailopulo K I, Novik GI. Polyclonal rabbit antibodies to antigens of cells of Bacillus cereus BIM B-491: production and possible applications. Nauchny fond Biolog 2016; 2(16): 29 - 35 (in Russian).
  20. 20. Perosa F, Carbone R, Ferrone S, Dammacco F. Purification of humanimmunoglobulins by sequential precipitation with caprylic-acid and ammonium-sulfate. J Immunol Methods 1990; 128(1): 9-16.10.1016/0022-1759(90)90458-8
  21. 21. Waites W. M. Sporulation in Bacillus subtilis. Antigenic changes during spore formation. Biochem J 1968; 109: 803-10.10.1042/bj109080311870314972254
  22. 22. Walper SA, Lee PAB, Anderson GP, Goldman ER. Selection and characterization of single domain antibodies specific for Bacillus anthracis spore proteins. Antibodies 2013; 2: 152-67.10.3390/antib2010152
  23. 23. Abhyankar W, Pandey R, Beek AT, Brul S, de Koning LJ, de Koster CG. Reinforcement of Bacillus subtilis spores by cross-linking of outer coat proteins during maturation. Food Microbiol 2015; 45(part A): 54-62.10.1016/j.fm.2014.03.00725481062
  24. 24. Ceragioli M, Cangiano G, Esin S, Ghelardi E, Ricca E, Senesi S. Phagocytosis, germination and killing of Bacillus subtilis spores presenting heterologous antigens in human macrophages. Microbiology 2009; 2(155): 338-46.10.1099/mic.0.022939-019202083
  25. 25. Kiseleva EP, Mikhailopulo KI, Novik GI, Szwajcer Dey E, Zdorovenko EL, Shashkov AS, Knirel YA. Glycopolymers from Saccharomyces cerevisiae BIM Y-195 with unusual immunochemical properties: isolation, structural identification and prediction of their role in pathogenesis/treatment of autoimmune thyroid diseases.
  26. Research in immunology: an international journal 2014; 2014: art. ID 355367.
Language: English
Page range: 65 - 71
Submitted on: Jan 27, 2017
Published on: Jan 27, 2017
Published by: European Biotechnology Thematic Network Association
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2017 Elena Pavlovna Kiseleva, Konstantin Igorevich Mikhailopulo, Alena Ivanovna Ladutska, Galina Ivanovna Novik, published by European Biotechnology Thematic Network Association
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.