Different methods of purifying the specific polysaccharides of Bacterium faecalis alcaligenes
Skripnik, S.I.; Laushnik, G.M.; Zakharova, I.I.
Mikrobiolohichnyi Zhurnal 38(2): 235-239
1976
ISSN/ISBN: 0201-8462 PMID: 950931 Document Number: 103625
A comparative study of preparations isolated from B. faecalis alcaligenes [Alcaligenes faecalis], strain 6 showed that the degree of efficiency in the purification methods is different. For the preparation isolated by Fuller's method, ultracentrifugation was the best way of purification, and for the preparation isolated by Westphal's method, precipitation with cetavlon and gel filtration was effective.
Document emailed within 1 workday
Related Documents
Laushnik, G.M.; Skripnik, S.I. 1975: Study of specific polysaccharides of alkali-forming enterobacteria. I. Selection of hydrolysis conditions for polysaccharides from Bacterium faecalis alcaligenes, strain 6 Mikrobiolohichnyi Zhurnal 37(5): 594-596Laushnik, G.M. 1976: Specific polysaccharides of alkali-forming enterobacteria. II. Separation of a hydrolysate of B. faecalis alcaligenes specific polysaccharide on a column with cellulose Zhurnal Mikrobiologii Epidemiologii i Immunobiologii 1: 71-74
Jadhav, T.S.; Faldu, N.J.; Patel, P.; Narolkar, S.N.; Nerurkar, A.S. 2005: Alcaligenes faecalis kw-a biofilm for denitrification of nitrate-rich effluent Indian Journal of Experimental Biology 43(6): 542-547
Sun, J.; Zhou, Y.; Yuan, Z.; Xu, G. 2009: Immobilization of Alcaligenes faecalis penicillin G acylase on epoxy-type supports Prikladnaia Biokhimiia i Mikrobiologiia 45(5): 532-537
Kshirsagar, S.S.; Nair, P.M. 1979: Characterization of aerobic desaturation of palmitic acid using resting cells of Alcaligenes faecalis Indian Journal of Biochemistry and Biophysics 16(4): 227-231
Gruzinskiĭ, I.V.; Gogotov, I.N.; Bechina, E.M.; Semenov, I.V. 1977: Hydrogenase activity of the hydrogen-oxidizing bacterium Alcaligenes eutrophus Mikrobiologiia 46(4): 625-631
Matsushita, M.; Sankawa, U.; Okuda, T.; Okada, H.; Sasaki, T. 1983: A cleavage product of mouse C3 adsorbable to (1----3)-beta-D-glucan from Alcaligenes faecalis var. myxogenes IFO 13140 Japanese Journal of Experimental Medicine 53(5): 219-225
Sasaki, T.; Abiko, N.; Uchida, H.; Tanaka, M.; Nitta, K.; Yoshioka, Y.; Nomura, H. 1983: Antitumor activity of tetrahydro-2-furanyl- and tetrahydro-2-pyranyl-glucans obtained by chemical modification of (1 leads to 3)-beta-D-glucan from Alcaligenes faecalis var. myxogenes IFO 13140 and its lower molecular weight glucans Cancer Treatment Reports 67(3): 275-280
Kireev, G.V.; Navruzov, S.N.; Gevogrian, A.M.; Shoismatov, S.E.; Varakina, T.Kh. 2002: Methods for purifying emissions in the boilers of thermoelectric plants from benz(a)pyrene Gigiena i Sanitariia 2002(2): 27-28
Druzhinina, T.N.; Sizova, O.V.; Shibaev, V.N.; Rozhnova, S.S. 1990: Incorporation of paratose residue into Salmonella O-specific polysaccharides using enzymatic reactions Bioorganicheskaia Khimiia 16(6): 816-821
Borodiiuk, N.A.; Galach'iants, O.P.; Rassokhina, I.I. 1974: Study of polysaccharides of streptococcus group a by immunodiffusion methods Zhurnal Mikrobiologii Epidemiologii i Immunobiologii 51(4): 94-99
Lv, J.; Chen, H.; Duan, J.; Yan, H.; Tang, Y.; Song, B. 2011: Influence of different processing methods on Angelica sinensis polysaccharides from same origin Zhongguo Zhong Yao Za Zhi 36(7): 846-849
Druzhinina, T.N.; Gogilashvili, L.M.; Shibaev, V.N. 1988: Introduction of modified hexose residues into O-specific polysaccharides of Salmonella of serotype E, B, C2 and C3 using synthetic nucleotide sugars Bioorganicheskaia Khimiia 14(9): 1242-1249
Utkina, N.S.; Danilov, L.L.; Druzhinina, T.N.; Shibaev, V.N. 1989: Synthesis of cytidine diphosphate-3,6-dideoxyhexoses--donors of glycosyl residues in the biosynthesis of O-specific polysaccharides of Salmonella of serogroups A, B and C Bioorganicheskaia Khimiia 15(10): 1375-1383
Knirel', I.A.; Dmitrieva, B.A.; Kochetkov, N.K.; Tanatar, N.V.; Zakharova, I.I. 1985: Antigenic bacterial polysaccharides. 13. the structure of the O-specific polysaccharide chain of the lipopolysaccharide from Pseudomonas cepacia strain IMV 4137 Bioorganicheskaia Khimiia 11(4): 536-538
Iida, K.; Fujita, K.; Hirai, H.; Goto, H.; Miyazaki, S.; Arai, Y.; Iwaki, H.; Otake, M.; Sassa, S.; Maemura, M.; Nakayama, T.; Kudo, H.; Sakamoto, S. 1997: Preventive effects of polysaccharides extracted from human tubercle bacilli (specific substance of Maruyama) on colonic carcinogenesis in rats Cancer Detection and Prevention 21(5): 476-482
Sakamoto, S.; Okayasu, I.; Iida, K.; Fujita, K.; Yarimizu, T.; Nagasawa, H. 2000: Polysaccharides extracted from human tubercle bacilli (specific substance of Maruyama) reduces carcinogenesis in murine ulcerative colitis Anticancer Research 20(6b): 4295-4299
Bakinovskiĭ, L.V.; Gomtsian, A.R.; Baĭramova, N.E.; Kochetkov, N.K. 1985: Synthesis of oligosaccharide fragments of O-specific polysaccharides of Shigella flexneri. III. Synthesis of the tetrasaccharide Glc alpha 1-3Rha alpha 1-2(Glc alpha 1-3)Rha alpha 1-OMe and the pentasaccharide GlcNAc beta 1-2(Glc alpha 1-3)Rha alpha 1-2(Glc alpha 1-3)Rha alpha 1-OMe Bioorganicheskaia Khimiia 11(5): 655-661
Stavskaia, S.S.; Pavlova, I.N.; Radchenko, O.S.; Taranova, L.A.; Zakharova, I.I. 1987: Purification and study of the properties of a desulfonating enzyme in Pseudomonas alcaligenes Mikrobiologiia 56(6): 928-932
Abelian, B.A.; Bagdarsarian, S.N.; Afrikian, E.G. 1991: Intracellular L-aspartate-beta-decarboxylase of Pseudomonas sp. and Alcaligenes sp. and its immobilization Biokhimiia 56(7): 1288-1295