Журнал микробиологии, эпидемиологии и иммунобиологии. 2016; : 50-55
БАКТЕРИАЛЬНЫЕ ЛИЗАТЫ ESCHERICHIA COLI СТИМУЛИРУЮТ ПРОДУКЦИЮ ДЕФЕНСИНОВ НЕЙТРОФИЛАМИ ПЕРИФЕРИЧЕСКОЙ КРОВИ
Ахматова Н. К., Хоменков В. Г., Волкова Е. В., Ахматова Э. А., Семочкин И. А., Перепанова Т. С., Зверев В. В.
https://doi.org/10.36233/0372-9311-2016-4-50-55Аннотация
Список литературы
1. Bessler W.G., vor dem Esche U., Zgaga-Griesz A. et al. Immunostimulatory properties of the bacterial extract OM-89 in vitro and in vivo. Arzneimittelforschung. 2010, 60 (6): 324-329.
2. Breakey A. A, Hinde K., Valeggia C.R. et al. Illness in breastfeeding infants relates to concentration of lactoferrin and secretory immunoglobulin A in mother's milk. Evol. Med. Public. Health. 2015, 20(1): 21-31.
3. Brusca I. Overview of biomarkers for diagnosis and monitoring of celiac disease. Adv. Clin. Chem. 2015,68: 1-55.
4. Gibbins H.L, Proctor G. B., Yakubov G.E. et al. SIgA binding to mucosal surfaces is mediated by mucin-mucin interactions. PLoS One. 2015, 20; 10 (3): eOl 19677.
5. Gupta I., Sehgal R., Kanwar R.K. et al. Nanocapsules loaded with iron-saturated bovine lactoferrin have antimicrobial therapeutic potential and maintain calcium, zinc and iron metabolism. Nanomedicine (Lond). 2014, 2: 1-26.
6. Hao J., Wang C., Yuan J. et al. A pro-inflammatory role of C5L2 in C5a-primed neutrophils for ANCA-induced activation. PLoS One. 2013, 13; 8 (6): e66305.
7. Koning N., Kessen S.F., Van Der Voorn J.P. et al. Human milk blocks DC-SIGN-pathogen interaction via MUC1. Front. Immunol. 2015, 13; 6: 112.
8. Lehmann F.S., Burri E., Beglinger C. The role and utility of faecal markers in-inflammatory bowel disease. Therap. Adv. Gastroenterol. 2015, 8 (1): 23-36.
9. PandaS., DingJ.L. Natural antibodies bridge innate and adaptive immunity. J. Immunol. 2015, 1; 194(1): 13-20.
10. Yamamoto T. The clinical value of faecal calprotectin and lactoferrin measurement in postoperative Crohn's disease. United European Gastroenterol. J. 2015, 3 (1): 5-10.
Journal of microbiology, epidemiology and immunobiology. 2016; : 50-55
BACTERIAL LYSATES OF ESCHERICHIA COLI STIMULATE PRODUCTION OF DEFENSINS BY PERIPHERAL BLOOD NEUTROPHILS
Akhmatova N. K., Khomenkov V. G., Volkova E. V., Akhmatova E. A., Semochkin I. A., Perepanova T. S., Zverev V. V.
https://doi.org/10.36233/0372-9311-2016-4-50-55Abstract
References
1. Bessler W.G., vor dem Esche U., Zgaga-Griesz A. et al. Immunostimulatory properties of the bacterial extract OM-89 in vitro and in vivo. Arzneimittelforschung. 2010, 60 (6): 324-329.
2. Breakey A. A, Hinde K., Valeggia C.R. et al. Illness in breastfeeding infants relates to concentration of lactoferrin and secretory immunoglobulin A in mother's milk. Evol. Med. Public. Health. 2015, 20(1): 21-31.
3. Brusca I. Overview of biomarkers for diagnosis and monitoring of celiac disease. Adv. Clin. Chem. 2015,68: 1-55.
4. Gibbins H.L, Proctor G. B., Yakubov G.E. et al. SIgA binding to mucosal surfaces is mediated by mucin-mucin interactions. PLoS One. 2015, 20; 10 (3): eOl 19677.
5. Gupta I., Sehgal R., Kanwar R.K. et al. Nanocapsules loaded with iron-saturated bovine lactoferrin have antimicrobial therapeutic potential and maintain calcium, zinc and iron metabolism. Nanomedicine (Lond). 2014, 2: 1-26.
6. Hao J., Wang C., Yuan J. et al. A pro-inflammatory role of C5L2 in C5a-primed neutrophils for ANCA-induced activation. PLoS One. 2013, 13; 8 (6): e66305.
7. Koning N., Kessen S.F., Van Der Voorn J.P. et al. Human milk blocks DC-SIGN-pathogen interaction via MUC1. Front. Immunol. 2015, 13; 6: 112.
8. Lehmann F.S., Burri E., Beglinger C. The role and utility of faecal markers in-inflammatory bowel disease. Therap. Adv. Gastroenterol. 2015, 8 (1): 23-36.
9. PandaS., DingJ.L. Natural antibodies bridge innate and adaptive immunity. J. Immunol. 2015, 1; 194(1): 13-20.
10. Yamamoto T. The clinical value of faecal calprotectin and lactoferrin measurement in postoperative Crohn's disease. United European Gastroenterol. J. 2015, 3 (1): 5-10.
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