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2015 | 20 | 1 |

Tytuł artykułu

Influence of the selected antibiotic on absorption process of Mg2+ ions from solid dispersions containing glutamate magnesium salts

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Numerous papers concerning the research on the role of magnesium in an organism and the effects of its deficiency indicate many causes and mechanisms leading to a negative balance of this macroelement. One of the causes of magnesium deficiency in systems may be its malabsorption from the digestive track resulting from taking compounds complexing magnesium ions or using drugs destructive to saprophytic flora. The results of our experiments testing in vitro the influence of β-lactam of penicillin G on the process of Mg2+ ions absorption through the intestinal membrane from solid dispersions containing phosphatidylcholine (PC 45) and the salts of magnesium glutamate and its derivatives from glycine and arginine ligands are presented in this paper. In order to make solid dispersions containing glutamate magnesium salts, auxiliary substances, polyvinylpyrrolidone (PVP) and phosphatidylcholine (PC45), were used. For the solid dispersions obtained by the Hansch method, partition coefficient in the system n - octanol/phosphate buffer was determined. Log P was calculated for the examined dispersions. Research on the degree of absorption of Mg2+ ions solid dispersions, which was the subject of the experiment, was done by the in vitro method, making use of a model of the intestine (ileum) of a rat. The evaluation of penicillin G influence on the degree of absorption of Mg2+ ions from solid dispersions containing magnesium salts was carried out by the above method. The results of experiments indicate that an additional ligand (glycine, arginine) in the structure of magnesium glutamate particle significantly influences the change of the value of of the kinetic absorption parameter of Mg2+ ions from solid dispersions containing magnesium salts. Introducing an additional ligand induces an accelerated rate of diffusion of the examined salts through the intestine. It has been found that penicillin G hinders the degree of Mg2+ ions absorption of the examined solid dispersions in the small intestine.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

1

Opis fizyczny

p.177-184,fig.,ref.

Twórcy

autor
  • Silesian College of Medicine in Katowice, A.Mickiewicza 29, 40-085 Katowice, Poland
  • Chair of Applied Pharmacy, Medical University of Silesia in Katowice, Katowice, Poland

Bibliografia

  • Ahuja N., Kishore K., Garg A. 2012. Solid dispersions - preparation, methods, pharmaceutical applications and evaluation techniques a review. Novel Sci. Int. J. Pharm. Sci., 1(2): 103-114.
  • Arayne M.S., Sultana N., Hussain F. 2005. Interactions between ciprofloxacin and antacids – dissolution and adsorption studies. Drug Metabol. Drug Interact., 21: 117-29.
  • Bikiaris D. et al. 2005. Physicochemical studies on solid dispersions of poorly water-soluble drugs. Evaluation of capabilities and limitations of thermal analysis techniques. Termochim. Acta, 439: 58-67.
  • Curatolo W.J., Herbig S.M. 2012. Solid pharmaceutical dispersions with enhanced bioavailability. Patent U.S. Nr 20120328679 A 1. 27.12.2012 James AS Nightingale Bend Research, Inc.
  • Dhiman S., Kaur P., Arora S. 2012. Solid dispersions: opportunity in drug delivery system. Drug Invention Today, 4(10): 478-486.
  • Dua K., Pabraja K., Ramana M.V. 2010. Preparation, characterization and in vitro evaluation of aceclofenac solid dispersions. ARS Pharm., 51(1): 57-76.
  • Guz K., Bugla-Płoskońska G. 2007, Immunomodulating and anti-inflammatory properties of selected antibiotics and chmetheraputic substances. Post. Hig. Med. Dośw. (online); 61: 828-837. (in Polish)
  • Jagadeesan R., Radhakrishnan M. 2013. Novel approaches in the preparation of solid dispersion on solubility: A Review. Int. J. Pharm. Pharm Sci, 5(3): 1000-1004.
  • Law S.L. 1992. Dissolution and absorption of nifedipine in polyethyleneglycol solid dispersion containing phosphatidyl choline. Int. J. Pharm., 84(2): 161-166.
  • Marcoin W., Ryszka F. 1991. Selected magnesium compounds of expected pharmacological activity. Ann. Acad. Med. Siles., 23: 45-53. (in Polish)
  • Marcoin W., Szulc B. 2002. Influence of amino acids anions on the absorption process of Mg2+ions in vitro. Sci. Pharm., 70: 29-37.
  • Marcoin W. 2006. Influence of hydrophilic carriers on the process of Mg2+ ions in the in vitro absorption from solid dispersion containing magnesium salts. J. Elementol., 11(3): 319-325. (in Polish)
  • Marcoin W., Szulc-Musioł B. 2009. Estimation of absorption of magnesium nicotinate and itsderivatives with selected amino acids. J. Elementol., 14(2): 313-321.
  • Marcoin W., Szulc-Musioł B. 2011. Evaluation of solid dispersions containing magnesium levulinate salts with selected carriers. J. Elementol., 16(4): 603-612.
  • Marsac P. J. 2008. Formation and stabilization of amorphous molecular level solid dispersions. ProQuest, West Lafayette, Indiana.
  • Rodriguez A.B., Hermanz C., De la Fuente M. 1991. Effect of three β-lactam antibiotics on ascorbate content, phagocytic activity and superoxide anion production in human neutrophils. Cell. Physiol. Biochem. 1: 170-176.
  • Rao M., Mandage Y., Thanki K., Bhise S. 2010. Dissolution improvement of simvastatin by surface solid dispersion technology. Dissolution Technologies, 61: 27-34.
  • Sandstrom B. 2001 Micronutrient interactions: effects on absorption and bioavailabilty. Brit. J. Nutrit., 85(2), 181-185.
  • Satterwhite J.H., Cerimele B.J., Coleman D.L., Hatcher B.L., Kisicki J., De Sante K.A. 1992. Pharmacokinetics of cefaclor AF: effect of age, antacids and H2 receptor antagonists. Poslgrad. Med., J. 68: 3-9.
  • Suliburska J. 2010. Evaluation of the occurrence of interactions between hypotensive drugs and dietary components and supplements in patients with arterial hypertension. Bromat. Chem. Toksykol., XLIII, (1): 35-40. (in Polish)
  • Singh S., Singh Baghel R., Yadav L. 2011. A review on solid dispersion. Int. J. Pharm. Life Sci., (UPLS), 2(9): 1078-1095.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-3dfedaca-f2a1-4e8b-a58f-815c4e10532e
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